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   a silk fibroin/decellularized extract of wharton’s jelly hydrogel intended for cartilage tissue engineering  
   
نویسنده basiri arefeh ,farokhi mehdi ,azami mahmoud ,ebrahimi-barough somayeh ,mohamadnia abdolreza ,rashtbar morteza ,hasanzadeh elham ,mahmoodi narges ,eslaminejad mohamadreza baghaban ,ai jafar
منبع progress in biomaterials - 2019 - دوره : 8 - شماره : 1 - صفحه:31 -42
چکیده    A hybrid hydrogel was obtained from decellularized extract from wharton’s jelly (dewj) and silk fibroin (sf) and characterized for cartilage tissue engineering. wharton’s jelly was used due to its similarity with articular cartilage in extracellular matrix composition. also, silk fibroin has good mechanical properties which make this construct appropriate for cartilage repair. decellularization of wharton’s jelly was verified by dapi staining, dna quantification, and pcr analysis. then, the biochemical composition of dewj was determined by elisa kits for total proteins, collagens, sulfated glycosaminoglycans (sgag), and transforming growth factor β1 (tgf-β1). after fabricating pure sf and sf/dewj hybrid hydrogels, their physical and mechanical properties were characterized by fesem, fourier-transform infrared spectroscopy (ftir) and rheological assays (amplitude and frequency sweeps). furthermore, cell viability and proliferation were assessed by mtt assay. the results have shown that dewj in hybrid hydrogels enhances mechanical properties of the construct relative to pure sf hydrogels. also, this extract at its 40% concentration in culture media and 20% or 40% concentrations in sf/dewj hybrid hydrogels significantly increases population of the cells compared to control and pure sf hydrogel after 7 days. in conclusion, this study proposes the potential of sf/dewj hybrid hydrogels for cartilage tissue engineering applications.
کلیدواژه decellularization ,wharton’s jelly ,silk fibroin ,hydrogel ,cartilage tissue engineering
آدرس tehran university of medical sciences, school of advanced technologies in medicine, department of tissue engineering and applied cell sciences, iran, pasteur institute of iran, iran, tehran university of medical sciences, school of advanced technologies in medicine, department of tissue engineering and applied cell sciences, iran, tehran university of medical sciences, school of advanced technologies in medicine, department of tissue engineering and applied cell sciences, iran, shahid beheshti university of medical sciences, school of advanced technologies in medicine, department of biotechnology, iran, tehran university of medical sciences, school of advanced technologies in medicine, department of tissue engineering and applied cell sciences, iran, tehran university of medical sciences, school of advanced technologies in medicine, department of tissue engineering and applied cell sciences, iran, tehran university of medical sciences, sina trauma and surgery reasearch center, iran, royan institute for stem cell biology and technology, cell science research center, department of stem cells and developmental biology, iran, tehran university of medical sciences, school of advanced technologies in medicine, department of tissue engineering and applied cell sciences, iran
 
     
   
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