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中华肩肘外科电子杂志 ›› 2021, Vol. 09 ›› Issue (04) : 305 -309. doi: 10.3877/cma.j.issn.2095-5790.2021.04.004

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肩袖补片在巨大肩袖撕裂中的应用现状和展望
姜双鹏1, 艾笛1, 张腾1, 司庆华1, 彭立彬1, 姚琦1,()   
  1. 1. 100038 首都医科大学附属北京世纪坛医院关节外科骨肿瘤科
  • 收稿日期:2021-10-19 出版日期:2021-11-05
  • 通信作者: 姚琦

Application status and prospect of rotator cuff patches in massive rotator cuff tears

Shuangpeng Jiang1, Di Ai1, Teng Zhang1   

  • Received:2021-10-19 Published:2021-11-05
引用本文:

姜双鹏, 艾笛, 张腾, 司庆华, 彭立彬, 姚琦. 肩袖补片在巨大肩袖撕裂中的应用现状和展望[J]. 中华肩肘外科电子杂志, 2021, 09(04): 305-309.

Shuangpeng Jiang, Di Ai, Teng Zhang. Application status and prospect of rotator cuff patches in massive rotator cuff tears[J]. Chinese Journal of Shoulder and Elbow(Electronic Edition), 2021, 09(04): 305-309.

