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Open Access 22-04-2024 | Merkel Cell Carcinoma | Review Article

Merkel Cell Carcinoma: Integrating Epidemiology, Immunology, and Therapeutic Updates

Authors: Jürgen C. Becker, Andreas Stang, David Schrama, Selma Ugurel

Published in: American Journal of Clinical Dermatology

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Abstract

Merkel cell carcinoma (MCC) is a rare skin cancer characterized by neuroendocrine differentiation. Its carcinogenesis is based either on the integration of the Merkel cell polyomavirus or on ultraviolet (UV) mutagenesis, both of which lead to high immunogenicity either through the expression of viral proteins or neoantigens. Despite this immunogenicity resulting from viral or UV-associated carcinogenesis, it exhibits highly aggressive behavior. However, owing to the rarity of MCC and the lack of epidemiologic registries with detailed clinical data, there is some uncertainty regarding the spontaneous course of the disease. Historically, advanced MCC patients were treated with conventional cytotoxic chemotherapy yielding a median response duration of only 3 months. Starting in 2017, four programmed cell death protein 1 (PD-1)/programmed cell death-ligand 1 (PD-L1) immune checkpoint inhibitors—avelumab, pembrolizumab, nivolumab (utilized in both neoadjuvant and adjuvant settings), and retifanlimab—have demonstrated efficacy in treating patients with disseminated MCC on the basis of prospective clinical trials. However, generating clinical evidence for rare cancers, such as MCC, is challenging owing to difficulties in conducting large-scale trials, resulting in small sample sizes and therefore lacking statistical power. Thus, to comprehensively understand the available clinical evidence on various immunotherapy approaches for MCC, we also delve into the epidemiology and immune biology of this cancer. Nevertheless, while randomized studies directly comparing immune checkpoint inhibitors and chemotherapy in MCC are lacking, immunotherapy shows response rates comparable to those previously reported with chemotherapy but with more enduring responses. Notably, adjuvant nivolumab has proven superiority to the standard-of-care therapy (observation) in the adjuvant setting.
Literature
1.
go back to reference Stang A, Becker JC, Nghiem P, Ferlay J. The association between geographic location and incidence of Merkel cell carcinoma in comparison to melanoma: an international assessment. Eur J Cancer. 2018;94:47–60.PubMedPubMedCentralCrossRef Stang A, Becker JC, Nghiem P, Ferlay J. The association between geographic location and incidence of Merkel cell carcinoma in comparison to melanoma: an international assessment. Eur J Cancer. 2018;94:47–60.PubMedPubMedCentralCrossRef
2.
go back to reference Jacobs D, Huang H, Olino K, Weiss S, Kluger H, Judson BL, Zhang Y. Assessment of age, period, and birth cohort effects and trends in Merkel cell carcinoma incidence in the United States. JAMA Dermatol. 2021;157(1):59–65.PubMedCrossRef Jacobs D, Huang H, Olino K, Weiss S, Kluger H, Judson BL, Zhang Y. Assessment of age, period, and birth cohort effects and trends in Merkel cell carcinoma incidence in the United States. JAMA Dermatol. 2021;157(1):59–65.PubMedCrossRef
3.
go back to reference Paulson KG, Nghiem P. One in a hundred million: Merkel cell carcinoma in pediatric and young adult patients is rare but more likely to present at advanced stages based on US registry data. J Am Acad Dermatol. 2019;80(6):1758–60.PubMedCrossRef Paulson KG, Nghiem P. One in a hundred million: Merkel cell carcinoma in pediatric and young adult patients is rare but more likely to present at advanced stages based on US registry data. J Am Acad Dermatol. 2019;80(6):1758–60.PubMedCrossRef
4.
go back to reference Agelli M, Clegg LX. Epidemiology of primary Merkel cell carcinoma in the United States. J Am Acad Dermatol. 2003;49(5):832–41.PubMedCrossRef Agelli M, Clegg LX. Epidemiology of primary Merkel cell carcinoma in the United States. J Am Acad Dermatol. 2003;49(5):832–41.PubMedCrossRef
5.
go back to reference Kukko H, Bohling T, Koljonen V, Tukiainen E, Haglund C, Pokhrel A, et al. Merkel cell carcinoma—a population-based epidemiological study in Finland with a clinical series of 181 cases. Eur J Cancer. 2012;48(5):737–42.PubMedCrossRef Kukko H, Bohling T, Koljonen V, Tukiainen E, Haglund C, Pokhrel A, et al. Merkel cell carcinoma—a population-based epidemiological study in Finland with a clinical series of 181 cases. Eur J Cancer. 2012;48(5):737–42.PubMedCrossRef
6.
go back to reference Mistry K, Levell NJ, Hollestein L, Wakkee M, Nijsten T, Knott CS, et al. Trends in incidence, treatment and survival of Merkel cell carcinoma in England 2004–2018: a cohort study. Br J Dermatol. 2023;188(2):228–36.PubMedCrossRef Mistry K, Levell NJ, Hollestein L, Wakkee M, Nijsten T, Knott CS, et al. Trends in incidence, treatment and survival of Merkel cell carcinoma in England 2004–2018: a cohort study. Br J Dermatol. 2023;188(2):228–36.PubMedCrossRef
7.
go back to reference Youlden DR, Soyer HP, Youl PH, Fritschi L, Baade PD. Incidence and survival for Merkel cell carcinoma in Queensland, Australia, 1993–2010. JAMA Dermatol. 2014;150(8):864–72.PubMedCrossRef Youlden DR, Soyer HP, Youl PH, Fritschi L, Baade PD. Incidence and survival for Merkel cell carcinoma in Queensland, Australia, 1993–2010. JAMA Dermatol. 2014;150(8):864–72.PubMedCrossRef
8.
go back to reference Engels EA, Frisch M, Goedert JJ, Biggar RJ, Miller RW. Merkel cell carcinoma and HIV infection. Lancet. 2002;359(9305):497–8.PubMedCrossRef Engels EA, Frisch M, Goedert JJ, Biggar RJ, Miller RW. Merkel cell carcinoma and HIV infection. Lancet. 2002;359(9305):497–8.PubMedCrossRef
9.
go back to reference Luu YT, Luo Q, Horner MJ, Shiels M, Engels EA, Sargen MR. Risk of Nonkeratinocyte skin cancers in people living with HIV during the era of antiretroviral therapy. J Investig Dermatol. 2023;143(4):588–95 (e3).PubMedCrossRef Luu YT, Luo Q, Horner MJ, Shiels M, Engels EA, Sargen MR. Risk of Nonkeratinocyte skin cancers in people living with HIV during the era of antiretroviral therapy. J Investig Dermatol. 2023;143(4):588–95 (e3).PubMedCrossRef
10.
go back to reference Clarke CA, Robbins HA, Tatalovich Z, Lynch CF, Pawlish KS, Finch JL, et al. Risk of Merkel cell carcinoma after solid organ transplantation. J Natl Cancer Inst. 2015;107(2):dju382.PubMedPubMedCentralCrossRef Clarke CA, Robbins HA, Tatalovich Z, Lynch CF, Pawlish KS, Finch JL, et al. Risk of Merkel cell carcinoma after solid organ transplantation. J Natl Cancer Inst. 2015;107(2):dju382.PubMedPubMedCentralCrossRef
11.
go back to reference Pedersen SA, Gaist D, Schmidt SAJ, Holmich LR, Friis S, Pottegard A. Hydrochlorothiazide use and risk of nonmelanoma skin cancer: a nationwide case-control study from Denmark. J Am Acad Dermatol. 2018;78(4):673–81 (e9).PubMedCrossRef Pedersen SA, Gaist D, Schmidt SAJ, Holmich LR, Friis S, Pottegard A. Hydrochlorothiazide use and risk of nonmelanoma skin cancer: a nationwide case-control study from Denmark. J Am Acad Dermatol. 2018;78(4):673–81 (e9).PubMedCrossRef
12.
go back to reference Keeling E, Murray SL, Williams Y, Sexton DJ, O’Kelly P, Deady S, et al. Merkel cell carcinoma in kidney transplant recipients in Ireland 1964–2018. Br J Dermatol. 2019;181(6):1314–5.PubMedCrossRef Keeling E, Murray SL, Williams Y, Sexton DJ, O’Kelly P, Deady S, et al. Merkel cell carcinoma in kidney transplant recipients in Ireland 1964–2018. Br J Dermatol. 2019;181(6):1314–5.PubMedCrossRef
13.
