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半乳糖凝集素-1 和半乳糖凝集素-3 在马间充质基质细胞(MSCs)、滑膜成纤维细胞和软骨细胞中的表达,以及炎症对 MSC 迁移能力的影响。

Galectin-1 and galectin-3 expression in equine mesenchymal stromal cells (MSCs), synovial fibroblasts and chondrocytes, and the effect of inflammation on MSC motility.

机构信息

Department of Clinical Sciences, College of Veterinary Medicine, Cornell University, Ithaca, NY, 14853, USA.

Robert Frederick Smith School of Chemical and Biomolecular Engineering, Cornell University, Ithaca, NY, 14853, USA.

出版信息

Stem Cell Res Ther. 2017 Nov 2;8(1):243. doi: 10.1186/s13287-017-0691-2.

Abstract

BACKGROUND

Mesenchymal stromal cells (MSCs) can be used intra-articularly to quell inflammation and promote cartilage healing; however, mechanisms by which MSCs mitigate joint disease remain poorly understood. Galectins, a family of β-galactoside binding proteins, regulate inflammation, adhesion and cell migration in diverse cell types. Galectin-1 and galectin-3 are proposed to be important intra-articular modulators of inflammation in both osteoarthritis and rheumatoid arthritis. Here, we asked whether equine bone marrow-derived MSCs (BMSCs) express higher levels of galectin-1 and -3 relative to synovial fibroblasts and chondrocytes and if an inflammatory environment affects BMSC galectin expression and motility.

METHODS

Equine galectin-1 and -3 gene expression was quantified using qRT-PCR in cultured BMSCs, synoviocytes and articular chondrocytes, in addition to synovial membrane and articular cartilage tissues. Galectin gene expression, protein expression, and protein secretion were measured in equine BMSCs following exposure to inflammatory cytokines (IL-1β 5 and 10 ng/mL, TNF-α 25 and 50 ng/mL, or LPS 0.1, 1, 10 and 50 μg/mL). BMSC focal adhesion formation was assessed using confocal microscopy, and BMSC motility was quantified in the presence of inflammatory cytokines (IL-1β or TNF-α) and the pan-galectin inhibitor β-lactose (100 and 200 mM).

RESULTS

Equine BMSCs expressed 3-fold higher galectin-1 mRNA levels as compared to cultured synovial fibroblasts (p = 0.0005) and 30-fold higher galectin-1 (p < 0.0001) relative to cultured chondrocytes. BMSC galectin-1 mRNA expression was significantly increased as compared to carpal synovial membrane and articular cartilage tissues (p < 0.0001). IL-1β and TNF-α treatments decreased BMSC galectin gene expression and impaired BMSC motility in dose-dependent fashion but did not alter galectin protein expression. β-lactose abrogated BMSC focal adhesion formation and inhibited BMSC motility.

CONCLUSIONS

Equine BMSCs constitutively express high levels of galectin-1 mRNA relative to other articular cell types, suggesting a possible mechanism for their intra-articular immunomodulatory properties. BMSC galectin expression and motility are impaired in an inflammatory environment, which may limit tissue repair properties following intra-articular administration. β-lactose-mediated galectin inhibition also impaired BMSC adhesion and motility. Further investigation into the effects of joint inflammation on BMSC function and the potential therapeutic effects of BMSC galectin expression in OA is warranted.

摘要

背景

间充质基质细胞(MSCs)可用于关节内以平息炎症和促进软骨愈合;然而,MSCs 减轻关节疾病的机制仍知之甚少。半乳糖凝集素是一种β-半乳糖苷结合蛋白家族,可调节多种细胞类型的炎症、黏附和细胞迁移。半乳糖凝集素-1 和半乳糖凝集素-3 被认为是骨关节炎和类风湿关节炎中关节内炎症的重要调节剂。在这里,我们询问马骨髓来源的 MSC(BMSC)是否相对于滑膜成纤维细胞和软骨细胞表达更高水平的半乳糖凝集素-1 和 -3,以及炎症环境是否会影响 BMSC 半乳糖凝集素的表达和迁移。

方法

使用 qRT-PCR 定量检测培养的 BMSC、滑膜细胞和关节软骨细胞以及滑膜膜和关节软骨组织中的马半乳糖凝集素-1 和 -3 基因表达。在炎症细胞因子(IL-1β 5 和 10 ng/mL、TNF-α 25 和 50 ng/mL 或 LPS 0.1、1、10 和 50 μg/mL)存在下,测量马 BMSC 的半乳糖凝集素基因表达、蛋白表达和蛋白分泌。使用共聚焦显微镜评估 BMSC 焦点形成,并用炎症细胞因子(IL-1β 或 TNF-α)和全半乳糖凝集素抑制剂β-乳糖(100 和 200 mM)定量测定 BMSC 迁移。

结果

与培养的滑膜成纤维细胞相比(p=0.0005),马 BMSC 表达的半乳糖凝集素-1 mRNA 水平高 3 倍,与培养的软骨细胞相比高 30 倍(p<0.0001)。BMSC 半乳糖凝集素-1 mRNA 表达明显高于腕骨滑膜膜和关节软骨组织(p<0.0001)。IL-1β 和 TNF-α 处理以剂量依赖性方式降低 BMSC 半乳糖基因表达并损害 BMSC 迁移,但不改变半乳糖蛋白表达。β-乳糖消除了 BMSC 焦点形成并抑制了 BMSC 迁移。

结论

马 BMSC 相对于其他关节细胞类型持续表达高水平的半乳糖凝集素-1 mRNA,这表明它们关节内免疫调节特性的可能机制。炎症环境会损害 BMSC 半乳糖凝集素的表达和迁移,这可能会限制关节内给药后组织修复的特性。β-乳糖介导的半乳糖凝集素抑制也损害了 BMSC 的黏附和迁移。有必要进一步研究关节炎症对 BMSC 功能的影响以及 OA 中 BMSC 半乳糖凝集素表达的潜在治疗效果。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4fbe/5667510/293d1d92c1e5/13287_2017_691_Fig1_HTML.jpg

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