[1]
Srinivasan RC, Elhassan BT, Wright TW. Rotator Cuff Repair and Reconstruction[J]. J Hand Surg, 2021, 46 (6): 493-500.
[2]
Doiron-Cadrin P, Lafrance S, Saulnier M, et al. Shoulder Rotator Cuff Disorders: A Systematic Review of Clinical Practice Guidelines and Semantic Analyses of Recommendations[J]. Arch Phys Med Rehabil, 2020, 101 (7): 1233-1242.
[3]
Cofield RH, Parvizi J, Hoffmeyer PJ, et al. Surgical repair of chronic rotator cuff tears. A prospective long-term study[J]. J Bone Joint Surg Am, 2001, 83 (1): 71-77.
[4]
Gerber C, Fuchs B, Hodler J. The results of repair of massive tears of the rotator cuff[J]. J Bone Joint Surg Am, 2000, 82 (4): 505-515.
[5]
Guevara JA, Entezari V, Ho JC, et al. An Update on Surgical Management of the Repairable Large-to-Massive Rotator Cuff Tear[J]. J Bone Joint Surg Am, 2020, 102 (19): 1742-1754.
[6]
Chalmers PN, Tashjian RZ. Patch Augmentation in Rotator Cuff Repair[J]. Curr Rev Musculoskelet Med, 2020, 13 (5): 561-571.
[7]
Steinhaus ME, Makhni EC, Cole BJ, et al. Outcomes After Patch Use in Rotator Cuff Repair[J]. Arthroscopy, 2016, 32 (8): 1676-1690.
[8]
Mihata T, McGarry MH, Pirolo JM, et al. Superior capsule reconstruction to restore superior stability in irreparable rotator cuff tears: a biomechanical cadaveric study[J]. Am J Sports Med, 2012, 40 (10): 2248-2255.
[9]
Boutsiadis A, Chen S, Jiang C, et al. Long Head of the Biceps as a Suitable Available Local Tissue Autograft for Superior Capsular Reconstruction: "The Chinese Way" [J]. Arthrosc Tech, 2017, 6 (5): e1559-e1566.
[10]
尚西亮,吕婧仪,陈疾忤, 等. 关节镜下肱二头肌长头腱转位固定辅助替代上关节囊重建(Chinese Way)修补巨大及不可修复肩袖撕裂的临床疗效[J]. 中国运动医学杂志, 2019, 38 (8): 652-657.
[11]
Rhee SM, Oh JH. Bridging Graft in Irreparable Massive Rotator Cuff Tears: Autogenic Biceps Graft versus Allogenic Dermal Patch Graft[J]. Clin Orthop Surg, 2017, 9 (4): 497-505.
[12]
Vitali M, Cusumano A, Pedretti A, et al. Employment of synthetic patch with augmentation of the long head of the biceps tendon in irreparable lesions of the rotator cuff: our technique applied to 60 patients[J]. Tech Hand Up Extrem Surg, 2015, 19 (1): 32-39.
[13]
Li H, Jiang J, Wu Y, et al. Potential mechanisms of a periosteum patch as an effective and favourable approach to enhance tendon-bone healing in the human body[J]. Int Orthop, 2012, 36 (3): 665-669.
[14]
Scheibel M, Brown A, Woertler K, et al. Preliminary results after rotator cuff reconstruction augmented with an autologous periosteal flap[J]. Knee Surg Sports Traumatol Arthrosc, 2007, 15 (3): 305-314.
[15]
Mori D, Funakoshi N, Yamashita F. Arthroscopic surgery of irreparable large or massive rotator cuff tears with low-grade fatty degeneration of the infraspinatus: patch autograft procedure versus partial repair procedure[J]. Arthroscopy, 2013, 29 (12): 1911-1921.
[16]
de Campos Azevedo CI, Andrade R, Leiria Pires Gago Ângelo AC, et al. Fascia Lata Autograft Versus Human Dermal Allograft in Arthroscopic Superior Capsular Reconstruction for Irreparable Rotator Cuff Tears: A Systematic Review of Clinical Outcomes[J]. Arthroscopy, 2020, 36 (2): 579-591,e572.
[17]
Anastasopoulos PP, Alexiadis G, Spyridonos S, et al. Latissimus Dorsi Transfer in Posterior Irreparable Rotator Cuff Tears[J]. Open Orthop J, 2017, 11: 77-94.
[18]
Gerber C, Vinh TS, Hertel R, et al. Latissimus dorsi transfer for the treatment of massive tears of the rotator cuff. A preliminary report[J]. Clin Orthop Relat Res, 1988, (232): 51-61.
[19]
De Casas R, Lois M, Cidoncha M, et al. Clinic and electromyographic results of latissimus dorsi transfer for irreparable posterosuperior rotator cuff tears[J]. J Orthop Surg Res, 2014, 9: 83.
[20]
Gerber C, Rahm SA, Catanzaro S, et al. Latissimus dorsi tendon transfer for treatment of irreparable posterosuperior rotator cuff tears: long-term results at a minimum follow-up of ten years[J]. J Bone Joint Surg Am, 2013, 95 (21): 1920-1926.
[21]
Kirsner RS, Bohn G, Driver VR, et al. Human acellular dermal wound matrix: evidence and experience[J]. Int Wound J, 2015, 12 (6): 646-654.
[22]
Barber FA, Burns JP, Deutsch A, et al. A prospective, randomized evaluation of acellular human dermal matrix augmentation for arthroscopic rotator cuff repair[J]. Arthroscopy, 2012, 28 (1): 8-15.
[23]
