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首页> 外文期刊>Journal of bacteriology >Reaction of Endotoxin and Surfactants I. Physical and Biological Properties of Endotoxin Treated with Sodium Deoxycholate
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Reaction of Endotoxin and Surfactants I. Physical and Biological Properties of Endotoxin Treated with Sodium Deoxycholate

机译:内毒素和表面活性剂的反应I.脱氧胆酸钠处理内毒素的物理和生物学特性

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Ribi, E. (Rocky Mountain Laboratory, Hamilton, Mont.), R. L. Anacker, R. Brown, W. T. Haskins, B. Malmgren, K. C. Milner, and J. A. Rudbach. Reaction of endotoxin and surfactants. I. Physical and biological properties of endotoxin treated with sodium desoxycholate. J. Bacteriol. >92:1493–1509. 1966.—Endotoxins from three species of gram-negative bacteria were shown to be dissociated by the bile salt sodium deoxycholate (NaD) into nontoxic subunits with molecular weights of about 20,000. When the bile salt was removed by dialysis, the subunits reaggregated in an orderly manner to form a relatively uniform population of biologically active endotoxin particles with average molecular weights of 500,000 to 1,000,000. If a small amount of human plasma was added to the dissociated endotoxin before removal of the NaD, reassociation apparently did not occur and the preparation remained nonpyrogenic. However, the plasma protein could subsequently be removed from the endotoxin subunits, and reaggregation to the toxic form would then occur. The studies on the physical nature of endotoxin performed with biophysical solution techniques were supplemented and confirmed by direct examination of the endotoxin polymers by electron microscopy. The results of these studies were consonant with the theory that the biologically active endotoxic elements are composed of micellar aggregates of linear lipopolysaccharide subunits.
机译:里比(Ribi,E.(落基山实验室,汉密尔顿,蒙大拿州),R. L. Anacker,R. Brown,W.T. Haskins,B.内毒素与表面活性剂的反应。 I.用脱氧胆酸钠处理的内毒素的物理和生物学特性。 J.细菌。 > 92: 1493-1509。 1966年。来自三种革兰氏阴性细菌的内毒素被胆汁盐脱氧胆酸钠(NaD)分解为分子量约为20,000的无毒亚基。当通过透析去除胆汁盐时,亚基以有序的方式重新聚集,以形成相对均匀的平均分子量为500,000至1,000,000的生物活性内毒素颗粒群。如果在去除NaD之前将少量的人血浆添加到解离的内毒素中,显然不会发生再结合,并且制剂仍保持无热原性。但是,血浆蛋白可随后从内毒素亚基中去除,然后会重新聚集为有毒形式。通过生物物理溶液技术进行的内毒素物理性质的研究得到补充,并通过电子显微镜直接检查内毒素聚合物而得到证实。这些研究的结果与生物活性内毒素元素由线性脂多糖亚基的胶束聚集体组成的理论相符。

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