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中华关节外科杂志(电子版) ›› 2021, Vol. 15 ›› Issue (02) : 225 -230. doi: 10.3877/cma.j.issn.1674-134X.2021.02.015

所属专题: 文献

综述

肩袖补片在巨大肩袖损伤治疗中的研究进展
于承浩1, 张益1, 陈进利1, 戚超1, 李海峰1, 于腾波1,()   
  1. 1. 266071 青岛大学附属医院
  • 收稿日期:2020-04-24 出版日期:2021-04-01
  • 通信作者: 于腾波

Research progress of rotator cuff patch in treatment of massive rotator cuff injury

Chenghao Yu1, Yi Zhang1, Jinli Chen1, Chao Qi1, Haifeng Li1, Tengbo Yu1,()   

  1. 1. Affiliated hospital of Qingdao university, Qingdao 266071, China
  • Received:2020-04-24 Published:2021-04-01
  • Corresponding author: Tengbo Yu
引用本文:

于承浩, 张益, 陈进利, 戚超, 李海峰, 于腾波. 肩袖补片在巨大肩袖损伤治疗中的研究进展[J/OL]. 中华关节外科杂志(电子版), 2021, 15(02): 225-230.

Chenghao Yu, Yi Zhang, Jinli Chen, Chao Qi, Haifeng Li, Tengbo Yu. Research progress of rotator cuff patch in treatment of massive rotator cuff injury[J/OL]. Chinese Journal of Joint Surgery(Electronic Edition), 2021, 15(02): 225-230.

巨大肩袖撕裂可引起关节疼痛、僵硬和活动范围限制。目前巨大肩袖撕裂以手术治疗为主,但术后再撕裂率很高,其原因与撕裂大小、血液供应、脂肪浸润、年龄、肌肉萎缩等因素相关。同时,张力是导致肩袖修补手术失败的一项重要原因,肩袖补片则被认为是进行无张力或微张力修复的极佳治疗选择。为降低再撕裂率、改善手术效果,各种类型肩袖补片应运而生,为大面积肩袖损伤提供了更多选择。本文综述了应用肩袖补片治疗巨大肩袖撕裂的治疗机制、材料分类、应用进展以及肩袖补片相关动物实验研究进展,从而为临床工作提供更多治疗方案指导。

Massive rotator cuff tears can cause joint pain, stiffness and limited range of motion. The main treatment of rotator cuff is surgery, but the postoperative re-tear rate is very high, which is related to tear size, blood supply, fatty infiltration, age, and muscle atrophy, etc. Tension is another important factor of the surgery failure, so the rotator cuff patch is considered as an excellent treatment option for tension-free or micro-tension repair. In order to reduce the rate of re-tear and improve the effect of surgery, various types of rotator cuff patches have emerged, providing more options for massive rotator cuff injury. In order to provide more treatment guidance for clinical work, this paper reviewed the treatment mechanism, material classification, application and animal research progress of rotator cuff patch in the treatment of large rotator cuff tear.