Gilot GJ, Alvarez-Pinzon AM, Barcksdale L, et al. Outcome of Large to Massive Rotator Cuff Tears Repaired With and Without Extracellular Matrix Augmentation: A Prospective Comparative Study[J]. Arthroscopy, 2015, 31 (8): 1459-1465.
[24]
Mast BA, Schultz GS. Interactions of cytokines, growth factors, and proteases in acute and chronic wounds[J]. Wound Repair Regen, 1996, 4 (4): 411-420.
[25]
Malcarney HL, Bonar F, Murrell GA. Early inflammatory reaction after rotator cuff repair with a porcine small intestine submucosal implant: a report of 4 cases[J]. Am J Sports Med, 2005, 33 (6): 907-911.
[26]
McGrath LA, Hardy TG, McNab AA. Efficacy of porcine acellular dermal matrix in the management of lower eyelid retraction: case series and review of the literature[J]. Graefes Arch Clin Exp Ophthalmol, 2020, 258 (9): 1999-2006.
[27]
Gupta AK, Hug K, Boggess B, et al. Massive or 2-tendon rotator cuff tears in active patients with minimal glenohumeral arthritis: clinical and radiographic outcomes of reconstruction using dermal tissue matrix xenograft[J]. Am J Sports Med, 2013, 41 (4): 872-879.
[28]
Badhe SP, Lawrence TM, Smith FD, et al. An assessment of porcine dermal xenograft as an augmentation graft in the treatment of extensive rotator cuff tears[J]. J Shoulder Elbow Surg, 2008, 17 (1 Suppl): 35s-39s.
[29]
Ciampi P, Scotti C, Nonis A, et al. The benefit of synthetic versus biological patch augmentation in the repair of posterosuperior massive rotator cuff tears: a 3-year follow-up study[J]. Am J Sports Med, 2014, 42 (5): 1169-1175.
[30]
Coons DA, Alan Barber F. Tendon graft substitutes-rotator cuff patches[J]. Sports Med Arthrosc Rev, 2006, 14 (3): 185-190.
[31]
Cai YZ, Zhang C, Jin RL, et al. Arthroscopic Rotator Cuff Repair With Graft Augmentation of 3-Dimensional Biological Collagen for Moderate to Large Tears: A Randomized Controlled Study[J]. Am J Sports Med, 2018, 46 (6): 1424-1431.
[32]
Shepherd HM, Lam PH, Murrell GA. Synthetic Patch Rotator Cuff Repair: A 10-year Follow-Up[J]. Shoulder Elbow, 2014, 6 (1): 35-39.
[33]
Encalada-Diaz I, Cole BJ, Macgillivray JD, et al. Rotator cuff repair augmentation using a novel polycarbonate polyurethane patch: preliminary results at 12 months’ follow-up[J]. J Shoulder Elbow Surg, 2011, 20 (5): 788-794.
[34]
McElvany MD, McGoldrick E, Gee AO, et al. Rotator cuff repair: published evidence on factors associated with repair integrity and clinical outcome[J]. Am J Sports Med, 2015, 43 (2): 491-500.
[35]
Anderson JM, Rodriguez A, Chang DT. Foreign body reaction to biomaterials[J]. Semin Immunol, 2008, 20 (2): 86-100.
[36]
Jaiswal D, Yousman L, Neary M, et al. Tendon tissue engineering: biomechanical considerations[J]. Biomed Mater, 2020, 15 (5): 052001.
[37]
Sharma P, Kumar P, Sharma R, et al. Tissue Engineering; Current Status & Futuristic Scope[J]. J Med Life, 2019, 12 (3): 225-229.
[38]
Pina S, Ribeiro VP, Marques CF, et al. Scaffolding Strategies for Tissue Engineering and Regenerative Medicine Applications[J]. Materials (Basel), 2019, 12 (11):1824.
[39]
Tarafder S, Brito JA, Minhas S, et al. In situ tissue engineering of the tendon-to-bone interface by endogenous stem/progenitor cells[J]. Biofabrication, 2019, 12 (1): 015008.
[40]
Jiang X, Wu S, Kuss M, et al. 3D printing of multilayered scaffolds for rotator cuff tendon regeneration[J]. Bioact Mater, 2020, 5 (3): 636-643.
[41]
Lim TK, Dorthé E, Williams A, et al. Nanofiber Scaffolds by Electrospinning for Rotator Cuff Tissue Engineering[J]. Chonnam Med J, 2021, 57 (1): 13-26.
[42]
Liu Q, Yu Y, Reisdorf RL, et al. Engineered tendon-fibrocartilage-bone composite and bone marrow-derived mesenchymal stem cell sheet augmentation promotes rotator cuff healing in a non-weight-bearing canine model[J]. Biomaterials, 2019, 192: 189-198.
[43]
Yea JH, Bae TS, Kim BJ, et al. Regeneration of the rotator cuff tendon-to-bone interface using umbilical cord-derived mesenchymal stem cells and gradient extracellular matrix scaffolds from adipose tissue in a rat model[J]. Acta Biomater, 2020, 114: 104-116.
[44]
Kim W, Kim GE, Attia Abdou M, et al. Tendon-Inspired Nanotopographic Scaffold for Tissue Regeneration in Rotator Cuff Injuries[J]. ACS Omega, 2020, 5 (23): 13913-13925.
[45]
Zheng Z, Ran J, Chen W, et al. Alignment of collagen fiber in knitted silk scaffold for functional massive rotator cuff repair[J]. Acta Biomater, 2017, 51: 317-329.
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