纳米颗粒
体内分布
纳米技术
材料科学
药物输送
体内
血液循环
全身循环
纳米医学
医学
生物
内科学
生物技术
传统医学
作者
Lin Wang,S. Darlin Quine,Alex N. Frickenstein,Michael A. Lee,Wen Yang,Vinit Sheth,Margaret D. Bourlon,Yuxin He,Seung Chul Lyu,Lucila Garcia‐Contreras,Yan D. Zhao,Stefan Wilhelm
标识
DOI:10.1002/adfm.202308446
摘要
Abstract Most nanomedicines require efficient in vivo delivery to elicit meaningful diagnostic and therapeutic effects. However, en route to their intended tissues, systemically administered nanoparticles often encounter delivery barriers. To describe these barriers, the term “nanoparticle blood removal pathways” (NBRP) is proposed, which summarizes the interactions between nanoparticles and the body's various cell‐dependent and cell‐independent blood clearance mechanisms. Nanoparticle design and biological modulation strategies are reviewed to mitigate nanoparticle‐NBRP interactions. As these interactions affect nanoparticle delivery, the preclinical literature from 2011–2021 is studied, and the nanoparticle blood circulation and organ biodistribution data are analyzed. The findings reveal that nanoparticle surface chemistry affects the in vivo behavior more than other nanoparticle design parameters. Combinatory biological‐PEG surface modification improves the blood area under the curve by ≈418%, with a decrease in liver accumulation of up to 47%. A greater understanding of nanoparticle‐NBRP interactions and associated delivery trends will provide new nanoparticle design and biological modulation strategies for safer, more effective, and more efficient nanomedicines.
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