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[Meniscus injury in osteoarthritis of knee joints: under arthroscopy].膝关节骨关节炎中的半月板损伤:关节镜下观察
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本文引用的文献

1
Radiographic and Clinical Evidence for Osteoarthritis at Medium-Term Follow-up after Arthroscopic Partial Medial Meniscectomy.关节镜下部分内侧半月板切除术中期随访时的放射学和临床证据显示骨关节炎。
Cartilage. 2021 Dec;13(1_suppl):588S-594S. doi: 10.1177/1947603519892315. Epub 2019 Dec 12.
2
Five-Year Outcome of Operative and Nonoperative Management of Meniscal Tear in Persons Older Than Forty-Five Years.四十五岁以上人群半月板撕裂手术与非手术治疗的五年随访结果。
Arthritis Rheumatol. 2020 Feb;72(2):273-281. doi: 10.1002/art.41082. Epub 2019 Dec 15.
3
Molecular Response of Rabbit Menisci to Surgically Induced Hemarthrosis and a Single Intra-Articular Dexamethasone Treatment.兔半月板对手术诱导的关节积血及单次关节内注射地塞米松的分子反应。
J Orthop Res. 2019 Sep;37(9):2043-2052. doi: 10.1002/jor.24346. Epub 2019 Jun 20.
4
A Regeneration Toolkit.再生工具包。
Dev Cell. 2018 Nov 5;47(3):267-280. doi: 10.1016/j.devcel.2018.10.015.
5
Osteoarthritis following meniscus and ligament injury: insights from translational studies and animal models.半月板和韧带损伤后的骨关节炎:转化研究和动物模型的新见解。
Curr Opin Rheumatol. 2019 Jan;31(1):70-79. doi: 10.1097/BOR.0000000000000566.
6
Current concepts in the techniques, indications and outcomes of meniscal repairs.半月板修复技术、适应症及治疗结果的当前概念
Eur J Orthop Surg Traumatol. 2019 Apr;29(3):509-520. doi: 10.1007/s00590-018-2317-5. Epub 2018 Oct 29.
7
Selective cold pain inhibition by targeted block of TRPM8-expressing neurons with quaternary lidocaine derivative QX-314.使用季铵利多卡因衍生物QX-314靶向阻断表达TRPM8的神经元来实现选择性冷痛抑制。
Commun Biol. 2018 May 31;1:53. doi: 10.1038/s42003-018-0062-2. eCollection 2018.
8
Adverse outcomes after arthroscopic partial meniscectomy: a study of 700 000 procedures in the national Hospital Episode Statistics database for England.关节镜下半月板部分切除术的不良结局:对英格兰国家医院住院统计数据库中 70 万例手术的研究。
Lancet. 2018 Nov 17;392(10160):2194-2202. doi: 10.1016/S0140-6736(18)31771-9. Epub 2018 Sep 24.
9
Studying Osteoarthritis Pathogenesis in Mice.研究小鼠骨关节炎发病机制
Curr Protoc Mouse Biol. 2018 Dec;8(4):e50. doi: 10.1002/cpmo.50. Epub 2018 Sep 21.
10
Modern treatment of meniscal tears.半月板撕裂的现代治疗方法。
EFORT Open Rev. 2018 May 21;3(5):260-268. doi: 10.1302/2058-5241.3.170067. eCollection 2018 May.

半月板病变的分子生物学:转化研究和小鼠模型中得到的启示。

Molecular biology of meniscus pathology: Lessons learned from translational studies and mouse models.

机构信息

Department of Orthopedic Surgery, Washington University School of Medicine, St. Louis, Missouri.

Department of Cell Biology & Physiology, Washington University School of Medicine, St. Louis, Missouri.

出版信息

J Orthop Res. 2020 Sep;38(9):1895-1904. doi: 10.1002/jor.24630. Epub 2020 Mar 2.

DOI:10.1002/jor.24630
PMID:32068295
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC7802285/
Abstract

Injury to any individual structure in the knee interrupts the overall function of the joint and initiates a cascade of biological and biomechanical changes whose endpoint is often osteoarthritis (OA). The knee meniscus is an integral component of knee biomechanics and may also contribute to the biological homeostasis of the joint. Meniscus injury altering knee function is associated with a high risk of OA progression, and may also be involved in the initiation of OA. As the relationship between meniscus injury and OA is very complex; despite the availability of transcript level data on human meniscus injury and meniscus mediated OA, mechanistic studies are lacking, and available human data are difficult to validate in the absence of patient-matched noninjured control tissues. As similarities exist between human and mouse knee joint structure and function, investigators have begun to use cutting-edge genetic and genomic tools to examine the usefulness of the mouse as a model to study the intricate relationship between meniscus injury and OA. In this review, we use evidence from human meniscus research to identify critical barriers hampering our understanding of meniscus injury induced OA and discuss strategies to overcome these barriers, including those that can be examined in a mouse model of injury-mediated OA.

摘要

膝关节内任何单一结构的损伤都会中断关节的整体功能,并引发一系列生物和生物力学变化,其终末结果通常是骨关节炎(OA)。膝关节半月板是膝关节生物力学的一个组成部分,也可能有助于关节的生物学内稳态。半月板损伤改变膝关节功能与 OA 进展的高风险相关,也可能与 OA 的发生有关。由于半月板损伤与 OA 之间的关系非常复杂;尽管有关于人类半月板损伤和半月板介导的 OA 的转录水平数据,但缺乏机制研究,并且在没有患者匹配的未受伤对照组织的情况下,可用的人类数据难以验证。由于人类和小鼠膝关节结构和功能存在相似性,研究人员已经开始使用先进的遗传和基因组工具来研究小鼠作为模型研究半月板损伤与 OA 之间复杂关系的有用性。在这篇综述中,我们使用来自人类半月板研究的证据来确定阻碍我们理解半月板损伤诱导的 OA 的关键障碍,并讨论克服这些障碍的策略,包括可以在损伤介导的 OA 的小鼠模型中进行检查的策略。