Maus Marcela V, Kovacs Birgit, Kwok William W, Nepom Gerald T, Schlienger Katia, Riley James L, Allman David, Finkel Terri H, June Carl H
Abramson Family Cancer Research Institute, University of Pennsylvania Cancer Center,University of Pennsylvania, Philadelphia, PA 19104, USA.
J Immunol. 2004 Jun 1;172(11):6675-83. doi: 10.4049/jimmunol.172.11.6675.
To characterize the replicative capacity of human central memory (T(CM)) CD4 T cells, we have developed a defined culture system optimized for the ex vivo expansion of Ag-specific CD4(+) T cells. Artificial APCs (aAPCs) consisting of magnetic beads coated with Abs to HLA class II and a costimulatory Ab to CD28 were prepared; peptide-charged HLA class II tetramers were then loaded on the beads to provide Ag specificity. Influenza-specific DR*0401 CD4 T(CM) were isolated from the peripheral blood of normal donors by flow cytometry. Peptide-loaded aAPC were not sufficient to induce resting CD4 T(CM) to proliferate. In contrast, we found that the beads efficiently promoted the growth of previously activated CD4 T(CM) cells, yielding cultures with >80% Ag-specific CD4 cells after two stimulations. Further stimulation with peptide-loaded aAPC increased purity to >99% Ag-specific T cells. After in vitro culture for 3-12 wk, the flu-specific CD4 T(CM) had surface markers that were generally consistent with an effector phenotype described for CD8 T cells, except for the maintenance of CD28 expression. The T(CM) were capable of 20-40 mean population doublings in vitro, and the expanded cells produced IFN-gamma, IL-2, and TNF-alpha in response to Ag, and a subset of cells also secreted IL-4 with PMA/ionomycin treatment. In conclusion, aAPCs expand T(CM) that have extensive replicative capacity, and have potential applications in adoptive immunotherapy as well as for studying the biology of human MHC class II-restricted T cells.
为了表征人类中枢记忆性(T(CM))CD4 T细胞的复制能力,我们开发了一种经过优化的特定培养系统,用于体外扩增抗原特异性CD4(+) T细胞。制备了由包被有抗II类HLA抗体和抗CD28共刺激抗体的磁珠组成的人工抗原呈递细胞(aAPC);然后将肽负载的II类HLA四聚体加载到磁珠上以提供抗原特异性。通过流式细胞术从正常供体的外周血中分离出流感特异性DR*0401 CD4 T(CM)。肽负载的aAPC不足以诱导静息CD4 T(CM)增殖。相反,我们发现磁珠能有效促进先前活化的CD4 T(CM)细胞的生长,经过两次刺激后产生的培养物中抗原特异性CD4细胞>80%。用肽负载的aAPC进一步刺激可将纯度提高到>99%的抗原特异性T细胞。在体外培养3 - 12周后,流感特异性CD4 T(CM)具有的表面标志物通常与描述的CD8 T细胞效应表型一致,但维持了CD28表达。T(CM)在体外能够进行20 - 40次平均群体倍增,扩增后的细胞在受到抗原刺激时产生IFN-γ、IL-2和TNF-α,并且一部分细胞在用佛波酯/离子霉素处理时也分泌IL-4。总之,aAPC可扩增具有广泛复制能力的T(CM),在过继性免疫治疗以及研究人类MHC II类限制性T细胞生物学方面具有潜在应用价值。
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