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免疫调节药物在感染预防和治疗中的实验及临床应用。

The experimental and clinical use of immune-modulating drugs in the prophylaxis and treatment of infections.

作者信息

Drews J

出版信息

Infection. 1984 Mar-Apr;12(2):157-66. doi: 10.1007/BF01641705.

Abstract

Therapeutic agents capable of stimulating immune responses could be of great value in the prophylaxis and treatment of infectious diseases. Three classes of compounds, each representing a separate approach to the goal of immune stimulation, are discussed with respect to recent experimental and clinical findings. The action of microbial structures and their derivatives can be understood on the basis of "acquired cellular immunity", a phenomenon first described in connection with infections by mycobacteria and other intracellular organisms. In contrast, there is hardly a common denominator for synthetic compounds which are currently used as immune-stimulatory agents. Substances which influence purine metabolism in lymphocytes on the one hand and histamine H2 blockers such as cimetidine on the other hand seem to represent the most promising developments in this field to date. Products of immune cells such as transfer factor and lymphokines form the third and possibly most important group of immune-stimulating agents. Current experimental and clinical trends in this field are briefly described. It is suggested that the delineation of the mechanism of action of lymphokines will open the door to the identification or synthesis of artificial agonists and antagonists as has been the case in the pharmacology of the endocrine and nervous systems.

摘要

能够刺激免疫反应的治疗剂在传染病的预防和治疗中可能具有巨大价值。根据最近的实验和临床研究结果,讨论了三类化合物,每一类都代表了实现免疫刺激目标的一种不同方法。微生物结构及其衍生物的作用可以基于“获得性细胞免疫”来理解,这是一种最初在与分枝杆菌和其他细胞内生物体感染相关的研究中描述的现象。相比之下,目前用作免疫刺激剂的合成化合物几乎没有共同的特征。一方面影响淋巴细胞嘌呤代谢的物质,另一方面如西咪替丁等组胺H2阻滞剂,似乎代表了该领域迄今为止最有前景的进展。免疫细胞产物如转移因子和淋巴因子构成了第三类,也可能是最重要的一类免疫刺激剂。本文简要描述了该领域当前的实验和临床趋势。有人认为,淋巴因子作用机制的阐明将为鉴定或合成人工激动剂和拮抗剂打开大门,就像内分泌和神经系统药理学领域那样。

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