[1]
Forsythe B, Agarwalla A, Puzzitiello RN, et al. Clinical function improves after subacromial injection of local anesthetic in full-thickness rotator cuff tears: a randomized control trial[J/OL]. Orthop J Sports Med, 2020, 8(1): 2325967119892331. doi: 10.1177/2325967119892331.
[2]
Iyengar JJ, Samagh SP, Schairer W, et al. Current trends in rotator cuff repair: surgical technique, setting, and cost[J]. Arthroscopy, 2014, 30(3): 284-288.
[3]
Dang A, Davies M. Rotator cuff disease: treatment options and considerations[J].Sports Med Arthrosc Rev, 2018, 26(3): 129-133.
[4]
Zingg PO, Jost B, Sukthankar A, et al. Clinical and structural outcomes of nonoperative management of massive rotator cuff tears[J]. J Bone Joint Surg Am, 2007, 89(9): 1928-1934.
[5]
Iannotti JP, Deutsch A, Green A, et al. Time to failure after rotator cuff repair: a prospective imaging study[J]. J Bone Joint Surg Am, 2013, 95(11): 965-971.
[6]
Neri BR, Chan KW, Kwon YW. Management of massive and irreparable rotator cuff tears[J]. J Shoulder Elbow Surg, 2009, 18: 808-818.
[7]
Boileau P, Brassart N, Watkinson DJ, et al. Arthroscopic repair of full-thickness tears of the supraspinatus: does the tendon really heal?[J]. J Bone Joint Surg Am, 2005, 87: 1229-1240.
[8]
Galatz LM, Ball CM, Teefey SA, et al. The outcome and repair integrity of completely arthroscopically repaired large and massive rotator cuff tears[J]. J Bone Joint Surg Am, 2004, 86-A(2): 219-224.
[9]
Cole BJ, Mccarty LP, Kang RW, et al. Arthroscopic rotator cuff repair: prospective functional outcome and repair integrity at minimum 2-year follow-up[J]. J Shoulder Elbow Surg, 2007, 16(5): 579-585.
[10]
陈建海,Greenspoon, JA,等. 巨大肩袖撕裂:病理机制、治疗方法和临床结果[J/CD]. 中华肩肘外科电子杂志,2015,3(4):45-50.
[11]
Oh JH, Mcgarry MH, Jun BJ, et al. Restoration of shoulder biomechanics according to degree of repair completion in a cadaveric model of massive rotator cuff tear: importance of margin convergence and posterior cuff fixation[J]. Am J Sports Med, 2012, 40(11): 2448-2453.
[12]
Chen J, Xu J, Wang A, et al. Scaffolds for tendon and ligament repair: review of the efficacy of commercial products[J]. Expert Rev Med Devices, 2009, 6(1): 61-73.
[13]
Mehta VM, Mandala CL, Shriver RJ, et al. Biomechanical effects of fiber patch augmentation on rotator cuff repairs[J]. Orthopedics, 2020, 43(1): 42-45.
[14]
Thon SG, O′malley L2, O′brien MJ, et al. Evaluation of healing rates and safety with a bioinductive collagen patch for large and massive rotator cuff tears: 2-year safety and clinical outcomes[J]. Am J Sports Med, 2019, 47(8): 1901-1908.
[15]
Yoon JP, Chung SW, Jy K, et al. Outcomes of combined bone marrow stimulation and patch augmentation for massive rotator cuff tears[J]. Am J Sports Med, 2016, 44(4): 963-971.
[16]
Shepherd HM, Lam PH, Murrell G. Synthetic patch rotator cuff repair: a 10-year follow-up[J]. Shoulder Elbow, 2014, 6: 35-39.
[17]
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.
[18]
Chalmers PN, Frank RM, Gupta AK, et al. All-arthroscopic patch augmentation of a massive rotator cuff tear: surgical technique[J/OL]. Arthrosc Tech, 2013, 2(4): e447-e451.doi: 10.1016/j.eats.2013.07.003.
[19]
Chen T, Zhang P, Chen J, et al. Long-Term outcomes of anterior cruciate ligament reconstruction using either synthetics with remnant preservation or hamstring autografts: a 10-year longitudinal study[J]. Am J Sports Med, 2017, 45(12): 2739-2750.
[20]
