Aiiso Yufeng Li Family Department of Chemical and Nano Engineering, Shu and K.C. Chien and Peter Farrell Collaboratory, University of California San Diego, La Jolla, California 92093, United States.
ACS Nano. 2024 Nov 5;18(44):30211-30223. doi: 10.1021/acsnano.4c09830. Epub 2024 Oct 23.
Cellular nanoparticles (CNPs), fabricated by coating natural cell membranes onto nanoparticle cores, have been widely used to replicate cellular functions for various therapeutic applications. Specifically, CNPs act as cell decoys, binding harmful molecules or infectious pathogens and neutralizing their bioactivity. This neutralization strategy leverages the target's functional properties rather than its structure, resulting in broad-spectrum efficacy. Since their inception, CNP platforms have undergone significant advancements to enhance their neutralizing capabilities and efficiency. This review traces the research advances of CNP technology as multiplex countermeasures across four categories with progressive functions: neutralization through cell membrane binding, simultaneous neutralization using both cell membrane and nanoparticle core, continuous neutralization via enzymatic degradation, and enhanced neutralization through membrane modification. The review highlights the structure-property relationship in CNP designs, showing the functional advances of each category of CNP. By providing an overview of CNPs in multiplex neutralization of a wide range of chemical and biological threat agents, this article aims to inspire the development of more advanced CNP nanoformulations and uncover innovative applications to address unresolved medical challenges.
细胞纳米颗粒(CNPs)是通过将天然细胞膜包裹在纳米颗粒核心上而制成的,已被广泛用于复制细胞功能以用于各种治疗应用。具体来说,CNPs 可以作为细胞诱饵,结合有害分子或传染性病原体并中和其生物活性。这种中和策略利用了目标的功能特性,而不是其结构,从而具有广谱功效。自问世以来,CNP 平台已经取得了重大进展,以提高其中和能力和效率。本综述追溯了 CNP 技术作为四种具有渐进功能的多用途对策的研究进展:通过细胞膜结合进行中和、同时利用细胞膜和纳米颗粒核心进行中和、通过酶降解进行连续中和以及通过膜修饰进行增强中和。该综述强调了 CNP 设计中的结构-性能关系,展示了每种类别 CNP 的功能进展。通过概述 CNP 在多种化学和生物威胁剂的多用途中和中的应用,本文旨在激发更先进的 CNP 纳米制剂的开发,并揭示解决未解决的医学挑战的创新应用。