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首页> 外文期刊>ACS Omega >Synthesis and Formulation of Four-Arm PolyDMAEA-siRNA Polyplex for Transient Downregulation of Collagen Type III Gene Expression in TGF-β1 Stimulated Tenocyte Culture
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Synthesis and Formulation of Four-Arm PolyDMAEA-siRNA Polyplex for Transient Downregulation of Collagen Type III Gene Expression in TGF-β1 Stimulated Tenocyte Culture

机译:TGF-β1刺激的肌腱细胞培养中III型胶原基因表达的瞬时下调的四臂PolyDMAEA-siRNA复合物的合成和配制

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The natural healing process for tendon repair is associated with high upregulation of collagen type III, leading to scar tissue and tendon adhesions with functionally deficient tendons. Gene delivery systems are widely reported as potential nanotherapeutics to treat diseases, providing a promising approach to modulate collagen type III synthesis. This work investigates a proof-of-concept four-arm cationic polymer-siRNA polyplex to mediate a transient downregulation of collagen type III expression in a tendon cell culture system. The tendon culture system was first supplemented with TGF-β1 to stimulate the upregulation of collagen type III prior to silencing experiments. The four-arm poly[2-(dimethylamino) ethyl acrylate] (PDMAEA) polymer was successfully synthesized via RAFT polymerization and then mixed with siRNA to formulate the PDMAEA-siRNA polyplexes. The formation of the polyplex was optimized for the N:P ratio (10:1) and confirmed by agarose gel electrophoresis. The size and solution behavior of the polyplex were analyzed by dynamic light scattering and zeta potential, showing a hydrodynamic diameter of 155 ± 21 nm and overall positive charge of +30 mV at physiological pH. All the polyplex concentrations used had a minimal effect on the metabolic activity of cultured cells, indicating good biocompatibility. The dose and time effects of the TGF-β1 on collagen type III gene expressions were analyzed by qPCR, showing an optimal dose of 10 ng mL–1 TGF-β1 and 3-fold increase of COL3α1 expression at 48 h in cultured tenocytes. The PDMAEA-siRNA polyplex concept observed a limited yet successful and promising efficiency in silencing collagen type III at 48 h compared to PEI-siRNA. Therefore, this concept is a promising approach to reduce tissue scarring and adhesion following injuries.
机译:肌腱修复的自然愈合过程与III型胶原蛋白的高度上调相关,导致瘢痕组织和肌腱与功能缺陷的肌腱粘连。基因递送系统被广泛报道为治疗疾病的潜在纳米疗法,为调节III型胶原合成提供了一种有前途的方法。这项工作研究了概念证明的四臂阳离子聚合物-siRNA复合物,以调节肌腱细胞培养系统中III型胶原蛋白表达的瞬时下调。在沉默实验之前,首先在肌腱培养系统中补充TGF-β1以刺激III型胶原的上调。通过RAFT聚合成功合成了四臂聚[丙烯酸2-(二甲氨基)乙酯](PDMAEA)聚合物,然后将其与siRNA混合以配制PDMAEA-siRNA多聚体。针对N:P比例(10:1)优化了多链体的形成,并通过琼脂糖凝胶电泳确认。通过动态光散射和ζ电势分析了复合物的尺寸和溶液行为,显示出在生理pH下的流体动力学直径为155±21 nm,总正电荷为+30 mV。使用的所有多链体浓度对培养细胞的代谢活性影响最小,表明具有良好的生物相容性。通过qPCR分析了TGF-β1对III型胶原基因表达的剂量和时间效应,显示在48 h培养的肌腱细胞中最佳剂量为10 ng mL-1TGF-β1,COL3α1表达增加了3倍。与PEI-siRNA相比,PDMAA-siRNA多聚体概念在48 h沉默III型胶原的效率有限,但成功且很有希望。因此,该概念是减少损伤后组织瘢痕形成和粘附的有前途的方法。

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