نتایج جستجو برای: adipose derived mesenchymal stem cell

تعداد نتایج: 2200120  

Objective(s): Studies have confirmed that microgravity, as a mechanical factor, influences both differentiation and function of mesenchymal stem cells. Here we investigated the effects of simulated microgravity on neural differentiation of human adipose-derived stem cells (ADSCs). Materials and Methods:We have used a fast rotating clinostat (clinorotation) to simulate microgravity condition. R...

Objective(s): Adipose tissue-derived mesenchymal stem cells (AT-MSCs) with more potent immunomodulatory effects, greater proliferative potential and secretion of growth factors and cytokines in comparison with bone marrow derived MSCs are more appropriate for cell therapy. The aims of the present study were to evaluate the histomorphometric effect of AT-MSCs allotransplantation on regeneration ...

Journal: :iranian biomedical journal 0
محمدعلی شکرگزار mohammad ali shokrgozar مریم فتاحی maryam fattahi شاهین بنکدار shahin bonakdar ایرج راگردی کاشانی iraj ragerdi محمد مجیدی mohammad majidi نوشین حقیقی پور nooshin haghighipour وحید بیاتی

background: wound healing of burned skin remains a major goal in public health. previous reports showed that the bone marrow stem cells were potent in keratinization and vascularization of full thickness skin wounds. methods: in this study, mesenchymal stem cells were derived from rat adipose tissues and characterized by flowcytometry. staining methods were used to evaluate their differentiatio...

Journal: :مجله علوم اعصاب شفای خاتم 0
aida javadzadeh islamic azad university, mashhad branch, mashhad, iran mohammadreza khojaste islamic azad university, mashhad branch, mashhad, iran ali shariat razavi islamic azad university, mashhad branch, mashhad, iran sajad sahab negah a. department of neuroscience, mashhad university of medical sciences, mashhad, iran b. shefa neuroscience research center, khatam alanbia hospital, tehran, iranshefa neuroscience research center, khatam alanbia hospital, tehran, iran

mesenchymal stem cells can be obtained from deferent tissues like adipose tissue, umbilical cord, placenta, skin, bone marrow, etc. these cells have regulatory effects on all types of immune cells such as dendritic cell, natural killers and lymphocytes. mesenchymal stem cells induce inhibitory phenotypes of antigen presenting cells (apcs) following their activity. they also change t cells pheno...

Aida Javadzadeh, Ali Shariat razavi, Mohammadreza Khojaste, Sajad Sahab Negah,

Mesenchymal stem cells can be obtained from deferent tissues like adipose tissue, umbilical cord, placenta, skin, bone marrow, etc. These cells have regulatory effects on all types of immune cells such as dendritic cell, natural killers and lymphocytes. Mesenchymal stem cells induce inhibitory phenotypes of Antigen Presenting Cells (APCs) following their activity. They also change T cells pheno...

اسفندیاری, بهناز, سلیمانی, مسعود, پریور, کاظم, کاویانی, سعید,

Background and Objective: Differentiation of mesenchymal stem cells into neurons has great potential in the therapy of damaged nerve tissue. Neural tissue engineering offers tremendous promise to combat the effects of disease, aging and injury in the nervous system. The aim of this study was to investigate the differentiation of adipose derived stem cells to neuron like cells on aligned nanofib...

2017
Eo Jin Kim Sang Gyo Seo Hyuk Soo Shin Doo Jae Lee Ji Hye Kim Dong Yeon Lee

BACKGROUND The pericytes in the blood vessel wall have recently been identified to be important in regulating vascular formation, stabilization, remodeling, and function. We isolated and identified pericyte-like platelet-derived growth factor receptor beta-positive (PDGFRβ+) cells from the stromal vascular fraction (SVF) of adipose tissue from critical limb ischemia (CLI) patients and investiga...

Alma Miraghel, Niloofar Rambod Rad , Zahra Behrooz nia,

Brain injuries that caused by strokes (result of intra partum ischemia) are a frequent cause of prenatal mortality and morbidity with limited therapeutic options. Transplanting human mesenchymal stem cells (hmscs) indicates improvement in hypoxic Ischemic brain injury (HIBD) by secretion growth factor stimulating repair processes (Hmscs) known as multi potent cells which isolated from bone marr...

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