go back to reference Eid E, Maloney NJ, Cai ZR, Zaba LC, Kibbi N, John EM, Linos E. Risk of multiple primary cancers in patients with Merkel cell carcinoma: a SEER-based analysis. JAMA Dermatol. 2023;159(11):1248–52.PubMedCrossRef Eid E, Maloney NJ, Cai ZR, Zaba LC, Kibbi N, John EM, Linos E. Risk of multiple primary cancers in patients with Merkel cell carcinoma: a SEER-based analysis. JAMA Dermatol. 2023;159(11):1248–52.PubMedCrossRef
14.
go back to reference Eisemann N, Jansen L, Castro FA, Chen T, Eberle A, Nennecke A, et al. Survival with nonmelanoma skin cancer in Germany. Br J Dermatol. 2016;174(4):778–85.PubMedCrossRef Eisemann N, Jansen L, Castro FA, Chen T, Eberle A, Nennecke A, et al. Survival with nonmelanoma skin cancer in Germany. Br J Dermatol. 2016;174(4):778–85.PubMedCrossRef
15.
go back to reference McEvoy AM, Hippe DS, Lachance K, Park S, Cahill K, Redman M, et al. Merkel cell carcinoma recurrence risk estimation is improved by integrating factors beyond cancer stage: a multivariable model and web-based calculator. J Am Acad Dermatol. 2023;90:569–76.PubMedCrossRef McEvoy AM, Hippe DS, Lachance K, Park S, Cahill K, Redman M, et al. Merkel cell carcinoma recurrence risk estimation is improved by integrating factors beyond cancer stage: a multivariable model and web-based calculator. J Am Acad Dermatol. 2023;90:569–76.PubMedCrossRef
16.
go back to reference McEvoy AM, Lachance K, Hippe DS, Cahill K, Moshiri Y, Lewis CW, et al. Recurrence and mortality risk of Merkel cell carcinoma by cancer stage and time from diagnosis. JAMA Dermatol. 2022;158(4):382–9.PubMedPubMedCentralCrossRef McEvoy AM, Lachance K, Hippe DS, Cahill K, Moshiri Y, Lewis CW, et al. Recurrence and mortality risk of Merkel cell carcinoma by cancer stage and time from diagnosis. JAMA Dermatol. 2022;158(4):382–9.PubMedPubMedCentralCrossRef
17.
go back to reference Plummer M, de Martel C, Vignat J, Ferlay J, Bray F, Franceschi S. Global burden of cancers attributable to infections in 2012: a synthetic analysis. Lancet Glob Health. 2016;4(9):e609–16.PubMedCrossRef Plummer M, de Martel C, Vignat J, Ferlay J, Bray F, Franceschi S. Global burden of cancers attributable to infections in 2012: a synthetic analysis. Lancet Glob Health. 2016;4(9):e609–16.PubMedCrossRef
20.
go back to reference Marongiu F, DeGregori J. The sculpting of somatic mutational landscapes by evolutionary forces and their impacts on aging-related disease. Mol Oncol. 2022;16(18):3238–58.PubMedPubMedCentralCrossRef Marongiu F, DeGregori J. The sculpting of somatic mutational landscapes by evolutionary forces and their impacts on aging-related disease. Mol Oncol. 2022;16(18):3238–58.PubMedPubMedCentralCrossRef
21.
go back to reference Jacquelot N, Seillet C, Vivier E, Belz GT. Innate lymphoid cells and cancer. Nat Immunol. 2022;23(3):371–9.PubMedCrossRef Jacquelot N, Seillet C, Vivier E, Belz GT. Innate lymphoid cells and cancer. Nat Immunol. 2022;23(3):371–9.PubMedCrossRef
22.
go back to reference Cantoni C, Huergo-Zapico L, Parodi M, Pedrazzi M, Mingari MC, Moretta A, et al. NK cells, tumor cell transition, and tumor progression in solid malignancies: new hints for NK-based immunotherapy? J Immunol Res. 2016;2016:4684268.PubMedPubMedCentralCrossRef Cantoni C, Huergo-Zapico L, Parodi M, Pedrazzi M, Mingari MC, Moretta A, et al. NK cells, tumor cell transition, and tumor progression in solid malignancies: new hints for NK-based immunotherapy? J Immunol Res. 2016;2016:4684268.PubMedPubMedCentralCrossRef
23.
go back to reference Kabelitz D. A menage a trois of cytotoxic effector cells: gammadelta T cells suppress NK cells but not CTLs. Cancer Immunol Res. 2022;10(5):543.PubMedCrossRef Kabelitz D. A menage a trois of cytotoxic effector cells: gammadelta T cells suppress NK cells but not CTLs. Cancer Immunol Res. 2022;10(5):543.PubMedCrossRef
26.
go back to reference Luri-Rey C, Gomis G, Glez-Vaz J, Manzanal A, Martinez Riano A, Rodriguez Ruiz ME, et al. Cytotoxicity as a form of immunogenic cell death leading to efficient tumor antigen cross-priming. Immunol Rev. 2024;321(1):143–51.PubMedCrossRef Luri-Rey C, Gomis G, Glez-Vaz J, Manzanal A, Martinez Riano A, Rodriguez Ruiz ME, et al. Cytotoxicity as a form of immunogenic cell death leading to efficient tumor antigen cross-priming. Immunol Rev. 2024;321(1):143–51.PubMedCrossRef
28.
go back to reference Apavaloaei A, Hardy MP, Thibault P, Perreault C. The origin and immune recognition of tumor-specific antigens. Cancers (Basel). 2020;12(9):2607.PubMedCrossRef Apavaloaei A, Hardy MP, Thibault P, Perreault C. The origin and immune recognition of tumor-specific antigens. Cancers (Basel). 2020;12(9):2607.PubMedCrossRef
29.
go back to reference Macri C, Pang ES, Patton T, O’Keeffe M. Dendritic cell subsets. Semin Cell Dev Biol. 2018;84:11–21.PubMedCrossRef Macri C, Pang ES, Patton T, O’Keeffe M. Dendritic cell subsets. Semin Cell Dev Biol. 2018;84:11–21.PubMedCrossRef
31.
go back to reference Schumacher TN, Thommen DS. Tertiary lymphoid structures in cancer. Science. 2022;375(6576):eabf9419.PubMedCrossRef Schumacher TN, Thommen DS. Tertiary lymphoid structures in cancer. Science. 2022;375(6576):eabf9419.PubMedCrossRef
32.
go back to reference Lynch KT, Young SJ, Meneveau MO, Wages NA, Engelhard VH, Slingluff CL Jr, Mauldin IS. Heterogeneity in tertiary lymphoid structure B-cells correlates with patient survival in metastatic melanoma. J Immunother Cancer. 2021;9(6):e002273.PubMedPubMedCentralCrossRef Lynch KT, Young SJ, Meneveau MO, Wages NA, Engelhard VH, Slingluff CL Jr, Mauldin IS. Heterogeneity in tertiary lymphoid structure B-cells correlates with patient survival in metastatic melanoma. J Immunother Cancer. 2021;9(6):e002273.PubMedPubMedCentralCrossRef
33.
go back to reference Nakamura M, Magara T, Kano S, Matsubara A, Kato H, Morita A. Tertiary lymphoid structures and chemokine landscape in virus-positive and virus-negative Merkel cell carcinoma. Front Oncol. 2022;12: 811586.PubMedPubMedCentralCrossRef Nakamura M, Magara T, Kano S, Matsubara A, Kato H, Morita A. Tertiary lymphoid structures and chemokine landscape in virus-positive and virus-negative Merkel cell carcinoma. Front Oncol. 2022;12: 811586.PubMedPubMedCentralCrossRef
34.
35.
