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   Menstrual Blood-Derived Stromal Stem Cells Augment Cd4+ T Cells Proliferation  
   
نویسنده Aleahmad Mehdi ,Ghanavatinejad Alireza ,Bozorgmehr Mahmood ,Shokri Mohammad-Reza ,Nikoo Shohreh ,Tavakoli Maryam ,Kazemnejad Somaieh ,Shokri Fazel ,Zarnani Amir-Hassan
منبع Avicenna Journal Of Medical Biotechnology - 2018 - دوره : 10 - شماره : 3 - صفحه:183 -191
چکیده    Background: it is more than sixty years that the concept of the fetal allograft and immunological paradox of pregnancy was proposed and in this context, several regulatory networks and mechanisms have been introduced so far. it is now generally recognized that mesenchymal stem cells exert potent immunoregulatory activity. in this study, for the first time, the potential impact of menstrual blood stem cells (menscs), as surrogate for endometrial stem cells, on proliferative capacity of cd4+ t cells was tested. methods: menscs and bone marrow mesenchymal stem cells (bmscs) were isolated and assessed for their immunophenotypic features and multi-lineage differentiation capability. bmscs and menscs with or without ifnγ pre-stimulation were co-cultured with purified anti-cd3/cd28-activated cd4+ t cells and the extent of t cell proliferation at different menscs: t cell ratios were investigated by csfe flow cytometry. ido activity of both cell types was measured after stimulation with ifnγ by a colorimetric assay. results: menscs exhibited dual mesenchymal and embryonic markers and multilineage differentiation capacity. menscs significantly increased proliferation of cd4+ cells at ratios 1:2, 1:4 and 1:8. ifnγ pre-treated bmscs but not menscs significantly suppressed cd4+ t cells proliferation. such proliferation promoting capacity of menscs was not correlated with ido activity as these cells showed the high ido activity following ifnγ treatment. conclusion: although augmentation of t cell proliferation by menscs can be a basis for maintenance of endometrial homeostasis to cope with ascending infections, this may not fulfill the requirement for immunological tolerance to a semi-allogeneic fetus. however, more investigation is needed to examine whether or not the immunomodulatory properties of these cells are affected by endometrial microenvironment during pregnancy.
کلیدواژه Endometrium ,Immunological Tolerance ,Menstrual Blood Stem Cells ,Pregnancy ,Proliferation ,T Lymphocytes
آدرس Tehran University Of Medical Sciences, Faculty Of Public Health, Department Of Immunology, ایران, Tehran University Of Medical Sciences, Faculty Of Public Health, Department Of Immunology, ایران, Avicenna Research Institute, Reproductive Immunology Research Center, ایران. Iran University Of Medical Sciences, Oncopathology Research Center, ایران, Iran University Of Medical Sciences, Faculty Of Medicine, Department Of Immunology, ایران, Iran University Of Medical Sciences, Immunology Research Center (Irc), ایران, Avicenna Research Institute, Reproductive Immunology Research Center, ایران, Avicenna Research Institute, Reproductive Biotechnology Research Centre, ایران, Tehran University Of Medical Sciences, Faculty Of Public Health, Department Of Immunology, ایران. Avicenna Research Institute, Monoclonal Antibody Research Center, Department Of Hybridoma, ایران, Tehran University Of Medical Sciences, Faculty Of Public Health, Department Of Immunology, ایران. Avicenna Research Institute, Reproductive Immunology Research Center, ایران
پست الکترونیکی zarnania@gmail.com
 
     
   
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