Petri M, Greenspoon JA, Bhatia S, et al. Patch-augmented latissimus dorsi transfer and open Reduction-Internal fixation of unstable os acromiale for irreparable massive posterosuperior rotator cuff tear[J/OL]. Arthrosc Tech, 2015, 4(5): e487-e492. doi: 10.1016/j.eats.2015.05.007.
[21]
Petrie MJ, Ismaiel AH. Treatment of massive rotator-cuff tears with a polyester ligament (LARS) patch[J]. Acta Orthop Belg, 2013, 79(6): 620-625.
[22]
Kanbe K, Chiba J, Nakamura A. Histological evaluation after arthroscopic reconstruction of the shoulder using a polytetrafluoroethylene patch for massive rotator cuff tears[J]. Eur J Orthop Surg Traumatol, 2013: S183-S187.
[23]
Hirooka A, Yoneda M, Wakaitani S, et al. Augmentation with a Gore-Tex patch for repair of large rotator cuff tears that cannot be sutured[J]. J Orthop Sci, 2002, 7(4): 451-456.
[24]
Audenaert E, Van NJ, Schepens A, et al. Reconstruction of massive rotator cuff lesions with a synthetic interposition graft: a prospective study of 41 patients[J]. Knee Surg Sports Traumatol Arthrosc, 2006, 14(4): 360-364.
[25]
Cowling P, Hackney R, Dube B, et al. The use of a synthetic shoulder patch for large and massive rotator cuff tears - a feasibility study[J/OL]. BMC Musculoskelet Disord, 2020, 21(1): 213. doi:10.1186/s12891-020-03227-z.
[26]
Smolen D, Haffner N, Mittermayr R, et al. Application of a new polyester patch in arthroscopic massive rotator cuff repair-a prospective cohort study[J]. J Shoulder Elbow Surg, 2020, 29(1): e11-e21.
[27]
Proctor CS. Long-term successful arthroscopic repair of large and massive rotator cuff tears with a functional and degradable reinforcement device[J]. J Shoulder Elbow Surg, 2014, 23(10): 1508-1513.
[28]
Petri M, Greenspoon JA, Moulton SG, et al. Patch-augmented rotator cuff repair and superior capsule rconstruction[J]. Open Orthop J, 2016, 10: 315-323.
[29]
Hermanowicz K, Góralczyk A, Malinowski K, et al. Long head biceps tendon-natural patch for massive irreparable rotator cuff tears[J]. Arthrosc Tech, 2018, 7(5): e473-e478.
[30]
John R, Coady CM, Wong I. Revision of a failed latissimus dorsi transfer for a massive rotator cuff tear with arthroscopic anatomic bridging reconstruction using an acellular human dermal matrix allograft[J/OL]. Arthrosc Tech, 2019, 8: e1171-e1179. doi: 10.1016/j.eats.2019.06.007.
[31]
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.
[32]
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.
[33]
Bond JL, Dopirak RM, Higgins J, et al. Arthroscopic replacement of massive, irreparable rotator cuff tears using a GraftJacket allograft: technique and preliminary results[J/OL]. Arthroscopy, 2008, 24(4): 403-409.e1.doi: 10.1016/j.arthro.2007.07.033.
[34]
Wong I, Burns J, Snyder S. Arthroscopic GraftJacket repair of rotator cuff tears[J]. J Shoulder Elbow Surg, 2010, 19: 104-109.
[35]
Kokkalis ZT, Mavrogenis AF, Scarlat M, et al. Human dermal allograft for massive rotator cuff tears[J]. Orthopedics, 2014, 37(12): e1108-e1116.
[36]
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/OL]. Arthroscopy, 2020, 36: 579-591.e2. doi:10.1016/j.arthro.2019.08.033.
[37]
Gouk C, Shulman RM, Buchan C, et al. Failure of dermal allograft repair of massive rotator cuff tears in magnetic resonance imaging and clinical assessment[J]. Clin Orthop Surg, 2019, 11(2): 200-207.
[38]
Phipatanakul WP, Petersen S. Porcine small intestine submucosa xenograft augmentation in repair of massive rotator cuff tears[J]. Am J Orthop (Belle Mead NJ), 2009, 38(11): 572-575.
[39]
Giannotti S, Ghilardi M, Dell′osso G, et al. Study of the porcine dermal collagen repair patch in morpho-functional recovery of the rotator cuff after minimum follow-up of 2.5 years[J]. Surg Technol Int, 2014, 24: 348-352.
