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Published in: Journal of Translational Medicine 1/2015

Open Access 01-12-2015 | Research

Different maturation cocktails provide dendritic cells with different chemoattractive properties

Authors: Chiara Massa, Carolin Thomas, Ena Wang, Francesco Marincola, Barbara Seliger

Published in: Journal of Translational Medicine | Issue 1/2015

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Abstract

Background

Dendritic cells (DC) are currently implemented as immunotherapeutic strategy for the treatment of tumor patients based on their central role in the immune system. Despite good results were obtained in vitro and in animal models, their clinical use has provided limited success suggesting the requirement to optimise the protocol for their production.

Methods

A cDNA array was performed on FastDC obtained from the differentiation of human peripheral blood monocytes stimulated with the clinical gold standard or with two alternative maturation cocktails combining interferon (IFN)γ and ligands for different toll like receptors (TLR).

Results

A stronger modulation of the DC transcriptome with respect to immature DC was found in alternatively stimulated DC when compared to DC stimulated with the clinical gold standard. A major class of molecules differentially expressed using distinct DC stimulation protocols were chemokines. Validation of their differential expression pattern at the mRNA and protein level confirmed the secretion of inflammatory chemokines by the alternative DC. Functional analyses of the chemotactic properties of DC “wash out” supernatants highlighted the ability of alternative, but not of gold standard DC to efficiently recruit immune cells with a prevalence of monocytes. Effector cells belonging to the innate as well as adaptive immunity were also attracted and the interaction with alternative DC resulted in enhanced secretion of IFNγ and induction of cytotoxic activity. Using leukocytes from cancer patients, it was demonstrated that the monocyte-attracting activity targeted cells with an inflammatory phenotype characterised by high levels of HLA-DR expression.

Conclusions

Despite other classes of immune modulatory genes differently expressed in the alternative DC require to be investigated and characterised regarding their functional consequences, the reduced maturation state and chemoattractive properties of the gold standard versus alternative DC clearly promote the necessity to change the clinically used maturation cocktail of DC in order to improve the outcome of patients treated with DC-based vaccines.
Literature
1.
go back to reference Small EJ, Schellhammer PF, Higano CS, Redfern CH, Nemunaitis JJ, Valone FH et al (2006) Placebo-controlled phase iii trial of immunologic therapy with sipuleucel-t (apc8015) in patients with metastatic, asymptomatic hormone refractory prostate cancer. J Clin Oncol 24:3089–3094PubMedCrossRef Small EJ, Schellhammer PF, Higano CS, Redfern CH, Nemunaitis JJ, Valone FH et al (2006) Placebo-controlled phase iii trial of immunologic therapy with sipuleucel-t (apc8015) in patients with metastatic, asymptomatic hormone refractory prostate cancer. J Clin Oncol 24:3089–3094PubMedCrossRef
2.
go back to reference Aspord C, Charles J, Leccia M, Laurin D, Richard M, Chaperot L et al (2010) A novel cancer vaccine strategy based on hla-a*0201 matched allogeneic plasmacytoid dendritic cells. PLoS One 5:e10458PubMedCentralPubMedCrossRef Aspord C, Charles J, Leccia M, Laurin D, Richard M, Chaperot L et al (2010) A novel cancer vaccine strategy based on hla-a*0201 matched allogeneic plasmacytoid dendritic cells. PLoS One 5:e10458PubMedCentralPubMedCrossRef
3.
go back to reference Jongbloed SL, Kassianos AJ, McDonald KJ, Clark GJ, Ju X, Angel CE et al (2010) Human cd141+ (bdca-3)+ dendritic cells (dcs) represent a unique myeloid dc subset that cross-presents necrotic cell antigens. J Exp Med 207:1247–1260PubMedCentralPubMedCrossRef Jongbloed SL, Kassianos AJ, McDonald KJ, Clark GJ, Ju X, Angel CE et al (2010) Human cd141+ (bdca-3)+ dendritic cells (dcs) represent a unique myeloid dc subset that cross-presents necrotic cell antigens. J Exp Med 207:1247–1260PubMedCentralPubMedCrossRef
4.
