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首页> 外文期刊>Frontiers in Bioengineering and Biotechnology >Epigenetic aspects of Engineered Nanomaterials: Is the Collateral Damage Inevitable?
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Epigenetic aspects of Engineered Nanomaterials: Is the Collateral Damage Inevitable?

机译:工程纳米材料的表观遗传学方面:附带损害是不可避免的吗?

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The extensive applications of engineered nanomaterial (ENM) in various fields increases the possibilities of human exposure, thus imposing a huge risk of nanotoxicity. Hence, there is an urgent need for a vigilant risk assessment of these ENMs in response to their toxicological profiling, predominantly in biomedical and biosensor settings. Numerous “toxico-omics” studies have been conducted on ENMs, however, a specific “risk assessment paradigm” dealing with the epigenetic modulations in human owing to the exposure of these modern day toxicants has not been defined yet. This review aims at addressing those critical aspects that are currently preventing the establishment of a suitable risk assessment approach for/against ENM exposure and pointing out those researches, which may be helpful in developing and implementing effective guidance for nano-risk assessment. Literature relating to physicochemical characterization, toxicological behavior of ENMs are analyzed and exposure assessment strategies were explored in order to extrapolate opportunities, challenges and criticisms in the establishment of a baseline for the risk assessment paradigm for the ENMs exposure. Various challenges such as uncertainty in the relation of the physicochemical properties and ENM toxicity, the complexity of the dose-response relationships resulting in difficulty in its extrapolation and measurement of ENM exposure levels emerged as issues in the establishment of traditional risk assessment. Such an appropriate risk assessment approach will provide adequate estimates of ENM exposure risks and will serve as a guideline for appropriate risk communication and management strategies aiming the protection and the safety of the humans.
机译:工程纳米材料(ENM)在各个领域的广泛应用增加了人体暴露的可能性,从而带来了巨大的纳米毒性风险。因此,迫切需要对这些ENM进行警惕的风险评估,以应对其毒理学特征,主要是在生物医学和生物传感器领域。已经对ENM进行了许多“毒理学组学”研究,但是,由于暴露于这些现代毒物,因此尚未定义针对人类表观遗传调控的具体“风险评估范式”。这篇综述旨在解决那些目前阻碍针对/针对ENM暴露建立合适的风险评估方法的关键方面,并指出那些研究,这可能有助于制定和实施纳米风险评估的有效指南。分析了有关ENM的理化特性,毒理行为的文献,并探讨了暴露评估策略,以推断建立ENM暴露风险评估范式基线的机会,挑战和批评。在建立传统风险评估中,出现了各种挑战,例如,理化性质与ENM毒性之间的关系不确定,剂量-反应关系的复杂性导致其推断和ENM暴露水平的测量困难。这种适当的风险评估方法将提供对ENM暴露风险的充分估计,并将作为针对旨在保护人类和安全的适当风险沟通和管理策略的指南。

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