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Nanoparticles:Health Effects-Pros and Cons

机译:纳米粒子:对健康的影响-利弊

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With the advent of nanotechnology,the prospects for using engineered nanomaterials with diameters of <100 nm in industrial applications,medical imaging,disease diagnoses,drug delivery,cancer treatment,gene therapy,and other areas have progressed rapidly.The potential for nanoparticles (NPs)in these areas is infinite,with novel new applications constantly being explored.The possible toxic health effects of these NPs associated with human exposure are unknown.Many fine particles generally considered "nuisance dusts"are likely to acquire unique surface properties when engineered to nanosize and may exhibit toxic biological effects.Consequendy,the nuisance dust may be transported to distant sites and could induce adverse health effects.In addition the beneficial uses of NPs in drug delivery,cancer treatment,and gene therapy may cause unintentional human exposure.Because of our lack of knowledge about the health effects associated with NP exposure,we have an ethical duty to take precautionary measures regarding their use.In this review we highlight the possible toxic human health effects that can result from exposure to ultrafine particles (UFPs)generated by anthropogenic activities and their cardiopulmonary outcomes.The comparability of engineered NPs to UFPs suggests that the human health effects are likely to be similar.Therefore,it is prudent to elucidate their toxicologic effect to minimize occupational and environmental exposure.Highlighting the human health outcomes caused by UFPs is not intended to give a lesser importance to either the unprecedented technologic and industrial rewards of die nanotechnology or their beneficial human uses.
机译:随着纳米技术的出现,在工业应用,医学成像,疾病诊断,药物输送,癌症治疗,基因治疗等领域中使用直径小于100 nm的工程纳米材料的前景迅速发展。纳米颗粒(NPs)的潜力)在这些领域中是无限的,不断探索新的新应用。这些NP与人体接触可能产生的有害健康影响尚不清楚。许多通常被认为是“令人讨厌的粉尘”的细小颗粒,经工程改造为纳米尺寸,很可能会获得独特的表面性能。因此,滋扰性粉尘可能会被运送到遥远的地方,并可能对健康产生不利影响。此外,NPs在药物输送,癌症治疗和基因治疗中的有益用途还可能导致人体无意暴露。我们缺乏与NP暴露相关的健康影响的知识,我们有道德义务采取预防措施在本综述中,我们重点介绍了人为活动产生的超细颗粒(UFP)暴露及其心肺转归可能引起的对人体健康的不良影响。工程化NP与UFP的可比性表明对人类健康的影响因此,谨慎地阐明它们的毒理学作用以最大程度地减少职业和环境暴露。谨慎地指出由UFP引起的人类健康后果并不意味着对裸片纳米技术前所未有的技术和工业回报的重视程度就不那么重要了。或对人类有益的用途。

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