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Understanding the interactions between inorganic-based nanomaterials and biological membranes. | LitMetric

Understanding the interactions between inorganic-based nanomaterials and biological membranes.

Adv Drug Deliv Rev

Nanfang Hospital, Southern Medical University, Guangzhou 510515, China; Guangdong Provincial Key Laboratory of Construction and Detection in Tissue Engineering, Guangzhou 510515, China. Electronic address:

Published: August 2021

AI Article Synopsis

  • The article discusses how inorganic-based nanomaterials (NMs) interact with biological membranes, which is crucial for developing new therapies and understanding nanotoxicity.
  • It focuses on the effects of these NMs on key membrane systems, highlighting the complex relationships between NMs and biomolecules like membrane proteins and lipids.
  • The review outlines the mechanisms of these interactions and stresses the need to understand them to enhance the design of nanomaterials for drug delivery and other medical applications.

Article Abstract

The interactions between inorganic-based nanomaterials (NMs) and biological membranes are among the most important phenomena for developing NM-based therapeutics and resolving nanotoxicology. Herein, we introduce the structural and functional effects of inorganic-based NMs on biological membranes, mainly the plasma membrane and the endomembrane system, with an emphasis on the interface, which involves highly complex networks between NMs and biomolecules (such as membrane proteins and lipids). Significant efforts have been devoted to categorizing and analyzing the interaction mechanisms in terms of the physicochemical characteristics and biological effects of NMs, which can directly or indirectly influence the effects of NMs on membranes. Importantly, we summarize that the biological membranes act as platforms and thereby mediate NMs-immune system contacts. In this overview, the existing challenges and potential applications in the areas are addressed. A strong understanding of the discussed concepts will promote therapeutic NM designs for drug delivery systems by leveraging the NMs-membrane interactions and their functions.

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Source
http://dx.doi.org/10.1016/j.addr.2021.05.030DOI Listing

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