Cell Membrane-Coated Mimics: A Methodological Approach for Fabrication, Characterization for Therapeutic Applications, and Challenges for Clinical Translation

  • Vaishali Chugh
  • , K. Vijaya Krishna
  • , Abhay Pandit

Research output: Contribution to a Journal (Peer & Non Peer)Review articlepeer-review

160 Citations (Scopus)

Abstract

Cell membrane-coated (CMC) mimics are micro/nanosystems that combine an isolated cell membrane and a template of choice to mimic the functions of a cell. The design exploits its physicochemical and biological properties for therapeutic applications. The mimics demonstrate excellent biological compatibility, enhanced biointerfacing capabilities, physical, chemical, and biological tunability, ability to retain cellular properties, immune escape, prolonged circulation time, and protect the encapsulated drug from degradation and active targeting. These properties and the ease of adapting them for personalized clinical medicine have generated a significant research interest over the past decade. This review presents a detailed overview of the recent advances in the development of cell membrane-coated (CMC) mimics. The primary focus is to collate and discuss components, fabrication methodologies, and the significance of physiochemical and biological characterization techniques for validating a CMC mimic. We present a critical analysis of the two main components of CMC mimics: The template and the cell membrane and mapped their use in therapeutic scenarios. In addition, we have emphasized on the challenges associated with CMC mimics in their clinical translation. Overall, this review is an up to date toolbox that researchers can benefit from while designing and characterizing CMC mimics.

Original languageEnglish
Pages (from-to)17080-17123
Number of pages44
JournalACS Nano
Volume15
Issue number11
DOIs
Publication statusPublished - 23 Nov 2021
Externally publishedYes

Keywords

  • biointerfacing
  • biomimetic
  • cell membrane
  • detoxification
  • drug delivery
  • good manufacturing practice
  • personalized medicine
  • template
  • therapeutic applications
  • tumor microenvironment

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