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Utilization of Peptidoglycans from Lactic Acid Bacterial Cell Walls for the Mitigation of Acrylamide and 5-Hydroxymethylfurfural

机译:利用乳酸细菌细胞壁中的肽聚糖减轻丙烯酰胺和 5-羟甲基糠醛

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摘要

Acrylamide (AA) and 5-hydroxymethylfurfural (HMF), which are potentially carcinogenic to humans, are often produced during the hot processing of foods. This study first used a molecular docking model to simulate the binding behavior of four lactic acid bacteria peptidoglycans (PGNs) to AA/HMF, and the binding rate of LAB-based PGNs to AA/HMF was evaluated in vitro. In silico results show that interaction energy is the driving force responsible for the adsorption of LAB-derived PGNs to AA/HMF. In vitro results showed that the PGN of B. lactis B1-04 bound the most AA (28.7%) and HMF (48.0%), followed by L. acidophilus NCFM, B. breve CICC 6079, and L. plantarum CICC 22135. Moreover, an AA/HMF-bound layer on the cell surface of B. lactis B1-04 was observed via AFM and SEM due to adsorption. XPS analysis indicated the removal rate of AA/HMF by selected strains was positively correlated with the proportion of C-O, C=O, and N-H groups of PGNs. The atoms O1, O2, O3, O4, N1, N2, N3, H1, and H2 are involved in the adsorption of LAB-based PGNs to AA/HMF. Thus, the PGNs derived from these four Lactobacillus strains can be regarded as natural adsorbents for the binding of AA/HMF.
机译:丙烯酰胺 (AA) 和 5-羟甲基糠醛 (HMF) 对人类具有潜在致癌性,通常在食品热加工过程中产生。本研究首先使用分子对接模型模拟四种乳酸菌肽聚糖 (PGN) 与 AA/HMF 的结合行为,并在体外评价基于 LAB 的 PGNs 与 AA/HMF 的结合率。计算机结果表明,相互作用能是导致 LAB 衍生的 PGN 吸附到 AA/HMF 的驱动力。体外结果显示,乳双歧杆菌 B1-04 的 PGN 结合最多的 AA (28.7%) 和 HMF (48.0%),其次是嗜酸乳杆菌 NCFM、短双歧杆菌 CICC 6079 和植物乳杆菌 CICC 22135。此外,由于吸附作用,通过 AFM 和 SEM 观察到乳双歧杆菌 B1-04 细胞表面的 AA/HMF 结合层。XPS 分析表明,所选菌株对 AA/HMF 的去除率与 PGNs 的 C-O 、 C=O 和 N-H 组比例呈正相关。原子 O1、O2、O3、O4、N1、N2、N3、H1 和 H2 参与基于 LAB 的 PGN 对 AA/HMF 的吸附。因此,源自这四种乳酸菌菌株的 PGN 可被视为结合 AA/HMF 的天然吸附剂。

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