go back to reference Mohamadzadeh M, Berard F, Essert G, Chalouni C, Pulendran B, Davoust J et al (2001) Interleukin 15 skews monocyte differentiation into dendritic cells with features of langerhans cells. J Exp Med 194:1013–1020PubMedCentralPubMedCrossRef Mohamadzadeh M, Berard F, Essert G, Chalouni C, Pulendran B, Davoust J et al (2001) Interleukin 15 skews monocyte differentiation into dendritic cells with features of langerhans cells. J Exp Med 194:1013–1020PubMedCentralPubMedCrossRef
5.
go back to reference Dauer M, Obermaier B, Herten J, Haerle C, Pohl K, Rothenfusser S et al (2003) Mature dendritic cells derived from human monocytes within 48 hours: a novel strategy for dendritic cell differentiation from blood precursors. J Immunol 170:4069–4076PubMedCrossRef Dauer M, Obermaier B, Herten J, Haerle C, Pohl K, Rothenfusser S et al (2003) Mature dendritic cells derived from human monocytes within 48 hours: a novel strategy for dendritic cell differentiation from blood precursors. J Immunol 170:4069–4076PubMedCrossRef
6.
go back to reference Bracci L, Schumacher R, Provenzano M, Adamina M, Rosenthal R, Groeper C et al (2008) Efficient stimulation of t cell responses by human ifn-alpha-induced dendritic cells does not require toll-like receptor triggering. J Immunother 31:466–474PubMedCrossRef Bracci L, Schumacher R, Provenzano M, Adamina M, Rosenthal R, Groeper C et al (2008) Efficient stimulation of t cell responses by human ifn-alpha-induced dendritic cells does not require toll-like receptor triggering. J Immunother 31:466–474PubMedCrossRef
7.
go back to reference Mailliard RB, Wankowicz-Kalinska A, Cai Q, Wesa A, Hilkens CM, Kapsenberg ML et al (2004) Alpha-type-1 polarized dendritic cells: a novel immunization tool with optimized ctl-inducing activity. Cancer Res 64:5934–5937PubMedCrossRef Mailliard RB, Wankowicz-Kalinska A, Cai Q, Wesa A, Hilkens CM, Kapsenberg ML et al (2004) Alpha-type-1 polarized dendritic cells: a novel immunization tool with optimized ctl-inducing activity. Cancer Res 64:5934–5937PubMedCrossRef
8.
go back to reference Ten Brinke A, Karsten ML, Dieker MC, Zwaginga JJ, van Ham SM (2007) The clinical grade maturation cocktail monophosphoryl lipid a plus ifngamma generates monocyte-derived dendritic cells with the capacity to migrate and induce th1 polarization. Vaccine 25:7145–7152PubMedCrossRef Ten Brinke A, Karsten ML, Dieker MC, Zwaginga JJ, van Ham SM (2007) The clinical grade maturation cocktail monophosphoryl lipid a plus ifngamma generates monocyte-derived dendritic cells with the capacity to migrate and induce th1 polarization. Vaccine 25:7145–7152PubMedCrossRef
9.
go back to reference Zobywalski A, Javorovic M, Frankenberger B, Pohla H, Kremmer E, Bigalke I et al (2007) Generation of clinical grade dendritic cells with capacity to produce biologically active il-12p70. J Transl Med 5:18PubMedCentralPubMedCrossRef Zobywalski A, Javorovic M, Frankenberger B, Pohla H, Kremmer E, Bigalke I et al (2007) Generation of clinical grade dendritic cells with capacity to produce biologically active il-12p70. J Transl Med 5:18PubMedCentralPubMedCrossRef
11.
go back to reference Massa C, Seliger B (2013) Fast dendritic cells stimulated with alternative maturation mixtures induce polyfunctional and long-lasting activation of innate and adaptive effector cells with tumor-killing capabilities. J Immunol 190:3328–3337PubMedCrossRef Massa C, Seliger B (2013) Fast dendritic cells stimulated with alternative maturation mixtures induce polyfunctional and long-lasting activation of innate and adaptive effector cells with tumor-killing capabilities. J Immunol 190:3328–3337PubMedCrossRef
12.
go back to reference Wang E, Miller LD, Ohnmacht GA, Liu ET, Marincola FM (2000) High-fidelity mrna amplification for gene profiling. Nat Biotechnol 18:457–459PubMedCrossRef Wang E, Miller LD, Ohnmacht GA, Liu ET, Marincola FM (2000) High-fidelity mrna amplification for gene profiling. Nat Biotechnol 18:457–459PubMedCrossRef
13.
