메뉴 건너뛰기




Volumn 196, Issue 2, 2016, Pages 624-636

Monocyte-derived dendritic cells promote Th polarization, whereas conventional dendritic cells promote th proliferation

Author keywords

[No Author keywords available]

Indexed keywords

GAMMA INTERFERON; INTERLEUKIN 17; INTERLEUKIN 2; MAJOR HISTOCOMPATIBILITY ANTIGEN CLASS 2; NITRIC OXIDE;

EID: 84954101297     PISSN: 00221767     EISSN: 15506606     Source Type: Journal    
DOI: 10.4049/jimmunol.1501202     Document Type: Article
Times cited : (54)

References (66)
  • 1
    • 0036518287 scopus 로고    scopus 로고
    • Mouse and human dendritic cell subtypes
    • Shortman, K., and Y. J. Liu. 2002. Mouse and human dendritic cell subtypes. Nat. Rev. Immunol. 2: 151-161.
    • (2002) Nat. Rev. Immunol. , vol.2 , pp. 151-161
    • Shortman, K.1    Liu, Y.J.2
  • 2
    • 79959871414 scopus 로고    scopus 로고
    • Complexity of dendritic cell subsets and their function in the host immune system
    • Kushwah, R., and J. Hu. 2011. Complexity of dendritic cell subsets and their function in the host immune system. Immunology 133: 409-419.
    • (2011) Immunology , vol.133 , pp. 409-419
    • Kushwah, R.1    Hu, J.2
  • 4
    • 17644372733 scopus 로고    scopus 로고
    • IPC: Professional type 1 interferon-producing cells and plas-macytoid dendritic cell precursors
    • Liu, Y. J. 2005. IPC: professional type 1 interferon-producing cells and plas-macytoid dendritic cell precursors. Annu. Rev. Immunol. 23: 275-306.
    • (2005) Annu. Rev. Immunol. , vol.23 , pp. 275-306
    • Liu, Y.J.1
  • 8
    • 0037625155 scopus 로고    scopus 로고
    • TNF/iNOS-producing dendritic cells mediate innate immune defense against bacterial infection
    • Serbina, N. V., T. P. Salazar-Mather, C. A. Biron, W. A. Kuziel, and E. G. Pamer. 2003. TNF/iNOS-producing dendritic cells mediate innate immune defense against bacterial infection. Immunity 19: 59-70.
    • (2003) Immunity , vol.19 , pp. 59-70
    • Serbina, N.V.1    Salazar-Mather, T.P.2    Biron, C.A.3    Kuziel, W.A.4    Pamer, E.G.5
  • 9
    • 34247104151 scopus 로고    scopus 로고
    • Monocyte-derived dendritic cells formed at the infection site control the induction of protective T helper 1 responses against Leishmania
    • León, B., M. López-Bravo, and C. Ardavin. 2007. Monocyte-derived dendritic cells formed at the infection site control the induction of protective T helper 1 responses against Leishmania. Immunity 26: 519-531.
    • (2007) Immunity , vol.26 , pp. 519-531
    • León, B.1    López-Bravo, M.2    Ardavin, C.3
  • 10
    • 84878751779 scopus 로고    scopus 로고
    • Signal relay by CC chemokine receptor 2 (CCR2) and formylpeptide receptor 2 (Fpr2) in the recruitment of monocyte-derived dendritic cells in allergic airway inflammation
    • Chen, K., M. Liu, Y. Liu, C. Wang, T. Yoshimura, W. Gong, Y. Le, L. Tessarollo, and J. M. Wang. 2013. Signal relay by CC chemokine receptor 2 (CCR2) and formylpeptide receptor 2 (Fpr2) in the recruitment of monocyte-derived dendritic cells in allergic airway inflammation. J. Biol. Chem. 288: 16262-16273.
