4.8 Article

Photocrosslinked Bioreducible Polymeric Nanoparticles for Enhanced Systemic siRNA Delivery as Cancer Therapy

Journal

ADVANCED FUNCTIONAL MATERIALS
Volume 31, Issue 17, Pages -

Publisher

WILEY-V C H VERLAG GMBH
DOI: 10.1002/adfm.202009768

Keywords

bioreducible; crosslinking; nanoparticles; siRNA; stimuli‐ responsive polymers

Funding

  1. Swedish Research Council International Postdoc grant [2016-06675]
  2. NIH [P41EB028239, R01CA228133, R01CA195503, R37CA246699]
  3. Swedish Research Council [2016-06675] Funding Source: Swedish Research Council

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This study introduces a novel strategy involving photocrosslinking of bioreducible nanoparticles to enhance the systemic delivery of RNA. The photocrosslinked bioreducible nanoparticles exhibit improved stability and efficient siRNA-mediated gene silencing effects in melanoma tumors, providing potential for advancing nucleic acid-based therapeutics delivery technologies.
Clinical translation of polymer-based nanocarriers for systemic delivery of RNA has been limited due to poor colloidal stability in the blood stream and intracellular delivery of the RNA to the cytosol. To address these limitations, this study reports a new strategy incorporating photocrosslinking of bioreducible nanoparticles for improved stability extracellularly and rapid release of RNA intracellularly. In this design, the polymeric nanocarriers contain ester bonds for hydrolytic degradation and disulfide bonds for environmentally triggered small interfering RNA (siRNA) release in the cytosol. These photocrosslinked bioreducible nanoparticles (XbNPs) have a shielded surface charge, reduced adsorption of serum proteins, and enable superior siRNA-mediated knockdown in both glioma and melanoma cells in high-serum conditions compared to non-crosslinked formulations. Mechanistically, XbNPs promote cellular uptake and the presence of secondary and tertiary amines enables efficient endosomal escape. Following systemic administration, XbNPs facilitate targeting of cancer cells and tissue-mediated siRNA delivery beyond the liver, unlike conventional nanoparticle-based delivery. These attributes of XbNPs facilitate robust siRNA-mediated knockdown in vivo in melanoma tumors colonized in the lungs following systemic administration. Thus, biodegradable polymeric nanoparticles, via photocrosslinking, demonstrate extended colloidal stability and efficient delivery of RNA therapeutics under physiological conditions, and thereby potentially advance systemic delivery technologies for nucleic acid-based therapeutics.

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