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Brief update on endocytosis of nanomedicines

Journal

ADVANCED DRUG DELIVERY REVIEWS
Volume 144, Issue -, Pages 90-111

Publisher

ELSEVIER
DOI: 10.1016/j.addr.2019.08.004

Keywords

Intracellular trafficking and delivery; Endosomal escape; Drug and gene delivery; Imaging; Barriers to delivery

Funding

  1. National Institute of Biomedical Imaging and Bioengineering (N.I.B.I.B) [1R15EB021581-01, 1R01HL146736-01]
  2. National Heart Lung and Blood Institute (N.H.LB.I)
  3. Cystic Fibrosis Foundation
  4. National Institutes of Health (N.I.H) [5R01CA184088]

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The complexity of nanoscale interactions between biomaterials and cells has limited the realization of the ultimate vision of nanotechnology in diagnostics and therapeutics. As such, significant effort has been devoted to advancing our understanding of the biophysical interactions of the myriad nanoparticles. Endocytosis of nanomedicine has drawn tremendous interest in the last decade. Here, we highlight the ever-present barriers to efficient intracellular delivery of nanoparticles as well as the current advances and strategies deployed to breach these barriers. We also introduce new barriers that have been largely overlooked such as the glycocalyx and macromolecular crowding. Additionally, we draw attention to the potential complications arising from the disruption of the newly discovered functions of the lysosomes. Novel strategies of exploiting the inherent intracellular defects in disease states to enhance delivery and the use of exosomes for bioanalytics and drug delivery are explored. Furthermore, we discuss the advances in imaging techniques like electron microscopy, super resolution fluorescence microscopy, and single particle tracking which have been instrumental in our growing understanding of intracellular pathways and nanoparticle trafficking. Finally, we advocate for the push towards more intravital analysis of nanoparticle transport phenomena using the multitude of techniques available to us. Unraveling the underlying mechanisms governing the cellular barriers to delivery and biological interactions of nanoparticles will guide the innovations capable of breaching these barriers. (C) 2019 Published by Elsevier B.V.

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