切换至 "中华医学电子期刊资源库"

中华肩肘外科电子杂志 ›› 2020, Vol. 08 ›› Issue (01) : 82 -84. doi: 10.3877/cma.j.issn.2095-5790.2020.01.014

所属专题: 骨科学 文献

综述

肩袖损伤基因表达变化的研究进展
张一翀1, 寇玉辉2, 张晓萌3, 王艳华2, 陈建海1, 张殿英4, 姜保国5,()   
  1. 1. 100044 北京大学人民医院创伤骨科
    2. 100044 北京大学人民医院创伤骨科;100044 北京大学人民医院创伤与神经再生研究所
    3. 100044 北京大学人民医院创伤与神经再生研究所;100044 北京大学创伤医学中心
    4. 100044 北京大学人民医院创伤骨科;100044 北京大学人民医院创伤与神经再生研究所;300450 天津,北京大学滨海医院骨科
    5. 100044 北京大学人民医院创伤骨科;100044 北京大学人民医院创伤与神经再生研究所;100044 北京大学创伤医学中心
  • 收稿日期:2019-04-18 出版日期:2020-02-05
  • 通信作者: 姜保国
  • 基金资助:
    教育部创新团队(IRT1601); 创伤与神经再生教育部重点实验室(立项)国家重点研发计划(2016YFC1101600); 创伤救治与神经再生教育部重点实验室(BMU2019XY007-01); 北京市科技计划项目(D161100002816001)

The research progress of gene expression in rotator cuff injury

Yichong Zhang1, Yuhui Kou2, Xiaomeng Zhang3   

  • Received:2019-04-18 Published:2020-02-05
引用本文:

张一翀, 寇玉辉, 张晓萌, 王艳华, 陈建海, 张殿英, 姜保国. 肩袖损伤基因表达变化的研究进展[J]. 中华肩肘外科电子杂志, 2020, 08(01): 82-84.

Yichong Zhang, Yuhui Kou, Xiaomeng Zhang. The research progress of gene expression in rotator cuff injury[J]. Chinese Journal of Shoulder and Elbow(Electronic Edition), 2020, 08(01): 82-84.

