박사

Heterogenous nature of antigen presenting cells in the peritoneal cavity

손모아 2019년
논문상세정보
' Heterogenous nature of antigen presenting cells in the peritoneal cavity' 의 주제별 논문영향력
논문영향력 선정 방법
논문영향력 요약
주제
  • CD8 T cells
  • CD8 T세포
  • antigen presenting cells
  • dendritic cells
  • macrophages
  • peritoneal cavity
  • 대식세포
  • 복강
  • 수지상세포
  • 항원제시능세포
동일주제 총논문수 논문피인용 총횟수 주제별 논문영향력의 평균
185 0

0.0%

' Heterogenous nature of antigen presenting cells in the peritoneal cavity' 의 참고문헌

  • Yen HR, Harris TJ, Wada S, Grosso JF, Getnet D, Goldberg MV, et al. Tc17 CD8 T cells: functional plasticity and subset diversity. J Immunol 2009;183:7161-8.
  • Wynn TA, Chawla A, Pollard JW. Macrophage biology in development, homeostasis and disease. Nature 2013;496:445-55.
  • Veldhoen M, Hocking RJ, Atkins CJ, Locksley RM, Stockinger B. TGFbeta in the context of an inflammatory cytokine milieu supports de novo differentiation of IL-17-producing T cells. Immunity 2006;24:179-89.
  • Varol C, Mildner A, Jung S. Macrophages: development and tissue specialization. Annu Rev Immunol 2015;33:643-75.
  • Trumpfheller C, Finke JS, L pez CB, Moran TM, Moltedo B, Soares H, et al. Intensified and protective CD4+T cell immunity in mice with anti– dendritic cell HIV gag fusion antibody vaccine. The Journal of Experimental Medicine 2006;203:607-17.
  • Trombetta ES, Mellman I. Cell Biology of Antigen Processing in Vitro and in Vivo. Annual Review of Immunology 2005;23:975-1028.
  • Steinman RM, Witmer MD. Lymphoid dendritic cells are potent stimulators of the primary mixed leukocyte reaction in mice. Proc Natl Acad Sci U S A 1978;75:5132-41.
  • Steinman RM, Cohn ZA. Identification of an novel cell type in peripheral lymphoid organs in mice J Exp Med 1973;137:1142-62.
  • Steinman RM, Cohn ZA. Identification of a Novel Cell Type in Peripheral Lymphoid Organs of Mice: Ii. Functional Properties in Vitro. Journal of Experimental Medicine 1974;139:380-97.
  • Steinman RM, Banchereau J. Taking dendritic cells into medicine. Nature 2007;449:419-26.
  • Siegal FP, Kadowaki N, Shodell M, Fitzgerald-Bocarsly PA, Shah K, Ho S, et al. The Nature of the Principal Type 1 Interferon–Producing Cells in Human Blood. Science 1999;284:1835-7.
  • Sela U, Park CG, Park A, Olds P, Wang S, Steinman RM, et al. Dendritic Cells Induce a Subpopulation of IL-12Rbeta2-Expressing Treg that Specifically Consumes IL-12 to Control Th1 Responses. PLoS One 2016;11:e0146412.
  • Sela U, Olds P, Park A, Schlesinger SJ, Steinman RM. Dendritic cells induce antigen-specific regulatory T cells that prevent graft versus host disease and persist in mice. The Journal of Experimental Medicine 2011;208:2489-96.
  • Seder RA. The presence of interleukin 4 during in vitro priming determines the lymphokine-producing potential of CD4+ T cells from T cell receptor transgenic mice. Journal of Experimental Medicine 1992;176:1091-8.
  • Ryu SH, Na HY, Sohn M, Han SM, Choi W, In H, et al. Reduced expression of granule proteins during extended survival of eosinophils in splenocyte culture with GM-CSF. Immunol Lett 2016;173:7-20.
  • Ryu SH, Na HY, Sohn M, Choi W, In H, Shin HS, et al. Competent antigenpresenting cells are generated from the long-term culture of splenocytes with granulocyte-macrophage colony-stimulating factor. Immunol Lett 2017;188:96-107.