    • (2013) J. Biol. Chem. , vol.288 , pp. 16262-16273
    • Chen, K.1    Liu, M.2    Liu, Y.3    Wang, C.4    Yoshimura, T.5    Gong, W.6    Le, Y.7    Tessarollo, L.8    Wang, J.M.9
  • 11
    • 62849119018 scopus 로고    scopus 로고
    • Blood-derived inflammatory dendritic cells in lymph nodes stimulate acute T helper type 1 immune responses
    • Nakano, H., K. L. Lin, M. Yanagita, C. Charbonneau, D. N. Cook, T. Kakiuchi, and M. D. Gunn. 2009. Blood-derived inflammatory dendritic cells in lymph nodes stimulate acute T helper type 1 immune responses. Nat. Immunol. 10: 394-402.
    • (2009) Nat. Immunol. , vol.10 , pp. 394-402
    • Nakano, H.1    Lin, K.L.2    Yanagita, M.3    Charbonneau, C.4    Cook, D.N.5    Kakiuchi, T.6    Gunn, M.D.7
  • 12
    • 77956932553 scopus 로고    scopus 로고
    • Resident and monocyte-derived dendritic cells become dominant IL-12 producers under different conditions and signaling pathways
    • Zhan, Y., Y. Xu, S. Seah, J. L. Brady, E. M. Carrington, C. Cheers, B. A. Croker, L. Wu, J. A. Villadangos, and A. M. Lew. 2010. Resident and monocyte-derived dendritic cells become dominant IL-12 producers under different conditions and signaling pathways. J. Immunol. 185: 2125-2133.
    • (2010) J. Immunol. , vol.185 , pp. 2125-2133
    • Zhan, Y.1    Xu, Y.2    Seah, S.3    Brady, J.L.4    Carrington, E.M.5    Cheers, C.6    Croker, B.A.7    Wu, L.8    Villadangos, J.A.9    Lew, A.M.10
  • 15
    • 34247561732 scopus 로고    scopus 로고
    • Monocyte recruitment, activation, and function in the gut-associated lymphoid tissue during oral Salmonella infection
    • Rydström, A., and M. J. Wick. 2007. Monocyte recruitment, activation, and function in the gut-associated lymphoid tissue during oral Salmonella infection. J. Immunol. 178: 5789-5801.
    • (2007) J. Immunol. , vol.178 , pp. 5789-5801
    • Rydström, A.1    Wick, M.J.2
  • 16
    • 65149093082 scopus 로고    scopus 로고
    • + myeloid precursors migrate to the CNS and play a pathogenic role during autoimmune demyelinating disease
    • + myeloid precursors migrate to the CNS and play a pathogenic role during autoimmune demyelinating disease. Blood 113: 3190-3197.
    • (2009) Blood , vol.113 , pp. 3190-3197
    • King, I.L.1    Dickendesher, T.L.2    Segal, B.M.3
  • 25
    • 0035838981 scopus 로고    scopus 로고
    • Regulation of T cell immunity by dendritic cells
    • Lanzavecchia, A., and F. Sallusto. 2001. Regulation of T cell immunity by dendritic cells. Cell 106: 263-266.
    • (2001) Cell , vol.106 , pp. 263-266
    • Lanzavecchia, A.1    Sallusto, F.2
  • 26
    • 0032546352 scopus 로고    scopus 로고
    • Dendritic cells and the control of immunity
    • Banchereau, J., and R. M. Steinman. 1998. Dendritic cells and the control of immunity. Nature 392: 245-252.
    • (1998) Nature , vol.392 , pp. 245-252
    • Banchereau, J.1    Steinman, R.M.2
  • 27
    • 0035838984 scopus 로고    scopus 로고
    • Dendritic cells: Specialized and regulated antigen processing machines
    • Mellman, I., and R. M. Steinman. 2001. Dendritic cells: specialized and regulated antigen processing machines. Cell 106: 255-258.
