نتایج جستجو برای: human adipose derived stem cell hadsc

تعداد نتایج: 3347618  

Journal: :iranian journal of basic medical sciences 0
zolikha golipoor school of medicine, tehran university of medical sciences, tehran, iran iraj ragerdi kashani school of medicine, tehran university of medical sciences, tehran, iran mohammad akbari school of medicine, tehran university of medical sciences, tehran, iran gholamreza hassanzadeh school of medicine, tehran university of medical sciences, tehran, iran fatemeh malek school of medicine, tehran university of medical sciences, tehran, iran reza mahmoudi school of medicine, yasouj university of medical sciences, yasouj, iran

objective(s) bone marrow is the traditional source of human multipotent mesenchymal stem cells (mscs), but adipose tissue appears to be an alternative and more readily available source. in this study, rat adipose-derived stem cells (adscs) were induced to differentiate into schwann-like cells and compared with rat bone marrow stem cells (bmscs) for their schwann-like cells differentiation poten...

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...

Journal: :Stem Cell Research & Therapy 2021

Abstract Background Human adipose-derived stem cells (hADSCs) are with the potential to differentiate in multiple directions. miR-204-5p is expressed at low levels during osteogenic differentiation of hADSCs, and its specific regulatory mechanism remains unclear. Here, we aimed explore function possible molecular hADSCs. Methods The expression patterns miR-204-5p, Runx2 , alkaline phosphatase (...

Journal: :مجله علوم اعصاب شفای خاتم 0
ali shariat razavi medicine faculty, islamic azad university, mashhad branch, mashhad, iran mohammad reza khojasteh medicine faculty, islamic azad university, mashhad branch, mashhad, iran aida java zadeh medicine faculty, 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

neuroinflammation has a significant role in induce of multiple sclerosis (ms) many approaches have been used to treat ms, but none of these methods have not been able to fully improve. one of the methods can suppress inflammation and regenerate the nervous system is the use of cell therapy. using cell therapy in pre-clinic phase can be realized, it's mechanism and potency to suppress neuro...

Objective: Arsenic, an environmental pollutant, decreases neuronal migration as well as cellular maturation and inhibits the proliferation of neural progenitor cells. Curcumin has been described as an antioxidant and neuroprotective agent with strong therapeutic potential in some neurological disorders. Human adipose-derived stem cells (hADSCs), a source of multipotent stem cells, can self-rene...

Journal: :Circulation journal : official journal of the Japanese Circulation Society 2011
Yikuan Chen Gang Wang Lingfang Zeng

tem cell biology has made cell-based therapies promising. While the use of human embryonic stem cells is ethically controversial, adult stem cells attracts more and more attention from clinicians and scientists. Adult mesenchymal stem cells (MSC) are derived from various tissues, including bone marrow, subcutaneous adipose tissue, cruciate ligament, muscle, and synovium,1 which are potential do...

Journal: :world journal of plastic surgery 0
khadijeh dizaji asl department of anatomical science, tabriz university of medical sciences, tabriz, iran hajar shafaei department of anatomical science, tabriz university of medical sciences, tabriz, iran jafar soleimani rad department of anatomical science, tabriz university of medical sciences, tabriz, iran hojjat ollah nozad department of anatomical science, tabriz university of medical sciences, tabriz, iran

background mesenchymal stem cells (mscs) are ideal candidates for treatment of diseases. amniotic membranes are an inexpensive source of mscs (am-msc) without any donor site morbidity in cell therapy. adipose tissue derived stem cells (ascs) are also suitable cells for cell therapy. there is discrepancy in cd271 expression among mscs from different sources. in this study, the characteristics of...

2012
Phanette Gir

Dallas, Texas; and Lyon, France Summary: Adipose-derived stem cells are multipotent cells that can easily be extracted from adipose tissue, are capable of expansion in vitro, and have the capacity to differentiate into multiple cell lineages, which have the potential for use in regenerative medicine. However, several issues need to be studied to determine safe human use. For example, there are ...

Hajar Shafaei, Hojjat Ollah Nozad, Jafar Soleimani Rad, Khadijeh Dizaji Asl,

BACKGROUND Mesenchymal stem cells (MSCs) are ideal candidates for treatment of diseases. Amniotic membranes are an inexpensive source of MSCs (AM-MSC) without any donor site morbidity in cell therapy. Adipose tissue derived stem cells (ASCs) are also suitable cells for cell therapy. There is discrepancy in CD271 expression among MSCs from different sources. In this study, the characteristics...

2014
Cecilia Brännmark Alexandra Paul Diana Ribeiro Björn Magnusson Gabriella Brolén Annika Enejder Anna Forslöw

With accelerating rates of obesity and type 2 diabetes world-wide, interest in studying the adipocyte and adipose tissue is increasing. Human adipose derived stem cells--differentiated to adipocytes in vitro--are frequently used as a model system for white adipocytes, as most of their pathways and functions resemble mature adipocytes in vivo. However, these cells are not completely like in vivo...

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