Extracted protective antigen of Bordetella pertussis. I. Preparation and properties of the solubilized surface of components.

T. Helting, F. Blackkolb
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引用次数: 3

Abstract

Bordetella pertussis microorganisms were treated with several extracting agents followed by ultracentrifugation to remove particulate matter. Analysis of the resulting supernatants by SDS gel electrophoresis showed one major component after simple salt extraction, and much more complex, although consistent pattern following detergent treatment. The yield of the solubilized protein in detergent extracts exceeded by far the values recorded for salt extracts. In order to prevent irreversible precipitation of the solubilized proteins upon removal of the denaturing agent, a novel procedure was developed. After extraction with urea-salt, the solubilized material was absorbed on a mineral carrier prior to the separation of the denaturing agent. The resulting absorbed vaccine was highly potent in the mouse-protection test, whereas the toxic reactions, elicited upon injection into experimental animals, were reduced in the comparison to the starting material. This diminished reactogenic potential was accompanied by the partial loss of the leukocytosis-promiting factor, whose activity was greatly diminished by urea-salt at alkaline pH-values. The procedure described may be applied to large-scale processing of Bordetella persussis microorganisms. Clinical trials now in progress should confirm or rebut the thesis that increased tolerability of the product, inferred from animal experiments, is reflected by fewer adverse reactions in humans. In the former case, the detergent extract vaccine may constitute a realistic alternative to conventional whole-cell vaccines against whooping-cough.
提取百日咳杆菌保护性抗原。一、组分增溶表面的制备及性能。
用几种萃取剂对百日咳杆菌微生物进行提取,然后进行超离心,去除颗粒物。SDS凝胶电泳分析得到的上清液显示,在简单的盐萃取后,一个主要成分,更复杂,尽管在洗涤剂处理后的模式一致。洗涤剂提取物中溶解蛋白的产率远远超过了盐提取物所记录的值。为了防止变性剂去除后溶解蛋白的不可逆沉淀,开发了一种新的工艺。用尿素盐萃取后,将溶解后的物质吸附在矿物载体上,再分离变性剂。所得的疫苗在小鼠保护试验中具有很强的吸收率,而在注射到实验动物体内时引起的毒性反应与起始材料相比有所减少。这种反应电位的降低伴随着白细胞促进因子的部分丧失,其活性在碱性ph值下被尿素盐大大降低。所描述的程序可应用于大规模处理博德氏菌微生物。目前正在进行的临床试验应证实或反驳以下论点:从动物实验中推断出的产品耐受性增加,反映在人类的不良反应减少。在前一种情况下,洗涤剂提取物疫苗可能构成传统的全细胞百日咳疫苗的现实替代品。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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