    • (2001) Cell , vol.106 , pp. 255-258
    • Mellman, I.1    Steinman, R.M.2
  • 28
    • 0025941970 scopus 로고
    • Evidence for direct and indirect pathways in the generation of the alloimmune response against pancreatic islets
    • Stock, P. G., N. L. Ascher, S. Chen, J. Field, F. H. Bach, and D. E. Sutherland. 1991. Evidence for direct and indirect pathways in the generation of the alloimmune response against pancreatic islets. Transplantation 52: 704-709.
    • (1991) Transplantation , vol.52 , pp. 704-709
    • Stock, P.G.1    Ascher, N.L.2    Chen, S.3    Field, J.4    Bach, F.H.5    Sutherland, D.E.6
  • 30
    • 0031897801 scopus 로고    scopus 로고
    • Defective TCR expression in transgenic mice constructed using cDNA-based a-and b-chain genes under the control of heterologous regulatory elements
    • Barnden, M. J., J. Allison, W. R. Heath, and F. R. Carbone. 1998. Defective TCR expression in transgenic mice constructed using cDNA-based a-and b-chain genes under the control of heterologous regulatory elements. Immunol. Cell Biol. 76: 34-40.
    • (1998) Immunol. Cell Biol. , vol.76 , pp. 34-40
    • Barnden, M.J.1    Allison, J.2    Heath, W.R.3    Carbone, F.R.4
  • 31
    • 71749100858 scopus 로고    scopus 로고
    • Inflammatory monocytes facilitate adaptive CD4 T cell re sponses during respiratory fungal infection
    • Hohl, T. M., A. Rivera, L. Lipuma, A. Gallegos, C. Shi, M. Mack, and E. G. Pamer. 2009. Inflammatory monocytes facilitate adaptive CD4 T cell re sponses during respiratory fungal infection. Cell Host Microbe 6: 470-481.
    • (2009) Cell Host Microbe , vol.6 , pp. 470-481
    • Hohl, T.M.1    Rivera, A.2    Lipuma, L.3    Gallegos, A.4    Shi, C.5    Mack, M.6    Pamer, E.G.7
  • 32
    • 45549106017 scopus 로고    scopus 로고
    • The isolation and identification of murine dendritic cell populations from lymphoid tissues and their production in culture
    • Vremec, D., and K. Shortman. 2008. The isolation and identification of murine dendritic cell populations from lymphoid tissues and their production in culture. Methods Mol. Biol. 415: 163-178.
    • (2008) Methods Mol. Biol. , vol.415 , pp. 163-178
    • Vremec, D.1    Shortman, K.2
  • 33
    • 0035873381 scopus 로고    scopus 로고
    • Cell-associated ovalbumin is cross-presented much more efficiently than soluble ovalbumin in vivo
    • Li, M., G. M. Davey, R. M. Sutherland, C. Kurts, A. M. Lew, C. Hirst, F. R. Carbone, and W. R. Heath. 2001. Cell-associated ovalbumin is cross-presented much more efficiently than soluble ovalbumin in vivo. J. Immunol. 166: 6099-6103.
    • (2001) J. Immunol. , vol.166 , pp. 6099-6103
    • Li, M.1    Davey, G.M.2    Sutherland, R.M.3    Kurts, C.4    Lew, A.M.5    Hirst, C.6    Carbone, F.R.7    Heath, W.R.8
  • 37
    • 71749100858 scopus 로고    scopus 로고
    • Inflammatory monocytes facilitate adaptive CD4 T cell responses during respiratory fungal infection
    • Hohl, T. M., A. Rivera, L. Lipuma, A. Gallegos, C. Shi, M. Mack, and E. G. Pamer. 2009. Inflammatory monocytes facilitate adaptive CD4 T cell responses during respiratory fungal infection. Cell Host Microbe 6: 470-481.
