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Published in: Breast Cancer Research and Treatment 1/2016

01-02-2016 | Preclinical Study

MSCs and inflammation: new insights into the potential association between ALCL and breast implants

Authors: M. Orciani, G. Sorgentoni, M. Torresetti, Roberto Di Primio, G. Di Benedetto

Published in: Breast Cancer Research and Treatment | Issue 1/2016

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Abstract

Possible association between anaplastic large cell lymphoma (ALCL) and breast implants has been suggested. In this context, formation of the periprosthetic capsule has been reported as a cause of inflammation, which plays a key role in tumor onset. Tumors take advantage of inflammation to influence and interfere with the host immune response by secreting multiple factors, and their onset and survival is in turn affected by the paracrine effects from mesenchymal stem cells (MSCs). In this study, we tried to clarify how inflammation can modify the immunobiology and the exerted paracrine effect of MSCs. MSCs derived from both inflamed (I-MSCs) and control (C-MSCs) tissues were isolated and co-cultured with an ALCL cell line. Proliferation rate and the expression of selected cytokines were tested. I-MSCs secrete higher levels of cytokine related to chronic inflammation than C-MSCs. After co-cultures with KI-JK cells, C- and I-MSCs show the same variation in the cytokine expression, with an increase of IL2, IL4, IL5, IL10, IL13, TNF-α, TGF-β, and G-CSF. Proliferation of ALCL cells was not influenced by co-cultures. Our results state that (i) inflamed microenvironment affects the immunobiology of MSCs modifying the profile of the expressed cytokines, and (ii) the paracrine effects exerted by MSCs on ALCL cells are not influenced by inflammation. Moreover, it seems that ALCL cells are able to manipulate MSCs’ immunoregulatory properties to evade the host immune control. Nevertheless, this ability is not associated with inflammation and the question about BIA-ALCL is not proved by our experiments.
Literature
1.
go back to reference Hu T, Li LF, Shen J, Zhang L, Cho CH (2015) Chronic inflammation and colorectal cancer: the role of vascular endothelial growth factor. Curr Pharm Des 21:2960–2967CrossRefPubMed Hu T, Li LF, Shen J, Zhang L, Cho CH (2015) Chronic inflammation and colorectal cancer: the role of vascular endothelial growth factor. Curr Pharm Des 21:2960–2967CrossRefPubMed
2.
go back to reference Raposo TP, Beirão BC, Pang LY, Queiroga FL, Argyle DJ (2015) Inflammation and cancer: till death tears them apart. Vet J 205:161–174CrossRefPubMed Raposo TP, Beirão BC, Pang LY, Queiroga FL, Argyle DJ (2015) Inflammation and cancer: till death tears them apart. Vet J 205:161–174CrossRefPubMed
3.
go back to reference Chai EZ, Siveen KS, Shanmugam MK, Arfuso F, Sethi G (2015) Analysis of the intricate relationship between chronic inflammation and cancer. Biochem J 468:1–15CrossRefPubMed Chai EZ, Siveen KS, Shanmugam MK, Arfuso F, Sethi G (2015) Analysis of the intricate relationship between chronic inflammation and cancer. Biochem J 468:1–15CrossRefPubMed
4.
go back to reference Orciani M, Lazzarini R, Scartozzi M, Bolletta E, Mattioli-Belmonte M, Scalise A, Di Benedetto G, Di Primio R (2013) The response of breast cancer cells to mesenchymal stem cells: a possible role of inflammation by breast implants. Plast Reconstr Surg 132:899e–910eCrossRefPubMed Orciani M, Lazzarini R, Scartozzi M, Bolletta E, Mattioli-Belmonte M, Scalise A, Di Benedetto G, Di Primio R (2013) The response of breast cancer cells to mesenchymal stem cells: a possible role of inflammation by breast implants. Plast Reconstr Surg 132:899e–910eCrossRefPubMed
5.
