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通过表达单个HLA等位基因的人工抗原呈递细胞快速扩增巨细胞病毒特异性细胞毒性T淋巴细胞。

Rapid expansion of cytomegalovirus-specific cytotoxic T lymphocytes by artificial antigen-presenting cells expressing a single HLA allele.

作者信息

Papanicolaou Genovefa A, Latouche Jean-Baptiste, Tan Cuiwen, Dupont Jakob, Stiles Jeffrey, Pamer Eric G, Sadelain Michel

机构信息

Department of Medicine, Memorial Sloan Kettering Cancer Center, New York, NY, USA.

出版信息

Blood. 2003 Oct 1;102(7):2498-505. doi: 10.1182/blood-2003-02-0345. Epub 2003 Jun 12.

Abstract

Cytomegalovirus (CMV) is a major threat in patients undergoing allogeneic bone marrow transplantation. The adoptive transfer of CMV-specific cytotoxic T lymphocytes (CTLs) expanded from the blood of CMV-seropositive donors has been shown to effectively control CMV infection. However, the requirement for safe and effective antigen-presenting cells (APCs) for each patient precludes broad applicability of this successful form of therapy. Here we analyze the ability of artificial APCs (AAPCs) to activate and expand CMV-specific CTLs from peripheral blood of seropositive HLA A2.1+ donors. We demonstrate that AAPCs expressing the CMV P495 peptide or the full-length pp65 protein stimulate P495-specific CTLs at least as effectively as autologous, peptide-pulsed, peripheral blood mononuclear cells or EBV-transformed B cells. Starting from 100 mL of blood, the AAPCs reliably yield clinically relevant CTL numbers after a single stimulation. CTLs activated on AAPCs effectively kill CMV-infected fibroblasts and have a Tc1 memory effector phenotype identical to that of CTLs generated with autologous APCs. AAPCs thus offer a rapid, controlled, convenient, and highly reproducible system for expanding CMV-specific CTLs. Furthermore, the CTL expansion obtained with AAPCs encoding full-length pp65 indicates that AAPCs may be used to present known as well as unknown CTL epitopes in the context of the AAPC's HLA.

摘要

巨细胞病毒(CMV)是接受异基因骨髓移植患者面临的主要威胁。从CMV血清反应阳性供者血液中扩增的CMV特异性细胞毒性T淋巴细胞(CTL)的过继转移已被证明可有效控制CMV感染。然而,为每位患者提供安全有效的抗原呈递细胞(APC)的要求限制了这种成功治疗形式的广泛应用。在此,我们分析了人工APC(AAPC)激活并扩增血清反应阳性HLA A2.1+供者外周血中CMV特异性CTL的能力。我们证明,表达CMV P495肽或全长pp65蛋白的AAPC刺激P495特异性CTL的效果至少与自体肽脉冲外周血单个核细胞或EBV转化的B细胞一样有效。从100毫升血液开始,AAPC在单次刺激后可可靠地产生临床相关数量的CTL。在AAPC上激活的CTL可有效杀伤CMV感染的成纤维细胞,并且具有与用自体APC产生的CTL相同的Tc1记忆效应表型。因此,AAPC为扩增CMV特异性CTL提供了一个快速、可控、方便且高度可重复的系统。此外,用编码全长pp65的AAPC获得的CTL扩增表明,AAPC可用于在AAPC的HLA背景下呈递已知以及未知的CTL表位。

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