کد مقاله | کد نشریه | سال انتشار | مقاله انگلیسی | نسخه تمام متن |
---|---|---|---|---|
8480171 | 1551371 | 2016 | 55 صفحه PDF | دانلود رایگان |
عنوان انگلیسی مقاله ISI
Mitochondria in mesenchymal stem cell biology and cell therapy: From cellular differentiation to mitochondrial transfer
ترجمه فارسی عنوان
میتوکندری در زیست شناسی سلول های بنیادی مزانشیمی و سلول درمان: از تمایز سلولی به انتقال میتوکندری
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کلمات کلیدی
MFNPSCsOXPHOSPDKSREBP-1mTORESCsPPARγPDHSIRTsirtuinAMPKp70S6KFOXO3aHIF-1αHLA-DRDAPTPKCTNTsLC3SirtuinsPGC-1αPDHcp70 S6 kinaseTSC1/2MSCsUbiquinol-cytochrome c oxidoreductaseGPXPI3KCATPTMnuclear respiratory factorsNRFsCOXMiro1AMP-activated protein kinase - AMP-پروتئین کیناز فعال شده استopa1 - grandpa1mtTFA - MTTFO2− - O2-ROS - ROSHydrogen peroxide - آب اکسیژنهsuperoxide anion - آنیون سوپر اکسیدpost-translational modification - اصلاح post-translationaltunneling nanotubes - تونل زنی نانولوله هاelectron transport chain - زنجیره انتقال الکترونSOD - سدMesenchymal stem cells - سلول های بنیادی مزانشیمیPluripotent stem cells - سلول های بنیادی پلوروپتوژنEmbryonic stem cells - سلولهای بنیادی جنینیSuperoxide dismutase - سوکسوکس دیسموتازcytochrome c oxidase - سیتوکروم سی اکسیدازhypoxia inducible factor-1α - عامل القایی هیپوکسی 1αmitochondrial transcription factor A - عامل رونویسی میتوکندری APhosphatidylinositol 3-kinase - فسفاتیدیلینواستیل 3-کینازOxidative phosphorylation - فسفوریلاسیون اکسیداتیوMitochondrial metabolism - متابولیسم متابولیسمیComplex I - مجتمع IComplex V - مجتمع VComplex II - مجتمع دومbone marrow - مغز استخوانMitofusin - میتوفوزینH2O2 - هیدروژن پراکسیدETc - و غیرهoptic atrophy protein 1 - پروتئین آتروفی اپتیکی 1sterol regulatory element-binding protein 1 - پروتئین اتصال دهنده عصاره استرول 1Protein kinase C - پروتئین کیناز سیpyruvate dehydrogenase - پیرووات دهیدروژنازpyruvate dehydrogenase complex - پیرووات دهیدروژناز پیچیدهcomplex III - پیچیده IIITCA cycle - چرخه TCAtricarboxylic acid cycle - چرخه اسید تریکاربوکیلیکCatalase - کاتالازglutathione peroxidase - گلوتاتیون پراکسیدازReactive oxygen species - گونههای فعال اکسیژنperoxisome proliferator-activated receptor - گیرنده فعال فعال پروکسیوم
موضوعات مرتبط
علوم زیستی و بیوفناوری
بیوشیمی، ژنتیک و زیست شناسی مولکولی
بیولوژی سلول
چکیده انگلیسی
Mesenchymal stem cells (MSCs) are characterized to have the capacity of self-renewal and the potential to differentiate into mesoderm, ectoderm-like and endoderm-like cells. MSCs hold great promise for cell therapies due to their multipotency in vitro and therapeutic advantage of hypo-immunogenicity and lower tumorigenicity. Moreover, it has been shown that MSCs can serve as a vehicle to transfer mitochondria into cells after cell transplantation. Mitochondria produce most of the energy through oxidative phosphorylation in differentiated cells. It has been increasingly clear that the switch of energy supply from glycolysis to aerobic metabolism is essential for successful differentiation of MSCs. Post-translational modifications of proteins have been established to regulate mitochondrial function and metabolic shift during MSCs differentiation. In this article, we review and provide an integrated view on the roles of different protein kinases and sirtuins in the maintenance and differentiation of MSCs. Importantly, we provide evidence to suggest that alteration in the expression of Sirt3 and Sirt5 and relative changes in the acylation levels of mitochondrial proteins might be involved in the activation of mitochondrial function and adipogenic differentiation of adipose-derived MSCs. We summarize their roles in the regulation of mitochondrial biogenesis and metabolism, oxidative responses and differentiation of MSCs. On the other hand, we discuss recent advances in the study of mitochondrial dynamics and mitochondrial transfer as well as their roles in the differentiation and therapeutic application of MSCs to improve cell function in vitro and in animal models. Accumulating evidence has substantiated that the therapeutic potential of MSCs is conferred not only by cell replacement and paracrine effects but also by transferring mitochondria into injured tissues or cells to modulate the cellular metabolism in situ. Therefore, elucidation of the underlying mechanisms in the regulation of mitochondrial metabolism of MSCs may ultimately improve therapeutic outcomes of stem cell therapy in the future.
ناشر
Database: Elsevier - ScienceDirect (ساینس دایرکت)
Journal: Seminars in Cell & Developmental Biology - Volume 52, April 2016, Pages 119-131
Journal: Seminars in Cell & Developmental Biology - Volume 52, April 2016, Pages 119-131
نویسندگان
Yi-Chao Hsu, Yu-Ting Wu, Ting-Hsien Yu, Yau-Huei Wei,