    • (2009) Cell Host Microbe , vol.6 , pp. 470-481
    • Hohl, T.M.1    Rivera, A.2    Lipuma, L.3    Gallegos, A.4    Shi, C.5    Mack, M.6    Pamer, E.G.7
  • 38
    • 0018966159 scopus 로고
    • Dendritic cells are accessory cells for the development of anti-trinitrophenyl cytotoxic T lymphocytes
    • Nussenzweig, M. C., R. M. Steinman, B. Gutchinov, and Z. A. Cohn. 1980. Dendritic cells are accessory cells for the development of anti-trinitrophenyl cytotoxic T lymphocytes. J. Exp. Med. 152: 1070-1084.
    • (1980) J. Exp. Med. , vol.152 , pp. 1070-1084
    • Nussenzweig, M.C.1    Steinman, R.M.2    Gutchinov, B.3    Cohn, Z.A.4
  • 39
    • 0020614131 scopus 로고
    • Relative efficacy of human monocytes and dendritic cells as accessory cells for T cell replication
    • Van Voorhis, W. C., J. Valinsky, E. Hoffman, J. Luban, L. S. Hair, and R. M. Steinman. 1983. Relative efficacy of human monocytes and dendritic cells as accessory cells for T cell replication. J. Exp. Med. 158: 174-191.
    • (1983) J. Exp. Med. , vol.158 , pp. 174-191
    • Van Voorhis, W.C.1    Valinsky, J.2    Hoffman, E.3    Luban, J.4    Hair, L.S.5    Steinman, R.M.6
  • 40
    • 0035217962 scopus 로고    scopus 로고
    • Modes of action of Freund's adjuvants in experimental models of autoimmune diseases
    • Billiau, A., and P. Matthys. 2001. Modes of action of Freund's adjuvants in experimental models of autoimmune diseases. J. Leukoc. Biol. 70: 849-860.
    • (2001) J. Leukoc. Biol. , vol.70 , pp. 849-860
    • Billiau, A.1    Matthys, P.2
  • 41
    • 0036551108 scopus 로고    scopus 로고
    • Induction of skewed Th1/Th2 T-cell differentiation via subcutaneous immunization with Freund's adjuvant
    • Shibaki, A., and S. I. Katz. 2002. Induction of skewed Th1/Th2 T-cell differentiation via subcutaneous immunization with Freund's adjuvant. Exp. Derma-tol. 11: 126-134.
    • (2002) Exp. Derma-tol. , vol.11 , pp. 126-134
    • Shibaki, A.1    Katz, S.I.2
  • 43
    • 84883830692 scopus 로고    scopus 로고
    • Inflammatory dendritic cells in mice and humans
    • Segura, E., and S. Amigorena. 2013. Inflammatory dendritic cells in mice and humans. Trends Immunol. 34: 440-445.
    • (2013) Trends Immunol. , vol.34 , pp. 440-445
    • Segura, E.1    Amigorena, S.2
  • 46
    • 38849141667 scopus 로고    scopus 로고
    • Differential development of murine dendritic cells by GM-CSF versus Flt3 ligand has implications for inflammation and trafficking
    • Xu, Y., Y. Zhan, A. M. Lew, S. H. Naik, and M. H. Kershaw. 2007. Differential development of murine dendritic cells by GM-CSF versus Flt3 ligand has implications for inflammation and trafficking. J. Immunol. 179: 7577-7584.
    • (2007) J. Immunol. , vol.179 , pp. 7577-7584
    • Xu, Y.1    Zhan, Y.2    Lew, A.M.3    Naik, S.H.4    Kershaw, M.H.5
  • 47
    • 68349122611 scopus 로고    scopus 로고
    • Understanding the role of monocytic cells in liver inflammation using parasite infection as a model
    • Bosschaerts, T., M. Guilliams, B. Stijlemans, P. De Baetselier, and A. Beschin. 2009. Understanding the role of monocytic cells in liver inflammation using parasite infection as a model. Immunobiology 214: 737-747.
