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   Development of An Artificial Male Germ Cell Niche Using Electrospun Poly Vinyl Alcohol/Human SerumAlbumin/Gelatin Fibers  
   
نویسنده Borzouie Zahra ,Naghibzadeh Majid ,Talebi Ali Reza ,Pourrajab Fatemeh ,Jebali Ali ,Nikukar Habib ,Molla Hoseini Hosein ,Khoradmehr Arezoo ,Sadeghian-Nodoushan Fatemeh ,Aflatoonian Behrouz ,Hekmatimoghaddam Hossein
منبع Cell Journal (Yakhteh) - 2019 - دوره : 21 - شماره : 3 - صفحه:300 -306
چکیده    Objective: recent achievements in stem cell biotechnology, nanotechnology and tissue engineering have led to development of novel approaches in regenerative medicine. azoospermia is one of the challenging disorders of the reproductive system. several efforts were made for isolation and culture of testis-derived stem cells to treat male infertility. however, tissue engineering is the best approach to mimic the three dimensional microenvironment of the testis in vitro. we investigated whether human testis-derived cells (htcs) obtained by testicular sperm extraction (tese) can be cultured on a homemade scaffold composed of electrospun nanofibers of homogeneous poly (vinyl alcohol)/human serum albumin/gelatin (pva/hsa/gelatin). materials and methods: in this experimental lab study, human tcs underwent two steps of enzymatic cell isolation and five culture passages. nanofibrous scaffolds were characterized by scanning electron microscopy (sem) and fouriertransform infrared spectroscopy (ftir). attachment of cells onto the scaffold was shown by hematoxylin and eosin (h&e) staining and sem. cell viability study using mtt [3-(4, 5-dimethyl-2-thiazolyl) -2, 5-diphenyl -2h- tetrazolium bromide] assay was performed on days 7 and 14. results: visualization by h&e staining and sem indicated that htcs were seeded on the scaffold. mtt test showed that the pva/hsa/gelatin scaffold is not toxic for htcs. conclusion: it seems that this pva/hsa/gelatin scaffold is supportive for growth of htcs.
کلیدواژه Azoospermia ,Human Serum Albumin ,Scaffold ,Testis ,Tissue Engineering
آدرس Shahid Sadoughi University Of Medical Sciences, Stem Cell Biology Research Center, Yazd Reproductive Sciences Institute, Research And Clinical Center For Infertility, ایران, Shahid Sadoughi University Of Medical Sciences, Research And Clinical Center For Infertility, Yazd Reproductive Sciences Institute, ایران, Shahid Sadoughi University Of Medical Sciences, Research And Clinical Center For Infertility, Yazd Reproductive Sciences Institute, ایران, Shahid Sadoughi University Of Medical Sciences, School Of Medicine, Department Of Biochemistry And Molecular Biology, ایران, Shahid Sadoughi University Of Medical Sciences, School Of Paramedicine, Department Of Advanced Medical Sciences And Technologies, ایران, Shahid Sadoughi University Of Medical Sciences, Stem Cell Biology Research Center, Yazd Reproductive Sciences Institute, School Of Paramedicine, Department Of Advanced Medical Sciences And Technologies, ایران, Isfahan University Of Technology, Textile Engineering Faculty, ایران, Shahid Sadoughi University Of Medical Sciences, Research And Clinical Center For Infertility, Yazd Reproductive Sciences Institute, ایران, Shahid Sadoughi University Of Medical Sciences, Medical Nanotechnology And Tissue Engineering Research Center, Yazd Reproductive Sciences Institute, ایران, Shahid Sadoughi University Of Medical Sciences, Stem Cell Biology Research Center, Yazd Reproductive Sciences Institute, School Of Paramedicine, School Of Medicine, Department Of Advanced Medical Sciences And Technologies, Department Of Reproductive Biology, ایران
 
     
   
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