Stiepel Rebeca T, Duggan Eliza, Batty Cole J, Ainslie Kristy M
Division of Pharmacoengineering and Molecular Pharmaceutics, Eshelman School of Pharmacy University of North Carolina Chapel Hill North Carolina USA.
North Carolina School of Science and Mathematics Durham North Carolina USA.
Bioeng Transl Med. 2022 Oct 18;8(2):e10421. doi: 10.1002/btm2.10421. eCollection 2023 Mar.
The first publication of micro- and nanotechnology in medicine was in 1798 with the use of the Cowpox virus by Edward Jenner as an attenuated vaccine against Smallpox. Since then, there has been an explosion of micro- and nanotechnologies for medical applications. The breadth of these micro- and nanotechnologies is discussed in this piece, presenting the date of their first report and their latest progression (e.g., clinical trials, FDA approval). This includes successes such as the recent severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2) vaccines from Pfizer, Moderna, and Janssen (Johnson & Johnson) as well as the most popular nanoparticle therapy, liposomal Doxil. However, the enormity of the success of these platforms has not been without challenges. For example, we discuss why the production of Doxil was halted for several years, and the bankruptcy of BIND therapeutics, which relied on a nanoparticle drug carrier. Overall, the field of micro- and nanotechnology has advanced beyond these challenges and continues advancing new and novel platforms that have transformed therapies, vaccines, and imaging. In this review, a wide range of biomedical micro- and nanotechnology is discussed to serve as a primer to the field and provide an accessible summary of clinically relevant micro- and nanotechnology platforms.
医学领域中首次出现的微米和纳米技术是在1798年,当时爱德华·詹纳使用牛痘病毒作为天花的减毒疫苗。从那时起,用于医学应用的微米和纳米技术呈爆炸式增长。本文讨论了这些微米和纳米技术的广度,介绍了它们首次报道的日期及其最新进展(例如临床试验、美国食品药品监督管理局批准)。这包括一些成功案例,如辉瑞、莫德纳和杨森(强生)公司最近研发的严重急性呼吸综合征冠状病毒2(SARS-CoV-2)疫苗,以及最受欢迎的纳米颗粒疗法——脂质体阿霉素(Doxil)。然而,这些平台取得的巨大成功并非没有挑战。例如,我们讨论了为什么阿霉素的生产曾中断数年,以及依赖纳米颗粒药物载体的BIND治疗公司为何破产。总体而言,微米和纳米技术领域已经克服了这些挑战,并继续推进新的和新颖的平台,这些平台已经改变了治疗方法、疫苗和成像技术。在这篇综述中,我们讨论了广泛的生物医学微米和纳米技术,作为该领域的入门介绍,并提供了一份易于理解的临床相关微米和纳米技术平台总结。