0000000000730780

AUTHOR

Pouya Dastouri

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Angiogenesis in Wounds Treated by Microdeformational Wound Therapy.

2011

BACKGROUND:: Mechanical forces play an important role in tissue neovascularization and are a constituent part of modern wound therapies. The mechanisms by which vacuum assisted closure (VAC) modulates wound angiogenesis are still largely unknown. OBJECTIVE:: To investigate how VAC treatment affects wound hypoxia and related profiles of angiogenic factors as well as to identify the anatomical characteristics of the resultant, newly formed vessels. METHODS:: Wound neovascularization was evaluated by morphometric analysis of CD31-stained wound cross-sections as well as by corrosion casting analysis. Wound hypoxia and mRNA expression of HIF-1α and associated angiogenic factors were evaluated by…

MaleVascular Endothelial Growth Factor APathologymedicine.medical_specialtyWound therapyAngiogenesismedicine.medical_treatmentNeovascularization PhysiologicOcclusive DressingsArticleNeovascularizationMiceNegative-pressure wound therapymedicineAnimalsSkinWound Healingintegumentary systemReverse Transcriptase Polymerase Chain Reactionbusiness.industryGranulation tissueBiomechanical PhenomenaMice Inbred C57BLOxygenPlatelet Endothelial Cell Adhesion Molecule-1Occlusive dressingVascular endothelial growth factor Amedicine.anatomical_structureMicrovesselsGranulation TissueCancer researchSurgerymedicine.symptombusinessWound healingNegative-Pressure Wound Therapy
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