go back to reference Orciani M, Bolletta E, Campanati A, Di Benedetto G, Di Primio R (2014) The response of breast cancer cells to mesenchymal stem cells: a possible role of inflammation by breast implants. Plast Reconstr Surg 134:994e–996eCrossRefPubMed Orciani M, Bolletta E, Campanati A, Di Benedetto G, Di Primio R (2014) The response of breast cancer cells to mesenchymal stem cells: a possible role of inflammation by breast implants. Plast Reconstr Surg 134:994e–996eCrossRefPubMed
6.
go back to reference Mariotti C, Lazzarini R, Nicolai M, Saitta A, Orsini E, Orciani M, Di Primio R (2015) Comparative study between amniotic-fluid mesenchymal stem cells and retinal pigmented epithelium (RPE) stem cells ability to differentiate towards RPE cells. Cell Tissue Res 362:21–31CrossRefPubMed Mariotti C, Lazzarini R, Nicolai M, Saitta A, Orsini E, Orciani M, Di Primio R (2015) Comparative study between amniotic-fluid mesenchymal stem cells and retinal pigmented epithelium (RPE) stem cells ability to differentiate towards RPE cells. Cell Tissue Res 362:21–31CrossRefPubMed
7.
go back to reference Orciani M, Davis S, Appolloni G, Lazzarini R, Mattioli-Belmonte M, Ricciuti RA, Boscaro M, Di Primio R, Arnaldi G (2015) Isolation and characterization of progenitor mesenchymal cells in human pituitary tumors. Cancer Gene Ther 22:9–16CrossRefPubMed Orciani M, Davis S, Appolloni G, Lazzarini R, Mattioli-Belmonte M, Ricciuti RA, Boscaro M, Di Primio R, Arnaldi G (2015) Isolation and characterization of progenitor mesenchymal cells in human pituitary tumors. Cancer Gene Ther 22:9–16CrossRefPubMed
8.
go back to reference Orciani M, Campanati A, Salvolini E, Lucarini G, Di Benedetto G, Offidani A, Di Primio R (2011) The mesenchymal stem cell profile in psoriasis. Br J Dermatol 165:585–592CrossRefPubMed Orciani M, Campanati A, Salvolini E, Lucarini G, Di Benedetto G, Offidani A, Di Primio R (2011) The mesenchymal stem cell profile in psoriasis. Br J Dermatol 165:585–592CrossRefPubMed
9.
go back to reference Orciani M, Morabito C, Emanuelli M, Guarnieri S, Sartini D, Giannubilo SR, Di Primio R, Tranquilli AL, Mariggiò MA (2011) Neurogenic potential of mesenchymal-like stem cells from human amniotic fluid: the influence of extracellular growth factors. J Biol Regul Homeost Agents 25:115–130PubMed Orciani M, Morabito C, Emanuelli M, Guarnieri S, Sartini D, Giannubilo SR, Di Primio R, Tranquilli AL, Mariggiò MA (2011) Neurogenic potential of mesenchymal-like stem cells from human amniotic fluid: the influence of extracellular growth factors. J Biol Regul Homeost Agents 25:115–130PubMed
10.
go back to reference Orciani M, Mariggiò MA, Morabito C, Di Benedetto G, Di Primio R (2010) Functional characterization of calcium-signaling pathways of human skin-derived mesenchymal stem cells. Skin Pharmacol Physiol. 23:124–132CrossRefPubMed Orciani M, Mariggiò MA, Morabito C, Di Benedetto G, Di Primio R (2010) Functional characterization of calcium-signaling pathways of human skin-derived mesenchymal stem cells. Skin Pharmacol Physiol. 23:124–132CrossRefPubMed
11.
go back to reference Fierro FA, Sierralta WD, Epuñan MJ, Minguell JJ (2004) Marrow-derived mesenchymal stem cells: role in epithelial tumor cell determination. Clin Exp Metastasis 21:313–319CrossRefPubMed Fierro FA, Sierralta WD, Epuñan MJ, Minguell JJ (2004) Marrow-derived mesenchymal stem cells: role in epithelial tumor cell determination. Clin Exp Metastasis 21:313–319CrossRefPubMed
12.