36.
go back to reference Paulson KG, Park SY, Vandeven NA, Lachance K, Thomas H, Chapuis AG, et al. Merkel cell carcinoma: current US incidence and projected increases based on changing demographics. J Am Acad Dermatol. 2018;78(3):457–63 (e2).PubMedCrossRef Paulson KG, Park SY, Vandeven NA, Lachance K, Thomas H, Chapuis AG, et al. Merkel cell carcinoma: current US incidence and projected increases based on changing demographics. J Am Acad Dermatol. 2018;78(3):457–63 (e2).PubMedCrossRef
37.
go back to reference Pang C, Sharma D, Sankar T. Spontaneous regression of Merkel cell carcinoma: a case report and review of the literature. Int J Surg Case Rep. 2015;7C:104–8.PubMedCrossRef Pang C, Sharma D, Sankar T. Spontaneous regression of Merkel cell carcinoma: a case report and review of the literature. Int J Surg Case Rep. 2015;7C:104–8.PubMedCrossRef
38.
go back to reference Nagase K, Inoue T, Koba S, Narisawa Y. Case of probable spontaneous regression of Merkel cell carcinoma combined with squamous cell carcinoma without surgical intervention. J Dermatol. 2018;45(7):858–61.PubMedCrossRef Nagase K, Inoue T, Koba S, Narisawa Y. Case of probable spontaneous regression of Merkel cell carcinoma combined with squamous cell carcinoma without surgical intervention. J Dermatol. 2018;45(7):858–61.PubMedCrossRef
39.
go back to reference Wong SQ, Waldeck K, Vergara IA, Schroder J, Madore J, Wilmott JS, et al. UV-associated mutations underlie the etiology of MCV-negative Merkel cell carcinomas. Cancer Res. 2015;75(24):5228–34.PubMedCrossRef Wong SQ, Waldeck K, Vergara IA, Schroder J, Madore J, Wilmott JS, et al. UV-associated mutations underlie the etiology of MCV-negative Merkel cell carcinomas. Cancer Res. 2015;75(24):5228–34.PubMedCrossRef
40.
go back to reference Gonzalez-Vela MDC, Curiel-Olmo S, Derdak S, Beltran S, Santibanez M, Martinez N, et al. Shared oncogenic pathways implicated in both virus-positive and UV-induced Merkel cell carcinomas. J Investig Dermatol. 2017;137(1):197–206.PubMedCrossRef Gonzalez-Vela MDC, Curiel-Olmo S, Derdak S, Beltran S, Santibanez M, Martinez N, et al. Shared oncogenic pathways implicated in both virus-positive and UV-induced Merkel cell carcinomas. J Investig Dermatol. 2017;137(1):197–206.PubMedCrossRef
41.
go back to reference Church C, Pulliam T, Longino N, Park SY, Smythe KS, Makarov V, et al. Transcriptional and functional analyses of neoantigen-specific CD4 T cells during a profound response to anti-PD-L1 in metastatic Merkel cell carcinoma. J Immunother Cancer. 2022;10(9):e005328.PubMedPubMedCentralCrossRef Church C, Pulliam T, Longino N, Park SY, Smythe KS, Makarov V, et al. Transcriptional and functional analyses of neoantigen-specific CD4 T cells during a profound response to anti-PD-L1 in metastatic Merkel cell carcinoma. J Immunother Cancer. 2022;10(9):e005328.PubMedPubMedCentralCrossRef
42.
43.
go back to reference Wijaya WA, Liu Y, Qing Y, Li Z. Prevalence of Merkel cell polyomavirus in normal and lesional skin: a systematic review and meta-analysis. Front Oncol. 2022;12: 868781.PubMedPubMedCentralCrossRef Wijaya WA, Liu Y, Qing Y, Li Z. Prevalence of Merkel cell polyomavirus in normal and lesional skin: a systematic review and meta-analysis. Front Oncol. 2022;12: 868781.PubMedPubMedCentralCrossRef
44.
go back to reference Shuda M, Kwun HJ, Feng H, Chang Y, Moore PS. Human Merkel cell polyomavirus small T antigen is an oncoprotein targeting the 4E-BP1 translation regulator. J Clin Investig. 2011;121(9):3623–34.PubMedPubMedCentralCrossRef Shuda M, Kwun HJ, Feng H, Chang Y, Moore PS. Human Merkel cell polyomavirus small T antigen is an oncoprotein targeting the 4E-BP1 translation regulator. J Clin Investig. 2011;121(9):3623–34.PubMedPubMedCentralCrossRef
45.
go back to reference Houben R, Shuda M, Weinkam R, Schrama D, Feng H, Chang Y, et al. Merkel cell polyomavirus-infected Merkel cell carcinoma cells require expression of viral T antigens. J Virol. 2010;84(14):7064–72.PubMedPubMedCentralCrossRef Houben R, Shuda M, Weinkam R, Schrama D, Feng H, Chang Y, et al. Merkel cell polyomavirus-infected Merkel cell carcinoma cells require expression of viral T antigens. J Virol. 2010;84(14):7064–72.PubMedPubMedCentralCrossRef
46.
go back to reference Croft NP, Smith SA, Pickering J, Sidney J, Peters B, Faridi P, et al. Most viral peptides displayed by class I MHC on infected cells are immunogenic. Proc Natl Acad Sci USA. 2019;116(8):3112–7.PubMedPubMedCentralCrossRef Croft NP, Smith SA, Pickering J, Sidney J, Peters B, Faridi P, et al. Most viral peptides displayed by class I MHC on infected cells are immunogenic. Proc Natl Acad Sci USA. 2019;116(8):3112–7.PubMedPubMedCentralCrossRef
47.
go back to reference Lyngaa R, Pedersen NW, Schrama D, Thrue CA, Ibrani D, Met O, et al. T-cell responses to oncogenic Merkel cell polyomavirus proteins distinguish patients with Merkel cell carcinoma from healthy donors. Clin Cancer Res. 2014;20(7):1768–78.PubMedPubMedCentralCrossRef Lyngaa R, Pedersen NW, Schrama D, Thrue CA, Ibrani D, Met O, et al. T-cell responses to oncogenic Merkel cell polyomavirus proteins distinguish patients with Merkel cell carcinoma from healthy donors. Clin Cancer Res. 2014;20(7):1768–78.PubMedPubMedCentralCrossRef
48.
go back to reference Jing L, Ott M, Church CD, Kulikauskas RM, Ibrani D, Iyer JG, et al. Prevalent and diverse intratumoral oncoprotein-specific CD8(+) T cells within polyomavirus-driven Merkel cell carcinomas. Cancer Immunol Res. 2020;8(5):648–59.PubMedPubMedCentralCrossRef Jing L, Ott M, Church CD, Kulikauskas RM, Ibrani D, Iyer JG, et al. Prevalent and diverse intratumoral oncoprotein-specific CD8(+) T cells within polyomavirus-driven Merkel cell carcinomas. Cancer Immunol Res. 2020;8(5):648–59.PubMedPubMedCentralCrossRef
49.
go back to reference Hansen UK, Lyngaa R, Ibrani D, Church C, Verhaegen M, Dlugosz AA, et al. Extended T-cell epitope landscape in Merkel cell polyomavirus large T and small T oncoproteins identified uniquely in patients with cancer. J Investig Dermatol. 2022;142(1):239–43 (e13).PubMedCrossRef Hansen UK, Lyngaa R, Ibrani D, Church C, Verhaegen M, Dlugosz AA, et al. Extended T-cell epitope landscape in Merkel cell polyomavirus large T and small T oncoproteins identified uniquely in patients with cancer. J Investig Dermatol. 2022;142(1):239–43 (e13).PubMedCrossRef
50.
go back to reference Jani S, Church CD, Nghiem P. Insights into anti-tumor immunity via the polyomavirus shared across human Merkel cell carcinomas. Front Immunol. 2023;14:1172913.PubMedPubMedCentralCrossRef Jani S, Church CD, Nghiem P. Insights into anti-tumor immunity via the polyomavirus shared across human Merkel cell carcinomas. Front Immunol. 2023;14:1172913.PubMedPubMedCentralCrossRef
51.
go back to reference Miller NJ, Church CD, Dong L, Crispin D, Fitzgibbon MP, Lachance K, et al. Tumor-infiltrating Merkel cell polyomavirus-specific T cells are diverse and associated with improved patient survival. Cancer Immunol Res. 2017;5(2):137–47.PubMedPubMedCentralCrossRef Miller NJ, Church CD, Dong L, Crispin D, Fitzgibbon MP, Lachance K, et al. Tumor-infiltrating Merkel cell polyomavirus-specific T cells are diverse and associated with improved patient survival. Cancer Immunol Res. 2017;5(2):137–47.PubMedPubMedCentralCrossRef
52.
go back to reference Afanasiev OK, Yelistratova L, Miller N, Nagase K, Paulson K, Iyer JG, et al. Merkel polyomavirus-specific T cells fluctuate with Merkel cell carcinoma burden and express therapeutically targetable PD-1 and Tim-3 exhaustion markers. Clin Cancer Res. 2013;19(19):5351–60.PubMedPubMedCentralCrossRef Afanasiev OK, Yelistratova L, Miller N, Nagase K, Paulson K, Iyer JG, et al. Merkel polyomavirus-specific T cells fluctuate with Merkel cell carcinoma burden and express therapeutically targetable PD-1 and Tim-3 exhaustion markers. Clin Cancer Res. 2013;19(19):5351–60.PubMedPubMedCentralCrossRef
53.
