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Breaking through the basement membrane barrier to improve nanotherapeutic delivery to tumours.

Abstract
An effective nanotherapeutic transport from the vasculature to the tumour is crucial for cancer treatment with minimal side effects. Here we demonstrate that, in addition to the endothelial barrier, the tumour vascular basement membrane surrounding the endothelium acts as a formidable mechanical barrier that entraps nanoparticles (NPs) in the subendothelial void, forming perivascular NP pools. Breaking through this basement membrane barrier substantially increases NP extravasation. Using inflammation triggered by local hyperthermia, we develop a cooperative immunodriven strategy to overcome the basement membrane barrier that leads to robust tumour killing. Hyperthermia-triggered accumulation and inflammation of platelets attract neutrophils to the NP pools. The subsequent movement of neutrophils through the basement membrane can release the NPs entrapped in the subendothelial void, resulting in increased NP penetration into deeper tumours. We show the necessity of considering the tumour vascular basement membrane barrier when delivering nanotherapeutics. Understanding this barrier will contribute to developing more effective antitumour therapies.
AuthorsQin Wang, Qirui Liang, Jiaxiang Dou, Han Zhou, Cici Zeng, Huimin Pan, Yanqiong Shen, Quan Li, Yi Liu, David Tai Leong, Wei Jiang, Yucai Wang
JournalNature nanotechnology (Nat Nanotechnol) Vol. 19 Issue 1 Pg. 95-105 (Jan 2024) ISSN: 1748-3395 [Electronic] England
PMID37709950 (Publication Type: Journal Article)
Copyright© 2023. The Author(s), under exclusive licence to Springer Nature Limited.
Topics
  • Humans
  • Basement Membrane (pathology)
  • Neoplasms (pathology)
  • Neutrophils
  • Inflammation (pathology)

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