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Bacterial Membrane Vesicles as Smart Drug Delivery and Carrier Systems: A New Nanosystems Tool for Current Anticancer and Antimicrobial Therapy. | LitMetric

AI Article Synopsis

  • Bacterial membrane vesicles (BMVs) serve as key communication tools between bacteria and host cells, showing potential as smart drug delivery systems (SDDSs) for transporting therapeutic agents.
  • The review discusses the design, characteristics, and methods for producing, purifying, and loading drugs into BMVs, along with their mechanisms for drug release and their applications in anticancer and antimicrobial therapies.
  • It emphasizes the need for safety assessments and highlights challenges for clinical use, while also addressing recent advancements and the future potential of BMVs in nanomedicine and targeted drug delivery.

Article Abstract

Bacterial membrane vesicles (BMVs) are known to be critical communication tools in several pathophysiological processes between bacteria and host cells. Given this situation, BMVs for transporting and delivering exogenous therapeutic cargoes have been inspiring as promising platforms for developing smart drug delivery systems (SDDSs). In the first section of this review paper, starting with an introduction to pharmaceutical technology and nanotechnology, we delve into the design and classification of SDDSs. We discuss the characteristics of BMVs including their size, shape, charge, effective production and purification techniques, and the different methods used for cargo loading and drug encapsulation. We also shed light on the drug release mechanism, the design of BMVs as smart carriers, and recent remarkable findings on the potential of BMVs for anticancer and antimicrobial therapy. Furthermore, this review covers the safety of BMVs and the challenges that need to be overcome for clinical use. Finally, we discuss the recent advancements and prospects for BMVs as SDDSs and highlight their potential in revolutionizing the fields of nanomedicine and drug delivery. In conclusion, this review paper aims to provide a comprehensive overview of the state-of-the-art field of BMVs as SDDSs, encompassing their design, composition, fabrication, purification, and characterization, as well as the various strategies used for targeted delivery. Considering this information, the aim of this review is to provide researchers in the field with a comprehensive understanding of the current state of BMVs as SDDSs, enabling them to identify critical gaps and formulate new hypotheses to accelerate the progress of the field.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC10142793PMC
http://dx.doi.org/10.3390/pharmaceutics15041052DOI Listing

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