go back to reference Worschech A, Kmieciak M, Knutson KL, Bear HD, Szalay AA, Wang E et al (2008) Signatures associated with rejection or recurrence in her-2/neu-positive mammary tumors. Cancer Res 68:2436–2446PubMedCentralPubMedCrossRef Worschech A, Kmieciak M, Knutson KL, Bear HD, Szalay AA, Wang E et al (2008) Signatures associated with rejection or recurrence in her-2/neu-positive mammary tumors. Cancer Res 68:2436–2446PubMedCentralPubMedCrossRef
14.
go back to reference Simon R, Lam A, Li M, Ngan M, Menenzes S, Zhao Y (2007) Analysis of gene expression data using brb-arraytools. Cancer Inform 3:11–17PubMedCentralPubMed Simon R, Lam A, Li M, Ngan M, Menenzes S, Zhao Y (2007) Analysis of gene expression data using brb-arraytools. Cancer Inform 3:11–17PubMedCentralPubMed
15.
go back to reference Scandella E, Men Y, Legler DF, Gillessen S, Prikler L, Ludewig B (2004) Ccl19/ccl21-triggered signal transduction and migration of dendritic cells requires prostaglandin e2. Blood 103:1595–1601PubMedCrossRef Scandella E, Men Y, Legler DF, Gillessen S, Prikler L, Ludewig B (2004) Ccl19/ccl21-triggered signal transduction and migration of dendritic cells requires prostaglandin e2. Blood 103:1595–1601PubMedCrossRef
16.
go back to reference Scandella E, Men Y, Gillessen S, Förster R, Groettrup M (2002) Prostaglandin e2 is a key factor for ccr7 surface expression and migration of monocyte-derived dendritic cells. Blood 100:1354–1361PubMedCrossRef Scandella E, Men Y, Gillessen S, Förster R, Groettrup M (2002) Prostaglandin e2 is a key factor for ccr7 surface expression and migration of monocyte-derived dendritic cells. Blood 100:1354–1361PubMedCrossRef
17.
go back to reference Legler DF, Krause P, Scandella E, Singer E, Groettrup M (2006) Prostaglandin e2 is generally required for human dendritic cell migration and exerts its effect via ep2 and ep4 receptors. J Immunol 176:966–973PubMedCrossRef Legler DF, Krause P, Scandella E, Singer E, Groettrup M (2006) Prostaglandin e2 is generally required for human dendritic cell migration and exerts its effect via ep2 and ep4 receptors. J Immunol 176:966–973PubMedCrossRef
18.
go back to reference Jonuleit H, Kühn U, Müller G, Steinbrink K, Paragnik L, Schmitt E et al (1997) Pro-inflammatory cytokines and prostaglandins induce maturation of potent immunostimulatory dendritic cells under fetal calf serum-free conditions. Eur J Immunol 27:3135–3142PubMedCrossRef Jonuleit H, Kühn U, Müller G, Steinbrink K, Paragnik L, Schmitt E et al (1997) Pro-inflammatory cytokines and prostaglandins induce maturation of potent immunostimulatory dendritic cells under fetal calf serum-free conditions. Eur J Immunol 27:3135–3142PubMedCrossRef
19.
go back to reference Bruckner M, Dickel D, Singer E, Legler DF (2012) Distinct modulation of chemokine expression patterns in human monocyte-derived dendritic cells by prostaglandin e(2). Cell Immunol 276:52–58PubMedCrossRef Bruckner M, Dickel D, Singer E, Legler DF (2012) Distinct modulation of chemokine expression patterns in human monocyte-derived dendritic cells by prostaglandin e(2). Cell Immunol 276:52–58PubMedCrossRef
20.
go back to reference Van Elssen CHMJ, Vanderlocht J, Oth T, Senden-Gijsbers BLMG, Germeraad WTV, Bos GMJ (2011) Inflammation-restraining effects of prostaglandin e2 on natural killer-dendritic cell (nk-dc) interaction are imprinted during dc maturation. Blood 118:2473–2482PubMedCrossRef Van Elssen CHMJ, Vanderlocht J, Oth T, Senden-Gijsbers BLMG, Germeraad WTV, Bos GMJ (2011) Inflammation-restraining effects of prostaglandin e2 on natural killer-dendritic cell (nk-dc) interaction are imprinted during dc maturation. Blood 118:2473–2482PubMedCrossRef
21.