go back to reference Samimi M, Benlalam H, Aumond P, Gaboriaud P, Fradin D, Kervarrec T, et al. Viral and tumor antigen-specific CD8 T-cell responses in Merkel cell carcinoma. Cell Immunol. 2019;344: 103961.PubMedCrossRef Samimi M, Benlalam H, Aumond P, Gaboriaud P, Fradin D, Kervarrec T, et al. Viral and tumor antigen-specific CD8 T-cell responses in Merkel cell carcinoma. Cell Immunol. 2019;344: 103961.PubMedCrossRef
54.
go back to reference Paulson KG, Iyer JG, Tegeder AR, Thibodeau R, Schelter J, Koba S, et al. Transcriptome-wide studies of Merkel cell carcinoma and validation of intratumoral CD8+ lymphocyte invasion as an independent predictor of survival. J Clin Oncol. 2011;29(12):1539–46.PubMedPubMedCentralCrossRef Paulson KG, Iyer JG, Tegeder AR, Thibodeau R, Schelter J, Koba S, et al. Transcriptome-wide studies of Merkel cell carcinoma and validation of intratumoral CD8+ lymphocyte invasion as an independent predictor of survival. J Clin Oncol. 2011;29(12):1539–46.PubMedPubMedCentralCrossRef
55.
go back to reference Paulson KG, Iyer JG, Simonson WT, Blom A, Thibodeau RM, Schmidt M, et al. CD8+ lymphocyte intratumoral infiltration as a stage-independent predictor of Merkel cell carcinoma survival: a population-based study. Am J Clin Pathol. 2014;142(4):452–8.PubMedCrossRef Paulson KG, Iyer JG, Simonson WT, Blom A, Thibodeau RM, Schmidt M, et al. CD8+ lymphocyte intratumoral infiltration as a stage-independent predictor of Merkel cell carcinoma survival: a population-based study. Am J Clin Pathol. 2014;142(4):452–8.PubMedCrossRef
57.
go back to reference Kallies A, Zehn D, Utzschneider DT. Precursor exhausted T cells: key to successful immunotherapy? Nat Rev Immunol. 2020;20(2):128–36.PubMedCrossRef Kallies A, Zehn D, Utzschneider DT. Precursor exhausted T cells: key to successful immunotherapy? Nat Rev Immunol. 2020;20(2):128–36.PubMedCrossRef
58.
go back to reference Miller BC, Sen DR, Al Abosy R, Bi K, Virkud YV, LaFleur MW, et al. Subsets of exhausted CD8(+) T cells differentially mediate tumor control and respond to checkpoint blockade. Nat Immunol. 2019;20(3):326–36.PubMedPubMedCentralCrossRef Miller BC, Sen DR, Al Abosy R, Bi K, Virkud YV, LaFleur MW, et al. Subsets of exhausted CD8(+) T cells differentially mediate tumor control and respond to checkpoint blockade. Nat Immunol. 2019;20(3):326–36.PubMedPubMedCentralCrossRef
59.
go back to reference Cheng H, Ma K, Zhang L, Li G. The tumor microenvironment shapes the molecular characteristics of exhausted CD8(+) T cells. Cancer Lett. 2021;506:55–66.PubMedCrossRef Cheng H, Ma K, Zhang L, Li G. The tumor microenvironment shapes the molecular characteristics of exhausted CD8(+) T cells. Cancer Lett. 2021;506:55–66.PubMedCrossRef
61.
go back to reference Dowlatshahi M, Huang V, Gehad AE, Jiang Y, Calarese A, Teague JE, et al. Tumor-specific T cells in human Merkel cell carcinomas: a possible role for Tregs and T-cell exhaustion in reducing T-cell responses. J Investig Dermatol. 2013;133(7):1879–89.PubMedCrossRef Dowlatshahi M, Huang V, Gehad AE, Jiang Y, Calarese A, Teague JE, et al. Tumor-specific T cells in human Merkel cell carcinomas: a possible role for Tregs and T-cell exhaustion in reducing T-cell responses. J Investig Dermatol. 2013;133(7):1879–89.PubMedCrossRef
62.
go back to reference Wolf Y, Anderson AC, Kuchroo VK. TIM3 comes of age as an inhibitory receptor. Nat Rev Immunol. 2020;20(3):173–85.PubMedCrossRef Wolf Y, Anderson AC, Kuchroo VK. TIM3 comes of age as an inhibitory receptor. Nat Rev Immunol. 2020;20(3):173–85.PubMedCrossRef
63.
go back to reference Ritter C, Fan K, Paschen A, Reker Hardrup S, Ferrone S, Nghiem P, et al. Epigenetic priming restores the HLA class-I antigen processing machinery expression in Merkel cell carcinoma. Sci Rep. 2017;7(1):2290.PubMedPubMedCentralCrossRef Ritter C, Fan K, Paschen A, Reker Hardrup S, Ferrone S, Nghiem P, et al. Epigenetic priming restores the HLA class-I antigen processing machinery expression in Merkel cell carcinoma. Sci Rep. 2017;7(1):2290.PubMedPubMedCentralCrossRef
65.
go back to reference Ritter C, Fan K, Paulson KG, Nghiem P, Schrama D, Becker JC. Reversal of epigenetic silencing of MHC class I chain-related protein A and B improves immune recognition of Merkel cell carcinoma. Sci Rep. 2016;6:21678.PubMedPubMedCentralCrossRef Ritter C, Fan K, Paulson KG, Nghiem P, Schrama D, Becker JC. Reversal of epigenetic silencing of MHC class I chain-related protein A and B improves immune recognition of Merkel cell carcinoma. Sci Rep. 2016;6:21678.PubMedPubMedCentralCrossRef
66.
go back to reference Paulson KG, Tegeder A, Willmes C, Iyer JG, Afanasiev OK, Schrama D, et al. Downregulation of MHC-I expression is prevalent but reversible in Merkel cell carcinoma. Cancer Immunol Res. 2014;2(11):1071–9.PubMedPubMedCentralCrossRef Paulson KG, Tegeder A, Willmes C, Iyer JG, Afanasiev OK, Schrama D, et al. Downregulation of MHC-I expression is prevalent but reversible in Merkel cell carcinoma. Cancer Immunol Res. 2014;2(11):1071–9.PubMedPubMedCentralCrossRef
67.
go back to reference Wheat R, Roberts C, Waterboer T, Steele J, Marsden J, Steven NM, Blackbourn DJ. Inflammatory cell distribution in primary Merkel cell carcinoma. Cancers (Basel). 2014;6(2):1047–64.PubMedPubMedCentralCrossRef Wheat R, Roberts C, Waterboer T, Steele J, Marsden J, Steven NM, Blackbourn DJ. Inflammatory cell distribution in primary Merkel cell carcinoma. Cancers (Basel). 2014;6(2):1047–64.PubMedPubMedCentralCrossRef
68.
go back to reference Afanasiev OK, Nagase K, Simonson W, Vandeven N, Blom A, Koelle DM, et al. Vascular E-selectin expression correlates with CD8 lymphocyte infiltration and improved outcome in Merkel cell carcinoma. J Investig Dermatol. 2013;133(8):2065–73.PubMedCrossRef Afanasiev OK, Nagase K, Simonson W, Vandeven N, Blom A, Koelle DM, et al. Vascular E-selectin expression correlates with CD8 lymphocyte infiltration and improved outcome in Merkel cell carcinoma. J Investig Dermatol. 2013;133(8):2065–73.PubMedCrossRef
69.
go back to reference Chen Q, Sun L, Chen ZJ. Regulation and function of the cGAS-STING pathway of cytosolic DNA sensing. Nat Immunol. 2016;17(10):1142–9.PubMedCrossRef Chen Q, Sun L, Chen ZJ. Regulation and function of the cGAS-STING pathway of cytosolic DNA sensing. Nat Immunol. 2016;17(10):1142–9.PubMedCrossRef
70.
