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首页> 外文期刊>International Journal of Food Microbiology >Lactobacilli as multifaceted probiotics with poorly disclosed molecular mechanisms.
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Lactobacilli as multifaceted probiotics with poorly disclosed molecular mechanisms.

机译:乳酸杆菌是一种多方面的益生菌,其分子机理尚未公开。

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摘要

Lactic acid bacteria and more particularly lactobacilli have been used for the production of fermented foods for centuries. Several lactobacilli have been recognized as probiotics due to their wide range of health-promoting effects in humans. However, little is known about the molecular mechanisms underpinning their probiotic functions. Here we reviewed the main beneficial effects of lactobacilli and discussed, when the information is available, the molecular machinery involved in their probiotic function. Among the beneficial effects, lactobacilli can improve digestion, absorption and availability of nutrients. As an example, some strains are able to degrade carbohydrates such as lactose or alpha -galactosides that may cause abdominal pain. Furthermore, they can hydrolyze compounds that limit the bioavailability of minerals like tannin and phytate due to tannin acylhydrolase and phytase activities. In addition, it was shown that some lactobacilli strains can improve mineral absorption in Caco-2 cells. Lactobacilli can also contribute to improve the nutritional status of the host by producing B group vitamins. More recently, the role of lactobacilli in energy homeostasis, particularly in obese patients, is the object of an increased interest. Lactobacilli are also involved in the prevention of diseases. They have potential to prevent carcinogenesis through the modulation of enzymes involved in the xenobiotic pathway, and may prevent cardiovascular diseases such as hypertension through the production of a bioactive peptide that may have angiotensin converting enzyme inhibitor activity. Lactobacilli are increasingly studied for the treatment of inflammatory bowel diseases and exhibit interesting potential in the reduction of pain perception. The ability of some strains to bind to intestinal cells, their pathogen-associated molecular patterns and the metabolites they produce confer interesting immunomodulatory effects. Finally, pathogenic fungi, virus or bacteria can be inhibited by probiotics. They can reinforce the intestinal barrier, simply occupying the ecological niche, or they can have an active role by synthesizing various metabolites inhibiting pathogen development. Lactobacilli have a long standing history with foods and humans but comparatively, their history as probiotics is recent. Their effects are investigated in in vitro and in vivo models leading sometimes to contradictory or controversial results that make necessary final demonstrations through clinical trials. Research on molecular mechanisms involved in the beneficial effects reviewed here are necessary for a better understanding of these effects, but could also lead to the development of molecular tools to help the screening of the probiotic potential of lactobacilli that are common inhabitants of numerous fermented foods around the world.
机译:几个世纪以来,乳酸菌,尤其是乳酸菌已经用于生产发酵食品。几种乳酸菌由于其对人类健康的广泛促进作用而被公认为益生菌。但是,关于支撑其益生菌功能的分子机制知之甚少。在这里,我们回顾了乳杆菌的主要有益作用,并在可获得信息时讨论了其益生菌功能涉及的分子机制。在有益效果中,乳酸菌可以改善营养的消化,吸收和利用。例如,一些菌株能够降解可能引起腹痛的碳水化合物,例如乳糖或α-半乳糖苷。此外,由于单宁的酰基水解酶和植酸酶的活性,它们可以水解限制矿物质(如单宁和植酸)生物利用度的化合物。另外,已经显示一些乳酸杆菌菌株可以改善Caco-2细胞中的矿物质吸收。乳酸杆菌还可以通过产生B组维生素来帮助改善宿主的营养状况。最近,人们越来越关注乳酸菌在能量稳态中的作用,特别是在肥胖患者中。乳酸杆菌也参与疾病的预防。它们具有通过调节异种生物途径中所涉及的酶来防止癌变的潜力,并且可以通过产生可能具有血管紧张素转化酶抑制剂活性的生物活性肽来预防心血管疾病,例如高血压。越来越多地研究乳杆菌用于治疗炎症性肠病,并且在减轻疼痛感方面显示出令人感兴趣的潜力。一些菌株与肠细胞结合的能力,其病原体相关的分子模式以及它们产生的代谢产物赋予了有趣的免疫调节作用。最后,致病性真菌,病毒或细菌可以被益生菌抑制。它们可以增强肠道屏障,仅占据生态位,或者可以通过合成多种抑制病原体发育的代谢物发挥积极作用。乳酸杆菌与食物和人类有着悠久的历史,但是相对而言,它们作为益生菌的历史却是最近的。在体外和体内模型中研究了它们的作用,有时导致矛盾或有争议的结果,这些结果需要通过临床试验进行必要的最终论证。为了更好地理解这些作用,需要对参与此处有益作用的分子机制进行研究,但也可能导致开发分子工具以帮助筛选乳酸菌的益生菌潜力,而乳酸菌是许多发酵食品中常见的居民世界。

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