go back to reference Muthuswamy R, Urban J, Lee J, Reinhart TA, Bartlett D, Kalinski P (2008) Ability of mature dendritic cells to interact with regulatory t cells is imprinted during maturation. Cancer Res 68:5972–5978PubMedCentralPubMedCrossRef Muthuswamy R, Urban J, Lee J, Reinhart TA, Bartlett D, Kalinski P (2008) Ability of mature dendritic cells to interact with regulatory t cells is imprinted during maturation. Cancer Res 68:5972–5978PubMedCentralPubMedCrossRef
22.
go back to reference Iellem A, Mariani M, Lang R, Recalde H, Panina-Bordignon P, Sinigaglia F et al (2001) Unique chemotactic response profile and specific expression of chemokine receptors ccr4 and ccr8 by cd4(+)cd25(+) regulatory t cells. J Exp Med 194:847–853PubMedCentralPubMedCrossRef Iellem A, Mariani M, Lang R, Recalde H, Panina-Bordignon P, Sinigaglia F et al (2001) Unique chemotactic response profile and specific expression of chemokine receptors ccr4 and ccr8 by cd4(+)cd25(+) regulatory t cells. J Exp Med 194:847–853PubMedCentralPubMedCrossRef
23.
go back to reference Kang S, Xie J, Ma S, Liao W, Zhang J, Luo R (2010) Targeted knock down of ccl22 and ccl17 by sirna during dc differentiation and maturation affects the recruitment of t subsets. Immunobiology 215:153–162PubMedCrossRef Kang S, Xie J, Ma S, Liao W, Zhang J, Luo R (2010) Targeted knock down of ccl22 and ccl17 by sirna during dc differentiation and maturation affects the recruitment of t subsets. Immunobiology 215:153–162PubMedCrossRef
24.
go back to reference van Lieshout AWT, van der Voort R, Toonen LWJ, van Helden SFG, Figdor CG, van Riel PLCM (2009) Regulation of cxcl16 expression and secretion by myeloid cells is not altered in rheumatoid arthritis. Ann Rheum Dis 68:1036–1043PubMedCrossRef van Lieshout AWT, van der Voort R, Toonen LWJ, van Helden SFG, Figdor CG, van Riel PLCM (2009) Regulation of cxcl16 expression and secretion by myeloid cells is not altered in rheumatoid arthritis. Ann Rheum Dis 68:1036–1043PubMedCrossRef
25.
go back to reference Tabata S, Kadowaki N, Kitawaki T, Shimaoka T, Yonehara S, Yoshie O et al (2005) Distribution and kinetics of sr-psox/cxcl16 and cxcr6 expression on human dendritic cell subsets and cd4+ t cells. J Leukoc Biol 77:777–786PubMedCrossRef Tabata S, Kadowaki N, Kitawaki T, Shimaoka T, Yonehara S, Yoshie O et al (2005) Distribution and kinetics of sr-psox/cxcl16 and cxcr6 expression on human dendritic cell subsets and cd4+ t cells. J Leukoc Biol 77:777–786PubMedCrossRef
26.
go back to reference Lee LN, Ronan EO, de Lara C, Franken KLMC, Ottenhoff THM, Tchilian EZ et al (2011) Cxcr6 is a marker for protective antigen-specific cells in the lungs after intranasal immunization against mycobacterium tuberculosis. Infect Immun 79:3328–3337PubMedCentralPubMedCrossRef Lee LN, Ronan EO, de Lara C, Franken KLMC, Ottenhoff THM, Tchilian EZ et al (2011) Cxcr6 is a marker for protective antigen-specific cells in the lungs after intranasal immunization against mycobacterium tuberculosis. Infect Immun 79:3328–3337PubMedCentralPubMedCrossRef
27.
go back to reference Geissmann F, Cameron TO, Sidobre S, Manlongat N, Kronenberg M, Briskin MJ et al (2005) Intravascular immune surveillance by cxcr6+ nkt cells patrolling liver sinusoids. PLoS Biol 3:e113PubMedCentralPubMedCrossRef Geissmann F, Cameron TO, Sidobre S, Manlongat N, Kronenberg M, Briskin MJ et al (2005) Intravascular immune surveillance by cxcr6+ nkt cells patrolling liver sinusoids. PLoS Biol 3:e113PubMedCentralPubMedCrossRef
28.