go back to reference Sasser AK, Mundy BL, Smith KM, Studebaker AW, Axel AE, Haidet AM, Fernandez SA, Hall BM (2007) Human bone marrow stromal cells enhance breast cancer cell growth rates in a cell line-dependent manner when evaluated in 3D tumor environments. Cancer Lett 254:255–264CrossRefPubMed Sasser AK, Mundy BL, Smith KM, Studebaker AW, Axel AE, Haidet AM, Fernandez SA, Hall BM (2007) Human bone marrow stromal cells enhance breast cancer cell growth rates in a cell line-dependent manner when evaluated in 3D tumor environments. Cancer Lett 254:255–264CrossRefPubMed
13.
go back to reference Klopp AH, Gupta A, Spaeth E, Andreeff M, Marini F 3rd (2011) Concise review: dissecting a discrepancy in the literature: do mesenchymal stem cells support or suppress tumor growth? Stem Cells 29:11–19 (Review) CrossRefPubMedPubMedCentral Klopp AH, Gupta A, Spaeth E, Andreeff M, Marini F 3rd (2011) Concise review: dissecting a discrepancy in the literature: do mesenchymal stem cells support or suppress tumor growth? Stem Cells 29:11–19 (Review) CrossRefPubMedPubMedCentral
14.
go back to reference Lee YS, Filie A, Arthur D, Fojo AT, Jaffe ES (2015) Breast-implant-associated anaplastic large cell lymphoma in a patient with Li-Fraumeni syndrome. Histopathology 67:925–927CrossRefPubMed Lee YS, Filie A, Arthur D, Fojo AT, Jaffe ES (2015) Breast-implant-associated anaplastic large cell lymphoma in a patient with Li-Fraumeni syndrome. Histopathology 67:925–927CrossRefPubMed
15.
go back to reference Locke MB, Lofts J (2015) Variable presentation of anaplastic large-cell lymphoma in patients with breast implants. ANZ J Surg 1:2–6 Locke MB, Lofts J (2015) Variable presentation of anaplastic large-cell lymphoma in patients with breast implants. ANZ J Surg 1:2–6
16.
go back to reference Hwang MJ, Brown H, Murrin R, Momtahan N, Sterne GD (2015) Breast implant-associated anaplastic large cell lymphoma: a case report and literature review. Aesthetic Plast Surg 39:391–395CrossRefPubMed Hwang MJ, Brown H, Murrin R, Momtahan N, Sterne GD (2015) Breast implant-associated anaplastic large cell lymphoma: a case report and literature review. Aesthetic Plast Surg 39:391–395CrossRefPubMed
17.
go back to reference Kim B, Predmore ZS, Mattke S, van Busum K, Gidengil CA (2015) Breast implant-associated anaplastic large cell lymphoma: updated results from a structured expert consultation process. Plast Reconstr Surg Glob Open 3:e296CrossRefPubMedPubMedCentral Kim B, Predmore ZS, Mattke S, van Busum K, Gidengil CA (2015) Breast implant-associated anaplastic large cell lymphoma: updated results from a structured expert consultation process. Plast Reconstr Surg Glob Open 3:e296CrossRefPubMedPubMedCentral
18.
go back to reference Peters W (2014) Update on anaplastic large cell lymphoma in women with breast implants. Can J Plast Surg 22:267–269 Peters W (2014) Update on anaplastic large cell lymphoma in women with breast implants. Can J Plast Surg 22:267–269
19.
go back to reference Gidengil CA, Predmore Z, Mattke S, van Busum K, Kim B (2015) Breast implant-associated anaplastic large cell lymphoma: a systematic review. Plast Reconstr Surg 135:713–720CrossRefPubMed Gidengil CA, Predmore Z, Mattke S, van Busum K, Kim B (2015) Breast implant-associated anaplastic large cell lymphoma: a systematic review. Plast Reconstr Surg 135:713–720CrossRefPubMed
20.