  • Rangel-Moreno J, Moyron-Quiroz JE, Carragher DM, Kusser K, Hartson L, Moquin A, et al. Omental milky spots develop in the absence of lymphoid tissue-inducer cells and support B and T cell responses to peritoneal antigens. Immunity 2009;30:731-43.
  • Onai N, Obata-Onai A, Schmid MA, Ohteki T, Jarrossay D, Manz MG. Identification of clonogenic common Flt3+M-CSFR+ plasmacytoid and conventional dendritic cell progenitors in mouse bone marrow. Nature Immunology 2007;8:1207-16.
  • Okabe Y, Medzhitov R. Tissue-Specific Signals Control Reversible Program of Localization and Functional Polarization of Macrophages. Cell 2014;157:832-44.
  • Nussenzweig M, Steinman RM, Witmer MD, Gutchinov B. A monoclonal antibody specific for mouse dendritic cells. Proc Natl Acad Sci U S A 1982;79:161-65.
  • Nossal G, Abbot A, Mitchell J, Lummus Z. Antigens in Immunity: Xv. Ultrastructural Features of Antigen Capture in Primary and Secondary Lymphoid Follicles. Journal of Experimental Medicine 1968;127:277-90.
  • Niess JH, Brand S, Gu X, Landsman L, Jung S, McCormick BA, et al. CX3CR1-Mediated Dendritic Cell Access to the Intestinal Lumen and Bacterial Clearance. Science 2005:254-8.
  • Naik SH, Sathe P, Park HY, Metcalf D, Proietto AI, Dakic A, et al. Development of plasmacytoid and conventional dendritic cell subtypes from single precursor cells derived in vitro and in vivo. Nat Immunol 2007;8:1217-26.
  • Naik SH, Metcalf D, van Nieuwenhuijze A, Wicks I, Wu L, O'Keeffe M, et al. Intrasplenic steady-state dendritic cell precursors that are distinct from monocytes. Nat Immunol 2006;7:663-71.
  • Na HY, Sohn M, Ryu SH, Choi W, In H, Shin HS, et al. Extended Culture of Bone Marrow with Granulocyte Macrophage-Colony Stimulating Factor Generates Immunosuppressive Cells. Immune Netw 2018;18:e16.
  • Mora JR, Cheng G, Picarella D, Briskin M, Buchanan N, von Andrian UH. Reciprocal and dynamic control of CD8 T cell homing by dendritic cells from skin- and gut-associated lymphoid tissues. J Exp Med 2005;201:303- 16.
  • Miller JC, Brown BD, Shay T, Gautier EL, Jojic V, Cohain A, et al. Deciphering the transcriptional network of the dendritic cell lineage. Nat Immunol 2012;13:888-99.
  • Mildner A, Jung S. Development and function of dendritic cell subsets. Immunity 2014;40:642-56.
  • Mikhak Z, Strassner JP, Luster AD. Lung dendritic cells imprint T cell lung homing and promote lung immunity through the chemokine receptor CCR4. J Exp Med 2013;210:1855-69.
  • Metlay JP. The distinct leukocyte integrins of mouse spleen dendritic cells as identified with new hamster monoclonal antibodies. Journal of Experimental Medicine 1990;171:1753-71.
  • Maldonado-L pez R, Moser M. Dendritic cell subsets and the regulation of Th1/Th2 responses. Seminars in Immunology 2001;13:275-82.
  • Louis C, Cook AD, Lacey D, Fleetwood AJ, Vlahos R, Anderson GP, et al. Specific Contributions of CSF-1 and GM-CSF to the Dynamics of the Mononuclear Phagocyte System. J Immunol 2015;195:134-44.
  • Liu K, Victora GD, Schwickert TA, Guermonprez P, Meredith MM, Yao K, et al. In Vivo Analysis of Dendritic Cell Development and Homeostasis. Science 2009;324:392-7.
  • Lindquist RL, Shakhar G, Dudziak D, Wardemann H, Eisenreich T, Dustin ML, et al. Visualizing dendritic cell networks in vivo. Nature Immunology 2004;5:1243-50.
