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外源性递送 Link N mRNA 进入软骨细胞和间充质干细胞——增加合成代谢反应的潜在作用。

Exogenous Delivery of Link N mRNA into Chondrocytes and MSCs-The Potential Role in Increasing Anabolic Response.

机构信息

Siegfried Weller Institute for Trauma Research at the BG Trauma Center, Eberhard Karls Universität Tübingen, Schnarrenbergstraße 95, 72076 Tübingen, Germany.

Department of Thoracic and Cardiovascular Surgery, University Hospital Tübingen, Calwerstraße 7/1, 72076 Tübingen, Germany.

出版信息

Int J Mol Sci. 2019 Apr 6;20(7):1716. doi: 10.3390/ijms20071716.

Abstract

Musculoskeletal disorders, such as osteoarthritis and intervertebral disc degeneration are causes of morbidity, which concomitantly burdens the health and social care systems worldwide, with massive costs. Link N peptide has recently been described as a novel anabolic stimulator for intervertebral disc repair. In this study, we analyzed the influence on anabolic response, by delivering synthetic Link N encoding mRNA into primary human chondrocytes and mesenchymal stromal cells (SCP1 cells), Furthermore, both cell types were seeded on knitted titanium scaffolds, and the influence of Link N peptide mRNA for possible tissue engineering applications was investigated. Synthetic modified Link N mRNA was efficiently delivered into both cell types and cell transfection resulted in an enhanced expression of , , and with a decreased expression of . Interestingly, despite increased expression of and , BMP signaling was repressed and TGFβ signaling was boosted by Link N transfection in mesenchymal stromal cells, suggesting possible regulatory mechanisms. Thus, the exogenous delivery of Link N peptide mRNA into cells augmented an anabolic response and thereby increased extracellular matrix synthesis. Considering these findings, we suppose that the cultivation of cells on knitted titanium scaffolds and the exogenous delivery of Link N peptide mRNA into cells could mechanically support the stability of tissue-engineered constructs and improve the synthesis of extracellular matrix by seeded cells. This method can provide a potent strategy for articular cartilage and intervertebral disc regeneration.

摘要

肌肉骨骼疾病,如骨关节炎和椎间盘退变,是发病率的原因,这同时给全球的健康和社会保健系统带来了巨大的负担和成本。Link N 肽最近被描述为一种新型的椎间盘修复合成代谢刺激物。在这项研究中,我们分析了通过向原代人软骨细胞和间充质基质细胞(SCP1 细胞)中递送信使 RNA 对合成代谢反应的影响。此外,这两种细胞类型都被接种到编织的钛支架上,并研究了 Link N 肽信使 RNA 对可能的组织工程应用的影响。合成修饰的 Link N mRNA 被有效地递送到这两种细胞类型中,细胞转染导致 和 的表达增加, 和 的表达减少。有趣的是,尽管 和 的表达增加,但 Link N 转染在间充质基质细胞中抑制了 BMP 信号通路,增强了 TGFβ信号通路,这表明可能存在调节机制。因此,外源性 Link N 肽 mRNA 的递送到细胞中增强了合成代谢反应,从而增加了细胞外基质的合成。考虑到这些发现,我们假设在编织的钛支架上培养细胞并将 Link N 肽 mRNA 外源性递送到细胞中,可以机械地支持组织工程构建体的稳定性,并通过接种细胞提高细胞外基质的合成。这种方法可以为关节软骨和椎间盘再生提供一种有效的策略。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/975b/6479841/1266ec9eaa87/ijms-20-01716-g001.jpg

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