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可溶性因子对人B细胞激活、增殖和分化的调控。

Regulation of human B-cell activation, proliferation, and differentiation by soluble factors.

作者信息

Muraguchi A, Kehrl J H, Butler J L, Fauci A S

出版信息

J Clin Immunol. 1984 Sep;4(5):337-47. doi: 10.1007/BF00917136.

Abstract

This review describes a series of studies performed in our laboratory which have focused on the activation and subsequent proliferation and differentiation of human B lymphocytes. Utilizing polyclonal signals which activate B cells by interacting with their surface membrane Ig, we have examined the events in the transition of a resting B lymphocyte to an Ig-secreting cell. A major theme in these studies is the role of soluble factors in B cell proliferation and B cell differentiation. Specific B cell growth and differentiation factors are described. Data on their sources, biochemical characterization, and methods of assay are included. Additionally, the potential role of interleukin 2 in human B cell function is discussed. The recognition that B cells exist in a variety of activation states and that transition between different states is dependent upon different signals was the impetus for a series of studies which more precisely delineated these states and the signals involved. These findings and the observations from other investigators led to a proposed model of the sequential steps in a factor-dependent B cell differentiation pathway. This model is discussed and related to the mechanisms of T cell activation and growth. Finally, the effects of two pharmacologic agents, glucocorticoids and cyclosporin A, on human B cell function are described and discussed in the context of this model.

摘要

本综述描述了在我们实验室进行的一系列研究,这些研究聚焦于人类B淋巴细胞的激活以及随后的增殖和分化。利用通过与B细胞表面膜免疫球蛋白相互作用来激活B细胞的多克隆信号,我们研究了静息B淋巴细胞向分泌免疫球蛋白细胞转变过程中的各种事件。这些研究的一个主要主题是可溶性因子在B细胞增殖和B细胞分化中的作用。文中描述了特定的B细胞生长和分化因子。还包括了它们的来源、生化特性及检测方法的数据。此外,还讨论了白细胞介素2在人类B细胞功能中的潜在作用。认识到B细胞存在于多种激活状态,且不同状态之间的转变取决于不同信号,这推动了一系列更精确描绘这些状态及相关信号的研究。这些发现以及其他研究者的观察结果,促成了一个关于因子依赖性B细胞分化途径中连续步骤的模型。本文对该模型进行了讨论,并将其与T细胞激活和生长机制相关联。最后,在该模型的背景下描述并讨论了两种药理剂——糖皮质激素和环孢素A对人类B细胞功能的影响。

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