go back to reference Liu W, Kim GB, Krump NA, Zhou Y, Riley JL, You J. Selective reactivation of STING signaling to target Merkel cell carcinoma. Proc Natl Acad Sci USA. 2020;117(24):13730–9.PubMedPubMedCentralCrossRef Liu W, Kim GB, Krump NA, Zhou Y, Riley JL, You J. Selective reactivation of STING signaling to target Merkel cell carcinoma. Proc Natl Acad Sci USA. 2020;117(24):13730–9.PubMedPubMedCentralCrossRef
71.
go back to reference Pulliam TH, Bhakuni R, Jani S, Smythe K, Seaton B, Tachiki L, et al. An intratumoral STING agonist-mediated clinical response in PD-L1-refractory MCC via an unexpected mechanism of action. J Investig Dermatol. 2022;142(10):2839.CrossRef Pulliam TH, Bhakuni R, Jani S, Smythe K, Seaton B, Tachiki L, et al. An intratumoral STING agonist-mediated clinical response in PD-L1-refractory MCC via an unexpected mechanism of action. J Investig Dermatol. 2022;142(10):2839.CrossRef
72.
go back to reference Lipson EJ, Vincent JG, Loyo M, Kagohara LT, Luber BS, Wang H, et al. PD-L1 expression in the Merkel cell carcinoma microenvironment: association with inflammation, Merkel cell polyomavirus and overall survival. Cancer Immunol Res. 2013;1(1):54–63.PubMedCrossRef Lipson EJ, Vincent JG, Loyo M, Kagohara LT, Luber BS, Wang H, et al. PD-L1 expression in the Merkel cell carcinoma microenvironment: association with inflammation, Merkel cell polyomavirus and overall survival. Cancer Immunol Res. 2013;1(1):54–63.PubMedCrossRef
73.
go back to reference Ricci C, Righi A, Ambrosi F, Gibertoni D, Maletta F, Uccella S, et al. Prognostic impact of MCPyV and TIL subtyping in Merkel cell carcinoma: evidence from a large European cohort of 95 patients. Endocr Pathol. 2020;31(1):21–32.PubMedCrossRef Ricci C, Righi A, Ambrosi F, Gibertoni D, Maletta F, Uccella S, et al. Prognostic impact of MCPyV and TIL subtyping in Merkel cell carcinoma: evidence from a large European cohort of 95 patients. Endocr Pathol. 2020;31(1):21–32.PubMedCrossRef
74.
go back to reference Spassova I, Ugurel S, Terheyden P, Sucker A, Hassel JC, Ritter C, et al. Predominance of central memory T cells with high T-cell receptor repertoire diversity is associated with response to PD-1/PD-L1 inhibition in Merkel cell carcinoma. Clin Cancer Res. 2020;26(9):2257–67.PubMedCrossRef Spassova I, Ugurel S, Terheyden P, Sucker A, Hassel JC, Ritter C, et al. Predominance of central memory T cells with high T-cell receptor repertoire diversity is associated with response to PD-1/PD-L1 inhibition in Merkel cell carcinoma. Clin Cancer Res. 2020;26(9):2257–67.PubMedCrossRef
75.
go back to reference Spassova I, Ugurel S, Kubat L, Zimmer L, Terheyden P, Mohr A, et al. Clinical and molecular characteristics associated with response to therapeutic PD-1/PD-L1 inhibition in advanced Merkel cell carcinoma. J Immunother Cancer. 2022;10(1):e003198.PubMedPubMedCentralCrossRef Spassova I, Ugurel S, Kubat L, Zimmer L, Terheyden P, Mohr A, et al. Clinical and molecular characteristics associated with response to therapeutic PD-1/PD-L1 inhibition in advanced Merkel cell carcinoma. J Immunother Cancer. 2022;10(1):e003198.PubMedPubMedCentralCrossRef
76.
go back to reference Simon S, Voillet V, Vignard V, Wu Z, Dabrowski C, Jouand N, et al. PD-1 and TIGIT coexpression identifies a circulating CD8 T cell subset predictive of response to anti-PD-1 therapy. J Immunother Cancer. 2020;8(2):e001631.PubMedPubMedCentralCrossRef Simon S, Voillet V, Vignard V, Wu Z, Dabrowski C, Jouand N, et al. PD-1 and TIGIT coexpression identifies a circulating CD8 T cell subset predictive of response to anti-PD-1 therapy. J Immunother Cancer. 2020;8(2):e001631.PubMedPubMedCentralCrossRef
77.
go back to reference Im SJ, Hashimoto M, Gerner MY, Lee J, Kissick HT, Burger MC, et al. Defining CD8+ T cells that provide the proliferative burst after PD-1 therapy. Nature. 2016;537(7620):417–21.PubMedPubMedCentralCrossRef Im SJ, Hashimoto M, Gerner MY, Lee J, Kissick HT, Burger MC, et al. Defining CD8+ T cells that provide the proliferative burst after PD-1 therapy. Nature. 2016;537(7620):417–21.PubMedPubMedCentralCrossRef
78.
go back to reference Yost KE, Satpathy AT, Wells DK, Qi Y, Wang C, Kageyama R, et al. Clonal replacement of tumor-specific T cells following PD-1 blockade. Nat Med. 2019;25(8):1251–9.PubMedPubMedCentralCrossRef Yost KE, Satpathy AT, Wells DK, Qi Y, Wang C, Kageyama R, et al. Clonal replacement of tumor-specific T cells following PD-1 blockade. Nat Med. 2019;25(8):1251–9.PubMedPubMedCentralCrossRef
79.
go back to reference Wu TD, Madireddi S, de Almeida PE, Banchereau R, Chen YJ, Chitre AS, et al. Peripheral T cell expansion predicts tumour infiltration and clinical response. Nature. 2020;579(7798):274–8.PubMedCrossRef Wu TD, Madireddi S, de Almeida PE, Banchereau R, Chen YJ, Chitre AS, et al. Peripheral T cell expansion predicts tumour infiltration and clinical response. Nature. 2020;579(7798):274–8.PubMedCrossRef
80.
go back to reference Liu B, Hu X, Feng K, Gao R, Xue Z, Zhang S, et al. Temporal single-cell tracing reveals clonal revival and expansion of precursor exhausted T cells during anti-PD-1 therapy in lung cancer. Nat Cancer. 2022;3(1):108–21.PubMedCrossRef Liu B, Hu X, Feng K, Gao R, Xue Z, Zhang S, et al. Temporal single-cell tracing reveals clonal revival and expansion of precursor exhausted T cells during anti-PD-1 therapy in lung cancer. Nat Cancer. 2022;3(1):108–21.PubMedCrossRef
81.
go back to reference Corgnac S, Malenica I, Mezquita L, Auclin E, Voilin E, Kacher J, et al. CD103(+)CD8(+) T(RM) cells accumulate in tumors of anti-PD-1-responder lung cancer patients and are tumor-reactive lymphocytes enriched with Tc17. Cell Rep Med. 2020;1(7): 100127.PubMedPubMedCentralCrossRef Corgnac S, Malenica I, Mezquita L, Auclin E, Voilin E, Kacher J, et al. CD103(+)CD8(+) T(RM) cells accumulate in tumors of anti-PD-1-responder lung cancer patients and are tumor-reactive lymphocytes enriched with Tc17. Cell Rep Med. 2020;1(7): 100127.PubMedPubMedCentralCrossRef
82.
go back to reference Luoma AM, Suo S, Wang Y, Gunasti L, Porter CBM, Nabilsi N, et al. Tissue-resident memory and circulating T cells are early responders to pre-surgical cancer immunotherapy. Cell. 2022;185(16):2918–35 (e29).PubMedPubMedCentralCrossRef Luoma AM, Suo S, Wang Y, Gunasti L, Porter CBM, Nabilsi N, et al. Tissue-resident memory and circulating T cells are early responders to pre-surgical cancer immunotherapy. Cell. 2022;185(16):2918–35 (e29).PubMedPubMedCentralCrossRef
83.
go back to reference Rahim MK, Okholm TLH, Jones KB, McCarthy EE, Liu CC, Yee JL, et al. Dynamic CD8(+) T cell responses to cancer immunotherapy in human regional lymph nodes are disrupted in metastatic lymph nodes. Cell. 2023;186(6):1127–43 (e18).PubMedPubMedCentralCrossRef Rahim MK, Okholm TLH, Jones KB, McCarthy EE, Liu CC, Yee JL, et al. Dynamic CD8(+) T cell responses to cancer immunotherapy in human regional lymph nodes are disrupted in metastatic lymph nodes. Cell. 2023;186(6):1127–43 (e18).PubMedPubMedCentralCrossRef
84.