    • (2009) Immunobiology , vol.214 , pp. 737-747
    • Bosschaerts, T.1    Guilliams, M.2    Stijlemans, B.3    De Baetselier, P.4    Beschin, A.5
  • 48
    • 84863836962 scopus 로고    scopus 로고
    • Characteristics of "tip-DCs and MDSCs and their potential role in Leishmaniasis
    • Schmid, M., A. K. Wege, and U. Ritter. 2012. Characteristics of "Tip-DCs and MDSCs and their potential role in Leishmaniasis. Front. Microbiol. 3: 74.
    • (2012) Front. Microbiol. , vol.3 , pp. 74
    • Schmid, M.1    Wege, A.K.2    Ritter, U.3
  • 49
    • 33747358360 scopus 로고    scopus 로고
    • Migratory fate and differentiation of blood monocyte subsets
    • Tacke, F., and G. J. Randolph. 2006. Migratory fate and differentiation of blood monocyte subsets. Immunobiology 211: 609-618.
    • (2006) Immunobiology , vol.211 , pp. 609-618
    • Tacke, F.1    Randolph, G.J.2
  • 50
    • 14844340568 scopus 로고    scopus 로고
    • Differential lysosomal proteolysis in antigen-presenting cells determines antigen fate
    • Delamarre, L., M. Pack, H. Chang, I. Mellman, and E. S. Trombetta. 2005. Differential lysosomal proteolysis in antigen-presenting cells determines antigen fate. Science 307: 1630-1634.
    • (2005) Science , vol.307 , pp. 1630-1634
    • Delamarre, L.1    Pack, M.2    Chang, H.3    Mellman, I.4    Trombetta, E.S.5
  • 51
    • 34548574975 scopus 로고    scopus 로고
    • Phagocytosis and antigen presentation in dendritic cells
    • Savina, A., and S. Amigorena. 2007. Phagocytosis and antigen presentation in dendritic cells. Immunol. Rev. 219: 143-156.
    • (2007) Immunol. Rev. , vol.219 , pp. 143-156
    • Savina, A.1    Amigorena, S.2
  • 52
    • 0001509578 scopus 로고
    • Mammalian nitrate biosynthesis: Mouse macrophages produce nitrite and nitrate in response to Escherichia coli lipo-polysaccharide
    • Stuehr, D. J., and M. A. Marletta. 1985. Mammalian nitrate biosynthesis: mouse macrophages produce nitrite and nitrate in response to Escherichia coli lipo-polysaccharide. Proc. Natl. Acad. Sci. USA 82: 7738-7742.
    • (1985) Proc. Natl. Acad. Sci. USA , vol.82 , pp. 7738-7742
    • Stuehr, D.J.1    Marletta, M.A.2
  • 53
    • 84924228289 scopus 로고    scopus 로고
    • Nitric oxide synthase in innate and adaptive immunity: An update
    • Bogdan, C. 2015. Nitric oxide synthase in innate and adaptive immunity: an update. Trends Immunol. 36: 161-178.
    • (2015) Trends Immunol. , vol.36 , pp. 161-178
    • Bogdan, C.1
  • 56
    • 84886047191 scopus 로고    scopus 로고
    • Photoconvertible pathogen labeling reveals nitric oxide control of Leishmania major infection in vivo via dampening of parasite metabolism
    • Müller, A. J., S. Aeschlimann, R. Olekhnovitch, M. Dacher, G. F. Späth, and P. Bousso. 2013. Photoconvertible pathogen labeling reveals nitric oxide control of Leishmania major infection in vivo via dampening of parasite metabolism. Cell Host Microbe 14: 460-467.
