Title of article
Microflow of fluorescently labelled red blood cells in tumours expressing single isoforms of VEGF and their response to vascular targeting agents
Author/Authors
Akerman، نويسنده , , Simon and Reyes-Aldasoro، نويسنده , , Constantino Carlos and Fisher، نويسنده , , Matthew and Pettyjohn، نويسنده , , Katie L. and Bjِrndahl، نويسنده , , Meit A. and Evans، نويسنده , , Helen and Tozer، نويسنده , , Gillian M.، نويسنده ,
Issue Information
روزنامه با شماره پیاپی سال 2011
Pages
5
From page
805
To page
809
Abstract
In this work we studied the functional differences between the microcirculation of murine tumours that express only single isoforms of vascular endothelial growth factor-A (VEGF), namely VEGF120 and VEGF188, and the effect of VEGF receptor tyrosine kinase (VEGF-R TK) inhibition on their functional response to the vascular disrupting agent, combretastatin A-4 phosphate (CA-4-P), using measurement of red blood cell (RBC) velocity by a ‘keyhole’ tracking algorithm. RBC velocities in VEGF188 tumours were unaffected by chronic treatment with a VEGF-R tyrosine kinase inhibitor, SU5416, whereas RBC velocities in VEGF120 tumours were significantly increased compared to control VEGF120 tumours. This effect was accompanied by a reduced tumour vascularisation. Pre-treatment of VEGF120 tumours with SU5416 made them much more resistant to CA-4-P treatment, with a RBC velocity response that was very similar to that of the more mature vasculature of the VEGF188 tumours. This study shows that vascular normalisation following anti-angiogenic treatment with a VEGF-R tyrosine kinase inhibitor reduced the response of a previously sensitive tumour line to CA-4-P.
Keywords
Red blood cell velocity , microcirculation , Keyhole tracking model , Tumour vasculature
Journal title
Medical Engineering and Physics
Serial Year
2011
Journal title
Medical Engineering and Physics
Record number
1731362
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