  • Lim H, Cho M, Choi G, Na H, Chung Y. Dynamic control of Th2 cell responses by STAT3 during allergic lung inflammation in mice. Int Immunopharmacol 2015;28:846-53.
  • Lee H, Ruane D, Law K, Ho Y, Garg A, Rahman A, et al. Phenotype and function of nasal dendritic cells. Mucosal Immunology 2015;8:1083-98.
  • Lagranderie M, Nahori M-a, Balazuc A-M, Kieffer-Biasizzo H, Jose-roberto Lapa E Silva, Genvie’ve Milon, et al. Dendritic cells recruited to the lung shortly after intranasal delivery of Mycobacterium bovis BCG drive the primary immune response towards a type 1 cytokine production. Immunology 2003;108:352-64.
  • Kumamoto Y, Linehan M, Weinstein JS, Laidlaw BJ, Craft JE, Iwasaki A. CD301b(+) dermal dendritic cells drive T helper 2 cell-mediated immunity. Immunity 2013;39:733-43.
  • Kraal G, Brell M, Janse M, Bruin G. Langerhans' cells, veiled cells, and interdigitating cells in the mouse recognized by a monoclonal antibody. Journal of Experimental Medicine 1986;163:981-97.
  • Kool M, Soullie T, van Nimwegen M, Willart MA, Muskens F, Jung S, et al. Alum adjuvant boosts adaptive immunity by inducing uric acid and activating inflammatory dendritic cells. J Exp Med 2008;205:869-82.
  • Kondo M, Weissman IL, Akashi K. Identification of Clonogenic Common Lymphoid Progenitors in Mouse Bone Marrow. Cell 1997;91:661-71.
  • King IL, Kroenke MA, Segal BM. GM-CSF-dependent, CD103+ dermal dendritic cells play a critical role in Th effector cell differentiation after subcutaneous immunization. J Exp Med 2010;207:953-61.
  • Kim TG, Kim SH, Park J, Choi W, Sohn M, Na HY, et al. Skin-Specific CD301b(+) Dermal Dendritic Cells Drive IL-17-Mediated Psoriasis-Like Immune Response in Mice. J Invest Dermatol 2018;138:844-53.
  • Kim KW, Williams JW, Wang YT, Ivanov S, Gilfillan S, Colonna M, et al. MHC II+ resident peritoneal and pleural macrophages rely on IRF4 for development from circulating monocytes. J Exp Med 2016;213:1951-9.
  • Kapsenberg ML. Dendritic-cell control of pathogen-driven T-cell polarization. Nat Rev Immunol 2003;3:984-93.
  • Jiang W, Swiggard WJ, Heufler C, Peng M, Mirza A, Nussenzweig M, et al. The receptor DEC-205 expressed by dendritic cells and thymic epithelial cells is involved in antigen processing Nature 1995;375:151-55.
  • Jeon YT, Na H, Ryu H, Chung Y. Modulation of Dendritic Cell Activation and Subsequent Th1 Cell Polarization by Lidocaine. PLoS One 2015;10:e0139845.
  • Iyoda T, Shimoyama S, Liu K, Omatsu Y, Akiyama Y, Maeda Y, et al. The CD8+Dendritic Cell Subset Selectively Endocytoses Dying Cells in Culture and In Vivo. The Journal of Experimental Medicine 2002;195:1289-302.
  • Iwata M, Hirakiyama A, Eshima Y, Kagechika H, Kato C, Song SY. Retinoic acid imprints gut-homing specificity on T cells. Immunity 2004;21:527-38.
  • Huang FP, Platt N, Wykes M, Major JR, Powell TJ, Jenkins CD, et al. A Discrete Subpopulation of Dendritic Cells Transports Apoptotic Intestinal Epithelial Cells to T Cell Areas of Mesenteric Lymph Nodes. Journal of Experimental Medicine 2000;191:435-44.
  • Hochrein H, Shortman K, Vremec D, Scott B, Hertzog P, O'Keeffe M. Differential Production of IL-12, IFN- , and IFN- by Mouse Dendritic Cell Subsets. The Journal of Immunology 2001;166:5448-55.