[40]
Kalina R, Neoral P, Holibka R, et al. Arthroscopic superior capsule reconstruction using the DX reinforcement matrix in patients with irreparable rotator cuff tears-pilot data[J]. Acta Chir Orthop Traumatol Cech, 2019, 86: 264-270.
[41]
Iannotti JP, Codsi J, Kwon YW, et al. Porcine small intestine submucosa augmentation of surgical repair of chronic two-tendon rotator cuff tears. A randomized, controlled trial[J]. J Bone Joint Surg Am, 2006, 88: 1238-1244.
[42]
Sclamberg SG, Tibone JE, Itamura JM, et al. Six-month magnetic resonance imaging follow-up of large and massive rotator cuff repairs reinforced with porcine small intestinal submucosa[J]. J Shoulder Elbow Surg, 2004, 13(5): 538-541.
[43]
Neumann JA, Zgonis MH, Rickert KD, et al. Interposition dermal matrix xenografts: a successful alternative to traditional treatment of massive rotator cuff tears[J]. Am J Sports Med, 2017, 45(6): 1261-1268.
[44]
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.
[45]
Ding S, Ge Y, Zheng M, et al. Arthroscopic superior capsular reconstruction using sandwich. Patch technique for irreparable rotator cuff tears[J/OL]. Arthrosc Tech, 2019, 8(9): e953-e959.doi: 10.1016/j.eats.2019.05.004.
[46]
Ji X, Chen Q, Thoreson AR, et al. Rotator cuff repair with a tendon-fibrocartilage-bone composite bridging patch[J]. Clin Biomech (Bristol, Avon), 2015, 30(9): 976-980.
[47]
Zhu M, Tay ML, Callon K, et al. Overlay repair with a synthetic collagen scaffold improves the quality of healing in a rat rotator cuff repair model[J]. J Shoulder Elbow Surg, 2019, 28(5): 949-958.
[48]
Roβbach BP, Gülecyüz MF, Kempfert L, et al. Rotator cuff repair with autologous tenocytes and biodegradable collagen scaffold: a histological and biomechanical study in sheep[J]. Am J Sports Med, 2020, 48: 450-459.
[49]
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/OL]. Biomaterials, 2019, 192:189. doi:10.1016/j.biomaterials.2018.10.037.
[50]
Derwin KA, Baker AR, Iannotti JP, et al. Preclinical models for translating regenerative medicine therapies for rotator cuff repair[J]. Tissue Eng Part B Rev, 2010, 16(1): 21-30.
[51]
Lee KW, Lee JS, Kim YS, et al. Effective healing of chronic rotator cuff injury using recombinant bone morphogenetic protein-2 coated dermal patch in vivo[J]. J Biomed Mater Res B Appl Biomater, 2017, 105(7): 1840-1846.
[52]
Gumucio J, Flood M, Harning J, et al. T lymphocytes are not required for the development of fatty degeneration after rotator cuff tear[J]. Bone Joint Res, 2014, 3(9): 262-272.
[53]
Butler DL, Juncosa N, Dressler MR. Functional efficacy of tendon repair processes[J]. Annu Rev Biomed Eng, 2004, 6(1):303-329.
[54]
Omi R, Gingery A, Steinmann SP, et al. Rotator cuff repair augmentation in a rat model that combines a multilayer xenograft tendon scaffold with bone marrow stromal cells[J]. J Shoulder Elbow Surg, 2016, 25(3): 469-477.
[55]
郭岗岗,庞亚博,杨建华,等.采用静电纺丝技术制备丝素纤维蛋白/聚已内酯临时肩袖补片[J].中国组织工程研究,2018,022(34):5501-5509.
[56]
高超,李超明,徐玉龙,等.静电纺丝聚己内酯/Ⅰ型胶原纳米纤维取向性补片用于肩袖修复[J].中国修复重建外科杂志,2019,33(5):628-633.
[57]
Gniesmer S, Brehm R, Hoffmann A, et al. Vascularization and biocompatibility of poly(ε-caprolactone) fiber mats for rotator cuff tear repair[J/OL]. PLoS One, 2020, 15(1): e0227563. doi:10.1371/journal.pone.0227563.
[58]
Jenkins TL, Meehan S, Pourdeyhimi B, et al. Meltblown polymer fabrics as candidate scaffolds for rotator cuff tendon tissue engineering[J]. Tissue Eng Part A, 2017, 23: 958-967.
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