go back to reference Riedel J, Paust H, Turner J, Tittel AP, Krebs C, Disteldorf E et al (2012) Immature renal dendritic cells recruit regulatory cxcr6(+) invariant natural killer t cells to attenuate crescentic gn. J Am Soc Nephrol 23:1987–2000PubMedCentralPubMedCrossRef Riedel J, Paust H, Turner J, Tittel AP, Krebs C, Disteldorf E et al (2012) Immature renal dendritic cells recruit regulatory cxcr6(+) invariant natural killer t cells to attenuate crescentic gn. J Am Soc Nephrol 23:1987–2000PubMedCentralPubMedCrossRef
29.
go back to reference Paust S, Gill HS, Wang B, Flynn MP, Moseman EA, Senman B et al (2010) Critical role for the chemokine receptor cxcr6 in nk cell-mediated antigen-specific memory of haptens and viruses. Nat Immunol 11:1127–1135PubMedCentralPubMedCrossRef Paust S, Gill HS, Wang B, Flynn MP, Moseman EA, Senman B et al (2010) Critical role for the chemokine receptor cxcr6 in nk cell-mediated antigen-specific memory of haptens and viruses. Nat Immunol 11:1127–1135PubMedCentralPubMedCrossRef
30.
go back to reference Bromley SK, Dustin ML (2002) Stimulation of naïve t-cell adhesion and immunological synapse formation by chemokine-dependent and -independent mechanisms. Immunology 106:289–298PubMedCentralPubMedCrossRef Bromley SK, Dustin ML (2002) Stimulation of naïve t-cell adhesion and immunological synapse formation by chemokine-dependent and -independent mechanisms. Immunology 106:289–298PubMedCentralPubMedCrossRef
31.
go back to reference Molon B, Gri G, Bettella M, Gómez-Moutón C, Lanzavecchia A, Martínez-A C et al (2005) T cell costimulation by chemokine receptors. Nat Immunol 6:465–471PubMedCrossRef Molon B, Gri G, Bettella M, Gómez-Moutón C, Lanzavecchia A, Martínez-A C et al (2005) T cell costimulation by chemokine receptors. Nat Immunol 6:465–471PubMedCrossRef
32.
go back to reference Maghazachi AA, Al-Aoukaty A, Schall TJ (1996) Cc chemokines induce the generation of killer cells from cd56+ cells. Eur J Immunol 26:315–319PubMedCrossRef Maghazachi AA, Al-Aoukaty A, Schall TJ (1996) Cc chemokines induce the generation of killer cells from cd56+ cells. Eur J Immunol 26:315–319PubMedCrossRef
33.
go back to reference Taub DD, Sayers TJ, Carter CR, Ortaldo JR (1995) Alpha and beta chemokines induce nk cell migration and enhance nk-mediated cytolysis. J Immunol 155:3877–3888PubMed Taub DD, Sayers TJ, Carter CR, Ortaldo JR (1995) Alpha and beta chemokines induce nk cell migration and enhance nk-mediated cytolysis. J Immunol 155:3877–3888PubMed
34.
go back to reference Taub DD, Ortaldo JR, Turcovski-Corrales SM, Key ML, Longo DL, Murphy WJ (1996) Beta chemokines costimulate lymphocyte cytolysis, proliferation, and lymphokine production. J Leukoc Biol 59:81–89PubMed Taub DD, Ortaldo JR, Turcovski-Corrales SM, Key ML, Longo DL, Murphy WJ (1996) Beta chemokines costimulate lymphocyte cytolysis, proliferation, and lymphokine production. J Leukoc Biol 59:81–89PubMed
35.
go back to reference Jones E, Price DA, Dahm-Vicker M, Cerundolo V, Klenerman P, Gallimore A (2003) The influence of macrophage inflammatory protein-1alpha on protective immunity mediated by antiviral cytotoxic t cells. Immunology 109:68–75PubMedCentralPubMedCrossRef Jones E, Price DA, Dahm-Vicker M, Cerundolo V, Klenerman P, Gallimore A (2003) The influence of macrophage inflammatory protein-1alpha on protective immunity mediated by antiviral cytotoxic t cells. Immunology 109:68–75PubMedCentralPubMedCrossRef
36.
