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内毒素耐受的机制。3. 持续静脉输注内毒素期间的不应状态。

MECHANISMS OF ENDOTOXIN TOLERANCE. 3. THE REFRACTORY STATE DURING CONTINUOUS INTRAVENOUS INFUSIONS OF ENDOTOXIN.

作者信息

GREISMAN S E, WOODWARD W E

出版信息

J Exp Med. 1965 Jun 1;121(6):911-33. doi: 10.1084/jem.121.6.911.

Abstract

Bacterial endotoxins were administered by continuous intravenous infusions at constant rates to normal man and rabbits. An initial progressive febrile reaction was followed by progressive defervescence to baseline. The resulting pyrogenic refractory state was characterized as follows: (a) reticuloendothelial blockade with thorotrast neither prevented nor reversed its course; (b) passive transfer was unsuccessful with refractory phase plasma; (c) infusions of normal plasma or fresh whole blood failed to restore responsiveness; (d) a minimum of 4 hours of continuous endotoxin infusion was required for full development of unresponsiveness; (e) circulating antibody titers to endotoxin remained unaltered; (f) peripheral leukocytosis appeared; (g) infusion of febrile phase plasma reevoked an immediate, monophasic fever; (h) endotoxinemia could be demonstrated by pyrogen bioassay; (i) 10-fold increases in endotoxin infusion rates reevoked fever; (j) impaired responsiveness extended to heterologous endotoxins; (k) dermal inflammatory responses to endotoxin were suppressed in man while tuberculin reactivity remained unimpaired; dermal inflammatory responses to endotoxin were enhanced in rabbits; and (l) pyrogenic reactivity to endotoxin reappeared within 24 hours in man; refractoriness persisted in rabbits. It is concluded that the pyrogenic refractory state reflects an inability of the host to continue to mobilize endogenous pyrogen during sustained endotoxinemia. Such observations, together with previous studies, are consistent with two distinct immunologic mechanisms of resistance to endotoxin pyrogenicity: (a) desensitization at the cellular level; and (b) elaboration of circulating antibodies which assist reticuloendothelial clearance and destruction of endotoxin. Whereas both such mechanisms may contribute to pyrogenic tolerance, the characteristics of the pyrogenic refractory state suggest the participation only of the former.

摘要

以恒定速率通过持续静脉输注向正常人和兔子给予细菌内毒素。最初出现进行性发热反应,随后逐渐退热至基线。所产生的热原性不应答状态具有以下特征:(a) 用二氧化钍进行网状内皮细胞阻滞既不能预防也不能逆转其病程;(b) 用不应答期血浆进行被动转移未成功;(c) 输注正常血浆或新鲜全血未能恢复反应性;(d) 至少需要连续输注内毒素4小时才能使无反应性充分发展;(e) 循环中内毒素抗体滴度保持不变;(f) 出现外周白细胞增多;(g) 输注发热期血浆可再次引发立即出现的单相发热;(h) 通过热原生物测定可证明存在内毒素血症;(i) 内毒素输注速率增加10倍可再次引发发热;(j) 反应性受损扩展至异源性内毒素;(k) 人对内毒素的皮肤炎症反应受到抑制,而结核菌素反应性未受损;兔子对内毒素的皮肤炎症反应增强;并且(l) 人在24小时内对内毒素的热原反应性再次出现;兔子的不应答状态持续存在。结论是,热原性不应答状态反映了宿主在持续性内毒素血症期间无法继续动员内源性热原。这些观察结果与先前的研究一起,与两种不同的对内毒素热原性的免疫抵抗机制一致:(a) 细胞水平的脱敏;以及(b) 产生循环抗体,协助网状内皮细胞清除和破坏内毒素。虽然这两种机制都可能导致热原耐受性,但热原性不应答状态的特征表明仅前者参与其中。

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