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Identification of Key Factors Involved in the Biosorption of Patulin by Inactivated Lactic Acid Bacteria (LAB) Cells

机译:失活的乳酸菌(LAB)细胞参与的棒曲蛋白生物吸附的关键因素的确定。

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摘要

The purpose of this study was to identify the key factors involved in patulin adsorption by heat-inactivated lactic acid bacteria (LAB) cells. For preventing bacterial contamination, a sterilization process was involved in the adsorption process. The effects of various physical, chemical, and enzymatic pre-treatments, simultaneous treatments, and post-treatments on the patulin adsorption performances of six LAB strains were evaluated. The pre-treated cells were characterized by scanning electron microscopy (SEM). Results showed that the removal of patulin by viable cells was mainly based on adsorption or degradation, depending on the specific strain. The adsorption abilities were widely increased by NaOH and esterification pre-treatments, and reduced by trypsin, lipase, iodate, and periodate pre-treatments. Additionally, the adsorption abilities were almost maintained at pH 2.2–4.0, and enhanced significantly at pH 4.0–6.0. The effects of sodium and magnesium ions on the adsorption abilities at pH 4 were slight and strain-specific. A lower proportion of patulin was released from the strain with higher adsorption ability. Analyses revealed that the physical structure of peptidoglycan was not a principal factor. Vicinal OH and carboxyl groups were not involved in patulin adsorption, while alkaline amino acids, thiol and ester compounds were important for patulin adsorption. Additionally, besides hydrophobic interaction, electrostatic interaction also participated in patulin adsorption, which was enhanced with the increase in pH (4.0–6.0).
机译:这项研究的目的是确定热灭活的乳酸菌(LAB)细胞参与棒曲霉素吸附的关键因素。为了防止细菌污染,吸附过程涉及灭菌过程。评估了各种物理,化学和酶促预处理,同时处理和后处理对6种LAB菌株棒曲霉素吸附性能的影响。通过扫描电子显微镜(SEM)表征预处理的细胞。结果表明,取决于特定菌株,活细胞对棒曲霉素的去除主要基于吸附或降解。 NaOH和酯化预处理大大提高了吸附能力,而胰蛋白酶,脂肪酶,碘酸盐和高碘酸盐预处理则降低了吸附能力。另外,吸附能力在pH 2.2-4.0时几乎保持不变,在pH 4.0-6.0时明显提高。钠和镁离子对pH 4的吸附能力的影响很小,且具有应变特异性。从菌株中释放出较低比例的棒曲霉素,具有较高的吸附能力。分析表明,肽聚糖的物理结构不是主要因素。邻羟基羟基和羧基不参与巡视蛋白的吸附,而碱性氨基酸,巯基和酯类化合物对巡视蛋白的吸附则很重要。另外,除了疏水相互作用外,静电相互作用还参与了棒曲霉素的吸附,随着pH值的升高(4.0-6.0),静电相互作用也增强了。

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