[1]秦 汉,于长鸿,王继宏.间充质干细胞治疗跟腱病机制研究进展[J].陕西医学杂志,2024,(9):1290-1293.[doi:DOI:10.3969/j.issn.1000-7377.2024.09.030]
 QIN Han,YU Changhong,WANG Jihong.Research progress on mechanisms of mesenchymal stem cell therapy for achilles tendinopathy[J].,2024,(9):1290-1293.[doi:DOI:10.3969/j.issn.1000-7377.2024.09.030]
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间充质干细胞治疗跟腱病机制研究进展
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《陕西医学杂志》[ISSN:1000-7377/CN:61-1281/TN]

卷:
期数:
2024年9期
页码:
1290-1293
栏目:
综 述
出版日期:
2024-09-05

文章信息/Info

Title:
Research progress on mechanisms of mesenchymal stem cell therapy for achilles tendinopathy
作者:
秦 汉12于长鸿12王继宏1
(1.内蒙古医科大学第二附属医院,内蒙古 呼和浩特 010010; 2.内蒙古医科大学,内蒙古 呼和浩特 010059)
Author(s):
QIN HanYU ChanghongWANG Jihong
(The Second Affiliated Hospital of Inner Mongolia Medical University,Hohhot 010010,China)
关键词:
跟腱病 间充质干细胞 肌腱愈合 外泌体 免疫调节
Keywords:
Achilles tendinopathy Mesenchymal stem cells Tendon healing Exosomes Immunomodulation
分类号:
R 686.1
DOI:
DOI:10.3969/j.issn.1000-7377.2024.09.030
文献标志码:
A
摘要:
跟腱病(AT)无论是通过保守疗法还是手术疗法,都无法完全恢复跟腱的自然成分、组织构造和机械性能。间充质干细胞(MSCs)能够向肌腱组织方向分化,并通过发挥其免疫调控、细胞外基质重塑和血管生成的功能,促进肌腱的愈合。在肌腱的再生和修复过程中,MSCs起着关键的作用,并且具有广阔的应用潜力。现对MSCs在治疗AT中的作用机制进行阐述,以期为AT的研究和治疗提供思路。
Abstract:
Achilles tendinopathy(AT)is unable to fully restore the natural composition,organization,and mechanical properties of the Achilles tendon,either through conservative or surgical therapies.Mesenchymal stem cells(MSCs)are able to differentiate toward tendon tissue and promote tendon healing by exerting their functions of immunomodulation,extracellular matrix remodeling,and angiogenesis.MSCs play a key role in tendon regeneration and repair and have a broad potential for application.In this paper,we review the mechanism of action of MSCs in the treatment of AT and hope to shed light on AT research and treatment.

参考文献/References:

