| Literature DB >> 26878143 |
Yu Matsumoto1,2, Joseph W Nichols3, Kazuko Toh1, Takahiro Nomoto4, Horacio Cabral5, Yutaka Miura1, R James Christie1, Naoki Yamada1, Tadayoshi Ogura6, Mitsunobu R Kano7, Yasuhiro Matsumura8, Nobuhiro Nishiyama4, Tatsuya Yamasoba2, You Han Bae9, Kazunori Kataoka1,5.
Abstract
Enhanced permeability in tumours is thought to result from malformed vascular walls with leaky cell-to-cell junctions. This assertion is backed by studies using electron microscopy and polymer casts that show incomplete pericyte coverage of tumour vessels and the presence of intercellular gaps. However, this gives the impression that tumour permeability is static amid a chaotic tumour environment. Using intravital confocal laser scanning microscopy we show that the permeability of tumour blood vessels includes a dynamic phenomenon characterized by vascular bursts followed by brief vigorous outward flow of fluid (named 'eruptions') into the tumour interstitial space. We propose that 'dynamic vents' form transient openings and closings at these leaky blood vessels. These stochastic eruptions may explain the enhanced extravasation of nanoparticles from the tumour blood vessels, and offer insights into the underlying distribution patterns of an administered drug.Entities:
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Year: 2016 PMID: 26878143 DOI: 10.1038/nnano.2015.342
Source DB: PubMed Journal: Nat Nanotechnol ISSN: 1748-3387 Impact factor: 39.213