Consortium of Lactobacillus crispatus 2029 and Ligilactobacillus salivarius 7247 Strains Shows In Vitro Bactericidal Effect on Campylobacter jejuni and, in Combination with Prebiotic, Protects Against Intestinal Barrier Dysfunction.

IF 4.3 2区 医学 Q1 INFECTIOUS DISEASES Antibiotics-Basel Pub Date : 2024-11-28 DOI:10.3390/antibiotics13121143
Vyacheslav M Abramov, Igor V Kosarev, Andrey V Machulin, Evgenia I Deryusheva, Tatiana V Priputnevich, Alexander N Panin, Irina O Chikileva, Tatiana N Abashina, Ashot M Manoyan, Olga E Ivanova, Tigran T Papazyan, Ilia N Nikonov, Nataliya E Suzina, Vyacheslav G Melnikov, Valentin S Khlebnikov, Vadim K Sakulin, Vladimir A Samoilenko, Alexey B Gordeev, Gennady T Sukhikh, Vladimir N Uversky, Andrey V Karlyshev
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引用次数: 0

Abstract

Background/Objectives:Campylobacter jejuni (CJ) is the etiological agent of the world's most common intestinal infectious food-borne disease, ranging from mild symptoms to fatal outcomes. The development of innovative synbiotics that inhibit the adhesion and reproduction of multidrug-resistant (MDR) CJ in animals and humans, thereby preserving intestinal homeostasis, is relevant. We have created a synbiotic based on the consortium of Lactobacillus crispatus 2029 (LC2029), Ligilactobacillus salivarius 7247 (LS7247), and a mannan-rich prebiotic (Actigen®). The purpose of this work was to study the in vitro anti-adhesive and antagonistic activities of the created synbiotic against MDR CJ strains, along with its role in preventing intestinal barrier dysfunction, which disrupts intestinal homeostasis. Methods: A complex of microbiological, immunological, and molecular biological methods was used. The ability of the LC2029 and LS7247 consortium to promote intestinal homeostasis in vitro was assessed by the effectiveness of controlling CJ-induced TLR4 activation, secretion of pro-inflammatory cytokines, development of intestinal barrier dysfunction, and production of intestinal alkaline phosphatase (IAP). Results: All MDR CJ strains showed marked adhesion to human Caco-2, pig IPEC-J2, chicken CPCE, and bovine BPCE enterocytes. For the first time, we found that the prebiotic and cell-free culture supernatant (CFS) from the consortium of LC2029 and LS7247 strains exhibit an additive effect in inhibiting the adhesion of MDR strains of CJ to human and animal enterocytes. CFS from the LC2029 and LS7247 consortium increased the permeability of the outer and inner membranes of CJ cells, which led to extracellular leakage of ATP and provided access to the peptidoglycan of the pathogen for the peptidoglycan-degrading bacteriocins nisin and enterolysin A produced by LS7247. The LC2029 and LS7247 consortium showed a bactericidal effect on CJ strains. Co-cultivation of the consortium with CJ strains resulted in a decrease in the viability of the pathogen by 6 log. CFS from the LC2029 and LS7247 consortium prevented the growth of CJ-induced TLR4 mRNA expression in enterocytes. The LC2029 and LS7247 consortium inhibited a CJ-induced increase in IL-8 and TNF-α production in enterocytes, prevented CJ-induced intestinal barrier dysfunction, maintained the transepithelial electrical resistance of the enterocyte monolayers, and prevented an increase in intestinal paracellular permeability and zonulin secretion. CFS from the consortium stimulated IAP mRNA expression in enterocytes. The LC2029 and LS7247 consortium and the prebiotic Actigen represent a new synergistic synbiotic with anti-CJ properties that prevents intestinal barrier dysfunction and preserves intestinal homeostasis. Conclusions: These data highlight the potential of using a synergistic synbiotic as a preventive strategy for creating feed additives and functional nutrition products based on it to combat the prevalence of campylobacteriosis caused by MDR strains in animals and humans.

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criscrisbacillus 2029和liilactobacillus salivarius 7247联合菌株对空肠弯曲杆菌具有体外杀菌作用,并与益生元联合对肠道屏障功能障碍具有保护作用。
背景/目的:空肠弯曲杆菌(CJ)是世界上最常见的肠道传染性食源性疾病的病原,从轻微症状到致命结果不等。开发能够抑制耐多药(MDR) CJ在动物和人体内的粘附和繁殖,从而保持肠道内稳态的创新合生剂具有重要意义。我们基于crispatus Lactobacillus 2029 (LC2029), liilactobacillus salivarius 7247 (LS7247)和富含甘露聚糖的益生元(Actigen®)的联盟创建了一种合成菌。本研究的目的是研究所制备的合成物对MDR CJ菌株的体外抗黏附和拮抗活性,以及其在预防肠道屏障功能障碍(破坏肠道内稳态)中的作用。方法:采用微生物学、免疫学和分子生物学的综合方法。通过控制cj诱导的TLR4激活、促炎细胞因子分泌、肠道屏障功能障碍的发生和肠道碱性磷酸酶(IAP)的产生,来评估LC2029和LS7247联合体体外促进肠道内稳态的能力。结果:所有MDR CJ菌株对人Caco-2、猪IPEC-J2、鸡CPCE和牛BPCE肠细胞均有明显粘附。本研究首次发现LC2029和LS7247菌株联合培养的益生元和无细胞培养上清(CFS)对抑制耐多药CJ菌株对人和动物肠细胞的粘附具有加性作用。LC2029和LS7247的CFS增加了CJ细胞内外膜的通透性,导致ATP在细胞外渗漏,并为LS7247产生的降解肽聚糖的细菌素nisin和肠溶素A提供了接近病原体肽聚糖的途径。LC2029和LS7247组合对CJ菌株有一定的杀菌作用。该菌群与CJ菌群共培养,病原菌活力降低6倍。LC2029和LS7247财团的CFS可阻止cj诱导的肠细胞TLR4 mRNA表达的增长。LC2029和LS7247联合抑制cj诱导的肠细胞IL-8和TNF-α产生的增加,阻止cj诱导的肠屏障功能障碍,维持肠细胞单层的经上皮电阻,并阻止肠细胞旁通透性和带蛋白分泌的增加。来自财团的CFS刺激肠细胞中IAP mRNA的表达。LC2029和LS7247联合体以及益生元Actigen代表了一种具有抗cj特性的新型协同合成物,可防止肠道屏障功能障碍并保持肠道内稳态。结论:这些数据突出了使用协同合成菌作为一种预防策略的潜力,可以在此基础上生产饲料添加剂和功能性营养产品,以对抗由耐多药菌株在动物和人类中引起的弯曲菌病的流行。
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来源期刊
Antibiotics-Basel
Antibiotics-Basel Pharmacology, Toxicology and Pharmaceutics-General Pharmacology, Toxicology and Pharmaceutics
CiteScore
7.30
自引率
14.60%
发文量
1547
审稿时长
11 weeks
期刊介绍: Antibiotics (ISSN 2079-6382) is an open access, peer reviewed journal on all aspects of antibiotics. Antibiotics is a multi-disciplinary journal encompassing the general fields of biochemistry, chemistry, genetics, microbiology and pharmacology. Our aim is to encourage scientists to publish their experimental and theoretical results in as much detail as possible. Therefore, there is no restriction on the length of papers.
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