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对细菌脂多糖和胞壁酰二肽的不同进食反应。

Differential feeding responses to bacterial lipopolysaccharide and muramyl dipeptide.

作者信息

Langhans W, Balkowski G, Savoldelli D

机构信息

Institute of Animal Science, Swiss Federal Institute of Technology, Zurich.

出版信息

Am J Physiol. 1991 Sep;261(3 Pt 2):R659-64. doi: 10.1152/ajpregu.1991.261.3.R659.

Abstract

The present study was designed to test whether a tolerance to the hypophagic effects of bacterial lipopolysaccharide (LPS) and muramyl dipeptide (MDP) develops with repeated injections in rats and whether a relationship between the hypophagic effects of both compounds exists. Only the first of three subsequent intraperitoneal injection of LPS (100 micrograms/kg body wt each), given every 2nd day, led to a significant reduction of food intake. In contrast, MDP (1.6 mg/kg body wt) did not lose its hypophagic effect with four subsequent intraperitoneal injections. Furthermore, the LPS tolerance did not alter the hypophagic response to subsequently injected MDP. Likewise, MDP pretreatment did not alter the hypophagic response to LPS. Doses of MDP and LPS that were individually below the threshold for a reliable reduction of food intake (0.4 mg MDP/kg body wt + 25 micrograms LPS/kg body wt) reduced food intake synergistically when injected together. The hypophagia produced by combined injections of MDP plus LPS slowly diminished with repeated injections. The results indicate that separate but interacting mechanisms are involved in the feeding responses to MDP and LPS. The observed synergism between MDP and LPS suggests a synergistic role of bacterial muramyl peptides and LPS in the anorexia during bacterial infections.

摘要

本研究旨在测试大鼠反复注射细菌脂多糖(LPS)和胞壁酰二肽(MDP)后是否会对其食欲减退作用产生耐受性,以及这两种化合物的食欲减退作用之间是否存在关联。每隔一天进行的三次腹腔注射中,只有首次注射LPS(每次100微克/千克体重)会导致食物摄入量显著减少。相比之下,MDP(1.6毫克/千克体重)在随后的四次腹腔注射中并未失去其食欲减退作用。此外,LPS耐受性并未改变对随后注射的MDP的食欲减退反应。同样,MDP预处理也未改变对LPS的食欲减退反应。单独低于可靠减少食物摄入量阈值的MDP和LPS剂量(0.4毫克MDP/千克体重 + 25微克LPS/千克体重)一起注射时会协同减少食物摄入量。MDP加LPS联合注射产生的食欲减退随着反复注射而缓慢减弱。结果表明,对MDP和LPS的摄食反应涉及不同但相互作用的机制。观察到的MDP和LPS之间的协同作用表明细菌胞壁酰肽和LPS在细菌感染期间的厌食症中起协同作用。

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