    • (2013) Cell Host Microbe , vol.14 , pp. 460-467
    • Müller, A.J.1    Aeschlimann, S.2    Olekhnovitch, R.3    Dacher, M.4    Späth, G.F.5    Bousso, P.6
  • 57
    • 0032526629 scopus 로고    scopus 로고
    • Macrophage-derived nitric oxide regulates T cell activation via reversible disruption of the Jak3/STAT5 signaling pathway
    • Bingisser, R. M., P. A. Tilbrook, P. G. Holt, and U. R. Kees. 1998. Macrophage-derived nitric oxide regulates T cell activation via reversible disruption of the Jak3/STAT5 signaling pathway. J. Immunol. 160: 5729-5734.
    • (1998) J. Immunol. , vol.160 , pp. 5729-5734
    • Bingisser, R.M.1    Tilbrook, P.A.2    Holt, P.G.3    Kees, U.R.4
  • 58
    • 78651079511 scopus 로고    scopus 로고
    • Naive blood monocytes suppress T-cell function: AA possible mechanism for protection from autoimmunity
    • Slaney, C. Y., A. Toker, A. La Flamme, B. T. Bäckström, and J. L. Harper. 2011. Naive blood monocytes suppress T-cell function: aA possible mechanism for protection from autoimmunity. Immunol. Cell Biol. 89: 7-13.
    • (2011) Immunol. Cell Biol. , vol.89 , pp. 7-13
    • Slaney, C.Y.1    Toker, A.2    La Flamme, A.3    Bäckström, B.T.4    Harper, J.L.5
  • 59
    • 79952200691 scopus 로고    scopus 로고
    • Regulation of lymphocytes by nitric oxide
    • Bogdan, C. 2011. Regulation of lymphocytes by nitric oxide. Methods Mol. Biol. 677: 375-393.
    • (2011) Methods Mol. Biol. , vol.677 , pp. 375-393
    • Bogdan, C.1
  • 60
    • 84897516649 scopus 로고    scopus 로고
    • Cotransplantation with myeloid-derived suppressor cells protects cell transplants: A crucial role of inducible nitric oxide synthase
    • Arakawa, Y., J. Qin, H. S. Chou, S. Bhatt, L. Wang, D. Stuehr, A. Ghosh, J. J. Fung, L. Lu, and S. Qian. 2014. Cotransplantation with myeloid-derived suppressor cells protects cell transplants: a crucial role of inducible nitric oxide synthase. Transplantation 97: 740-747.
    • (2014) Transplantation , vol.97 , pp. 740-747
    • Arakawa, Y.1    Qin, J.2    Chou, H.S.3    Bhatt, S.4    Wang, L.5    Stuehr, D.6    Ghosh, A.7    Fung, J.J.8    Lu, L.9    Qian, S.10
  • 62
    • 65249138393 scopus 로고    scopus 로고
    • Myeloid-derived suppressor cells: Linking inflammation and cancer
    • Ostrand-Rosenberg, S., and P. Sinha. 2009. Myeloid-derived suppressor cells: linking inflammation and cancer. J. Immunol. 182: 4499-4506.
    • (2009) J. Immunol. , vol.182 , pp. 4499-4506
    • Ostrand-Rosenberg, S.1    Sinha, P.2
  • 63
    • 3042521047 scopus 로고    scopus 로고
    • Modulating TH1/TH2 responses with microbes, dendritic cells, and pathogen recognition receptors
    • Pulendran, B. 2004. Modulating TH1/TH2 responses with microbes, dendritic cells, and pathogen recognition receptors. Immunol. Res. 29: 187-196.
    • (2004) Immunol. Res. , vol.29 , pp. 187-196
    • Pulendran, B.1
  • 66
    • 80355146868 scopus 로고    scopus 로고
    • Monocyte recruitment during infection and inflammation
    • Shi, C., and E. G. Pamer. 2011. Monocyte recruitment during infection and inflammation. Nat. Rev. Immunol. 11: 762-774.
    • (2011) Nat. Rev. Immunol. , vol.11 , pp. 762-774
    • Shi, C.1    Pamer, E.G.2


* 이 정보는 Elsevier사의 SCOPUS DB에서 KISTI가 분석하여 추출한 것입니다.