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[淋巴因子的化学与功能特性]

[Chemical and functional characterization of lymphokines].

作者信息

Sorg C, Michels E, Malorny U

出版信息

Allerg Immunol (Leipz). 1984;30(3):159-68.

PMID:6239526
Abstract

Macrophages are heterogeneous with respect to a number of constitutive and inducible functions. In order to study the underlying biological principle, a bone marrow liquid culture system was adopted in which bone marrow cells proliferate and differentiate into macrophages. It was found that maturing macrophages express various constitutive or inducible functions in an ordered sequence. The kinetics of their appearance and disappearance are dependent on the proliferative activity of macrophages. Macrophages in "late" G-1 of the cell cycle express constitutive functions like plasminogen activator production and are inducible by bacterial lipopolysaccharides, Poly I:C and lymphokines to release interferons. The response to lymphokines like migration inhibitory factor (MIF) and chemotactic factors is also transiently expressed during maturation. Using purified MIF, its influence on proliferation, differentiation and activation of macrophages was investigated. The changes induced were monitored following the expression of marker enzymes and of phenotype associated cell surface antigens using monoclonal antibodies. The results showed that functional changes induced by MIF on macrophages are limited and are not related to certain macrophage activating activities (MAF). As determined by flow cytofluorometry, transglutaminase expression and proliferation is consistently down-regulated by MIFs. This together with the shift and the expression of surface antigens indicates that MIFs provide a differentiation signal for a "young" macrophage to become more mature.

摘要

巨噬细胞在许多组成性和诱导性功能方面具有异质性。为了研究其潜在的生物学原理,采用了一种骨髓液体培养系统,其中骨髓细胞增殖并分化为巨噬细胞。研究发现,成熟的巨噬细胞按有序顺序表达各种组成性或诱导性功能。它们出现和消失的动力学取决于巨噬细胞的增殖活性。处于细胞周期“晚期”G-1期的巨噬细胞表达诸如纤溶酶原激活物产生等组成性功能,并可被细菌脂多糖、聚肌胞苷酸(Poly I:C)和淋巴因子诱导释放干扰素。对诸如迁移抑制因子(MIF)和趋化因子等淋巴因子的反应在成熟过程中也会短暂表达。使用纯化的MIF,研究了其对巨噬细胞增殖、分化和激活的影响。使用单克隆抗体,在标记酶和与表型相关的细胞表面抗原表达后监测诱导的变化。结果表明,MIF对巨噬细胞诱导的功能变化是有限的,并且与某些巨噬细胞激活活性(MAF)无关。通过流式细胞荧光术测定,转谷氨酰胺酶的表达和增殖持续受到MIF的下调。这与表面抗原的变化和表达一起表明,MIF为“年轻”巨噬细胞提供了一个使其变得更加成熟的分化信号。

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