Levitz S M, Dupont M P
Evans Memorial Department of Clinical Research, University Hospital, Boston University Medical Center, Massachusetts 02118.
J Clin Invest. 1993 Apr;91(4):1490-8. doi: 10.1172/JCI116354.
Recently we demonstrated that the nonadherent (to plastic) fraction of human PBMC could be activated by IL-2 to inhibit Cryptococcus neoformans growth. Here we characterize the antifungal effector cells. Depletion by panning of natural killer (NK) (CD16+, CD56+) cells from nylon wool-treated, IL-2-activated PBMC markedly decreased lytic activity against a tumor cell target (K562) but did not affect antifungal activity. Panning out T (CD3+, CD5+) cells enhanced activity against tumor cells but partially abrogated activity against C. neoformans. IL-2-activated T cells of 95% purity, obtained by panning out NK cells from PBMC forming rosettes with sheep erythrocytes, had excellent antifungal activity but suboptimal antitumor activity. The nonrosetted cells (which were virtually free of T cells and enriched for NK cells) had both antitumor and antifungal activity, even if cultured without IL-2. CD4+, CD8+, and CD56+ cells, purified by positive selection by panning, directly inhibited cryptococcal growth. Conjugate formation between fungi and both CD56+ and CD5+ effector cells was demonstrated by videomicroscopy and immunoperoxidase staining. Thus, IL-2-activated T cells and NK cells form conjugates with and directly inhibit the growth of C. neoformans. To our knowledge, these data are the first demonstration of human T cells directly inhibiting growth of a microbial target.
最近我们证明,人外周血单核细胞(PBMC)的非贴壁(于塑料)部分可被白细胞介素-2(IL-2)激活,从而抑制新型隐球菌的生长。在此我们对这些抗真菌效应细胞进行了特性描述。通过淘选法从经尼龙毛处理、IL-2激活的PBMC中去除自然杀伤(NK)(CD16 +、CD56 +)细胞,显著降低了对肿瘤细胞靶标(K562)的裂解活性,但不影响抗真菌活性。淘选去除T(CD3 +、CD5 +)细胞增强了对肿瘤细胞的活性,但部分消除了对新型隐球菌的活性。通过从与绵羊红细胞形成花环的PBMC中淘选去除NK细胞而获得的纯度为95%的IL-2激活T细胞,具有出色的抗真菌活性,但抗肿瘤活性欠佳。未形成花环的细胞(实际上不含T细胞且富含NK细胞)即使在无IL-2培养的情况下也具有抗肿瘤和抗真菌活性。通过淘选进行阳性选择纯化得到的CD4 +、CD8 +和CD56 +细胞可直接抑制隐球菌的生长。通过视频显微镜和免疫过氧化物酶染色证明了真菌与CD56 +和CD5 +效应细胞之间形成了共轭体。因此,IL-2激活的T细胞和NK细胞与新型隐球菌形成共轭体并直接抑制其生长。据我们所知,这些数据首次证明了人类T细胞可直接抑制微生物靶标的生长。