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表达人类白细胞抗原II类分子的人工抗原呈递细胞作为扩增人特异性记忆CD4(+) T细胞的有效工具。

Artificial antigen-presenting cells expressing HLA class II molecules as an effective tool for amplifying human specific memory CD4(+) T cells.

作者信息

Garnier Anthony, Hamieh Mohamad, Drouet Aurélie, Leprince Jérôme, Vivien Denis, Frébourg Thierry, Le Mauff Brigitte, Latouche Jean-Baptiste, Toutirais Olivier

机构信息

Inserm U919, Serine Proteases and Pathophysiology of the Neurovascular Unit, Caen, France.

Université de Caen Basse-Normandie, UFR Médecine, Caen, France.

出版信息

Immunol Cell Biol. 2016 Aug;94(7):662-72. doi: 10.1038/icb.2016.25. Epub 2016 Feb 29.

Abstract

Owing to their multiple immune functions, CD4(+) T cells are of major interest for immunotherapy in chronic viral infections and cancer, as well as for severe autoimmune diseases and transplantation. Therefore, standardized methods allowing rapid generation of a large number of CD4(+) T cells for adoptive immunotherapy are still awaited. We constructed stable artificial antigen-presenting cells (AAPCs) derived from mouse fibroblasts. They were genetically modified to express human leukocyte antigen (HLA)-DR molecules and the human accessory molecules B7.1, Intercellular adhesion molecule-1 (ICAM-1) and lymphocyte function-associated antigen-3 (LFA-3). AAPCs expressing HLA-DR1, HLA-DR15 or HLA-DR51 molecules and loaded with peptides derived from influenza hemagglutinin (HA), myelin basic protein (MBP) or factor VIII, respectively, activated specific CD4(+) T-cell clones more effectively than Epstein-Barr virus (EBV)-transformed B cells. We also showed that AAPCs were able to take up and process whole Ag proteins, and present epitopes to specific T cells. In primary cultures, AAPCs loaded with HA peptide allowed generation of specific Th1 lymphocytes from healthy donors as demonstrated by tetramer and intracellular cytokine staining. Although AAPCs were less effective than autologous peripheral blood mononuclear cells (PBMCs) to stimulate CD4(+) T cells in primary culture, AAPCs were more potent to reactivate and expand memory Th1 cells in a strictly Ag-dependent manner. As the availability of autologous APCs is limited, the AAPC system represents a stable and reliable tool to achieve clinically relevant numbers of CD4(+) T cells for adoptive immunotherapy. For fundamental research in immunology, AAPCs are also useful to decipher mechanisms involved in the development of human CD4 T-cell responses.

摘要

由于其多种免疫功能,CD4(+) T细胞在慢性病毒感染、癌症的免疫治疗以及严重自身免疫性疾病和移植领域备受关注。因此,仍需要能够快速大量产生用于过继性免疫治疗的CD4(+) T细胞的标准化方法。我们构建了源自小鼠成纤维细胞的稳定人工抗原呈递细胞(AAPC)。它们经过基因改造以表达人类白细胞抗原(HLA)-DR分子以及人类辅助分子B7.1、细胞间黏附分子-1(ICAM-1)和淋巴细胞功能相关抗原-3(LFA-3)。分别表达HLA-DR1、HLA-DR15或HLA-DR51分子并负载源自流感血凝素(HA)、髓鞘碱性蛋白(MBP)或因子VIII的肽的AAPC,比爱泼斯坦-巴尔病毒(EBV)转化的B细胞更有效地激活特异性CD4(+) T细胞克隆。我们还表明,AAPC能够摄取和处理完整的抗原蛋白,并将表位呈递给特异性T细胞。在原代培养中,负载HA肽的AAPC能够从健康供体中产生特异性Th1淋巴细胞,四聚体和细胞内细胞因子染色证明了这一点。尽管在原代培养中AAPC刺激CD4(+) T细胞的效果不如自体外周血单核细胞(PBMC),但AAPC以严格的抗原依赖性方式更有效地重新激活和扩增记忆性Th1细胞。由于自体抗原呈递细胞的可用性有限,AAPC系统是一种稳定可靠的工具,可用于过继性免疫治疗以获得临床上相关数量的CD4(+) T细胞。对于免疫学的基础研究,AAPC也有助于解读人类CD4 T细胞反应发生机制。

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