Literature DB >> 28946131

Bio-inspired engineering of cell- and virus-like nanoparticles for drug delivery.

Alessandro Parodi1, Roberto Molinaro2, Manuela Sushnitha3, Michael Evangelopoulos4, Jonathan O Martinez4, Noemi Arrighetti5, Claudia Corbo6, Ennio Tasciotti7.   

Abstract

The engineering of future generations of nanodelivery systems aims at the creation of multifunctional vectors endowed with improved circulation, enhanced targeting and responsiveness to the biological environment. Moving past purely bio-inert systems, researchers have begun to create nanoparticles capable of proactively interacting with the biology of the body. Nature offers a wide-range of sources of inspiration for the synthesis of more effective drug delivery platforms. Because the nano-bio-interface is the key driver of nanoparticle behavior and function, the modification of nanoparticles' surfaces allows the transfer of biological properties to synthetic carriers by imparting them with a biological identity. Modulation of these surface characteristics governs nanoparticle interactions with the biological barriers they encounter. Building off these observations, we provide here an overview of virus- and cell-derived biomimetic delivery systems that combine the intrinsic hallmarks of biological membranes with the delivery capabilities of synthetic carriers. We describe the features and properties of biomimetic delivery systems, recapitulating the distinctive traits and functions of viruses, exosomes, platelets, red and white blood cells. By mimicking these biological entities, we will learn how to more efficiently interact with the human body and refine our ability to negotiate with the biological barriers that impair the therapeutic efficacy of nanoparticles.
Copyright © 2017. Published by Elsevier Ltd.

Entities:  

Keywords:  Bioinspired nanoparticles; Biomimicry; Bottom-up; Drug delivery; Surface modifications; Top-down

Mesh:

Substances:

Year:  2017        PMID: 28946131     DOI: 10.1016/j.biomaterials.2017.09.020

Source DB:  PubMed          Journal:  Biomaterials        ISSN: 0142-9612            Impact factor:   12.479


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