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The detection and identification of subpopulations of circulating human lymphocytes, monocytes and neutrophils capable of effecting a mitogen-induced cell-mediated cytotoxic reaction towards erythrocytes of various species.

机译:循环人淋巴细胞,单核细胞和嗜中性粒细胞的亚群的检测和鉴定,这些亚群能够实现有丝分裂原诱导的针对各种物种的红细胞的细胞介导的细胞毒性反应。

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摘要

The mitogen-induced cell-mediated cytotoxic (MICC) reaction was evaluated in terms of its capacity to identify cytotoxic cells among normal human blood leucocytes. Three conventional mitogens were used (phytohaemagglutinin, pokeweed and concanavalin A) and nine different erythrocyte target cells (chicken, horse, human, ox, rabbit, sheep, mouse, rat and guinea-pig). The effector cells investigated were mononuclear cells, monocyte-depleted mononuclear cells and polymorphonuclear leucocytes. Phytohaemagglutinin consistently mediated the lysis of only chicken erythrocytes whereas pokeweed consistently mediated the lysis of rabbit erythrocytes and, to a much lesser degree, chicken and rat erythrocytes. Con A consistently mediated the lysis of chicken, horse, rabbit, guinea-pig and sheep erythrocytes. Irrespective of the target cell used, PHA and Con A facilitated target cell lysis by monocytes and polymorphs and not by lymphocytes which displayed no cytotoxic activity in the presence of these two mitogens. On the other hand, pokeweed-mediated cytolysis of rabbit erythrocyte target cells was induced by lymphocytes in addition to monocytes and polymorphs. Only monocytes were able to lyse chicken erythrocytes in the presence of pokeweed; polymorphs and lymphocytes were inactive. Agglutination or aggregation of the target cells by the mitogen is not a mandatory concomitant of the MICC reaction. Some RBC may be agglutinated by the mitogen without being lysed by effector cells in the presence of the mitogen. The mechanism of mitogen-mediated cytolysis of target cells remains to be elucidated. These results suggest that the MICC assay can be utilized as a probe to permit the selective detection of functionally distinct subpopulations of cytotoxic monocytes, lymphocytes and polymorphs. Whether these cytotoxic cells are identical to, overlap or are distinct from those cells which mediate the NOCC and ADCC cytotoxic reactions remains to be determined.
机译:评估有丝分裂原诱导的细胞介导的细胞毒性(MICC)反应的能力,以鉴定其在正常人血白细胞中的细胞毒性细胞。使用了三种常规的有丝分裂原(植物血凝素,商陆和伴刀豆球蛋白A)和九种不同的红细胞靶细胞(鸡,马,人,牛,兔,绵羊,小鼠,大鼠和豚鼠)。研究的效应细胞是单核细胞,单核细胞耗尽的单核细胞和多形核白细胞。植物血凝素仅持续介导鸡红细胞的裂解,而商陆则持续介导兔红细胞的裂解,而鸡和大鼠的红细胞的裂解程度较小。 Con A持续介导鸡,马,兔,豚鼠和绵羊红细胞的裂解。不管使用哪种靶细胞,PHA和Con A都通过单核细胞和多态性促进淋巴细胞裂解,而在这两种促细胞分裂剂的存在下淋巴细胞则没有细胞毒性。另一方面,除单核细胞和多态性外,淋巴细胞还诱导了商陆介导的兔红细胞靶细胞的细胞溶解。在商陆存在的情况下,只有单核细胞能够裂解鸡的红细胞。多态性和淋巴细胞没有活性。有丝分裂原对靶细胞的凝集或聚集不是MICC反应的强制伴随物。在有丝分裂原存在的情况下,某些红细胞可能会被有丝分裂原凝集而不被效应细胞裂解。有丝分裂原介导的靶细胞细胞溶解的机制仍有待阐明。这些结果表明,MICC测定可以用作探针,以选择性地检测功能不同的细胞毒性单核细胞,淋巴细胞和多态性亚群。这些细胞毒性细胞是否与介导NOCC和ADCC细胞毒性反应的细胞相同,重叠或不同。

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