Cytotoxicity and Bioremediation of Heavy Metals by Highly Resistant Marine Bacteria

Enas N. Danial, Walaa A Majrashi, Ahlam O. Bin Afif, Ebtehal S Alamri, Entesar M. Alhatimi, Nowayer J. Alghamdi
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引用次数: 1

Abstract

Environmental pollution of heavy metals is increasingly becoming a problem and has become of great concern due to the adverse effects it is causing around the world. These inorganic pollutants are being discarded in our waters, soils and into the atmosphere due to the rapidly growing agriculture and metal industries, improper waste disposal, fertilizers, and pesticides. Pollution in industrial areas is a serious environmental concern. Wastewater containing biotoxic substances of heavy metals in the ecosystem is one of the most important environmental and health challenges in our society. Hence, there is a growing need for the development of novel, efficient, eco-friendly, and cost-effective approach for the remediation of inorganic metals (Cr, Hg, Cd, and Pb) released into the environment and to safeguard the ecosystem. Mercury (Hg), Chromium (Cr), Cadmium (Cd), Review Article Danial et al.; JABB, 24(4): 48-72, 2021; Article no.JABB.68532 49 and lead (Pb) are known to cause damage to living organisms, including human beings. In this regard, recent advances in microbes-base heavy metal have propelled bioremediation as a prospective alternative to conventional techniques. Heavy metals are nonbiodegradable and could be toxic to microbes. Several microorganisms have evolved to develop detoxification mechanisms to counter the toxic effects of these inorganic metals. Several marine bacteria highly resistant and capable of growing at higher concentrations of Hg, Cr, Cd and Pb and to evaluate their potential to detoxify. Their detoxification efficiency for Hg, Cr, Cd and Pb indicates good potential for application in bioremediation of toxic heavy metals.
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高抗性海洋细菌对重金属的细胞毒性及生物修复作用
重金属对环境的污染日益成为一个问题,在世界范围内引起了极大的关注。由于快速发展的农业和金属工业、不当的废物处理、化肥和杀虫剂,这些无机污染物被丢弃在我们的水域、土壤和大气中。工业区的污染是一个严重的环境问题。生态系统中含有重金属生物毒性物质的废水是当今社会面临的最重要的环境和健康挑战之一。因此,开发一种新颖、高效、环保、经济的方法来修复释放到环境中的无机金属(Cr、Hg、Cd和Pb),以保护生态系统的需求日益增长。汞(Hg),铬(Cr),镉(Cd),综述文章丹尼尔等;Jabb, 24(4): 48-72, 2021;文章no.JABB。已知68532 - 49和铅(Pb)会对包括人类在内的生物体造成损害。在这方面,微生物基重金属的最新进展推动了生物修复作为传统技术的一个有前景的替代方案。重金属是不可生物降解的,可能对微生物有毒。一些微生物已经进化出解毒机制来对抗这些无机金属的毒性作用。几种海洋细菌具有高度抗性,能够在较高浓度的汞、铬、镉和铅下生长,并评估它们的解毒潜力。它们对汞、铬、镉和铅的解毒效果良好,在有毒重金属的生物修复中具有良好的应用潜力。
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