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首页> 外文期刊>Drug delivery. >Extracellular vesicle-mimetic nanovesicles transport LncRNA-H19 as competing endogenous RNA for the treatment of diabetic wounds
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Extracellular vesicle-mimetic nanovesicles transport LncRNA-H19 as competing endogenous RNA for the treatment of diabetic wounds

机译:细胞外模拟囊泡将LncRNA-H19作为竞争性内源性RNA转运来治疗糖尿病伤口

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Abstract Diabetic wounds, one of the most enervating complications of diabetes mellitus, affect millions of people worldwide annually. Vascular insufficiency, caused by hyperglycemia, is one of the primary causes and categories of diabetic impaired wound healing. Recently, long noncoding RNA (LncRNA)-H19, which is significantly decreased in diabetes and may be crucial in triggering angiogenesis, has attracted increasing interest. The possible relationship between the decrease of LncRNA-H19 and the impairment of angiogenesis in diabetes could involve impairment of the insulin–phosphatidylinositol 3-kinase (PI3K)–Akt pathway via the interdiction of LncRNA-H19. Thus, a therapeutic strategy utilizing LncRNA-H19 delivery is feasible. In this study, we investigated the possibility of using high-yield extracellular vesicle-mimetic nanovesicles (EMNVs) as an effective nano-drug delivery system for LncRNA, and studied the function of EMNVs with a high content of LncRNA-H19 (H19EMNVs). The results, which were exciting, showed that H19EMNVs had a strong ability to neutralize the regeneration-inhibiting effect of hyperglycemia, and could remarkably accelerate the healing processes of chronic wounds. Our results suggest that bioengineered EMNVs can serve as a powerful instrument to effectively deliver LncRNA and will be an extremely promising multifunctional drug delivery system in the immediate future.
机译:摘要糖尿病伤口是糖尿病最令人振奋的并发症之一,每年影响全球数百万人。高血糖引起的血管机能不全是糖尿病伤口愈合受损的主要原因和类别之一。近来,长的非编码RNA(LncRNA)-H19在糖尿病中显着降低,可能在触发血管生成中起着至关重要的作用,引起了越来越多的关注。在糖尿病患者中,LncRNA-H19的减少与血管生成受损之间的可能关系可能涉及通过阻断LncRNA-H19来破坏胰岛素-磷脂酰肌醇3-激酶(PI3K)-Akt通路。因此,利用LncRNA-H19递送的治疗策略是可行的。在这项研究中,我们研究了使用高产量的细胞外模拟小囊泡(EMNV)作为LncRNA的有效纳米药物递送系统的可能性,并研究了高含量LncRNA-H19的EMNV的功能( H19 EMNV)。令人兴奋的结果表明, H19 EMNV具有强大的中和高血糖抑制再生作用的能力,并且可以显着加速慢性伤口的愈合过程。我们的结果表明,生物工程化的EMNV可以作为有效递送LncRNA的有力工具,并且在不久的将来将成为极为有前途的多功能药物递送系统。

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