Department of Biotechnology, Himachal Pradesh University, Summer Hill, Shimla, 171005, Himachal Pradesh, India.
Department of Biosciences, Himachal Pradesh University, Summer Hill, Shimla, 171005, Himachal Pradesh, India.
Probiotics Antimicrob Proteins. 2024 Dec;16(6):1937-1953. doi: 10.1007/s12602-024-10281-9. Epub 2024 May 11.
Heavy metal pollution is a significant global health concern, posing risks to both the environment and human health. Exposure to heavy metals happens through various channels like contaminated water, food, air, and workplaces, resulting in severe health implications. Heavy metals also disrupt the gut's microbial balance, leading to dysbiosis characterized by a decrease in beneficial microorganisms and proliferation in harmful ones, ultimately exacerbating health problems. Probiotic microorganisms have demonstrated their ability to adsorb and sequester heavy metals, while their exopolysaccharides (EPS) exhibit chelating properties, aiding in mitigating heavy metal toxicity. These beneficial microorganisms aid in restoring gut integrity through processes like biosorption, bioaccumulation, and biotransformation of heavy metals. Incorporating probiotic strains with high affinity for heavy metals into functional foods and supplements presents a practical approach to mitigating heavy metal toxicity while enhancing gut health. Utilizing probiotic microbiota and their exopolysaccharides to address heavy metal toxicity offers a novel method for improving human health through modulation of the gut microbiome. By combining probiotics and exopolysaccharides, a distinctive strategy emerges for mitigating heavy metal toxicity, highlighting promising avenues for therapeutic interventions and health improvements. Further exploration in this domain could lead to groundbreaking therapies and preventive measures, underscoring probiotic microbiota and exopolysaccharides as natural and environmentally friendly solutions to heavy metal toxicity. This, in turn, could enhance public health by safeguarding the gut from environmental contaminants.
重金属污染是一个严重的全球健康问题,对环境和人类健康都构成了风险。人们通过受污染的水、食物、空气和工作场所等多种途径接触重金属,从而导致严重的健康问题。重金属还会破坏肠道微生物的平衡,导致微生物失调,有益微生物减少,有害微生物增多,最终使健康问题恶化。益生菌微生物已被证明具有吸附和螯合重金属的能力,而其胞外多糖(EPS)具有螯合特性,有助于减轻重金属毒性。这些有益微生物通过生物吸附、生物积累和重金属的生物转化等过程,帮助恢复肠道完整性。将对重金属具有高亲和力的益生菌菌株纳入功能性食品和补充剂中,是减轻重金属毒性同时增强肠道健康的一种实用方法。利用益生菌菌群及其胞外多糖来解决重金属毒性问题,为通过调节肠道微生物组来改善人类健康提供了一种新方法。通过将益生菌和胞外多糖结合起来,可以形成一种独特的减轻重金属毒性的策略,为治疗干预和健康改善提供了有前景的途径。在这一领域的进一步探索可能会带来开创性的治疗方法和预防措施,凸显出益生菌菌群和胞外多糖作为应对重金属毒性的天然、环保解决方案的重要性。这反过来又可以通过保护肠道免受环境污染物的侵害,来增强公共卫生。