首页> 美国卫生研究院文献>International Journal of Molecular Sciences >Intraarticularly-Injected Mesenchymal Stem Cells Stimulate Anti-Inflammatory Molecules and Inhibit Pain Related Protein and Chondrolytic Enzymes in a Monoiodoacetate-Induced Rat Arthritis Model
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Intraarticularly-Injected Mesenchymal Stem Cells Stimulate Anti-Inflammatory Molecules and Inhibit Pain Related Protein and Chondrolytic Enzymes in a Monoiodoacetate-Induced Rat Arthritis Model

机译:关节内注射间充质干细胞在单碘乙酸诱导的大鼠关节炎模型中刺激抗炎分子并抑制疼痛相关蛋白和软骨分解酶。

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摘要

Persistent inflammation is well known to promote the progression of arthropathy. mesenchymal stem cells (MSCs) have been shown to possess anti-inflammatory properties and tissue differentiation potency. Although the experience so far with the intraarticular administration of mesenchymal stem cell (MSC) to induce cartilage regeneration has been disappointing, MSC implantation is now being attempted using various surgical techniques. Meanwhile, prevention of osteoarthritis (OA) progression and pain control remain important components of the treatment of early-stage OA. We prepared a shoulder arthritis model by injecting monoiodoacetate (MIA) into a rat shoulder, and then investigated the intraarticular administration of MSC from the aspects of the cartilage protective effect associated with their anti-inflammatory property and inhibitory effect on central sensitization of pain. When MIA was administered in this rat shoulder arthritis model, anti-Calcitonin Gene Related Peptide (CGRP) was expressed in the joint and C5 spinal dorsal horn. Moreover, expression of A disintegrin and metalloproteinase with thrombospondin motifs 5 (ADAMTS5), a marker of joint cartilage injury, was similarly elevated following MIA administration. When MSC were injected intraarticularly after MIA, the expression of CGRP in the spinal dorsal horn was significantly deceased, indicating suppression of the central sensitization of pain. The expression of ADAMTS 5 in joint cartilage was also significantly inhibited by MSC administration. In contrast, a significant increase in the expression of TNF-α stimulated gene/protein 6 (TSG-6), an anti-inflammatory and cartilage protective factor shown to be produced and secreted by MSC intraarticularly, was found to extend to the cartilage tissue following MSC administration. In this way, the intraarticular injection of MSC inhibited the central sensitization of pain and increased the expression of the anti-inflammatory and cartilage protective factor TSG-6. As the least invasive conservative strategies possible are desirable in the actual clinical setting, the intraarticular administration of MSC, which appears to be effective for the treatment of pain and cartilage protection in early-stage arthritis, may achieve these aims.
机译:众所周知,持续性炎症会促进关节炎的发展。间充质干细胞(MSCs)已显示具有抗炎特性和组织分化潜能。尽管迄今为止通过关节内施用间充质干细胞(MSC)诱导软骨再生的经验令人失望,但现在正在尝试使用各种外科技术来植入MSC。同时,预防骨关节炎(OA)进展和控制疼痛仍然是早期OA治疗的重要组成部分。我们通过将单碘乙酸盐(MIA)注入大鼠肩膀来制备肩关节炎模型,然后从与软骨的抗炎特性以及对疼痛的中枢敏化的抑制作用相关的软骨保护方面研究MSC的关节内给药。在该大鼠肩关节炎模型中施用MIA时,关节和C5脊髓背角表达了降钙素基因相关肽(CGRP)。此外,MIA给药后,具有关节软骨损伤标志物血小板反应蛋白基序5(ADAMTS5)的A整联蛋白和金属蛋白酶的表达也同样升高。 MIA后关节腔内注射MSC时,脊髓背角中CGRP的表达明显降低,表明疼痛的中枢敏化受到抑制。 MSC给药也显着抑制了关节软骨中ADAMTS 5的表达。相反,发现TNF-α刺激的基因/蛋白质6(TSG-6)的表达显着增加,这是由MSC关节内产生和分泌的一种抗炎和软骨保护因子,已延伸到软骨组织。在MSC管理之后。通过这种方式,关节内注射MSC抑制了疼痛的中枢敏化并增加了抗炎和软骨保护因子TSG-6的表达。由于在实际临床环境中可能希望采用最小侵入性的保守策略,因此对早期关节炎的疼痛和软骨保护的治疗似乎有效的关节腔内给予MSC可以达到这些目的。

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