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用于生物医学应用的仿生细胞膜包被及膜衍生纳米载体的最新进展

Latest Advances in Biomimetic Cell Membrane-Coated and Membrane-Derived Nanovectors for Biomedical Applications.

作者信息

Rampado Riccardo, Caliceti Paolo, Agostini Marco

机构信息

Department of Pharmaceutical and Pharmacological Sciences, University of Padua, Via Marzolo, 5, 35131 Padua, Italy.

Nano-Inspired Biomedicine Lab, Insitute of Pediatric Research-Città della Speranza, Corso Stati Uniti 4, 35127 Padua, Italy.

出版信息

Nanomaterials (Basel). 2022 May 2;12(9):1543. doi: 10.3390/nano12091543.

Abstract

In the last decades, many nanovectors were developed for different diagnostic or therapeutic purposes. However, most nanosystems have been designed using a "bottom-up" approach, in which the basic components of the nanovector become assembled to achieve complex and specific behaviors. Despite the fine control of formulative conditions, the complexity of these systems often results cumbersome and difficult to scale-up. Recently, biomimetic materials emerged as a complementary or alternative design approach through a "top-down strategy", using cell-derived materials as building blocks to formulate innovative nanovectors. The use of cell membranes as nanoparticle coatings endows nanomaterials with the biological identity and some of the functions of the cells they are derived from. In this review, we discuss some of the latest examples of membrane coated and membrane-derived biomimetic nanomaterials and underline the common general functions offered by the biomaterials used. From these examples, we suggest a systematic classification of these biomimetic materials based on their biological sources and formulation techniques, with their respective advantages and disadvantages, and summarize the current technologies used for membranes isolation and integration on nanovectors. We also discuss some current technical limitations and hint to future direction of the improvement for biomimetics.

摘要

在过去几十年中,人们开发了许多用于不同诊断或治疗目的的纳米载体。然而,大多数纳米系统都是采用“自下而上”的方法设计的,即纳米载体的基本组件进行组装以实现复杂而特定的行为。尽管对配方条件有精细控制,但这些系统的复杂性往往导致其繁琐且难以扩大规模。最近,仿生材料作为一种补充或替代设计方法通过“自上而下策略”出现,利用细胞衍生材料作为构建块来制备创新的纳米载体。使用细胞膜作为纳米颗粒涂层赋予纳米材料其来源细胞的生物学特性和一些功能。在本综述中,我们讨论了一些膜包覆和膜衍生的仿生纳米材料的最新实例,并强调了所用生物材料提供的常见一般功能。从这些实例中,我们建议根据其生物来源和制备技术对这些仿生材料进行系统分类,阐述其各自的优缺点,并总结目前用于纳米载体上膜分离和整合的技术。我们还讨论了当前的一些技术限制,并对仿生学未来的改进方向提出了建议。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bf42/9104043/3dacc960a598/nanomaterials-12-01543-g001.jpg

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