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A DISTRACTION CHONDROGENESIS OF THE RABBIT EARS

Kim HD, Han KH, Sohn DG, Kang JS, Park KK

  • KMID: 1530181
  • J Korean Soc Plast Reconstr Surg.
  • 1997 Sep;24(5):917-925.
No abstract available.
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The Interaction between Joint Inflammation and Cartilage Repair

van der Kraan PM

BACKGROUND: Articular cartilage lesions occur frequently but unfortunately damaged cartilage has a very limited intrinsic repair capacity. Therefore, there is a high need to develop technology that makes cartilage repair...
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Morphological evaluation during in vitro chondrogenesis of dental pulp stromal cells

Chung CR, Kim HN, Park Y, Kim MJ, Oh YJ, Shin SJ, Choi YJ, Kim KH

OBJECTIVES: The aim was to confirm the stem cell-like properties of the dental pulp stromal cells and to evaluate the morphologic changes during in vitro chondrogenesis. MATERIALS AND METHODS: Stromal cells...
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A study on chondrogenic potential in mandibular and limb bud mesenchymal cells of human embryos : A possible role of protein kinase C

Kook YA, Kim EC, Kim SC

  • KMID: 2271593
  • Korean J Orthod.
  • 1996 Dec;26(6):667-676.
We have examined the in vitro stage-related chondrogenic potential of human mandibular and limb bud mesenchyme cells using micromass culture, Our results indicate that limb bud mesenchyme cells as early...
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Staurosporine and cytochalasin D induce chondrogenesis by regulation of actin dynamics in different way

Kim M, Song K, Jin EJ, Sonn J

  • KMID: 1389731
  • Exp Mol Med.
  • 2012 Sep;44(9):521-528.
Actin cytoskeleton has been known to control and/or be associated with chondrogenesis. Staurosporine and cytochalasin D modulate actin cytoskeleton and affect chondrogenesis. However, the underlying mechanisms for actin dynamics regulation...
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Gene Expression Profile during Chondrogenesis in Human Bone Marrow derived Mesenchymal Stem Cells using a cDNA Microarray

Yoo HJ, Yoon SS, Park SY, Lee EY, Lee EB, Kim JH, Song YW

Mesenchymal stem cells (MSCs) have the capacity to proliferate and differentiate into multiple connective tissue lineages, which include cartilage, bone, and fat. Cartilage differentiation and chondrocyte maturation are required for...
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Stimulation of Chondrogenic Differentiation of Mesenchymal Stem Cells

Yu DA, Han J, Kim BS

  • KMID: 1426153
  • Int J Stem Cells.
  • 2012 May;5(1):16-22.
The methods for cartilage repair have been studied so far, yet many of them seem to have limitations due to the low regenerative capacity of articular cartilage. Mesenchymal stem cell...
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Effects of Trichostatin A on the Chondrogenesis from Human Mesenchymal Stem Cells

Lee J, Im GI

Histone deacetylase inhibitors (HDACi) are a class of compounds that suppress the function of histone deacetylases (HDACs). This study was performed to examine the effects of Trichostatin A (TSA), a...
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The Effects of Alloderm, Chitosan Mesh and Gelfoam in Chondrogenesis of Auricular Cartilage Donor Site in Rabbits

Yu YI, Kim JC, Kim SH, Paik MH, Kim SH, Kim MK

  • KMID: 2203892
  • J Korean Soc Plast Reconstr Surg.
  • 2001 Mar;28(2):156-162.
Auricle is frequently used as a donor site of autogenous cartilage graft, but a lot of cartilage donation can make auricular deformity. In various animal studies, perichondrium has been described...
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Transcriptional Network Controlling Endochondral Ossification

Hata K, Takahata Y, Murakami T, Nishimura

Endochondral ossification is the fundamental process of skeletal development in vertebrates. Chondrocytes undergo sequential steps of differentiation, including mesenchymal condensation, proliferation, hypertrophy, and mineralization. These steps, which are required for...
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Curcumin inhibits cellular condensation and alters microfilament organization during chondrogenic differentiation of limb bud mesenchymal cells

Kim D, Kim SJ, Kang SS, Jin EJ

Curcumin is a well known natural polyphenol product isolated from the rhizome of the plant Curcuma longa, anti-inflammatory agent for arthritis by inhibiting synthesis of inflammatory prostaglandins. However, the mechanisms...
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Overexpression of SOX9 in mouse embryonic stem cells directs the immediate chondrogenic commitment