go back to reference Brody GS, Deapen D, Taylor CR, Pinter-Brown L, House-Lightner SR, Andersen JS, Carlson G, Lechner MG, Epstein AL (2015) Anaplastic large cell lymphoma occurring in women with breast implants: analysis of 173 cases. Plast Reconstr Surg 135:695–705CrossRefPubMed Brody GS, Deapen D, Taylor CR, Pinter-Brown L, House-Lightner SR, Andersen JS, Carlson G, Lechner MG, Epstein AL (2015) Anaplastic large cell lymphoma occurring in women with breast implants: analysis of 173 cases. Plast Reconstr Surg 135:695–705CrossRefPubMed
21.
go back to reference Adrada BE, Miranda RN, Rauch GM, Arribas E, Kanagal-Shamanna R, Clemens MW, Fanale M, Haideri N, Mustafa E, Larrinaga J, Reisman NR, Jaso J, You MJ, Young KH, Medeiros LJ, Yang W (2014) Breast implant-associated anaplastic large cell lymphoma: sensitivity, specificity, and findings of imaging studies in 44 patients. Breast Cancer Res Treat 147:1–14CrossRefPubMed Adrada BE, Miranda RN, Rauch GM, Arribas E, Kanagal-Shamanna R, Clemens MW, Fanale M, Haideri N, Mustafa E, Larrinaga J, Reisman NR, Jaso J, You MJ, Young KH, Medeiros LJ, Yang W (2014) Breast implant-associated anaplastic large cell lymphoma: sensitivity, specificity, and findings of imaging studies in 44 patients. Breast Cancer Res Treat 147:1–14CrossRefPubMed
22.
go back to reference Xu J, Wei S (2014) Breast implant-associated anaplastic large cell lymphoma: review of a distinct clinicopathologic entity. Arch Pathol Lab Med 138:842–846CrossRefPubMed Xu J, Wei S (2014) Breast implant-associated anaplastic large cell lymphoma: review of a distinct clinicopathologic entity. Arch Pathol Lab Med 138:842–846CrossRefPubMed
23.
go back to reference Miranda RN, Aladily TN, Prince HM, Kanagal-Shamanna R, de Jong D, Fayad LE et al (2014) Breast implant-associated anaplastic large-cell lymphoma: long-term follow-up of 60 patients. J Clin Oncol 32:114–120CrossRefPubMedPubMedCentral Miranda RN, Aladily TN, Prince HM, Kanagal-Shamanna R, de Jong D, Fayad LE et al (2014) Breast implant-associated anaplastic large-cell lymphoma: long-term follow-up of 60 patients. J Clin Oncol 32:114–120CrossRefPubMedPubMedCentral
24.
go back to reference Campanati A, Orciani M, Consales V, Lazzarini R, Ganzetti G, Di Benedetto G, Di Primio R, Offidani A (2014) Characterization and profiling of immunomodulatory genes in resident mesenchymal stem cells reflect the Th1-Th17/Th2 imbalance of psoriasis. Arch Dermatol Res 306:915–920CrossRefPubMed Campanati A, Orciani M, Consales V, Lazzarini R, Ganzetti G, Di Benedetto G, Di Primio R, Offidani A (2014) Characterization and profiling of immunomodulatory genes in resident mesenchymal stem cells reflect the Th1-Th17/Th2 imbalance of psoriasis. Arch Dermatol Res 306:915–920CrossRefPubMed
25.
go back to reference Campanati A, Orciani M, Gorbi S, Regoli F, Di Primio R, Offidani A (2012) Effect of biologic therapies targeting tumour necrosis factor-α on cutaneous mesenchymal stem cells in psoriasis. Br J Dermatol 167:68–76CrossRefPubMed Campanati A, Orciani M, Gorbi S, Regoli F, Di Primio R, Offidani A (2012) Effect of biologic therapies targeting tumour necrosis factor-α on cutaneous mesenchymal stem cells in psoriasis. Br J Dermatol 167:68–76CrossRefPubMed
26.
go back to reference Orciani M, Di Primio R (2013) Skin-derived mesenchymal stem cells: isolation, culture, and characterization. Methods Mol Biol 989:275–283CrossRefPubMed Orciani M, Di Primio R (2013) Skin-derived mesenchymal stem cells: isolation, culture, and characterization. Methods Mol Biol 989:275–283CrossRefPubMed
27.
