Literature DB >> 19672634

Decreased osteogenic differentiation of mesenchymal stem cells and reduced bone mineral density in patients with adolescent idiopathic scoliosis.

Weon Wook Park1, Kuen Tak Suh, Jeung Il Kim, Seong-Jang Kim, Jung Sub Lee.   

Abstract

Generalized low bone mass and osteopenia in both axial and peripheral skeletons have been reported in adolescent idiopathic scoliosis (AIS). However, the mechanism and causes of bone loss in AIS have not been identified. Therefore, this study examined the relationship between the osteogenic and adipogenic differentiation abilities of mesenchymal stem cells (MSCs) and bone mass in 19 patients with AIS and compared these with those of 16 age- and gender-matched patients with lower leg fracture. Mean lumbar spinal bone mineral density (LSBMD) in AIS patients was found to be lower than in controls (P = 0.037) and the osteogenic differentiation abilities and alkaline phosphatase activities of MSCs from patients were also found to be lower than those of controls (P = 0.0073 and P = 0.001, respectively), but the abilities of the MSCs of patients and controls to undergo adipogenic differentiation were similar. The osteogenic differentiation ability was found to be positively correlated with alkaline phosphatase activity in the AIS group. However, the osteogenic and adipogenic abilities were not found to be correlated with LSBMD in either patients or controls. These findings suggest that the decreased osteogenic differentiation ability of MSCs might be one of the possible mechanisms leading to low bone mass in AIS. However, we did not determine definite mechanisms of low bone mass in AIS. Therefore, further study with large scale will be needed to identify the mechanism involved.

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Year:  2009        PMID: 19672634      PMCID: PMC2899449          DOI: 10.1007/s00586-009-1129-z

Source DB:  PubMed          Journal:  Eur Spine J        ISSN: 0940-6719            Impact factor:   3.134


  31 in total

1.  Generalized low areal and volumetric bone mineral density in adolescent idiopathic scoliosis.

Authors:  J C Cheng; L Qin; C S Cheung; A H Sher; K M Lee; S W Ng; X Guo
Journal:  J Bone Miner Res       Date:  2000-08       Impact factor: 6.741

Review 2.  The function of adipocytes in the bone marrow stroma: an update.

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Journal:  Bone       Date:  1996-11       Impact factor: 4.398

3.  Muscle spindles in the paraspinal musculature of patients with adolescent idiopathic scoliosis.

Authors:  D M Ford; K M Bagnall; C A Clements; K D McFadden
Journal:  Spine (Phila Pa 1976)       Date:  1988-05       Impact factor: 3.468

4.  Trabecular bone mineral density in idiopathic scoliosis.

Authors:  S D Cook; A F Harding; E L Morgan; R J Nicholson; K A Thomas; T S Whitecloud; E S Ratner
Journal:  J Pediatr Orthop       Date:  1987 Mar-Apr       Impact factor: 2.324

5.  Indications of disordered eating behaviour in adolescent patients with idiopathic scoliosis.

Authors:  F M Smith; G Latchford; R M Hall; P A Millner; R A Dickson
Journal:  J Bone Joint Surg Br       Date:  2002-04

6.  Osteopenia in adolescent idiopathic scoliosis: a histomorphometric study.

Authors:  J C Cheng; S P Tang; X Guo; C W Chan; L Qin
Journal:  Spine (Phila Pa 1976)       Date:  2001-02-01       Impact factor: 3.468

7.  Human trabecular bone cells are able to express both osteoblastic and adipocytic phenotype: implications for osteopenic disorders.

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Journal:  J Bone Miner Res       Date:  1998-03       Impact factor: 6.741

Review 8.  Involvement of adipogenic potential of human bone marrow mesenchymal stem cells (MSCs) in osteoporosis.

Authors:  J Pablo Rodríguez; Pablo Astudillo; Susana Ríos; Ana María Pino
Journal:  Curr Stem Cell Res Ther       Date:  2008-09       Impact factor: 3.828

9.  Paraspinal muscle imbalance in adolescent idiopathic scoliosis.

Authors:  D M Ford; K M Bagnall; K D McFadden; B J Greenhill; V J Raso
Journal:  Spine (Phila Pa 1976)       Date:  1984 May-Jun       Impact factor: 3.468

10.  Pathogenesis of idiopathic scoliosis: SEPs in chicken with experimentally induced scoliosis and in patients with idiopathic scoliosis.