Kim JH, Do HJ, Yang HM, Oh JH, Choi SJ, Kim DK, Cha KY, Chung HM

  • KMID: 1093460
  • Exp Mol Med.
  • 2005 Aug;37(4):261-268.
Mouse embryonic stem (mES) cells are capable of undergoing chondrogenesis in vitro. To enhance this process, the human SOX9 (hSOX9) cDNA was delivered into mES cells and the clones overexpressing...
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Current Stem Cell Therapy for Osteoarthritis

Nam Y, Rim YA, Ju JH

Osteoarthritis is a musculoskeletal disease representative of an aging society. As medical conditions are usually complicated in an aging population, osteoarthritis becomes more frequently encountered in the physician's office. There...
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Autologous Bone Marrow Mesenchymal Cell Induced Chondrogenesis for the Treatment of Osteoarthritis of Knee

Huh SW, Shetty AA, Kim JM, Cho ML, Kim SA, Yang S, Kim YJ, Javaregowda PK, Choi NY, Kang J, Kim SJ

Healthy and high quality of life has become the main issue with increasing human life span. Many biological treatments for osteoarthritis of the knee have been tried with limited success....
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Disc-Type Hyaline Cartilage Reconstruction Using 3D-Cell Sheet Culture of Human Bone Marrow Stromal Cells and Human Costal Chondrocytes and Maintenance of Its Shape and Phenotype after Transplantation

Jang J, Lee J, Lee E, Lee E, Son Y

In this study, we developed the disc-type bio-cartilage reconstruction strategies for transplantable hyaline cartilage for reconstructive surgery using 3D-cell sheet culture of human bone marrow stromal cells and human costal...
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Effect of beta-Ig H3 on Chondrogenesis by Human Bone Marrow Mesenchymal Stem Cells

Lee TK, Kwun KW, Kim SG, Kim IS, Cho MR, Cho DW

  • KMID: 2399093
  • J Korean Orthop Assoc.
  • 2004 Aug;39(4):373-379.
PURPOSE: This study was undertaken to compare the activity of beta-Ig H3 (BigH3) and transforming growth factor (TGF)-beta on chondrogenesis by mesenchymal stem cells (MSCs). MATERIALS AND METHODS: MSCs in...
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Efficacy of AlloDerm(R) and Chitosan for Generating Cartilage in Free Perichondrial Graft

Sohn SS, Kim JC, Kim SH, Kim SH, Kim MK, Paik MH

  • KMID: 1942497
  • J Korean Soc Plast Reconstr Surg.
  • 2001 Jul;28(4):373-379.
Many qualitative studies examining the chondrogenic potential of perichondrium have suggested that it may be useful for correction of microtia or for reconstruction of trachea, nasal septum, ala and eyelids,...
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Comparison of Phenotypic Characterization between "Alginate Bead" and "Pellet" Culture Systems as Chondrogenic Differentiation Models for Human Mesenchymal Stem Cells

Yang IH, Kim SH, Kim YH, Sun HJ, Kim SJ, Lee JW

Chondrogenesis involves the recruitment of mesenchymal cells to differentiate into chondroblasts, and also the cells must synthesize a cartilage-specific extracellular matrix. There were two representative culture systems that promoted the...
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Pulmonary tuberculosis occurred in patient with Tracheobronchopathia Osteochondroplastica

Shim JW, Kim JH, Jang YW, Sung YM, Kim N, Lee SM

Tracheobronchopathia osteoplastica (TO) is a rare benign disease in which the anterior inner wall of the tracheobronchus changes because of abnormal chondrogenesis or ossification, while the posterior wall of the...
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The Effect of the Plasma Treatment on PLGA Scaffold for Adhesion and Chondrogenic Differentiation of Human Adipose-derived Stromal Cells

Dong CJ, Jun YJ, Cho HM, Oh DY, Han DK, Rhie JW, Ahn ST

  • KMID: 2120057
  • J Korean Soc Plast Reconstr Surg.
  • 2006 Jan;33(1):46-52.
High-density micromass culture was needed to take three dimensions culture with ASCs(adipose derived stromal cells) and chondrogenesis. However, the synthetic polymer has hydrophobic character and low affinity to cells and...
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