go back to reference Orciani M, Gorbi S, Benedetti M, Di Benedetto G, Mattioli-Belmonte M, Regoli F, Di Primio R (2010) Oxidative stress defense in human-skin-derived mesenchymal stem cells versus human keratinocytes: different mechanisms of protection and cell selection. Free Radic Biol Med 49:830–838CrossRefPubMed Orciani M, Gorbi S, Benedetti M, Di Benedetto G, Mattioli-Belmonte M, Regoli F, Di Primio R (2010) Oxidative stress defense in human-skin-derived mesenchymal stem cells versus human keratinocytes: different mechanisms of protection and cell selection. Free Radic Biol Med 49:830–838CrossRefPubMed
28.
go back to reference Kim B, Roth C, Chung KC, Young VL, van Busum K, Schnyer C, Mattke S (2011) Anaplastic large cell lymphoma and breast implants: a systematic review. Plast Reconstr Surg 127:2141–2150CrossRefPubMed Kim B, Roth C, Chung KC, Young VL, van Busum K, Schnyer C, Mattke S (2011) Anaplastic large cell lymphoma and breast implants: a systematic review. Plast Reconstr Surg 127:2141–2150CrossRefPubMed
29.
go back to reference Lazzarini R, Olivieri F, Ferretti C, Mattioli-Belmonte M, Di Primio R, Orciani M (2014) mRNAs and miRNAs profiling of mesenchymal stem cells derived from amniotic fluid and skin: the double face of the coin. Cell Tissue Res 355:121–130CrossRefPubMed Lazzarini R, Olivieri F, Ferretti C, Mattioli-Belmonte M, Di Primio R, Orciani M (2014) mRNAs and miRNAs profiling of mesenchymal stem cells derived from amniotic fluid and skin: the double face of the coin. Cell Tissue Res 355:121–130CrossRefPubMed
31.
go back to reference Elinav E, Nowarski R, Thaiss CA, Hu B, Jin C, Flavell RA (2013) Inflammation-induced cancer: crosstalk between tumours, immune cells and microorganisms. Nat Rev Cancer 13:759–771CrossRefPubMed Elinav E, Nowarski R, Thaiss CA, Hu B, Jin C, Flavell RA (2013) Inflammation-induced cancer: crosstalk between tumours, immune cells and microorganisms. Nat Rev Cancer 13:759–771CrossRefPubMed
32.
33.
go back to reference Ono M (2008) Molecular links between tumor angiogenesis and inflammation: inflammatory stimuli of macrophages and cancer cells as targets for therapeutic strategy. Cancer Sci 99:1501–1506CrossRefPubMed Ono M (2008) Molecular links between tumor angiogenesis and inflammation: inflammatory stimuli of macrophages and cancer cells as targets for therapeutic strategy. Cancer Sci 99:1501–1506CrossRefPubMed
34.
go back to reference Balkwill F, Charles KA, Mantovani A (2005) Smoldering and polarized inflammation in the initiation and promotion of malignant disease. Cancer Cell 7:211–217CrossRefPubMed Balkwill F, Charles KA, Mantovani A (2005) Smoldering and polarized inflammation in the initiation and promotion of malignant disease. Cancer Cell 7:211–217CrossRefPubMed
35.
go back to reference de Visser KE, Coussens LM (2006) The inflammatory tumor microenvironment and its impact on cancer development. Contrib Microbiol 13:118–137CrossRefPubMed de Visser KE, Coussens LM (2006) The inflammatory tumor microenvironment and its impact on cancer development. Contrib Microbiol 13:118–137CrossRefPubMed
37.
go back to reference Aggarwal BB (2009) Inflammation, a silent killer in cancer is not so silent! Curr Opin Pharmacol 9:347–350CrossRefPubMed Aggarwal BB (2009) Inflammation, a silent killer in cancer is not so silent! Curr Opin Pharmacol 9:347–350CrossRefPubMed
38.
