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与抗原性MHC I类复合物偶联的抗肿瘤抗体在体内的靶向作用可诱导已建立的同基因肿瘤移植瘤发生特异性生长抑制和消退。

In vivo targeting of an anti-tumor antibody coupled to antigenic MHC class I complexes induces specific growth inhibition and regression of established syngeneic tumor grafts.

作者信息

Donda Alena, Cesson Valérie, Mach Jean-Pierre, Corradin Giampietro, Primus F James, Robert Bruno

机构信息

Institute of Biochemistry, University of Lausanne, CH-1066 Epalinges, Switzerland.

出版信息

Cancer Immun. 2003 Aug 14;3:11.

PMID:12916958
Abstract

The concept of antibody-mediated targeting of antigenic MHC/peptide complexes on tumor cells in order to sensitize them to T-lymphocyte cytotoxicity represents an attractive new immunotherapy strategy. In vitro experiments have shown that an antibody chemically conjugated or fused to monomeric MHC/peptide can be oligomerized on the surface of tumor cells, rendering them susceptible to efficient lysis by MHC-peptide restricted specific T-cell clones. However, this strategy has not yet been tested entirely in vivo in immunocompetent animals. To this aim, we took advantage of OT-1 mice which have a transgenic T-cell receptor specific for the ovalbumin (ova) immunodominant peptide (257-264) expressed in the context of the MHC class I H-2K(b). We prepared and characterized conjugates between the Fab' fragment from a high-affinity monoclonal antibody to carcinoembryonic antigen (CEA) and the H-2K(b) /ova peptide complex. First, we showed in OT-1 mice that the grafting and growth of a syngeneic colon carcinoma line transfected with CEA could be specifically inhibited by systemic injections of the conjugate. Next, using CEA transgenic C57BL/6 mice adoptively transferred with OT-1 spleen cells and immunized with ovalbumin, we demonstrated that systemic injections of the anti-CEA-H-2K(b) /ova conjugate could induce specific growth inhibition and regression of well-established, palpable subcutaneous grafts from the syngeneic CEA-transfected colon carcinoma line. These results, obtained in a well-characterized syngeneic carcinoma model, demonstrate that the antibody-MHC/peptide strategy can function in vivo. Further preclinical experimental studies, using an anti-viral T-cell response, will be performed before this new form of immunotherapy can be considered for clinical use.

摘要

抗体介导靶向肿瘤细胞上的抗原性MHC/肽复合物,使其对T淋巴细胞细胞毒性敏感的概念,代表了一种有吸引力的新免疫治疗策略。体外实验表明,化学偶联或融合到单体MHC/肽上的抗体可在肿瘤细胞表面寡聚化,使其易被MHC-肽限制性特异性T细胞克隆有效裂解。然而,该策略尚未在免疫活性动物体内进行全面测试。为此,我们利用了OT-1小鼠,其具有针对在MHC I类H-2K(b)背景下表达的卵清蛋白(ova)免疫优势肽(257-264)的转基因T细胞受体。我们制备并表征了抗癌胚抗原(CEA)的高亲和力单克隆抗体的Fab'片段与H-2K(b)/ova肽复合物之间的偶联物。首先,我们在OT-1小鼠中表明,全身注射该偶联物可特异性抑制转染CEA的同基因结肠癌细胞系的移植和生长。接下来,使用过继转移OT-1脾细胞并用卵清蛋白免疫的CEA转基因C57BL/6小鼠,我们证明全身注射抗CEA-H-2K(b)/ova偶联物可诱导同基因CEA转染结肠癌细胞系已建立的、可触及的皮下移植物的特异性生长抑制和消退。在特征明确的同基因癌模型中获得的这些结果表明,抗体-MHC/肽策略在体内可以发挥作用。在考虑将这种新的免疫治疗形式用于临床之前,将进行使用抗病毒T细胞反应的进一步临床前实验研究。

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单克隆抗体简介。
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