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首页> 外文期刊>Journal of Clinical Microbiology >Ultrafiltration to reject human interleukin-1-inducing substances derived from bacterial cultures.
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Ultrafiltration to reject human interleukin-1-inducing substances derived from bacterial cultures.

机译:超滤可拒绝源自细菌培养物的人白介素-1诱导物质。

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Interleukin-1 (IL-1), a polypeptide cytokine, is an important mediator of host responses to infection and injury. Picogram per milliliter concentrations of bacterial products (endo- or exotoxins) stimulate human monocytes to produce IL-1 in vitro. The design of this study was based on the clinical model of bacterial contamination of fluid intended to be directly injected into humans. Physiologic saline contaminated with bacterial toxins was passed through a hollow fiber ultrafilter, and the ultrafiltrates were tested for their ability to induce human IL-1 production. The ultrafiltrates were added directly to freshly obtained human blood mononuclear cells, and after 24 h of incubation the supernatant media were assayed for the presence of IL-1. The results indicate that the IL-1-inducing material(s) present in bacterial cultures of gram-negative organisms is rejected by a factor of 100 to 100,000 by molecular size exclusion and by absorption; rejection is sustained for at least 32 liters of fluid; the rejection of Limulus-reactive material by the ultrafilter is greater for purified endotoxin than for native endotoxins derived from live bacterial cultures; and nonendotoxin IL-1-inducing toxins (molecular weight, 24,000) from Staphylococcus aureus are not rejected or absorbed. These results demonstrate that there is a considerable margin of safety with the ultrafiltration method and that it can be applied to clinical situations.
机译:白细胞介素-1(IL-1),一种多肽细胞因子,是宿主对感染和损伤反应的重要介体。每毫升细菌制品(内毒素或外毒素)浓度的皮克刺激人单核细胞在体外产生IL-1。这项研究的设计基于旨在直接注入人体的液体细菌污染的临床模型。使被细菌毒素污染的生理盐水通过中空纤维超滤器,并测试超滤液诱导人IL-1产生的能力。将超滤液直接添加到新鲜获得的人血单核细胞中,孵育24小时后,分析上清液中IL-1的存在。结果表明存在于革兰氏阴性生物细菌培养物中的IL-1诱导物质通过分子大小排阻和吸收被排斥100到100,000。至少32升液体的排异作用得以维持;纯化后的内毒素对Li反应物质的排斥作用要比活细菌培养物中的天然内毒素要高。金黄色葡萄球菌的非内毒素IL-1诱导毒素(分子量24,000)不会被拒绝或吸收。这些结果表明,超滤方法具有相当大的安全性余量,并且可以应用于临床。

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