40.
go back to reference Hu H, Jacombs A, Vickery K, Merten SL, Pennington DG, Deva AK (2015) Chronic biofilm infection in breast implants is associated with an increased T-cell lymphocytic infiltrate: implications for breast implant-associated lymphoma. Plast Reconstr Surg 135:319–329CrossRefPubMed Hu H, Jacombs A, Vickery K, Merten SL, Pennington DG, Deva AK (2015) Chronic biofilm infection in breast implants is associated with an increased T-cell lymphocytic infiltrate: implications for breast implant-associated lymphoma. Plast Reconstr Surg 135:319–329CrossRefPubMed
41.
go back to reference George EV, Pharm J, Houston C, Al-Quran S, Brian G, Dong H, Hai W, Reeves W, Yang LJ (2013) Breast implant-associated ALK-negative anaplastic large cell lymphoma: a case report and discussion of possible pathogenesis. Int J Clin Exp Pathol 6:1631–1642PubMedPubMedCentral George EV, Pharm J, Houston C, Al-Quran S, Brian G, Dong H, Hai W, Reeves W, Yang LJ (2013) Breast implant-associated ALK-negative anaplastic large cell lymphoma: a case report and discussion of possible pathogenesis. Int J Clin Exp Pathol 6:1631–1642PubMedPubMedCentral
42.
go back to reference Kopf M, Baumann H, Freer G, Freudenberg M, Lamers M, Kishimoto T, Zinkernagel R, Bleuthmann H, Kohler G (1994) Impaired immune and acute-phase responses in interleukin-6-deficient mice. Nature 368:339–342CrossRefPubMed Kopf M, Baumann H, Freer G, Freudenberg M, Lamers M, Kishimoto T, Zinkernagel R, Bleuthmann H, Kohler G (1994) Impaired immune and acute-phase responses in interleukin-6-deficient mice. Nature 368:339–342CrossRefPubMed
43.
go back to reference Romani L, Mencacci A, Cenci E, Spaccapelo R, Toniatti C, Puccetti P, Bistoni F, Poli V (1996) Impaired neutrophil response and CD41 T helper cell 1 development in interleukin-6-deficient mice infected with Candida albicans. J Exp Med 183:1345–1355CrossRefPubMed Romani L, Mencacci A, Cenci E, Spaccapelo R, Toniatti C, Puccetti P, Bistoni F, Poli V (1996) Impaired neutrophil response and CD41 T helper cell 1 development in interleukin-6-deficient mice infected with Candida albicans. J Exp Med 183:1345–1355CrossRefPubMed
44.
go back to reference Ruzek MC, Miller AH, Opal SM, Pearce BD, Biron CA (1997) Characterization of early cytokine responses and an interleukin-6-dependent pathway of endogenous glucocorticoid induction during murine cytomegalovirus infection. J Exp Med 185:1185–1192CrossRefPubMedPubMedCentral Ruzek MC, Miller AH, Opal SM, Pearce BD, Biron CA (1997) Characterization of early cytokine responses and an interleukin-6-dependent pathway of endogenous glucocorticoid induction during murine cytomegalovirus infection. J Exp Med 185:1185–1192CrossRefPubMedPubMedCentral
45.
go back to reference Kaplanski G, Marin V, Montero-Julian F, Mantovani A, Farnarier C (2003) IL-6: a regulator of the transition from neutrophil to monocyte recruitment during inflammation. Trends Immunol 24:25–29CrossRefPubMed Kaplanski G, Marin V, Montero-Julian F, Mantovani A, Farnarier C (2003) IL-6: a regulator of the transition from neutrophil to monocyte recruitment during inflammation. Trends Immunol 24:25–29CrossRefPubMed
47.
go back to reference Smyth MJ, Dunn GP, Schreiber RD (2006) Cancer immunosurveillance and immunoediting: the roles of immunity in suppressing tumor development and shaping tumor immunogenicity. Adv Immunol 90:1–50CrossRefPubMed Smyth MJ, Dunn GP, Schreiber RD (2006) Cancer immunosurveillance and immunoediting: the roles of immunity in suppressing tumor development and shaping tumor immunogenicity. Adv Immunol 90:1–50CrossRefPubMed
48.