go back to reference Cabrita R, Lauss M, Sanna A, Donia M, Skaarup Larsen M, Mitra S, et al. Tertiary lymphoid structures improve immunotherapy and survival in melanoma. Nature. 2020;577(7791):561–5.PubMedCrossRef Cabrita R, Lauss M, Sanna A, Donia M, Skaarup Larsen M, Mitra S, et al. Tertiary lymphoid structures improve immunotherapy and survival in melanoma. Nature. 2020;577(7791):561–5.PubMedCrossRef
85.
go back to reference Cottrell TR, Thompson ED, Forde PM, Stein JE, Duffield AS, Anagnostou V, et al. Pathologic features of response to neoadjuvant anti-PD-1 in resected non-small-cell lung carcinoma: a proposal for quantitative immune-related pathologic response criteria (irPRC). Ann Oncol. 2018;29(8):1853–60.PubMedPubMedCentralCrossRef Cottrell TR, Thompson ED, Forde PM, Stein JE, Duffield AS, Anagnostou V, et al. Pathologic features of response to neoadjuvant anti-PD-1 in resected non-small-cell lung carcinoma: a proposal for quantitative immune-related pathologic response criteria (irPRC). Ann Oncol. 2018;29(8):1853–60.PubMedPubMedCentralCrossRef
86.
go back to reference van Dijk N, Gil-Jimenez A, Silina K, Hendricksen K, Smit LA, de Feijter JM, et al. Preoperative ipilimumab plus nivolumab in locoregionally advanced urothelial cancer: the NABUCCO trial. Nat Med. 2020;26(12):1839–44.PubMedCrossRef van Dijk N, Gil-Jimenez A, Silina K, Hendricksen K, Smit LA, de Feijter JM, et al. Preoperative ipilimumab plus nivolumab in locoregionally advanced urothelial cancer: the NABUCCO trial. Nat Med. 2020;26(12):1839–44.PubMedCrossRef
87.
go back to reference Paulson KG, Voillet V, McAfee MS, Hunter DS, Wagener FD, Perdicchio M, et al. Acquired cancer resistance to combination immunotherapy from transcriptional loss of class I HLA. Nat Commun. 2018;9(1):3868.PubMedPubMedCentralCrossRef Paulson KG, Voillet V, McAfee MS, Hunter DS, Wagener FD, Perdicchio M, et al. Acquired cancer resistance to combination immunotherapy from transcriptional loss of class I HLA. Nat Commun. 2018;9(1):3868.PubMedPubMedCentralCrossRef
88.
go back to reference Ugurel S, Spassova I, Wohlfarth J, Drusio C, Cherouny A, Melior A, et al. MHC class-I downregulation in PD-1/PD-L1 inhibitor refractory Merkel cell carcinoma and its potential reversal by histone deacetylase inhibition: a case series. Cancer Immunol Immunother. 2019;68(6):983–90.PubMedCrossRef Ugurel S, Spassova I, Wohlfarth J, Drusio C, Cherouny A, Melior A, et al. MHC class-I downregulation in PD-1/PD-L1 inhibitor refractory Merkel cell carcinoma and its potential reversal by histone deacetylase inhibition: a case series. Cancer Immunol Immunother. 2019;68(6):983–90.PubMedCrossRef
89.
go back to reference Tabachnick-Cherny S, Pulliam T, Rodriguez HJ, Fan X, Hippe DS, Jones DC, et al. Characterization of immunosuppressive myeloid cells in Merkel cell carcinoma: correlation with resistance to PD-1 pathway blockade. Clin Cancer Res. 2023;30:1189–99.CrossRef Tabachnick-Cherny S, Pulliam T, Rodriguez HJ, Fan X, Hippe DS, Jones DC, et al. Characterization of immunosuppressive myeloid cells in Merkel cell carcinoma: correlation with resistance to PD-1 pathway blockade. Clin Cancer Res. 2023;30:1189–99.CrossRef
90.
go back to reference Anagnostou V, Smith KN, Forde PM, Niknafs N, Bhattacharya R, White J, et al. Evolution of neoantigen landscape during immune checkpoint blockade in non-small cell lung cancer. Cancer Discov. 2017;7(3):264–76.PubMedCrossRef Anagnostou V, Smith KN, Forde PM, Niknafs N, Bhattacharya R, White J, et al. Evolution of neoantigen landscape during immune checkpoint blockade in non-small cell lung cancer. Cancer Discov. 2017;7(3):264–76.PubMedCrossRef
91.
go back to reference Verdegaal EM, de Miranda NF, Visser M, Harryvan T, van Buuren MM, Andersen RS, et al. Neoantigen landscape dynamics during human melanoma-T cell interactions. Nature. 2016;536(7614):91–5.PubMedCrossRef Verdegaal EM, de Miranda NF, Visser M, Harryvan T, van Buuren MM, Andersen RS, et al. Neoantigen landscape dynamics during human melanoma-T cell interactions. Nature. 2016;536(7614):91–5.PubMedCrossRef
92.
go back to reference Zaretsky JM, Garcia-Diaz A, Shin DS, Escuin-Ordinas H, Hugo W, Hu-Lieskovan S, et al. Mutations associated with acquired resistance to PD-1 blockade in melanoma. N Engl J Med. 2016;375(9):819–29.PubMedPubMedCentralCrossRef Zaretsky JM, Garcia-Diaz A, Shin DS, Escuin-Ordinas H, Hugo W, Hu-Lieskovan S, et al. Mutations associated with acquired resistance to PD-1 blockade in melanoma. N Engl J Med. 2016;375(9):819–29.PubMedPubMedCentralCrossRef
93.
go back to reference Shin DS, Zaretsky JM, Escuin-Ordinas H, Garcia-Diaz A, Hu-Lieskovan S, Kalbasi A, et al. Primary resistance to PD-1 blockade mediated by JAK1/2 mutations. Cancer Discov. 2017;7(2):188–201.PubMedCrossRef Shin DS, Zaretsky JM, Escuin-Ordinas H, Garcia-Diaz A, Hu-Lieskovan S, Kalbasi A, et al. Primary resistance to PD-1 blockade mediated by JAK1/2 mutations. Cancer Discov. 2017;7(2):188–201.PubMedCrossRef
94.
go back to reference Whelehan S, Lynch O, Treacy N, Gleeson C, Oates A, O’Donovan A. Optimising clinical trial design in older cancer patients. Geriatrics (Basel). 2018;3(3):34.PubMedCrossRef Whelehan S, Lynch O, Treacy N, Gleeson C, Oates A, O’Donovan A. Optimising clinical trial design in older cancer patients. Geriatrics (Basel). 2018;3(3):34.PubMedCrossRef
95.
go back to reference Mailankody S, Prasad V. Overall survival in cancer drug trials as a new surrogate end point for overall survival in the real world. JAMA Oncol. 2017;3(7):889–90.PubMedCrossRef Mailankody S, Prasad V. Overall survival in cancer drug trials as a new surrogate end point for overall survival in the real world. JAMA Oncol. 2017;3(7):889–90.PubMedCrossRef
96.
go back to reference Nghiem P, Bhatia S, Lipson EJ, Sharfman WH, Kudchadkar RR, Brohl AS, et al. Durable tumor regression and overall survival in patients with advanced Merkel cell carcinoma receiving pembrolizumab as first-line therapy. J Clin Oncol. 2019;37(9):693–702.PubMedPubMedCentralCrossRef Nghiem P, Bhatia S, Lipson EJ, Sharfman WH, Kudchadkar RR, Brohl AS, et al. Durable tumor regression and overall survival in patients with advanced Merkel cell carcinoma receiving pembrolizumab as first-line therapy. J Clin Oncol. 2019;37(9):693–702.PubMedPubMedCentralCrossRef
97.
go back to reference Kaufman HL, Russell J, Hamid O, Bhatia S, Terheyden P, D’Angelo SP, et al. Avelumab in patients with chemotherapy-refractory metastatic Merkel cell carcinoma: a multicentre, single-group, open-label, phase 2 trial. Lancet Oncol. 2016;17(10):1374–85.PubMedPubMedCentralCrossRef Kaufman HL, Russell J, Hamid O, Bhatia S, Terheyden P, D’Angelo SP, et al. Avelumab in patients with chemotherapy-refractory metastatic Merkel cell carcinoma: a multicentre, single-group, open-label, phase 2 trial. Lancet Oncol. 2016;17(10):1374–85.PubMedPubMedCentralCrossRef
98.
