نتایج جستجو برای: bone and fat differentiation

تعداد نتایج: 16920655  

2010

Introduction Research in regenerative medicine is developing at a significantly quick pace. Cell-based cartilage implant is an evolving therapy aiming at the treatment of patients who suffer from cartilage-related disorders. Mesenchymal progenitor cells (MPCs) possess high proliferative potential and can differentiate into several mesenchymal lineages, including bone, cartilage, fat, tendon, an...

2016
E. Rendina-Ruedy J.L. Graef S.A. Lightfoot J.W. Ritchey S.L. Clarke E.A. Lucas B.J. Smith

Patients with type 2 diabetes mellitus (T2DM) experience a 1.5-3.5 fold increase in fracture risk, but the mechanisms responsible for these alterations in bone biomechanical properties remain elusive. Macroautophagy, often referred to as autophagy, is regulated by signaling downstream of the insulin receptor. Metabolic changes associated with the progression of glucose intolerance have been sho...

Journal: :reports of biochemistry and molecular biology 0
amir peymani tel: +98 2813324971; fax: +98 281332497 maryam shahi cellular and molecular research center, qazvin university of medical sciences, qazvin, iran mehdi sahmani department of clinical biochemistry and medical genetics, cellular and molecular research center, qazvin university of medical sciences, qazvin, iran.

bone is formed through the processes of endochondral and intramembranous ossification. in endochondral ossification primary mesenchymal cells differentiate to chondrocytes and then are progressively substituted by bone, while in intramembranous ossification mesenchymal stem cells (mscs) differentiate directly into osteoblasts to form bone. the steps of osteogenic proliferation, differentiation,...

Journal: :cell journal 0

introduction: the aim of this study was to differentiate human mesenchymal stem cells (hmscs) into cartilage in a micromass culture system and study of their structure by light and electron microscopy. material and methods: human bone marrow cells obtained from volunteer patients were plated in 75-cm2 flasks and their mscs were expanded through several sub-cultures. the passage 4 cells were use...

دربندی, فاطمه, سلیمانی مهرنجانی, ملک, عظیمی, آتناسادات,

Introdution: Bisphenol A (BPA) disturbs the morphology, viability and differentiation of rat bone marrow mesenchymal stem cells (rMSCs) to osteoblast via the production of free radicals. Vitamin C (vit-C) is a potent antioxidant and protects cells against oxidative stress. The aim of this study was to investigate the effect of co-treatment of BPA and vitamin C as an antioxidant on the viability...

Journal: :cell journal 0
morteza abouzaripour parichehr pasbakhsh nader atlasi abdol hossein shahverdi reza mahmoudi iraj ragerdi kashani

background: bone marrow has recently been recognized as a novel source of stem cells for the treatment of wide range of diseases. a number of studies on murine bone marrow have shown a homogenous population of rare stage-specific embryonic antigen 1 (ssea-1) positive cells that express markers of pluripotent stem cells. this study focuses on ssea-1 positive cells isolated from murine bone marro...

Journal: :international journal of pediatrics 0
shirin hasani-ranjbar obesity and eating habits research center, endocrinology and metabolism molecular-cellular sciences institute, tehran university of medical sciences, tehran, iran. akbar soltani endocrinology and metabolism research center, endocrinology and metabolism clinical sciences institute, tehran university of medical sciences, tehran, iran. marzieh hadavi endocrinology and metabolism research center, endocrinology and metabolism clinical sciences institute, tehran university of medical sciences, tehran, iran. hanieh-sadat ejtahed obesity and eating habits research center, endocrinology and metabolism molecular-cellular sciences institute, tehran university of medical sciences, tehran, iran. mahsa mohammad-amoli metabolic disorders research center, endocrinology and metabolism molecular-cellular sciences institute, tehran university of medical sciences, tehran, iran. amir reza radmard department of radiology, shariati hospital, tehran university of medical sciences, tehran, iran.

backgroundcongenital generalized lipodystrophy (cgl) is a rare disease. it is associated with near total fat loss, severe insulin resistance and hypoleptinemia leading to metabolic derangements.case presentationwe report a 25- year- old female with 1-acylglycerol-3-phosphate-o-acyltransferase 2 (apgat2) mutation, and both sclerotic and lytic bone lesions together for the first time. bone cyst i...

Journal: :iranian journal of basic medical sciences 0
mohamadreza baghaban eslaminejad stem cell department, cell sciences research center, royan institute, acecr, tehran, iran. mahmood talkhabi school of biology, college of science, university of tehran, tehran, iran bahman zeynali school of biology, college of science, university of tehran, tehran, iran

objective(s) it is believed that the mesenchymal stem cell (msc) differentiation and proliferation are the results of activation of wnt signaling pathway. on the other hand, lithium chloride is reported to be able to activate this pathway. the objective of this study was to investigate the effect of lithium on in vitro proliferation and bone differentiation of marrow-derived msc. materials and ...

2013
Faisal Ali Yazan Ranneh Amin Ismail Bart Vaes

A decrease in the lineage commitment of multipotent Mesenchymal stem cells (MSC) to the bone forming osteoblast lineage and an increase in the commitment to the fat forming adipocyte lineage is more common in bone marrow of elderly persons. A link between methylation status and MSC differentiation remains unclear. Therefore, we hypothesize that hypomethylation may decide the fate decisions of M...

Journal: :Stem cell reports 2016
Qian Cong Hao Jia Soma Biswas Ping Li Shoutao Qiu Qi Deng Xizhi Guo Gang Ma Jenny Fang Ling Chau Yibin Wang Zhen-Lin Zhang Xinquan Jiang Huijuan Liu Baojie Li

Bone marrow-derived mesenchymal stromal cells (BM-MSCs) are capable of differentiating into osteoblasts, chondrocytes, and adipocytes. Skewed differentiation of BM-MSCs contributes to the pathogenesis of osteoporosis. Yet how BM-MSC lineage commitment is regulated remains unclear. We show that ablation of p38α in Prx1+ BM-MSCs produced osteoporotic phenotypes, growth plate defects, and increase...

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