Authors:  M Machida; J Dubousset; Y Imamura; T Iwaya; T Yamada; J Kimura; S Toriyama
Journal:  J Pediatr Orthop       Date:  1994 May-Jun       Impact factor: 2.324

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  17 in total

1.  Amentoflavone enhances osteogenesis of human mesenchymal stem cells through JNK and p38 MAPK pathways.

Authors:  Xuan Zha; Zhoumei Xu; Yuyu Liu; Liangliang Xu; Hongxin Huang; Jingjing Zhang; Liao Cui; Chenhui Zhou; Daohua Xu
Journal:  J Nat Med       Date:  2016-04-22       Impact factor: 2.343

2.  Long noncoding RNA lncAIS downregulation in mesenchymal stem cells is implicated in the pathogenesis of adolescent idiopathic scoliosis.

Authors:  Qianyu Zhuang; Buqing Ye; Shangyi Hui; Ying Du; Robert Chunhua Zhao; Jing Li; Zhihong Wu; Na Li; Yanbin Zhang; Hongling Li; Shengru Wang; Yang Yang; Shugang Li; Hong Zhao; Zusen Fan; Guixing Qiu; Jianguo Zhang
Journal:  Cell Death Differ       Date:  2018-11-21       Impact factor: 15.828

3.  Body composition in adolescent idiopathic scoliosis.

Authors:  Manuel Ramírez; Juana Martínez-Llorens; Juan Francisco Sanchez; Joan Bagó; Antoni Molina; Joaquim Gea; Enric Cáceres
Journal:  Eur Spine J       Date:  2012-08-12       Impact factor: 3.134

Review 4.  Altered physiology of mesenchymal stem cells in the pathogenesis of adolescent idiopathic scoliosis.

Authors:  Dai Sik Ko; Yun Hak Kim; Tae Sik Goh; Jung Sub Lee
Journal:  World J Clin Cases       Date:  2020-06-06       Impact factor: 1.337

5.  Differential proteome analysis of bone marrow mesenchymal stem cells from adolescent idiopathic scoliosis patients.

Authors:  Qianyu Zhuang; Jing Li; Zhihong Wu; Jianguo Zhang; Wei Sun; Tao Li; Yujuan Yan; Ying Jiang; Robert Chunhua Zhao; Guixing Qiu
Journal:  PLoS One       Date:  2011-04-22       Impact factor: 3.240

6.  Is decreased bone mineral density associated with development of scoliosis? A bipedal osteopenic rat model.

Authors:  Ozgur Dede; Ibrahim Akel; Gokhan Demirkiran; Nadir Yalcin; Ralph Marcucio; Emre Acaroglu
Journal:  Scoliosis       Date:  2011-10-31

7.  Normal leptin expression, lower adipogenic ability, decreased leptin receptor and hyposensitivity to Leptin in Adolescent Idiopathic Scoliosis.

Authors:  Guoyan Liang; Wenjie Gao; Anjing Liang; Wei Ye; Yan Peng; Liangming Zhang; Swarkar Sharma; Peiqiang Su; Dongsheng Huang
Journal:  PLoS One       Date:  2012-05-15       Impact factor: 3.240

8.  Fasting total ghrelin levels are increased in patients with adolescent idiopathic scoliosis.

Authors:  Jérôme Sales de Gauzy; Isabelle Gennero; Olivier Delrous; Jean-Pierre Salles; Benoit Lepage; Franck Accadbled
Journal:  Scoliosis       Date:  2015-11-30

9.  Vitamin D receptor gene (VDR) transcripts in bone, cartilage, muscles and blood and microarray analysis of vitamin D responsive genes expression in paravertebral muscles of juvenile and adolescent idiopathic scoliosis patients.

Authors:  Roman Nowak; Justyna Szota; Urszula Mazurek
Journal:  BMC Musculoskelet Disord       Date:  2012-12-23       Impact factor: 2.362

10.  Whither the etiopathogenesis (and scoliogeny) of adolescent idiopathic scoliosis? Incorporating presentations on scoliogeny at the 2012 IRSSD and SRS meetings.

Authors:  R Geoffrey Burwell; Peter H Dangerfield; Alan Moulton; Theodoros B Grivas; Jack Cy Cheng
Journal:  Scoliosis       Date:  2013-02-28
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