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首页> 外文期刊>Antonie van Leeuwenhoek >Assessment of tolerance to multistresses and in vitro cell adhesion in genetically modified Lactobacillus plantarum 590
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Assessment of tolerance to multistresses and in vitro cell adhesion in genetically modified Lactobacillus plantarum 590

机译:转基因植物乳杆菌590对多应力耐受性和体外细胞粘附的评估

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Lactobacillus plantarum (Lp) is a lactic acid bacterium that has many excellent traits that meet the needs of industrial production. Genetically modified (GM) Lp590 was obtained from Lp that was modified by the insertion of the gene nisI, which can confer resistance to nisin and play a role as a bio-preservative. Here, explorations were made to assess the safety of GM Lp590 and establish an in vitro evaluation model. The ability of Lp590 to tolerate both environmental stresses (such as temperatures ranging from 52 to 4°C, or exposure to ethanol, oxygen, and osmotic stresses) and gastrointestinal transit was assessed. Lp590 showed a tolerance to 4°C and ethanol (20%) within a period of 240 min that was similar to Lp. Notably, Lp590 can tolerate higher temperature (52°C) and higher levels of H2O2 (2%) and NaCl (4.0 M) than Lp. In contrast, Lp590 has the same gastrointestinal transit tolerance as Lp. In addition, Lp590 can adhere to Caco-2 cells, and it has no adverse effect on the cell membrane in vitro. These results indicate that GM Lp590 has many desirable biological characteristics and has good prospects for industrial applications. A useful and comprehensive exploration has been undertaken to establish a new in vitro evaluation model for genetically modified microorganisms (GMMs).
机译:植物乳杆菌(Lptobacillus plantarum,Lp)是一种乳酸菌,具有许多优良特性,可以满足工业生产的需求。从Lp获得基因修饰(GM)Lp590,该Lp590通过插入nisI基因而被修饰,该基因可以赋予对乳链菌肽的抗性并起生物防腐剂的作用。在这里,进行了探索以评估GM Lp590的安全性并建立了体外评估模型。评估了Lp590耐受环境压力(例如温度范围为52至4°C,或暴露于乙醇,氧气和渗透压)和胃肠道运输的能力。 Lp590在240分钟内显示出对4°C和乙醇(20%)的耐受性,与Lp相似。值得注意的是,与Lp相比,Lp590可以承受更高的温度(52°C)和更高水平的H 2 O 2 (2%)和NaCl(4.0 M)。相反,Lp590具有与Lp相同的胃肠道耐受性。此外,Lp590可以粘附于Caco-2细胞,并且在体外对细胞膜没有不利影响。这些结果表明,GM Lp590具有许多理想的生物学特性,并在工业应用中具有良好的前景。已经进行了有益而全面的探索,以建立转基因微生物(GMM)的新的体外评估模型。

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