go back to reference Bui JD, Schreiber RD (2007) Cancer immunosurveillance, immunoediting and inflammation: independent or interdependent processes? Curr Opin Immunol 19:203–208CrossRefPubMed Bui JD, Schreiber RD (2007) Cancer immunosurveillance, immunoediting and inflammation: independent or interdependent processes? Curr Opin Immunol 19:203–208CrossRefPubMed
49.
go back to reference Teng MW, Swann JB, Koebel CM, Schreiber RD, Smyth MJ (2008) Immune-mediated dormancy: an equilibrium with cancer. J Leukoc Biol 84:988–993CrossRefPubMed Teng MW, Swann JB, Koebel CM, Schreiber RD, Smyth MJ (2008) Immune-mediated dormancy: an equilibrium with cancer. J Leukoc Biol 84:988–993CrossRefPubMed
50.
go back to reference Swann JB, Vesely MD, Silva A, Sharkey J, Akira S, Schreiber RD, Smyth MJ (2008) Demonstration of inflammation-induced cancer and cancer immunoediting during primary tumorigenesis. Proc Natl Acad Sci USA 105:652–656CrossRefPubMedPubMedCentral Swann JB, Vesely MD, Silva A, Sharkey J, Akira S, Schreiber RD, Smyth MJ (2008) Demonstration of inflammation-induced cancer and cancer immunoediting during primary tumorigenesis. Proc Natl Acad Sci USA 105:652–656CrossRefPubMedPubMedCentral
52.
go back to reference Siegel G, Schäfer R, Dazzi F (2009) The immunosuppressive properties of mesenchymal stem cells. Transplantation 87:S45–S49CrossRefPubMed Siegel G, Schäfer R, Dazzi F (2009) The immunosuppressive properties of mesenchymal stem cells. Transplantation 87:S45–S49CrossRefPubMed
53.
go back to reference Lu H, Ouyang W, Huang C (2006) Inflammation, a key event in cancer development. Mol Cancer Res 4:221–233CrossRefPubMed Lu H, Ouyang W, Huang C (2006) Inflammation, a key event in cancer development. Mol Cancer Res 4:221–233CrossRefPubMed
54.
go back to reference Steinbrink K, Jonuleit H, Müller G, Schuler G, Knop J, Enk AH (1999) Interleukin-10-treated human dendritic cells induce a melanoma-antigen-specific anergy in CD8+ T cells resulting in a failure to lyse tumor cells. Blood 93:1634–1642PubMed Steinbrink K, Jonuleit H, Müller G, Schuler G, Knop J, Enk AH (1999) Interleukin-10-treated human dendritic cells induce a melanoma-antigen-specific anergy in CD8+ T cells resulting in a failure to lyse tumor cells. Blood 93:1634–1642PubMed
55.
go back to reference Bayne L, Beatty GL, Jhala N, Clark CE, Rhim AD, Stanger BZ, Vonderheide RH (2012) Tumor-derived granulocyte-macrophage colony-stimulating factor regulates myeloid inflammation and T cell immunity in pancreatic cancer. Cancer Cell 21:822–835CrossRefPubMedPubMedCentral Bayne L, Beatty GL, Jhala N, Clark CE, Rhim AD, Stanger BZ, Vonderheide RH (2012) Tumor-derived granulocyte-macrophage colony-stimulating factor regulates myeloid inflammation and T cell immunity in pancreatic cancer. Cancer Cell 21:822–835CrossRefPubMedPubMedCentral
Metadata
Title
MSCs and inflammation: new insights into the potential association between ALCL and breast implants
Authors
M. Orciani
G. Sorgentoni
M. Torresetti
Roberto Di Primio
G. Di Benedetto
Publication date
01-02-2016
Publisher
Springer US
Published in
Breast Cancer Research and Treatment / Issue 1/2016
Print ISSN: 0167-6806
Electronic ISSN: 1573-7217
DOI
https://doi.org/10.1007/s10549-016-3745-8

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