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Rice Hull Ash and Silicic Acid as Adsorbents for Concentration of Bacteriocins

机译:稻壳灰和硅酸作为浓缩细菌素的吸附剂

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摘要

A model procedure has been developed for the rapid extraction of five bacteriocins (nisin, pediocin RS2, leucocin BC2, lactocin GI3, and enterocin CS1) from concentrated freeze-dried crude culture supernatants by adsorption onto acid or alkaline rice hull ash (RHA) or silicic acid (SA). Bacteriocins were adsorbed onto RHA or SA by a pH-dependent method and desorbed by decreasing the pH to 2.5 or 3.0 and heating at 90°C for 5 min. The maximum adsorption and optimal pH range for different bacteriocins were as follows: nisin, 97% at pH 7.0; lactocin GI3, 94% at pH 6.0; pediocin RS2, 97% at pH 8.0 to 9.0; leucocin BC2, 88% at pH 9.0; and enterocin CS1, 94% at pH 5.0. The desorption level of lactocin GI3 or enterocin CS1 from the surfaces of both RHA and SA was 94%, while the desorption level of pediocin RS2 and leucocin BC2 was 50% or less. Nisin was desorbed readily from SA (91%) but not from RHA (50% or less). The adsorption of bacteriocins onto RHA and SA increased with the increasing concentration of bacteriocins. Analysis of the desorbed bacteriocins after dialysis and sodium dodecyl sulfate–16% polyacrylamide gel electrophoresis showed a single band that gave a single inhibition zone when overlaid with Lactobacillus plantarum for detection of lactocin GI3, enterocin CS1, and nisin. RHA appears useful for extraction, concentration, and partial purification of the five bacteriocins.
机译:已经开发了一种模型程序,可通过吸附到酸性或碱性稻壳灰分(RHA)上,从浓缩的冻干粗培养上清液中快速提取五种细菌素(乳酸链球菌素,pediocin RS2,leucocin BC2,lactocin GI3和Enterocin CS1)。硅酸(SA)。通过pH依赖性方法将细菌素吸附到RHA或SA上,并通过将pH降低至2.5或3.0并在90°C加热5分钟来解吸。不同细菌素的最大吸附和最佳pH范围如下:乳酸链球菌肽,pH 7.0时为97%;乳酸菌为97%。乳酸菌GI3,在pH 6.0下为94%; pediocin RS2,pH 8.0至9.0时为97%; leucocin BC2,pH 9.0时为88%;肠球蛋白CS1,pH 5.0时为94%。乳酸菌GI3或肠菌素CS1从RHA和SA的表面的解吸水平为94%,而pediocin RS2和隐色霉素BC2的解吸水平为50%以下。 Nisin易于从SA(91%)中解吸,而不能从RHA(50%或更少)中解吸。随着细菌素浓度的增加,细菌素在RHA和SA上的吸附也增加。透析后解吸的细菌素和十二烷基硫酸钠–16%聚丙烯酰胺凝胶电泳的分析显示,当覆盖有植物乳杆菌以检测乳酸球蛋白GI3,肠球蛋白CS1和乳链菌肽时,该条带具有单个抑制区。 RHA似乎可用于五种细菌素的提取,浓缩和部分纯化。

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