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Nanolayered siRNA delivery platforms for local silencing of CTGF reduce cutaneous scar contraction in third-degree burns

机译:用于CTGF局部沉默的纳米siRNA递送平台可减少三度烧伤中的皮肤瘢痕收缩

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摘要

Wound healing is an incredibly complex biological process that often results in thickened collagen-enriched healed tissue called scar. Cutaneous scars lack many functional structures of the skin such as hair follicles, sweat glands, and papillae. The absence of these structures contributes to a number of the long-term morbidities of wound healing, including loss of function for tissues, increased risk of re-injury, and aesthetic complications. Scar formation is a pervasive factor in our daily lives; however, in the case of serious traumatic injury, scars can create long-lasting complications due to contraction and poor tissue remodeling. Within this report we target the expression of connective tissue growth factor (CTGF), a key mediator of TGFβ pro-fibrotic response in cutaneous wound healing, with controlled local delivery of RNA interference. Through this work we describe both a thorough in vitro analysis of nanolayer coated sutures for the controlled delivery of siRNA and its application to improve scar outcomes in a third-degree burn induced scar model in rats. We demonstrate that the knockdown of CTGF significantly altered the local expression of αSMA, TIMP1, and Col1a1, which are known to play roles in scar formation. The knockdown of CTGF within the healing burn wounds resulted in improved tissue remodeling, reduced scar contraction, and the regeneration of papillary structures within the healing tissue. This work adds support to a number of previous reports that indicate CTGF as a potential therapeutic target for fibrosis. Additionally, we believe that the controlled local delivery of siRNA from ultrathin polymer coatings described within this work is a promising approach in RNA interference that could be applied in developing improved cancer therapies, regenerative medicine, and fundamental scientific research.
机译:伤口愈合是一个非常复杂的生物过程,通常会导致胶原蛋白丰富的愈合组织(称为疤痕)增厚。皮肤疤痕缺乏皮肤的许多功能结构,例如毛囊,汗腺和乳头。这些结构的缺乏导致许多伤口愈合的长期发病,包括组织功能的丧失,再次受伤的风险增加以及美学并发症。疤痕的形成是我们日常生活中的普遍因素。但是,在严重的外伤情况下,由于收缩和不良的组织重塑,疤痕会产生长期的并发症。在本报告中,我们针对结缔组织生长因子(CTGF)的表达,它是TGFβ促纤维化反应在皮肤伤口愈合中的关键介体,具有可控的RNA干扰局部递送。通过这项工作,我们既描述了用于控制siRNA递送的纳米层涂层缝合线的详尽体外分析,又描述了其在大鼠三度烧伤诱导的瘢痕模型中改善瘢痕结局的应用。我们证明敲低CTGF显着改变了已知在瘢痕形成中起作用的αSMA,TIMP1和Col1a1的局部表达。愈合烧伤创面中CTGF的降低导致组织重塑改善,疤痕收缩减少以及愈合组织内乳头状结构的再生。这项工作为以前的许多报告提供了支持,这些报告表明CTGF是纤维化的潜在治疗靶标。此外,我们认为这项工作中所述的超薄聚合物涂层对siRNA的局部控制是一种有希望的RNA干扰方法,可用于开发改良的癌症治疗方法,再生医学和基础科学研究。

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