go back to reference D’Angelo SP, Russell J, Lebbe C, Chmielowski B, Gambichler T, Grob JJ, et al. Efficacy and safety of first-line avelumab treatment in patients with stage IV metastatic Merkel cell carcinoma: a preplanned interim analysis of a clinical trial. JAMA Oncol. 2018;4(9): e180077.PubMedPubMedCentralCrossRef D’Angelo SP, Russell J, Lebbe C, Chmielowski B, Gambichler T, Grob JJ, et al. Efficacy and safety of first-line avelumab treatment in patients with stage IV metastatic Merkel cell carcinoma: a preplanned interim analysis of a clinical trial. JAMA Oncol. 2018;4(9): e180077.PubMedPubMedCentralCrossRef
101.
go back to reference Grignani G, Rutkowski P, Lebbe C, Guida M, Gaudy Marqueste C, De Braud FGM, et al. Updated results from POD1UM-201: a phase II study of retifanlimab in patients with advanced or metastatic Merkel cell carcinoma. Ann Oncol. 2023;34:S686.CrossRef Grignani G, Rutkowski P, Lebbe C, Guida M, Gaudy Marqueste C, De Braud FGM, et al. Updated results from POD1UM-201: a phase II study of retifanlimab in patients with advanced or metastatic Merkel cell carcinoma. Ann Oncol. 2023;34:S686.CrossRef
102.
go back to reference Levy S, Aarts MJB, Eskens F, Keymeulen K, Been LB, Grunhagen D, et al. Avelumab for advanced Merkel cell carcinoma in the Netherlands: a real-world cohort. J Immunother Cancer. 2020;8(2):e001076.PubMedPubMedCentralCrossRef Levy S, Aarts MJB, Eskens F, Keymeulen K, Been LB, Grunhagen D, et al. Avelumab for advanced Merkel cell carcinoma in the Netherlands: a real-world cohort. J Immunother Cancer. 2020;8(2):e001076.PubMedPubMedCentralCrossRef
103.
go back to reference Lohray R, Verma KK, Wang LL, Haynes D, Lewis DJ. Avelumab for advanced Merkel cell carcinoma: global real-world data on patient response and survival. Pragmat Obs Res. 2023;14:149–54.PubMedPubMedCentral Lohray R, Verma KK, Wang LL, Haynes D, Lewis DJ. Avelumab for advanced Merkel cell carcinoma: global real-world data on patient response and survival. Pragmat Obs Res. 2023;14:149–54.PubMedPubMedCentral
104.
go back to reference Al-Showbaki L, Nadler MB, Desnoyers A, Almugbel FA, Cescon DW, Amir E. Network Meta-analysis comparing efficacy, safety and tolerability of anti-PD-1/PD-L1 antibodies in solid cancers. J Cancer. 2021;12(14):4372–8.PubMedPubMedCentralCrossRef Al-Showbaki L, Nadler MB, Desnoyers A, Almugbel FA, Cescon DW, Amir E. Network Meta-analysis comparing efficacy, safety and tolerability of anti-PD-1/PD-L1 antibodies in solid cancers. J Cancer. 2021;12(14):4372–8.PubMedPubMedCentralCrossRef
105.
go back to reference Tachiki LML, Hippe DS, Williams Silva K, Hall ET, McCamy W, Fritzsche D, et al. Extended duration of treatment using reduced-frequency dosing of anti-PD-1 therapy in patients with advanced melanoma and Merkel cell carcinoma. Cancer Immunol Immunother. 2023;72(11):3839–50.PubMedPubMedCentralCrossRef Tachiki LML, Hippe DS, Williams Silva K, Hall ET, McCamy W, Fritzsche D, et al. Extended duration of treatment using reduced-frequency dosing of anti-PD-1 therapy in patients with advanced melanoma and Merkel cell carcinoma. Cancer Immunol Immunother. 2023;72(11):3839–50.PubMedPubMedCentralCrossRef
106.
go back to reference Zijlker LP, Levy S, Wolters W, van Thienen JV, van Akkooi ACJ, Tesselaar MET. Avelumab treatment for patients with metastatic Merkel cell carcinoma can be safely stopped after 1 year and a PET/CT-confirmed complete response. Cancer. 2024;130(3):433–8.PubMedCrossRef Zijlker LP, Levy S, Wolters W, van Thienen JV, van Akkooi ACJ, Tesselaar MET. Avelumab treatment for patients with metastatic Merkel cell carcinoma can be safely stopped after 1 year and a PET/CT-confirmed complete response. Cancer. 2024;130(3):433–8.PubMedCrossRef
107.
go back to reference Nghiem PT, Bhatia S, Lipson EJ, Kudchadkar RR, Miller NJ, Annamalai L, et al. PD-1 blockade with pembrolizumab in advanced Merkel-cell carcinoma. N Engl J Med. 2016;374(26):2542–52.PubMedPubMedCentralCrossRef Nghiem PT, Bhatia S, Lipson EJ, Kudchadkar RR, Miller NJ, Annamalai L, et al. PD-1 blockade with pembrolizumab in advanced Merkel-cell carcinoma. N Engl J Med. 2016;374(26):2542–52.PubMedPubMedCentralCrossRef
108.
go back to reference Shalhout SZ, Emerick KS, Kaufman HL, Silk AW, Thakuria M, Miller DM. A Retrospective study of ipilimumab plus nivolumab in anti-PD-L1/PD-1 refractory Merkel cell carcinoma. J Immunother. 2022;45(7):299–302.PubMedCrossRef Shalhout SZ, Emerick KS, Kaufman HL, Silk AW, Thakuria M, Miller DM. A Retrospective study of ipilimumab plus nivolumab in anti-PD-L1/PD-1 refractory Merkel cell carcinoma. J Immunother. 2022;45(7):299–302.PubMedCrossRef
109.
go back to reference Glutsch V, Schummer P, Kneitz H, Gesierich A, Goebeler M, Klein D, et al. Ipilimumab plus nivolumab in avelumab-refractory Merkel cell carcinoma: a multicenter study of the prospective skin cancer registry ADOREG. J Immunother Cancer. 2022;10(11):e005930.PubMedPubMedCentralCrossRef Glutsch V, Schummer P, Kneitz H, Gesierich A, Goebeler M, Klein D, et al. Ipilimumab plus nivolumab in avelumab-refractory Merkel cell carcinoma: a multicenter study of the prospective skin cancer registry ADOREG. J Immunother Cancer. 2022;10(11):e005930.PubMedPubMedCentralCrossRef
110.
go back to reference Kim S, Wuthrick E, Blakaj D, Eroglu Z, Verschraegen C, Thapa R, et al. Combined nivolumab and ipilimumab with or without stereotactic body radiation therapy for advanced Merkel cell carcinoma: a randomised, open label, phase 2 trial. Lancet. 2022;400(10357):1008–19.PubMedPubMedCentralCrossRef Kim S, Wuthrick E, Blakaj D, Eroglu Z, Verschraegen C, Thapa R, et al. Combined nivolumab and ipilimumab with or without stereotactic body radiation therapy for advanced Merkel cell carcinoma: a randomised, open label, phase 2 trial. Lancet. 2022;400(10357):1008–19.PubMedPubMedCentralCrossRef
111.
go back to reference Westbrook BC, Norwood TG, Terry NLJ, McKee SB, Conry RM. Talimogene laherparepvec induces durable response of regionally advanced Merkel cell carcinoma in 4 consecutive patients. JAAD Case Rep. 2019;5(9):782–6.PubMedPubMedCentralCrossRef Westbrook BC, Norwood TG, Terry NLJ, McKee SB, Conry RM. Talimogene laherparepvec induces durable response of regionally advanced Merkel cell carcinoma in 4 consecutive patients. JAAD Case Rep. 2019;5(9):782–6.PubMedPubMedCentralCrossRef
112.
go back to reference Knackstedt R, Sussman TA, McCahon L, Song JM, Funchain P, Gastman B. Pre-treated anti-PD-1 refractory Merkel cell carcinoma successfully treated with the combination of PD-1/PD-L1 axis inhibitors and TVEC: a report of two cases. Ann Oncol. 2019;30(8):1399–400.PubMedCrossRef Knackstedt R, Sussman TA, McCahon L, Song JM, Funchain P, Gastman B. Pre-treated anti-PD-1 refractory Merkel cell carcinoma successfully treated with the combination of PD-1/PD-L1 axis inhibitors and TVEC: a report of two cases. Ann Oncol. 2019;30(8):1399–400.PubMedCrossRef
113.