[1] AICALE R,OLIVIERO A,MAFFULLI N.Management of achilles and patellar tendinopathy:What we know,what we can do[J].Journal of Foot and Ankle Research,2020,13(1):59.
[2] RIEL H,LINDSTRØM C F,RATHLEFF M S,et al.Prevalence and incidence rate of lower-extremity tendinopathies in a Danish general practice:A registry-based study[J].BMC Musculoskeletal Disorders,2019,20(1):239.
[3] PAVONE V,VESCIO A,MOBILIA G,et al.Conservative treatment of chronic achilles tendinopathy:A systematic review[J].Journal of Functional Morphology and Kinesiology,2019,4(3):46.
[4] BARG A,LUDWIG T.Surgical strategies for the treatment of insertional achilles tendinopathy[J].Foot and Ankle Clinics,2019,24(3):533-559.
[5] SCHNEIDER M,ANGELE P,JÄRVINEN T A H,et al.Rescue plan for achilles:Therapeutics steering the fate and functions of stem cells in tendon wound healing[J].Advanced Drug Delivery Reviews,2018,129:352-375.
[6] MAO X F,ZHANG X Q,YAO Z Y,et al.Advances in mesenchymal stem cells therapy for tendinopathies[J].Chinese Journal of Traumatology,2024,27(1):11-17.
[7] MILLAR N L,SILBERNAGEL K G,THORBORG K,et al.Tendinopathy[J].Nature Reviews Disease Primers,2021,7(1):1.
[8] THOMOPOULOS S,PARKS W C,RIFKIN D B,et al.Mechanisms of tendon injury and repair[J].Journal of Orthopaedic Research,2015,33(6):832-839.
[9] 陶再进,李原歌,刘珅.干细胞在肌腱愈合中的应用[J].国际骨科学杂志,2021,42(6):384-388.
[10] BOWERS K,AMELSE L,BOW A,et al.Mesenchymal stem cell use in acute tendon injury:In vitro tenogenic potential vs.in vivo dose response[J].Bioengineering(Basel,Switzerland),2022,9(8):407.
[11] IMAI S,KUMAGAI K,YAMAGUCHI Y,et al.Platelet-rich plasma promotes migration,proliferation,and the gene expression of scleraxis and vascular endothelial growth factor in paratenon-derived cells in vitro[J].Sports Health,2019,11(2):142-148.
[12] LI S,SUN Y,CHEN Y,et al.Sandwich biomimetic scaffold based tendon stem/progenitor cell alignment in a 3D microenvironment for functional tendon regeneration[J].ACS Applied Materials & Interfaces,2023,15(3):4652-4667.
[13] MAO X,YAO L,LI M,et al.Enhancement of tendon repair using tendon-derived stem cells in small intestinal submucosa via M2 macrophage polarization[J].Cells,2022,11(17):2770.
[14] BEST K T,NICHOLS A E C,KNAPP E,et al.NF-κB activation persists into the remodeling phase of tendon healing and promotes myofibroblast survival[J].Science Signaling,2020,13(658):eabb7209.
[15] KRZYSZCZYK P,SCHLOSS R,PALMER A,et al.The role of macrophages in acute and chronic wound healing and interventions to promote pro-wound healing phenotypes[J].Frontiers in Physiology,2018,9:419.
[16] KOKUBU S,INAKI R,HOSHI K,et al.Adipose-derived stem cells improve tendon repair and prevent ectopic ossification in tendinopathy by inhibiting inflammation and inducing neovascularization in the early stage of tendon healing[J].Regenerative Therapy,2020,14:103-110.
[17] GARLET G P,GIANNOBILE W V.Macrophages:The bridge between inflammation resolution and tissue repair?[J].Journal of Dental Research,2018,97(10):1079-1081.
[18] 李世梅,王黎明,李铭,等.中药前期干预脐带间充质干细胞治疗类风湿关节炎临床疗效观察[J].陕西中医,2015,36(1):26-28.
[19] 左楠,王远,王爽.骨髓间充质干细胞移植联合多点微量注射曲安奈德对兔耳增生性瘢痕及创面巨噬细胞极化的影响[J].陕西医学杂志,2022,51(2):140-144.
[20] ZHANG S,CHEN L,ZHANG G,et al.Umbilical cord-matrix stem cells induce the functional restoration of vascular endothelial cells and enhance skin wound healing in diabetic mice via the polarized macrophages[J].Stem Cell Research & Therapy,2020,11(1):39.
[21] ESPAGNOLLE N,BALGUERIE A,ARNAUD E,et al.CD54-mediated interaction with pro-inflammatory macrophages increases the immunosuppressive function of human mesenchymal stromal cells[J].Stem Cell Reports,2017,8(4):961-976.
[22] DEARAUJO-FARIAS V,CARRILLO-GÁLVEZ A B,MARTÍN F,et al.TGF-β and mesenchymal stromal cells in regenerative medicine,autoimmunity and cancer[J].Cytokine & Growth Factor Reviews,2018,43:25-37.
[23] UCHIYAMA A,MOTEGI S I,SEKIGUCHI A,et al.Mesenchymal stem cells-derived MFG-E8 accelerates diabetic cutaneous wound healing[J].Journal of Dermatological Science,2017,86(3):187-197.
[24] BARMINKO J A,NATIV N I,SCHLOSS R,et al.Fractional factorial design to investigate stromal cell regulation of macrophage plasticity[J].Biotechnology and Bioengineering,2014,111(11):2239-2251.
[25] WANG J,XIA J,HUANG R,et al.Mesenchymal stem cell-derived extracellular vesicles alter disease outcomes via endorsement of macrophage polarization[J].Stem Cell Research & Therapy,2020,11(1):424.
[26] LI Z,LI Q,TONG K,et al.BMSC-derived exosomes promote tendon-bone healing after anterior cruciate ligament reconstruction by regulating M1/M2 macrophage polarization in rats[J].Stem Cell Research & Therapy,2022,13(1):295.
[27] XIE F,TENG L,XU J,et al.Interleukin-10 modified bone marrow mesenchymal stem cells prevent hypertrophic scar formation by inhibiting inflammation[J].Die Pharmazie,2020,75(11):571-575.
[28] SHEN H,YONEDA S,ABU-AMER Y,et al.Stem cell-derived extracellular vesicles attenuate the early inflammatory response after tendon injury and repair[J].Journal of Orthopaedic Research,2020,38(1):117-127.
[29] TANG Y,WU P,LI L,et al.Mesenchymal stem cells and their small extracellular vesicles as crucial immunological efficacy for hepatic diseases[J].Frontiers in Immunology,2022,13:880523.
[30] SHI Z,WANG Q,JIANG D.Extracellular vesicles from bone marrow-derived multipotent mesenchymal stromal cells regulate inflammation and enhance tendon healing[J].Journal of Translational Medicine,2019,17(1):211.
[31] JIANG L,LU J,CHEN Y,et al.Mesenchymal stem cells:An efficient cell therapy for tendon repair(Review)[J].International Journal of Molecular Medicine,2023,52(2):70.
[32] SUNWOO J Y,ELIASBERG C D,CARBALLO C B,et al.The role of the macrophage in tendinopathy and tendon healing[J].Journal of Orthopaedic Research,2020,38(8):1666-1675.
[33] GAO R,YE T,ZHU Z,et al.Small extracellular vesicles from iPSC-derived mesenchymal stem cells ameliorate tendinopathy pain by inhibiting mast cell activation[J].Nanomedicine(London,England),2022,17(8):513-529.
[34] OSTERBURG A R,LACH L,PANOS R J,et al.Unique natural killer cell subpopulations are associated with exacerbation risk in chronic obstructive pulmonary disease[J].Scientific Reports,2020,10(1):1238.

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备注/Memo

备注/Memo:
基金项目:内蒙古自然科学基金资助项目(2020MS08118); 内蒙古自治区科技计划项目(2021GG0206,2022YFSH0032); 内蒙古自治区公立医院高水平临床专科发展科技项目(2023SGGZ141)
更新日期/Last Update: 2024-09-04