Tenchov Rumiana, Hughes Kevin J, Ganesan Magesh, Iyer Kavita A, Ralhan Krittika, Lotti Diaz Leilani M, Bird Robert E, Ivanov Julian M, Zhou Qiongqiong Angela
CAS, a division of the American Chemical Society, Columbus, Ohio 43210, United States.
ACS International India Pvt. Ltd., Pune 411044, India.
ACS Nano. 2025 Feb 4;19(4):4011-4038. doi: 10.1021/acsnano.4c09566. Epub 2025 Jan 17.
Since their inception in the early 1960s, the development and use of nanoscale materials have progressed tremendously, and their roles in diverse fields ranging from human health to energy and electronics are undeniable. The application of nanotechnology inventions has revolutionized many aspects of everyday life including various medical applications and specifically drug delivery systems, maximizing the therapeutic efficacy of the contained drugs by means of bioavailability enhancement or minimization of adverse effects. In this review, we utilize the CAS Content Collection, a vast repository of scientific information extracted from journal and patent publications, to analyze trends in nanoscience research relevant to drug delivery in an effort to provide a comprehensive and detailed picture of the use of nanotechnology in this field. We examine the publication landscape in the area to provide insights into current knowledge advances and developments. We review the major classes of nanosized drug delivery systems, their delivery routes, and targeted diseases. We outline the most discussed concepts and assess the advantages of various nanocarriers. The objective of this review is to provide a broad overview of the evolving landscape of current knowledge regarding nanosized drug delivery systems, to outline challenges, and to evaluate growth opportunities. The merit of the review stems from the extensive, wide-ranging coverage of the most up-to-date scientific information, allowing unmatched breadth of landscape analysis and in-depth insights.
自20世纪60年代初问世以来,纳米级材料的开发与应用取得了巨大进展,其在从人类健康到能源及电子等诸多领域所发挥的作用不容置疑。纳米技术发明的应用彻底改变了日常生活的诸多方面,包括各种医学应用,尤其是药物递送系统,通过提高生物利用度或最大限度减少不良反应,使所载药物的治疗效果最大化。在本综述中,我们利用化学文摘社内容合集(这是一个从期刊和专利出版物中提取的海量科学信息库)来分析与药物递送相关的纳米科学研究趋势,以便全面、详细地呈现纳米技术在该领域的应用情况。我们审视该领域的出版物格局,以洞察当前的知识进展与发展动态。我们回顾纳米级药物递送系统的主要类别、它们的递送途径以及所针对的疾病。我们概述讨论最多的概念,并评估各种纳米载体的优势。本综述的目的是对纳米级药物递送系统当前知识的不断演变格局进行广泛概述,勾勒出挑战,并评估增长机遇。本综述的价值源于对最新科学信息的广泛、全面涵盖,从而实现无与伦比的格局分析广度和深入洞察。