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Gut microbiome modulation during treatment of mucositis with the dairy bacterium Lactococcus lactis and recombinant strain secreting human antimicrobial PAP

机译:用乳杆菌乳酸乳球菌和分泌人抗菌素PAP的重组菌株治疗粘膜炎期间的肠道微生物组调节

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Mucositis is an inflammatory condition of the gut, caused by an adverse effect of chemotherapy drugs, such as 5-fluorouracil (5-FU). In an attempt to develop alternative treatments for the disease, several research groups have proposed the use of probiotics, in particular, Lactic Acid Bacteria (LAB). In this context, the use of recombinant LAB, for delivering anti-inflammatory compounds has also been explored. In previous work, we demonstrated that either Lactococcus lactis NZ9000 or a recombinant strain expressing an antimicrobial peptide involved in human gut homeostasis, the Pancreatitis-associated Protein (PAP), could ameliorate 5-FU-induced mucositis in mice. However, the impact of these strains on the gut microbiota still needs to be elucidated. Therefore, in the present study, we aimed to characterize the effects of both Lactococci strains in the gut microbiome of mice through a 16?S rRNA gene sequencing metagenomic approach. Our data show 5-FU caused a significant decrease in protective bacteria and increase of several bacteria associated with pro-inflammatory traits. The Lactococci strains were shown to reduce several potential opportunistic microbes, while PAP delivery was able to suppress the growth of Enterobacteriaceae during inflammation. We conclude the strain secreting antimicrobial PAP was more effective in the control of 5-FU-dysbiosis.
机译:粘膜炎是肠道炎症,是由化学疗法药物(例如5-氟尿嘧啶(5-FU))的不良作用引起的。为了开发针对该疾病的替代疗法,一些研究小组已提出使用益生菌,尤其是乳酸菌(LAB)。在这种情况下,还研究了重组LAB在递送抗炎化合物中的用途。在以前的工作中,我们证明了乳酸乳球菌NZ9000或表达与人体肠道稳态有关的抗微生物肽的重组菌株,即胰腺炎相关蛋白(PAP),均可改善小鼠的5FU诱导的粘膜炎。但是,这些菌株对肠道菌群的影响仍然需要阐明。因此,在本研究中,我们旨在通过16?S rRNA基因测序宏基因组学方法来表征两种乳球菌菌株在小鼠肠道微生物组中的作用。我们的数据表明5-FU导致保护性细菌的大量减少,以及与促炎性状相关的几种细菌的增加。乳酸球菌菌株显示减少了几种潜在的机会微生物,而PAP传递能够抑制炎症过程中肠杆菌科的生长。我们得出结论,分泌抗微生物PAP的菌株在控制5-FU代谢异常方面更有效。

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