go back to reference Majumder S, Bhattacharjee S, Paul Chowdhury B, Majumdar S (2012) Cxcl10 is critical for the generation of protective cd8 t cell response induced by antigen pulsed cpg-odn activated dendritic cells. PLoS One 7:e48727PubMedCentralPubMedCrossRef Majumder S, Bhattacharjee S, Paul Chowdhury B, Majumdar S (2012) Cxcl10 is critical for the generation of protective cd8 t cell response induced by antigen pulsed cpg-odn activated dendritic cells. PLoS One 7:e48727PubMedCentralPubMedCrossRef
37.
go back to reference Rashighi M, Agarwal P, Richmond JM, Harris TH, Dresser K, Su M et al (2014) Cxcl10 is critical for the progression and maintenance of depigmentation in a mouse model of vitiligo. Sci Transl Med 6:223ra23 Rashighi M, Agarwal P, Richmond JM, Harris TH, Dresser K, Su M et al (2014) Cxcl10 is critical for the progression and maintenance of depigmentation in a mouse model of vitiligo. Sci Transl Med 6:223ra23
38.
go back to reference Bacon KB, Premack BA, Gardner P, Schall TJ (1995) Activation of dual t cell signaling pathways by the chemokine rantes. Science (80-) 269:1727–1730CrossRef Bacon KB, Premack BA, Gardner P, Schall TJ (1995) Activation of dual t cell signaling pathways by the chemokine rantes. Science (80-) 269:1727–1730CrossRef
39.
go back to reference Hadida F, Vieillard V, Autran B, Clark-Lewis I, Baggiolini M, Debré P (1998) Hiv-specific t cell cytotoxicity mediated by rantes via the chemokine receptor ccr3. J Exp Med 188:609–614PubMedCentralPubMedCrossRef Hadida F, Vieillard V, Autran B, Clark-Lewis I, Baggiolini M, Debré P (1998) Hiv-specific t cell cytotoxicity mediated by rantes via the chemokine receptor ccr3. J Exp Med 188:609–614PubMedCentralPubMedCrossRef
40.
go back to reference Camargo JF, Quinones MP, Mummidi S, Srinivas S, Gaitan AA, Begum K et al (2009) Ccr5 expression levels influence nfat translocation, il-2 production, and subsequent signaling events during t lymphocyte activation. J Immunol 182:171–182PubMedCentralPubMedCrossRef Camargo JF, Quinones MP, Mummidi S, Srinivas S, Gaitan AA, Begum K et al (2009) Ccr5 expression levels influence nfat translocation, il-2 production, and subsequent signaling events during t lymphocyte activation. J Immunol 182:171–182PubMedCentralPubMedCrossRef
41.
go back to reference Groom JR, Luster AD (2011) Cxcr3 ligands: redundant, collaborative and antagonistic functions. Immunol Cell Biol 89:207–215PubMedCrossRef Groom JR, Luster AD (2011) Cxcr3 ligands: redundant, collaborative and antagonistic functions. Immunol Cell Biol 89:207–215PubMedCrossRef
42.
go back to reference Livingstone AM, Kuhn M (2002) Peptide-pulsed splenic dendritic cells prime long-lasting cd8(+) t cell memory in the absence of cross-priming by host apc. Eur J Immunol 32:281–290PubMedCrossRef Livingstone AM, Kuhn M (2002) Peptide-pulsed splenic dendritic cells prime long-lasting cd8(+) t cell memory in the absence of cross-priming by host apc. Eur J Immunol 32:281–290PubMedCrossRef
43.
go back to reference Qu C, Nguyen VA, Merad M, Randolph GJ (2009) Mhc class i/peptide transfer between dendritic cells overcomes poor cross-presentation by monocyte-derived apcs that engulf dying cells. J Immunol 182:3650–3659PubMedCrossRef Qu C, Nguyen VA, Merad M, Randolph GJ (2009) Mhc class i/peptide transfer between dendritic cells overcomes poor cross-presentation by monocyte-derived apcs that engulf dying cells. J Immunol 182:3650–3659PubMedCrossRef
44.
go back to reference Yewdall AW, Drutman SB, Jinwala F, Bahjat KS, Bhardwaj N (2010) Cd8+ t cell priming by dendritic cell vaccines requires antigen transfer to endogenous antigen presenting cells. PLoS One 5:e11144PubMedCentralPubMedCrossRef Yewdall AW, Drutman SB, Jinwala F, Bahjat KS, Bhardwaj N (2010) Cd8+ t cell priming by dendritic cell vaccines requires antigen transfer to endogenous antigen presenting cells. PLoS One 5:e11144PubMedCentralPubMedCrossRef
45.
