纳米毒理学:发展和新见解。

Nanomedicine (London, England) Pub Date : 2025-01-01 Epub Date: 2024-12-26 DOI:10.1080/17435889.2024.2443385
Henry N Abonyi, Ikechukwu E Peter, Akachukwu M Onwuka, Paul A Achile, Chinonso B Obi, Maureen O Akunne, Paul M Ejikeme, Samson Amos, Theophine C Akunne, Anthony A Attama, Peter A Akah
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引用次数: 0

摘要

近年来,纳米粒子在疾病治疗中的应用呈指数级增长,从而产生了纳米医学科学。这些纳米粒子在人体中的安全性也导致了纳米毒理学的发展。由于缺乏现成的模型和精确的生物分散表征技术,纳米毒理学研究显然受到了限制。然而,随后几年出现了改进的合成方法和表征工具。在将某些物理变量,表征尺寸,形状或涂层因素的平行改进与由此产生的生理反应联系起来方面取得了重大进展。尽管对纳米毒理学的发展做出了重大的贡献,但是,在试图改善药物的治疗效果时,它面临着与传统毒理学评估不同的许多困难和技术限制。确定彻底的表征标准,标准化剂量学,评估离子溶解动力学,提高体内外相关效率的准确性,以及确定暴露保护的限制是一些最重要和紧迫的问题。本文将探讨纳米毒理学的过去的进展和潜在的前景,标准模型,强调早期研究的重要发现,并检查当前的挑战,给出前进的方向。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Nanotoxicology: developments and new insights.

The use of nanoparticles (NPs) in treatment of diseases have increased exponentially recently, giving rise to the science of nanomedicine. The safety of these NPs in humans has also led to the science of nanotoxicology. Due to a dearth of both readily available models and precise bio-dispersion characterization techniques, nanotoxicological research has obviously been constrained. However, the ensuing years were notable for the emergence of improved synthesis methods and characterization tools. Major advances have been made in linking certain physical variables, paralleling improvements in characterization size, shape, or coating factors to the resulting physiological reactions. Although significant progress has been a contribution to the development of nanotoxicology, however, it faces numerous difficulties and technical constraints distinct from those of conventional toxicological assessment as it attempts to improve the therapeutic effects of medicines. Determining thorough characterization standards, standardizing dosimetry, assessing the kinetics of ions dissolving and enhancing the accuracy of in vitro-in vivo correlation efficiency, also defining restrictions on exposure protection are some of the most important and pressing concerns. This article will explore the past advancement and potential prospects of nanotoxicology, standard models, emphasizing significant findings from earlier studies and examining current challenges, giving insight on the way forward.

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