Effect of various cytokine combinations on induction of non-MHC-restricted cytotoxicity.

Lymphokine and cytokine research Pub Date : 1993-06-01
S Morecki, A Nagler, Y Puyesky, C Nabet, R Condiotti, M Pick, S Gan, S Slavin
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Abstract

Efforts were directed to achieve an increased lymphokine-activated non-MHC-restricted killing (LAK) activity greater than that induced by rIL-2 alone. Human peripheral blood (PB) and bone marrow (BM)-derived mononuclear cells (MC) were exposed in vitro to multiple cytokine combinations, including rIL-6, rIL-7, rIFN-alpha and rIFN-gamma in the presence of either suboptimal or optimal doses of rIL-2. Our results have shown that BMMC are a potential source for induction of increased LAK activity upon exposure to multiple cytokine combinations, whereas PBMC could not be successfully stimulated under the same conditions. Fifty-five to 62% of BM-derived samples stimulated with high dose rIL-2 + rIL-7 or rIL-2 + rIL-7 + rIL-6 + rIFN-gamma exhibited a higher degree of cytotoxicity than BM samples stimulated with rIL-2 alone. Exposure of PB-derived large granular lymphocytes (LGL) to various cytokine combinations led to increased proliferation after stimulation with suboptimal dose of rIL-2 in the presence of rIL-6 and rIL-7. This increase was not observed in induction of cytotoxicity. We suggest that BMMC activated by multiple cytokine combinations could play an active role in improving antitumor response in vivo by contributing to the control of minimal residual tumor cell growth, particularly post-BM transplantation.

不同细胞因子组合对诱导非mhc限制性细胞毒性的影响。
我们的目标是提高淋巴因子激活的非mhc限制性杀伤(LAK)活性,其活性大于单独由il -2诱导的LAK活性。人外周血(PB)和骨髓(BM)衍生的单核细胞(MC)在体外暴露于多种细胞因子组合,包括rIL-6、rIL-7、rifn - α和rifn - γ,存在次优或最佳剂量的rIL-2。我们的研究结果表明,暴露于多种细胞因子组合时,BMMC是诱导LAK活性增加的潜在来源,而PBMC在相同条件下无法成功刺激。高剂量rIL-2 + rIL-7或rIL-2 + rIL-7 + rIL-6 + rifn - γ刺激的BM衍生样品中,55%至62%的样品比单独使用rIL-2刺激的BM样品表现出更高程度的细胞毒性。铅衍生的大颗粒淋巴细胞(LGL)暴露于各种细胞因子组合后,在il -6和il -7存在的情况下,以次优剂量的il -2刺激后,导致增殖增加。在细胞毒性诱导中未观察到这种增加。我们认为,由多种细胞因子联合激活的BMMC可以通过控制最小残留肿瘤细胞生长,特别是在bm移植后,在体内发挥积极作用,改善抗肿瘤反应。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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