go back to reference Shimizu K, Fujii S (2009) Dc therapy induces long-term nk reactivity to tumors via host dc. Eur J Immunol 39:457–468PubMedCrossRef Shimizu K, Fujii S (2009) Dc therapy induces long-term nk reactivity to tumors via host dc. Eur J Immunol 39:457–468PubMedCrossRef
46.
go back to reference Lança T, Costa MF, Gonçalves-Sousa N, Rei M, Grosso AR, Penido C et al (2013) Protective role of the inflammatory ccr2/ccl2 chemokine pathway through recruitment of type 1 cytotoxic γδ t lymphocytes to tumor beds. J Immunol 190:6673–6680PubMedCrossRef Lança T, Costa MF, Gonçalves-Sousa N, Rei M, Grosso AR, Penido C et al (2013) Protective role of the inflammatory ccr2/ccl2 chemokine pathway through recruitment of type 1 cytotoxic γδ t lymphocytes to tumor beds. J Immunol 190:6673–6680PubMedCrossRef
47.
go back to reference Thomas ML, Badwe RA, Deshpande RK, Samant UC, Chiplunkar SV (2001) Role of adhesion molecules in recruitment of vdelta1 t cells from the peripheral blood to the tumor tissue of esophageal cancer patients. Cancer Immunol Immunother 50:218–225PubMedCrossRef Thomas ML, Badwe RA, Deshpande RK, Samant UC, Chiplunkar SV (2001) Role of adhesion molecules in recruitment of vdelta1 t cells from the peripheral blood to the tumor tissue of esophageal cancer patients. Cancer Immunol Immunother 50:218–225PubMedCrossRef
48.
go back to reference Cordova A, Toia F, La Mendola C, Orlando V, Meraviglia S, Rinaldi G et al (2012) Characterization of human γδ t lymphocytes infiltrating primary malignant melanomas. PLoS One 7:e49878PubMedCentralPubMedCrossRef Cordova A, Toia F, La Mendola C, Orlando V, Meraviglia S, Rinaldi G et al (2012) Characterization of human γδ t lymphocytes infiltrating primary malignant melanomas. PLoS One 7:e49878PubMedCentralPubMedCrossRef
49.
go back to reference Meeh PF, King M, O’Brien RL, Muga S, Buckhalts P, Neuberg R et al (2006) Characterization of the gammadelta t cell response to acute leukemia. Cancer Immunol Immunother 55:1072–1080PubMedCrossRef Meeh PF, King M, O’Brien RL, Muga S, Buckhalts P, Neuberg R et al (2006) Characterization of the gammadelta t cell response to acute leukemia. Cancer Immunol Immunother 55:1072–1080PubMedCrossRef
50.
go back to reference Devaud C, Rousseau B, Netzer S, Pitard V, Paroissin C, Khairallah C et al (2013) Anti-metastatic potential of human vδ1(+) γδ t cells in an orthotopic mouse xenograft model of colon carcinoma. Cancer Immunol Immunother 62:1199–1210PubMedCrossRef Devaud C, Rousseau B, Netzer S, Pitard V, Paroissin C, Khairallah C et al (2013) Anti-metastatic potential of human vδ1(+) γδ t cells in an orthotopic mouse xenograft model of colon carcinoma. Cancer Immunol Immunother 62:1199–1210PubMedCrossRef
51.
go back to reference Lozupone F, Pende D, Burgio VL, Castelli C, Spada M, Venditti M et al (2004) Effect of human natural killer and gammadelta t cells on the growth of human autologous melanoma xenografts in scid mice. Cancer Res 64:378–385PubMedCrossRef Lozupone F, Pende D, Burgio VL, Castelli C, Spada M, Venditti M et al (2004) Effect of human natural killer and gammadelta t cells on the growth of human autologous melanoma xenografts in scid mice. Cancer Res 64:378–385PubMedCrossRef
52.
