Kiram Abdukahar, Li Jie, Liu Qiang, Ling Chen, Xu Hui, Fan Changsheng, Hu Zongshan, Zhu Zezhang, Qiu Yong, Liu Zhen
Division of Spine Surgery, Department of Orthopedic Surgery, Nanjing Drum Tower Hospital, The Affiliated Hospital of Nanjing University Medical School, Zhongshan Road 321, Nanjing 210008, China.
Department of Orthopedic Surgery, Division of Spine Surgery, Nanjing Drum Tower Hospital, Clinical College of Nanjing University of Chinese Medicine, Zhongshan Road 321, Nanjing, 210008, China.
Spine J. 2025 Jun;25(6):1288-1303. doi: 10.1016/j.spinee.2025.01.026. Epub 2025 Jan 31.
Degenerative lumbar scoliosis (DLS) is a common aging-related spinal deformity. Paraspinal muscle degeneration is highly correlated with the rapid progression of DLS. However, understanding of the role of the praspinal muscle degeneration is limited because of a lack of histologic and molecular evidence.
Our study profiled the proteomic alteration of paraspinal muscles and investigated the muscle fiber type transition that occurs in DLS, along with its correlation with clinical parameters.
Cross-sectional basic science study using clinical data and biological samples.
Paraspinal muscle samples were collected intraoperatively from the concave and convex sides of the apex vertrebrae in patients with DLS (n=10) and either side of L3 level from age- and sex-matched participants without DLS (n=10). Analysis was perfomed using isobaric tagging for relative and absolute quantitation (iTRAQ) and liquid chromatography with tandem mass spectrometry on muscle tissue from the convex side of spines in patients with DLS and in participants without DLS to identify differentially expressed proteins (DEPs). Western blotting was used to validate the DEPs. The measurement of acidity/basicity of ATPase (pH=9.4), succinic acid dehydrogenase staining, and real-time quantitative polymerase chain reaction were performed to assess the muscle fiber type change in DLS. The Pearson correlation coefficient was used to analyze the correlation between the myofiber transition and the Cobb angle of the main curve. This study was supported by the National Natural Science Foundation of China (NSFC) (No. 82272545), $ 8000-10,000 and the Jiangsu Provincial Key Medical Center, and the China Postdoctoral Science Foundation (2021M701677, $ 5000-7000).
We identified 62 DEPs, of which 16 were downregulated and 46 were upregulated. Gene ontology indicated significant changes in biological processes including muscle contraction. Protein-protein interaction network analysis showed that structural muscle proteins such as MYH1 (myosin heavy chain 1) and TNNT3 (troponin T) were the key nodes. Western blotting further validated the downregulation of MYH1 in the paraspinal muscle of DLS. Histologically, ATPase staining showed a significant reduction of type II muscle fibers in DLS, consistent with the functional changes of the DEPs. Furthermore, we found that the reduction of type II muscle fibers percentage was correlated with the severity of DLS.
This study is the first to elucidate the underlying molecular basis and pathways that implicate the paraspinal muscle fiber type transition in DLS. Type II myofiber percentage was diminished both on the concave side and the convex side of the paraspinal muscles in DLS, especially on the convex side, which may play an important role in the onset and/or progression of the disease.
This study shows a potential molecular basis for histopathologic change in the paraspinal muscles of DLS and provides a potential tool for assessing paraspinal muscle quality and predicting the poor prognosis of DLS.
退行性腰椎侧弯(DLS)是一种常见的与衰老相关的脊柱畸形。椎旁肌退变与DLS的快速进展高度相关。然而,由于缺乏组织学和分子证据,对椎旁肌退变作用的了解有限。
本研究分析了椎旁肌的蛋白质组学变化,探讨了DLS中发生的肌纤维类型转变及其与临床参数的相关性。
采用临床数据和生物样本的横断面基础科学研究。
术中从DLS患者(n = 10)顶椎凹侧和凸侧以及年龄和性别匹配的非DLS参与者(n = 10)的L3水平两侧采集椎旁肌样本。对DLS患者和非DLS参与者脊柱凸侧肌肉组织进行相对和绝对定量的等压标记(iTRAQ)和液相色谱串联质谱分析,以鉴定差异表达蛋白(DEP)。采用蛋白质免疫印迹法验证DEP。进行ATP酶酸碱度测量(pH = 9.4)、琥珀酸脱氢酶染色和实时定量聚合酶链反应,以评估DLS中的肌纤维类型变化。采用Pearson相关系数分析肌纤维转变与主曲线Cobb角之间的相关性。本研究得到中国国家自然科学基金(NSFC)(编号82272545,8000 - 10000美元)、江苏省重点医学中心以及中国博士后科学基金(2021M701677,5000 - 7000美元)的支持。
我们鉴定出62个DEP,其中16个下调,46个上调。基因本体分析表明包括肌肉收缩在内的生物过程发生了显著变化。蛋白质 - 蛋白质相互作用网络分析显示,结构肌肉蛋白如MYH1(肌球蛋白重链1)和TNNT3(肌钙蛋白T)是关键节点。蛋白质免疫印迹法进一步验证了DLS椎旁肌中MYH1的下调。组织学上,ATP酶染色显示DLS中II型肌纤维显著减少,与DEP的功能变化一致。此外,我们发现II型肌纤维百分比的降低与DLS的严重程度相关。
本研究首次阐明了DLS中椎旁肌纤维类型转变的潜在分子基础和途径。DLS椎旁肌凹侧和凸侧的II型肌纤维百分比均降低,尤其是凸侧,这可能在疾病的发生和/或进展中起重要作用。
本研究揭示了DLS椎旁肌组织病理学变化的潜在分子基础,并为评估椎旁肌质量和预测DLS的不良预后提供了潜在工具。