滑液生化指标与肩袖疾病严重程度的相关性

M S Tajana, L Murena, F Valli, A Passi, F A Grassi
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引用次数: 23

摘要

生化因素在肩袖疾病的发病和自然史中的作用尚不完全清楚,但人们普遍认为,它们可能与机械和血管因素相关,导致肌腱损伤。本研究分析了29例接受肩袖病变手术治疗的肱骨关节滑液(SF)中的5个生化参数(总蛋白浓度、基质金属蛋白酶(MMP)-2或明胶酶A、MMP-9或明胶酶B、I型胶原端肽、透明质酸)。根据病变严重程度将患者分为四组:部分肩袖撕裂、1根肌腱全层撕裂和肩袖撕裂关节病(CTA)。随着肩袖完整性的丧失,总SF蛋白浓度逐渐增加,在CTA时达到最高水平。明胶酶的绝对酶活性在全层泪液中高于部分泪液,而在CTA中则降低。相反,明胶酶与总蛋白含量之比在部分撕裂中达到最高水平,然后逐渐降低。胶原I端肽在全层撕裂和CTA中显著增加,而透明质酸水平随着肩袖疾病的恶化而下降。这些发现支持了明胶酶参与生理肌腱重塑的假设,也干预了肩袖疾病的演变。I型胶原末端肽水平的升高证明肌腱撕裂与肌腱组织的解剖性损失有关,而不是单纯的肌腱缩回。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Correlations between biochemical markers in the synovial fluid and severity of rotator cuff disease.

The role of biochemical factors in the onset and natural history of rotator cuff disease is not fully understood, but it is generally recognised that they could induce tendon damage in association with mechanical and vascular factors. In this study, 5 biochemical parameters were analysed (total protein concentration, matrix metalloproteinase (MMP)-2 or gelatinase A, MMP-9 or gelatinase B, type I collagen telopeptides, hyaluronic acid) in the synovial fluid (SF) aspirated from the gleno-humeral joint of 29 patients undergoing surgical therapy for rotator cuff lesions. Four different groups of patients were identified according to the severity of the lesion: partial tear of the rotator cuff, full thickness tear involving 1 tendon and cuff tear arthropathy (CTA). The total SF protein concentration progressively increased with loss of integrity of the rotator cuff, reaching the highest levels in CTA. The absolute enzymatic activity of gelatinases was greater in full thickness tears than in partial tears, while it decreased in CTA. Conversely, the ratio between gelatinases and total protein content reached the highest level in partial tears and then progressively decreased. Collagen I telopeptides were significantly increased in full thickness tears and CTA, whereas the levels of hyaluronic acid decreased with worsening of rotator cuff disease. These findings support the hypothesis that gelatinases, which are involved in physiological tendon remodelling, intervene in the evolution of rotator cuff disease, too. Increased levels of type I collagen telopeptides give evidence that tendon tears are associated with an anatomic loss of tendon tissue and not with simple tendon retraction.

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