go back to reference Donia M, Ellebaek E, Andersen MH, Straten PT, Svane IM (2012) Analysis of vδ1 t cells in clinical grade melanoma-infiltrating lymphocytes. Oncoimmunology 1:1297–1304PubMedCentralPubMedCrossRef Donia M, Ellebaek E, Andersen MH, Straten PT, Svane IM (2012) Analysis of vδ1 t cells in clinical grade melanoma-infiltrating lymphocytes. Oncoimmunology 1:1297–1304PubMedCentralPubMedCrossRef
53.
go back to reference Stutte S, Quast T, Gerbitzki N, Savinko T, Novak N, Reifenberger J et al (2010) Requirement of ccl17 for ccr7- and cxcr4-dependent migration of cutaneous dendritic cells. Proc Natl Acad Sci USA 107:8736–8741PubMedCentralPubMedCrossRef Stutte S, Quast T, Gerbitzki N, Savinko T, Novak N, Reifenberger J et al (2010) Requirement of ccl17 for ccr7- and cxcr4-dependent migration of cutaneous dendritic cells. Proc Natl Acad Sci USA 107:8736–8741PubMedCentralPubMedCrossRef
54.
go back to reference Dannull J, Schneider T, Lee WT, de Rosa N, Tyler DS, Pruitt SK (2012) Leukotriene c4 induces migration of human monocyte-derived dendritic cells without loss of immunostimulatory function. Blood 119:3113–3122PubMedCentralPubMedCrossRef Dannull J, Schneider T, Lee WT, de Rosa N, Tyler DS, Pruitt SK (2012) Leukotriene c4 induces migration of human monocyte-derived dendritic cells without loss of immunostimulatory function. Blood 119:3113–3122PubMedCentralPubMedCrossRef
55.
go back to reference Lesterhuis WJ, de Vries IJM, Schreibelt G, Lambeck AJA, Aarntzen EHJG, Jacobs JFM et al (2011) Route of administration modulates the induction of dendritic cell vaccine-induced antigen-specific t cells in advanced melanoma patients. Clin Cancer Res 17:5725–5735PubMedCrossRef Lesterhuis WJ, de Vries IJM, Schreibelt G, Lambeck AJA, Aarntzen EHJG, Jacobs JFM et al (2011) Route of administration modulates the induction of dendritic cell vaccine-induced antigen-specific t cells in advanced melanoma patients. Clin Cancer Res 17:5725–5735PubMedCrossRef
56.
go back to reference Fong L, Brockstedt D, Benike C, Wu L, Engleman EG (2001) Dendritic cells injected via different routes induce immunity in cancer patients. J Immunol 166:4254–4259PubMedCrossRef Fong L, Brockstedt D, Benike C, Wu L, Engleman EG (2001) Dendritic cells injected via different routes induce immunity in cancer patients. J Immunol 166:4254–4259PubMedCrossRef
57.
go back to reference Grover A, Kim GJ, Lizée G, Tschoi M, Wang G, Wunderlich JR et al (2006) Intralymphatic dendritic cell vaccination induces tumor antigen-specific, skin-homing t lymphocytes. Clin Cancer Res 12:5801–5808PubMedCentralPubMedCrossRef Grover A, Kim GJ, Lizée G, Tschoi M, Wang G, Wunderlich JR et al (2006) Intralymphatic dendritic cell vaccination induces tumor antigen-specific, skin-homing t lymphocytes. Clin Cancer Res 12:5801–5808PubMedCentralPubMedCrossRef
58.
go back to reference Lesimple T, Neidhard E, Vignard V, Lefeuvre C, Adamski H, Labarrière N et al (2006) Immunologic and clinical effects of injecting mature peptide-loaded dendritic cells by intralymphatic and intranodal routes in metastatic melanoma patients. Clin Cancer Res 12:7380–7388PubMedCrossRef Lesimple T, Neidhard E, Vignard V, Lefeuvre C, Adamski H, Labarrière N et al (2006) Immunologic and clinical effects of injecting mature peptide-loaded dendritic cells by intralymphatic and intranodal routes in metastatic melanoma patients. Clin Cancer Res 12:7380–7388PubMedCrossRef
Metadata
Title
Different maturation cocktails provide dendritic cells with different chemoattractive properties
Authors
Chiara Massa
Carolin Thomas
Ena Wang
Francesco Marincola
Barbara Seliger
Publication date
01-12-2015
Publisher
BioMed Central
Published in
Journal of Translational Medicine / Issue 1/2015
Electronic ISSN: 1479-5876
DOI
https://doi.org/10.1186/s12967-015-0528-7

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