[1]
刘佳超,陈建海,黄伟,等. 肩袖损伤MRI与关节镜下表现对比的初步研究 [J/CD]. 中华肩肘外科电子杂志, 2013,1(1): 36-39.
[2]
刘玉杰,卢世璧. 肩袖损伤的诊断和治疗进展 [J]. 中华创伤杂志, 1998, 14(5): 340-342.
[3]
Tempelhop S, Rupp S, Sell R. Age-related prevalence of rotator cuff tears in asymptomatic shoulders [J]. J Shoulder Elbow Surg, 1999, 8(4): 296-299.
[4]
Harvie P, Ostlere SJ, Teh J, et al. Genetic influences in the aetiology of tears of the rotator cuff. Sibling risk of a full-thickness tear [J]. J Bone Joint Surg , 2004, 86(5): 696-700.
[5]
Tashjian RZ, Farnham JM, Albright FS, et al. Evidence for an inherited predisposition contributing to the risk for rotator cuff disease [J]. J Bone Joint Surg, 2009, 91(5): 1136-1142.
[6]
Keener J D, Wei AS, Kim HM, et al. Proximal humeral migration in shoulders with symptomatic and asymptomatic rotator cuff tears [J]. J Bone Joint Surg , 2009, 91(6): 1405-1413.
[7]
Almkkinders LC, Deol G. The effects of aging, antiinflammatory drugs, and ultrasound on the in vitro response of tendon tissue [J]. Am J Sports Med, 1999, 27(4): 417-421.
[8]
Matthews TJ, Hand GC, Rees JL, et al. Pathology of the torn rotator cuff tendon. Reduction in potential for repair as tear size increases [J]. J Bone Joint Surg , 2006, 88(4): 489-495.
[9]
Premdas J, Tang JB, Warner JP, et al. The presence of smooth muscle actin in fibroblasts in the torn human rotator cuff [J]. J Orthop Res, 2001, 19(2): 221-228.
[10]
Kovacevic D, Fox AJ, Bedi A, et al. Calcium-phosphate matrix with or without TGF-beta3 improves tendon-bone healing after rotator cuff repair [J]. Am J Sports Med, 2011, 39(4): 811-819.
[11]
Thankam FG, Dilisio MF, Gross RM, et al. Collagen I: a kingpin for rotator cuff tendon pathology [J]. Am J Translational Res, 2018, 10(11): 3291-3309.
[12]
Koshima H, Kondo S, Mishima S, et al. Expression of interleukin-1beta, cyclooxygenase-2, and prostaglandin E2 in a rotator cuff tear in rabbits [J]. J Orthop Res, 2007, 25(1): 92-97.
[13]
Longo UG, Franceschi F, Ruzzini L, et al. Histopathology of the supraspinatus tendon in rotator cuff tears [J]. Am J Sports Med, 2008, 36(3): 533-538.
[14]
Lakemeier S, Reichelt JJ, Patzer T, et al. The association between retraction of the torn rotator cuff and increasing expression of hypoxia inducible factor 1α and vascular endothelial growth factor expression: an immunohistological study [J]. BMC Musculoskelet Disord, 2010, 11(1): 230.
[15]
The 187th Meeting of the pathological aociety of great britain and ireland. 6-7 january 2005, London, United Kingdom. Abstracts [J]. J Pathol, 2005, 205 (1):1A-19A.
[16]
Brown H, Ehrlich HP, Newberne PM, et al. Para osteo arthropathy--ectopic ossification of healing tendon about the rodent ankle joint: histologic and type V collagen changes [J]. Proc Soc Exp Biol Med, 1986, 183(2): 214-220.
[17]
Schmutz S, Fuchs T, Regenfelder F, et al. Expression of atrophy mRNA relates to tendon tear size in supraspinatus muscle [J]. Clin Orthop Relat Res, 2009, 467(2): 457-464.
[18]
Oliva F, Barisani D, Grasso A, et al. Gene expression analysis in calcific tendinopathy of the rotator cuff [J]. Eur Cell Mater, 2011, 21:548-557.
[19]
陈建海,张一翀,张殿英,等. 肩关节钙化性肌腱炎的关节镜治疗及急慢性期疗效比较 [J/CD]. 中华肩肘外科电子杂志, 2015,3(2): 28-34.
[20]
Frey E, Regenfelder F, Sussmann P, et al. Adipogenic and myogenic gene expression in rotator cuff muscle of the sheep after tendon tear [J]. J Orthop Res, 2009, 27(4): 504-509.
[21]
Itoigawa Y, Kishimoto KN, Sano H, et al. Molecular mechanism of fatty degeneration in rotator cuff muscle with tendon rupture [J]. J Orthop Res, 2011, 29(6): 861-866.
[22]
Scott A, Cook JL, Hart DA, et al. Tenocyte responses to mechanical loading in vivo: a role for local insulin-like growth factor 1 signaling in early tendinosis in rats [J]. Arthritis Rheumatism, 2007, 56(3): 871-881.
[23]
Steinbacher P, Tauber M, Kogler S, et al. Effects of rotator cuff ruptures on the cellular and intracellular composition of the human supraspinatus muscle [J]. Tissue Cell, 2010, 42(1): 37-41.
[24]
Molloy TJ, Kemp MW, Wang Y, et al. Microarray analysis of the tendinopathic rat supraspinatus tendon: glutamate signaling and its potential role in tendon degeneration [J]. J Appl Physiol (1985), 2006, 101(6): 1702-1709.
[25]
Jelinsky SA, Lake SP, Archambault JM, et al. Gene expression in rat supraspinatus tendon recovers from overuse with rest [J]. Clin Orthop Relat Res, 2008, 466(7): 1612-1617.
[26]
Smith MM, Sakurai G, Smith SM, et al. Modulation of aggrecan and ADAMTS expression in ovine tendinopathy induced by altered strain [J]. Arthritis Rheum, 2008, 58(4): 1055-1066.
[27]
Thornton GM, Shao X, Chung M, et al. Changes in mechanical loading lead to tendonspecific alterations in MMP and TIMP expression: influence of stress deprivation and intermittent cyclic hydrostatic compression on rat supraspinatus and Achilles tendons [J]. British J Sports Med, 2010, 44(10): 698-703.
[28]
Sun HB, Li Y, Fung DT, et al. Coordinate regulation of IL-1beta and MMP-13 in rat tendons following subrupture fatigue damage [J]. Clin Orthop Relat Res, 2008, 466(7): 1555-1561.
[29]
Cohen DB, Kawamura S, Ehteshami JR, et al. Indomethacin and celecoxib impair rotator cuff tend on-to-bone healing [J]. Am J Sports Med, 2006, 34(3): 362-369.
[30]
Poulsen RC, Carr AJ, Hulley PA. Protection against glucocorticoid-induced damage in human tenocytes by modulation of ERK, Akt, and forkhead signaling [J]. Endocrinology, 2011, 152(2): 503-514.
[31]
Bedi A, Dines J, Warren RF, et al. Massive tears of the rotator cuff [J]. J Bone Joint Surg, 2010, 92(9): 1894-1908.
[32]
Corps AN, Harrall RL, Curry VA, et al. Ciprofloxacin enhances the stimulation of matrix metalloproteinase 3 expression by interleukin-1beta in human tendon-derived cells. a potential mechanism of fluoroquinolone-induced tendinopathy [J]. Arthritis Rheum, 2002, 46(11): 3034-3040.
[33]
Das R, Rich J, Kim HM, et al. Effects of botulinum toxin-induced paralysis on postnatal development of the supraspinatus muscle [J]. J Orthop Res, 2011, 29(2): 281-288.
[34]
Gulotta LV, Kovacevic D, Montgomery S, et al. Stem cells genetically modified with the developmental gene MT1-MMP improve regeneration of the supraspinatus tendon-to-bone insertion site [J]. Am J Sports Med, 2010, 38(7): 1429-1437.
[35]
Hoffmann A, Pelled G, Turgeman G, et al. Neotendon formation induced by manipulation of the Smad8 signalling pathway in mesenchymal stem cells [J]. J Clin Invest, 2006, 116(4): 940-952.
No related articles found!
阅读次数
全文


摘要