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
Link To Document :
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