Candan Yilmaz Ozdogan
Kocaeli University
PathologyFoot (unit)Adipose tissueDecellularizationMesenchymal stem cellType 2 diabetesUmbilical veinHuman skinHyaluronic acidMetabolic disorderDiabetic footKidneyWound healingAngiogenesisCaprolactoneFibroblast migrationTissue engineeringDiabetes mellitusMedicineScaffold
3Publications
1H-index
19Citations
Publications 3
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#1Candan Yilmaz Ozdogan (Kocaeli University)H-Index: 1
#2Halime Kenar (Acıbadem University)
Last. Sahin Alagoz (Kocaeli University)H-Index: 4
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#1Gamze Kara Magden (Kocaeli University)
#2Çiğdem Vural (Kocaeli University)H-Index: 5
Last. Halime Kenar (Kocaeli University)H-Index: 12
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#1Halime Kenar (Kocaeli University)H-Index: 12
#2Candan Yilmaz Ozdogan (Kocaeli University)H-Index: 1
Last. Vasif Hasirci (METU: Middle East Technical University)H-Index: 52
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Abstract Success of 3D tissue substitutes in clinical applications depends on the presence of vascular networks in their structure. Accordingly, research in tissue engineering is focused on the stimulation of angiogenesis or generation of a vascular network in the scaffolds prior to implantation. A novel, xeno-free, collagen/hyaluronic acid-based poly( l -lactide-co-e-caprolactone) (PLC/COL/HA) (20/9.5/0.5 w/w/w) microfibrous scaffold was produced by electrospinning. Collagen types I and III, an...
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