  • Helft J, B ttcher J, Chakravarty P, Zelenay S, Huotari J, Schraml Barbara U, et al. GM-CSF Mouse Bone Marrow Cultures Comprise a Heterogeneous Population of CD11c+MHCII+ Macrophages and Dendritic Cells. Immunity 2015;42:1197-211.
  • Heath WR, Belz GT, Behrens GMN, Smith CM, Forehan SP, Parish IA, et al. Cross-presentation, dendritic cell subsets, and the generation of immunity to cellular antigens. Immunological Reviews 2004;199:9-26.
  • Hashimoto D, Miller J, Merad M. Dendritic cell and macrophage heterogeneity in vivo. Immunity 2011;35:323-35.
  • Han SM, Na HY, Ham O, Choi W, Sohn M, Ryu SH, et al. TCF4-Targeting miR-124 is Differentially Expressed amongst Dendritic Cell Subsets. Immune Netw 2016;16:61-74.
  • Guilliams M, Ginhoux F, Jakubzick C, Naik SH, Onai N, Schraml BU, et al. Dendritic cells, monocytes and macrophages: a unified nomenclature based on ontogeny. Nat Rev Immunol 2014;14:571-8.
  • Guilliams M, Crozat K, Henri S, Tamoutounour S, Grenot P, Devilard E, et al. Skin-draining lymph nodes contain dermis-derived CD103(-) dendritic cells that constitutively produce retinoic acid and induce Foxp3(+) regulatory T cells. Blood 2010;115:1958-68.
  • Guermonprez P, Valladeau J, Zitvogel L, Th ry C, Amigorena S. Antigenpresentation Andt Cellstimulation Bydendriticcells. Annual Review of Immunology 2002;20:621-67.
  • Ginhoux F, Tacke F, Angeli V, Bogunovic M, Loubeau M, Dai XM, et al. Langerhans cells arise from monocytes in vivo. Nat Immunol 2006;7:265-73.
  • Ghosn EE, Cassado AA, Govoni GR, Fukuhara T, Yang Y, Monack DM, et al. Two physically, functionally, and developmentally distinct peritoneal macrophage subsets. Proc Natl Acad Sci U S A 2010;107:2568-73.
  • Gautier EL, Shay T, Miller J, Greter M, Jakubzick C, Ivanov S, et al. Geneexpression profiles and transcriptional regulatory pathways that underlie the identity and diversity of mouse tissue macrophages. Nature Immunology 2012;13:1118-28.
  • Flores-Langarica A, Meza-Perez S, Calderon-Amador J, Estrada-Garcia T, MacPherson G, Lebecque S, et al. Network of dendritic cells within the muscular layer of the mouse intestine. Proceedings of the National Academy of Sciences 2005;102:19039-44.
  • Eom J, Yoo J, Kim JJ, Lee JB, Choi W, Park CG, et al. Viperin Deficiency Promotes Polarization of Macrophages and Secretion of M1 and M2 Cytokines. Immune Netw 2018;18:e32.
  • Durai V, Bagadia P, Briseno CG, Theisen DJ, Iwata A, Davidson JTt, et al. Altered compensatory cytokine signaling underlies the discrepancy between Flt3(-/-) and Flt3l(-/-) mice. J Exp Med 2018;215:1417-35.
  • Dudziak D, Kamphorst AO, Heidkamp GF, Buchholz VR, Trumpfheller C, Yamazaki S, et al. Differential Antigen Processing by Dendritic Cell Subsets in Vivo. Science 2007;315:107-11.
  • Dudda JC, Simon JC, Martin S. Dendritic Cell Immunization Route Determines CD8+ T Cell Trafficking to Inflamed Skin: Role for Tissue Microenvironment and Dendritic Cells in Establishment of T Cell-Homing Subsets. The Journal of Immunology 2004;172:857-63.
  • Diao J, Winter E, Cantin C, Chen W, Xu L, Kelvin D, et al. In Situ Replication of Immediate Dendritic Cell (DC) Precursors Contributes to Conventional DC Homeostasis in Lymphoid Tissue. The Journal of Immunology 2006;176:7196-206.
  • DeNucci CC, Pagan AJ, Mitchell JS, Shimizu Y. Control of alpha4beta7 integrin expression and CD4 T cell homing by the beta1 integrin subunit. J Immunol 2010;184:2458-67.