go back to reference Aroldi F, Middleton MR, Sacco JJ, Milhem MM, Curti BD, VanderWalde AM, et al. 1093TiP An open-label, multicenter, phase I/II clinical trial of RP1 as a single agent and in combination with nivolumab in patients with solid tumors [IGNYTE]. Ann Oncol. 2021;32:S903–4.CrossRef Aroldi F, Middleton MR, Sacco JJ, Milhem MM, Curti BD, VanderWalde AM, et al. 1093TiP An open-label, multicenter, phase I/II clinical trial of RP1 as a single agent and in combination with nivolumab in patients with solid tumors [IGNYTE]. Ann Oncol. 2021;32:S903–4.CrossRef
114.
go back to reference Chapuis AG, Afanasiev OK, Iyer JG, Paulson KG, Parvathaneni U, Hwang JH, et al. Regression of metastatic Merkel cell carcinoma following transfer of polyomavirus-specific T cells and therapies capable of re-inducing HLA class-I. Cancer Immunol Res. 2014;2(1):27–36.PubMedCrossRef Chapuis AG, Afanasiev OK, Iyer JG, Paulson KG, Parvathaneni U, Hwang JH, et al. Regression of metastatic Merkel cell carcinoma following transfer of polyomavirus-specific T cells and therapies capable of re-inducing HLA class-I. Cancer Immunol Res. 2014;2(1):27–36.PubMedCrossRef
115.
go back to reference Fabian KP, Padget MR, Donahue RN, Solocinski K, Robbins Y, Allen CT, et al. PD-L1 targeting high-affinity NK (t-haNK) cells induce direct antitumor effects and target suppressive MDSC populations. J Immunother Cancer. 2020;8(1):e000450.PubMedPubMedCentralCrossRef Fabian KP, Padget MR, Donahue RN, Solocinski K, Robbins Y, Allen CT, et al. PD-L1 targeting high-affinity NK (t-haNK) cells induce direct antitumor effects and target suppressive MDSC populations. J Immunother Cancer. 2020;8(1):e000450.PubMedPubMedCentralCrossRef
116.
go back to reference Salavati A, Prasad V, Schneider CP, Herbst R, Baum RP. Peptide receptor radionuclide therapy of Merkel cell carcinoma using (177)lutetium-labeled somatostatin analogs in combination with radiosensitizing chemotherapy: a potential novel treatment based on molecular pathology. Ann Nucl Med. 2012;26(4):365–9.PubMedCrossRef Salavati A, Prasad V, Schneider CP, Herbst R, Baum RP. Peptide receptor radionuclide therapy of Merkel cell carcinoma using (177)lutetium-labeled somatostatin analogs in combination with radiosensitizing chemotherapy: a potential novel treatment based on molecular pathology. Ann Nucl Med. 2012;26(4):365–9.PubMedCrossRef
117.
go back to reference Zhang J, Song Q, Cai L, Xie Y, Chen Y. The efficacy of (177)Lu-DOTATATE peptide receptor radionuclide therapy (PRRT) in patients with metastatic neuroendocrine tumours: a systematic review and meta-analysis. J Cancer Res Clin Oncol. 2020;146(6):1533–43.PubMedCrossRef Zhang J, Song Q, Cai L, Xie Y, Chen Y. The efficacy of (177)Lu-DOTATATE peptide receptor radionuclide therapy (PRRT) in patients with metastatic neuroendocrine tumours: a systematic review and meta-analysis. J Cancer Res Clin Oncol. 2020;146(6):1533–43.PubMedCrossRef
118.
go back to reference Akaike T, Qazi J, Anderson A, Behnia FS, Shinohara MM, Akaike G, et al. High somatostatin receptor expression and efficacy of somatostatin analogues in patients with metastatic Merkel cell carcinoma. Br J Dermatol. 2021;184(2):319–27.PubMedCrossRef Akaike T, Qazi J, Anderson A, Behnia FS, Shinohara MM, Akaike G, et al. High somatostatin receptor expression and efficacy of somatostatin analogues in patients with metastatic Merkel cell carcinoma. Br J Dermatol. 2021;184(2):319–27.PubMedCrossRef
119.
go back to reference Ferdinandus J, Fendler WP, Lueckerath K, Berliner C, Kurzidem S, Hadaschik E, et al. Response to combined peptide receptor radionuclide therapy and checkpoint immunotherapy with ipilimumab plus nivolumab in metastatic Merkel cell carcinoma. J Nucl Med. 2022;63(3):396–8.PubMedCrossRef Ferdinandus J, Fendler WP, Lueckerath K, Berliner C, Kurzidem S, Hadaschik E, et al. Response to combined peptide receptor radionuclide therapy and checkpoint immunotherapy with ipilimumab plus nivolumab in metastatic Merkel cell carcinoma. J Nucl Med. 2022;63(3):396–8.PubMedCrossRef
120.
go back to reference Topalian SL, Bhatia S, Amin A, Kudchadkar RR, Sharfman WH, Lebbe C, et al. Neoadjuvant nivolumab for patients with resectable Merkel cell carcinoma in the CheckMate 358 trial. J Clin Oncol. 2020;38(22):2476–87.PubMedPubMedCentralCrossRef Topalian SL, Bhatia S, Amin A, Kudchadkar RR, Sharfman WH, Lebbe C, et al. Neoadjuvant nivolumab for patients with resectable Merkel cell carcinoma in the CheckMate 358 trial. J Clin Oncol. 2020;38(22):2476–87.PubMedPubMedCentralCrossRef
121.
go back to reference Becker JC, Ugurel S, Leiter U, Meier F, Gutzmer R, Haferkamp S, et al. Adjuvant immunotherapy with nivolumab versus observation in completely resected Merkel cell carcinoma (ADMEC-O): disease-free survival results from a randomised, open-label, phase 2 trial. Lancet. 2023;402(10404):798–808.PubMedCrossRef Becker JC, Ugurel S, Leiter U, Meier F, Gutzmer R, Haferkamp S, et al. Adjuvant immunotherapy with nivolumab versus observation in completely resected Merkel cell carcinoma (ADMEC-O): disease-free survival results from a randomised, open-label, phase 2 trial. Lancet. 2023;402(10404):798–808.PubMedCrossRef
122.
123.
go back to reference Reichgelt BA, Visser O. Epidemiology and survival of Merkel cell carcinoma in the Netherlands. A population-based study of 808 cases in 1993-2007. Eur J Cancer. 2011;47:579–85.PubMedCrossRef Reichgelt BA, Visser O. Epidemiology and survival of Merkel cell carcinoma in the Netherlands. A population-based study of 808 cases in 1993-2007. Eur J Cancer. 2011;47:579–85.PubMedCrossRef
124.
go back to reference Rubio-Casadevall J, Hernandez-Pujol AM, Ferreira-Santos MC, et al. Trends in incidence and survival analysis in non-melanoma skin cancer from 1994 to 2012 in Girona, Spain: A population-based study. Cancer Epidemiol. 2016;45:6–10.PubMedCrossRef Rubio-Casadevall J, Hernandez-Pujol AM, Ferreira-Santos MC, et al. Trends in incidence and survival analysis in non-melanoma skin cancer from 1994 to 2012 in Girona, Spain: A population-based study. Cancer Epidemiol. 2016;45:6–10.PubMedCrossRef
125.
go back to reference Uitentuis SE, Louwman MWJ, van Akkooi ACJ, Bekkenk MW. Treatment and survival of Merkel cell carcinoma since 1993: A population-based cohort study in The Netherlands. J Am Acad Dermatol. 2019;81:977–83. Uitentuis SE, Louwman MWJ, van Akkooi ACJ, Bekkenk MW. Treatment and survival of Merkel cell carcinoma since 1993: A population-based cohort study in The Netherlands. J Am Acad Dermatol. 2019;81:977–83.
Metadata
Title
Merkel Cell Carcinoma: Integrating Epidemiology, Immunology, and Therapeutic Updates
Authors
Jürgen C. Becker
Andreas Stang
David Schrama
Selma Ugurel
Publication date
22-04-2024
Publisher
Springer International Publishing
Published in
American Journal of Clinical Dermatology
Print ISSN: 1175-0561
Electronic ISSN: 1179-1888
DOI
https://doi.org/10.1007/s40257-024-00858-z