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引用次数: 0
摘要
叶酸是一种重要的水溶性维生素 B9,无法通过人体功能自然合成。膳食来源或益生菌-叶酸是获取这种有助于 DNA 合成和修复的目标维生素的两种生物模式。益生菌因其不同的健康益处而闻名,并引起了人们的极大兴趣。特别是能产生叶酸的微生物菌株为提高叶酸水平提供了一种很有前景的方法。值得注意的是,产生叶酸的益生菌株包括乳杆菌、乳球菌、双歧杆菌和链球菌。作为一种新兴的健康益处来源,产生叶酸的益生菌有助于改善肠道微生物群,从而促进人体的整体健康。另一方面,化学合成的叶酸缺乏吸收、转化和排泄功能,因此并不十分有利。因此,使用微生物叶酸更安全,因为它易于吸收,并能减少严重的副作用。本综述主要关注叶酸一碳代谢、叶酸对人体健康的意义、叶酸缺乏和吸收不良、不良影响、益生菌菌株合成叶酸以及毒理学影响。特别是,这些益生菌株的有益作用被发现与多种疾病的治疗应用有关,如自身免疫性疾病、代谢紊乱、心血管疾病(CVDs)、伤口愈合、药物输送和癌症。
Folate from probiotic bacteria and its therapeutic applications
Folate, an essential water soluble vitamin B9 that cannot be synthesized naturally by the bodily function. Dietary sources or probiotic-folates are the two biological modes for acquiring the target vitamin which aids DNA synthesis and repair. Probiotics are known for their divergent health benefits and have garnered significant interest. Particularly in microbial strains that produce folate offers a promising way to enhance the level of folate. Notably, folate-producing probiotic strain includes Lactiplantibacillus, Lactococcus, Bifidobacterium, and Streptococcus. As an emerging source of health benefits, folate producing probiotics helps in improving the gut microbiota for overall well-being of human body. On the other side, chemically synthesized folic acid were not highly advantageous as they lacks absorption, conversion and excretion. Hence, usage of microbial-folate are safer as it can easily undergo absorption and reduces severe side effects. The present review mainly focus on folate one-carbon metabolism, its significance in human health, folate deficiency and malabsorption, adverse effects and folate synthesis from probiotic bacterial strains, and also toxicological impacts. In particular, the beneficiary role of these probiotic strains were found to be associated with therapeutic applications in several diseases such as autoimmune disorder, metabolic disorders, and cardiovascular diseases (CVDs), wound healing, drug delivery and cancer.
期刊介绍:
Research papers must make a significant and original contribution to
microbiology and be of interest to a broad readership. The results of any
experimental approach that meets these objectives are welcome, particularly
biochemical, molecular genetic, physiological, and/or physical investigations into
microbial cells and their interactions with their environments, including their eukaryotic hosts.
Mini-reviews in areas of special topical interest and papers on medical microbiology, ecology and systematics, including description of novel taxa, are also published.
Theoretical papers and those that report on the analysis or ''mining'' of data are
acceptable in principle if new information, interpretations, or hypotheses
emerge.