  • Dalod M, Chelbi R, Malissen B, Lawrence T. Dendritic cell maturation: functional specialization through signaling specificity and transcriptional programming. The EMBO Journal 2014;33:1104-16.
  • Cheong C, Matos I, Choi J-H, Dandamudi DB, Shrestha E, Longhi MP, et al. Microbial Stimulation Fully Differentiates Monocytes to DC-SIGN/CD209+ Dendritic Cells for Immune T Cell Areas. Cell 2010;143:416-29.
  • Cassado Ados A, de Albuquerque JA, Sardinha LR, Buzzo Cde L, Faustino L, Nascimento R, et al. Cellular renewal and improvement of local cell effector activity in peritoneal cavity in response to infectious stimuli. PLoS One 2011;6:e22141.
  • Cain DW, O'Koren EG, Kan MJ, Womble M, Sempowski GD, Hopper K, et al. Identification of a Tissue-Specific, C/EBP -Dependent Pathway of Differentiation for Murine Peritoneal Macrophages. The Journal of Immunology 2013;191:4665-75.
  • Brinkman CC, Peske JD, Engelhard VH. Peripheral Tissue Homing Receptor Control of Na ve, Effector, and Memory CD8 T Cell Localization in Lymphoid and Non-Lymphoid Tissues. Frontiers in Immunology 2013;4.
  • Brewig N, Kissenpfennig A, Malissen B, Veit A, Bickert T, Fleischer B, et al. Priming of CD8+ and CD4+ T Cells in Experimental Leishmaniasis Is Initiated by Different Dendritic Cell Subtypes. The Journal of Immunology 2009;182:774-83.
  • Bogunovic M, Ginhoux F, Helft J, Shang L, Hashimoto D, Greter M, et al. Origin of the lamina propria dendritic cell network. Immunity 2009;31:513- 25.
  • Bettelli E, Carrier Y, Gao W, Korn T, Strom TB, Oukka M, et al. Reciprocal developmental pathways for the generation of pathogenic effector TH17 and regulatory T cells. Nature 2006;441:235-8.
  • Bedoret D, Wallemacq H, Marichal T, Desmet C, Calvo FQC, Henry E, et al. Lung interstitial macrophages alter dendritic cell functions to prevent airway allergy in mice. The Journal of clinical investigations 2009;119:3723.
  • Barnden MJ, Allison J, Heath WR, Carbone FR. Defective TCR expression in transgenic mice constructed using cDNA‐based α‐ and β‐chain genes under the control of heterologous regulatory elements. Immunology and cell biology 1998;76:34-40.
  • Bain CC, Hawley CA, Garner H, Scott CL, Schridde A, Steers NJ, et al. Long-lived self-renewing bone marrow-derived macrophages displace embryo-derived cells to inhabit adult serous cavities. Nat Commun 2016;7:ncomms11852.
  • Badovinac VP, Messingham KA, Jabbari A, Haring JS, Harty JT. Accelerated CD8+ T-cell memory and prime-boost response after dendriticcell vaccination. Nat Med 2005;11:748-56.
  • Austyn JM, Gordon S. F4/80, a monoclonal antibody directed specifically against the mouse macrophage. Eur J Immunol 1981;11:805-15.
  • Alloatti Ae, Kotsias F, Magalhaes JG, Amigorena S. Dendritic cell maturation and cross-presentation: timing matters! Immunological Reviews 2016;272:97-108.
  • Akashi K, Traver D, Miyamoto T, Weissman IL. A clonogenic common myeloid progenitor that gives rise to all myeloid lineages. Nature 2000;404:193-7.
  • Ackerman AL, Kyritsis C, Tampe R, Cresswell P. Early phagosomes in dendritic cells form a cellular compartment sufficient for cross presentation of exogenous antigens. Proceedings of the National Academy of Sciences 2003;100:12889-94.
  • A.Hogquist; K, C.Jameson; S, R.Heath; W, L.Howard; J, J.Bevan; M, R.Carbone F. T cell receptor antagonist peptides induce positive selection Cell 1994;76:17-27.