نتایج جستجو برای: cartilage differentiation

تعداد نتایج: 255252  

Journal: :The Japanese journal of veterinary research 2010
Vivien Lettry Kenji Hosoya Satoshi Takagi Masahiro Okumura

Bone marrow derived mesenchymal stem cells (MSCs) can be used to repair articular cartilage defects, these cells should be properly stimulated so that they could differentiate morphologically and hold cellular synthetic features closer to maturely differentiated chondrocytes. It is well known that tissue specific environment plays an important role in cell fate determination. Once improved isol...

2017
Mohammed Abbas

Cartilage tissue engineering using stem cells and biomaterials is considered a promising approach despite poor outcomes. We hypothesise that articular cartilage fragments provides native environmental cues to enhance stem cell differentiation. As such we evaluated the chondrogenic differentiation and repair of critical size defect in a human explant osteochondral model (OD) using bone marrow de...

Journal: :European cells & materials 2011
Mary B Goldring Miguel Otero Darren A Plumb Cecilia Dragomir Marta Favero Karim El Hachem Ko Hashimoto Helmtrud I Roach Eleonora Olivotto Rosa Maria Borzì Kenneth B Marcu

Human cartilage is a complex tissue of matrix proteins that vary in amount and orientation from superficial to deep layers and from loaded to unloaded zones. A major challenge to efforts to repair cartilage by stem cell-based and other tissue engineering strategies is the inability of the resident chondrocytes to lay down new matrix with the same structural and resilient properties that it had ...

Journal: :Development 1998
Y Watanabe D Duprez A H Monsoro-Burq C Vincent N M Le Douarin

It has previously been shown that the notochord grafted laterally to the neural tube enhances the differentiation of the vertebral cartilage at the expense of the derivatives of the dermomyotome. In contrast, the dorsomedial graft of a notochord inhibits cartilage differentiation of the dorsal part of the vertebra carrying the spinous process. Cartilage differentiation is preceded by the expres...

Journal: :Cellular physiology and biochemistry : international journal of experimental cellular physiology, biochemistry, and pharmacology 2015
Sophie Portron Vincent Hivernaud Christophe Merceron Julie Lesoeur Martial Masson Olivier Gauthier Claire Vinatier Laurent Beck Jérôme Guicheux

BACKGROUND/AIMS Multipotent stem/stromal cells (MSC) are considered promising for cartilage tissue engineering. However, chondrogenic differentiation of MSC can ultimately lead to the formation of hypertrophic chondrocytes responsible for the calcification of cartilage. To prevent the production of this calcified matrix at the articular site, the late hypertrophic differentiation of MSCs must b...

2016
Yuan Yao Qiyue Deng Weilin Song Huiyu Zhang Yuanjing Li Yang Yang Xin Fan Minghan Liu Jin Shang Chao Sun Yu Tang Xiangting Jin Huan Liu Bo Huang Yue Zhou

Degenerative cartilage endplate (CEP) shows decreased chondrification and increased ossification. Cartilage endplate stem cells (CESCs), with the capacity for chondro-osteogenic differentiation, are responsible for CEP restoration. CEP is avascular and hypoxic, while the physiological hypoxia is disrupted in the degenerated CEP. Hypoxia promoted chondrogenesis but inhibited osteogenesis in CESC...

2014
Junyi Liao Ning Hu Nian Zhou Liangbo Lin Chen Zhao Shixiong Yi Tingxu Fan Wei Bao Xi Liang Hong Chen Wei Xu Cheng Chen Qiang Cheng Yongming Zeng Weike Si Zhong Yang Wei Huang

Bone morphogenetic protein 2 (BMP2) is one of the key chondrogenic growth factors involved in the cartilage regeneration. However, it also exhibits osteogenic abilities and triggers endochondral ossification. Effective chondrogenesis and inhibition of BMP2-induced osteogenesis and endochondral ossification can be achieved by directing the mesenchymal stem cells (MSCs) towards chondrocyte lineag...

Journal: :iranian journal of basic medical sciences 0
parisa nikpou department of anatomical sciences, faculty of medicine, tabriz university of medical sciences, tabriz, iran daryoush mohammad nejad drug applied research center, tabriz university of medical sciences, tabriz, iran hajar shafaei department of anatomical sciences, faculty of medicine, tabriz university of medical sciences, tabriz, iran leila roshangar department of anatomical sciences, faculty of medicine, tabriz university of medical sciences, tabriz, iran nasser samadi department of biochemistry and laboratory sciences, faculty of advanced medical sciences, tabriz university of medical sciences, tabriz, iran amir mohammad navali department of orthopedy, tabriz university of medical sciences, tabriz, iran

objective(s): three-dimensional biomimetic scaffolds have widespread applications in biomedical tissue engineering due to similarity of their nanofibrous architecture to native extracellular matrix. co-culture system has stimulatory effect on chondrogenesis of adult mesenchymal stem cells. this work presents a co-culture strategy using human articular chondrons and adipose-derived stem cells (a...

Journal: :Development 1989
B C Gregg A Rowe P M Brickell L Wolpert

Ectoderm inhibits the formation of cartilage by chick wing bud mesenchyme in micromass culture. This suggests that the pattern of cartilage formation in the limb bud may result from a restriction of cartilage cell differentiation to the limb bud core as cells leave the progress zone. We have used in situ hybridization to investigate whether ectodermal inhibition in micromass culture occurs at t...

Journal: :apadana journal of clinical research 2012
fakher rahim najmaldin saki seyed hadi mousavi masoud soleimani gholamreza khamisipour

human mesenchymal stem cells (hmscs), which also called mesenchymal stromal cells, are multipotent stem cell. human mscs typically are positive for the surface markers cd44, cd73, cd90, cd105, cd106, and also negative for hematopoietic markers cd34 and cd45.these cells can be isolated from postnatal bone marrow, adipose tissue, placenta, and scalp tissue, as well as from various fetal tissues. ...

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