Investigation of a broad diversity of nanoparticles, including their processes, as well as toxicity testing in diverse organs and systems

IF 4.8 3区 医学 Q1 PHARMACOLOGY & PHARMACY Toxicology Pub Date : 2024-11-06 DOI:10.1016/j.tox.2024.153985
Azhar U. Khan , Mohammad Qutob , Amel Gacem , Mohd. Rafatullah , Krishna Kumar Yadav , Pankaj Kumar , Javed Khan Bhutto , Meenal Rehman , Sudhakar Bansoid , Lienda Bashier Eltayeb , Nazia Malik , Mohammed Azam Ali , Maha Awjan Alreshidi , Mir Waqas Alam
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Abstract

Nanotechnology arising in wide-ranging areas, covers extensively different ranges of approaches attained from fields such as biology, chemistry, physics, and medicine engineering. Nanoparticles are a necessary part of nanotechnology effectually applied in the cure of a number of diseases. Nanoparticles have gained significant importance due to their unique properties, which differ from their bulk counterparts. These distinct properties of nanoparticles are primarily influenced by their morphology, size, and size distribution. At the nanoscale, nanoparticles exhibit behaviours that can enhance therapeutic efficacy and reduce drug toxicity. Their small size and large surface area make them promising candidates for applications such as targeted drug delivery, where they can improve treatment outcomes while minimizing adverse effects. The harmful effects of nanoparticles on the environment were critically investigated to obtain appropriate results and reduce the risk by incorporating the materials. Nanoparticles tend to penetrate the human body, clear the biological barriers to reach sensitive organs and are easily incorporated into human tissue, as well as dispersing to the hepatic tissues, heart tissues, encephalum, and GI tract. This study aims to examine a wide variety of nanoparticles, focusing on their manufacturing methods, functional characteristics, and interactions within biological systems. Particular attention will be directed towards assessing the toxicity of nanoparticles in different organs and physiological systems, yielding a thorough comprehension of their potential health hazards and the processes that drive nanoparticle-induced toxicity. This analysis will also emphasize recent developments in nanoparticle applications and safety assessment methodologies.
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研究各种纳米粒子,包括其加工过程,以及在不同器官和系统中的毒性测试。
纳米技术的应用领域十分广泛,涵盖了生物学、化学、物理学和医学工程等领域的各种不同方法。纳米粒子是纳米技术的必要组成部分,可有效治疗多种疾病。纳米微粒因其不同于大块纳米微粒的独特性质而备受重视。纳米粒子的这些独特性质主要受其形态、尺寸和尺寸分布的影响。在纳米尺度上,纳米粒子表现出的行为可以提高疗效并降低药物毒性。纳米粒子体积小、表面积大,因此在靶向给药等应用中大有可为,既能提高治疗效果,又能最大限度地减少不良反应。我们对纳米粒子对环境的有害影响进行了严格的调查,以获得适当的结果,并通过加入这些材料来降低风险。纳米粒子容易穿透人体,通过生物屏障到达敏感器官,并很容易融入人体组织,还能分散到肝组织、心脏组织、大脑和消化道。本研究旨在研究各种纳米粒子,重点关注其制造方法、功能特性以及在生物系统中的相互作用。研究将特别关注评估纳米粒子在不同器官和生理系统中的毒性,从而全面了解纳米粒子对健康的潜在危害以及纳米粒子诱发毒性的过程。这项分析还将强调纳米粒子应用和安全评估方法的最新发展。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Toxicology
Toxicology 医学-毒理学
CiteScore
7.80
自引率
4.40%
发文量
222
审稿时长
23 days
期刊介绍: Toxicology is an international, peer-reviewed journal that publishes only the highest quality original scientific research and critical reviews describing hypothesis-based investigations into mechanisms of toxicity associated with exposures to xenobiotic chemicals, particularly as it relates to human health. In this respect "mechanisms" is defined on both the macro (e.g. physiological, biological, kinetic, species, sex, etc.) and molecular (genomic, transcriptomic, metabolic, etc.) scale. Emphasis is placed on findings that identify novel hazards and that can be extrapolated to exposures and mechanisms that are relevant to estimating human risk. Toxicology also publishes brief communications, personal commentaries and opinion articles, as well as concise expert reviews on contemporary topics. All research and review articles published in Toxicology are subject to rigorous peer review. Authors are asked to contact the Editor-in-Chief prior to submitting review articles or commentaries for consideration for publication in Toxicology.
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