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Biodegradable nanocapsules as siRNA carriers for mutant k-ras gene silencing of human pancreatic carcinoma cells

机译:可生物降解的纳米胶囊作为siRNA载体,用于人胰腺癌细胞的突变k-ras基因沉默

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摘要

The application of small interfering RNA (siRNA)-based RNA interference (RNAi) for cancer gene therapy has attracted great attention. Gene therapy is a promising strategy for cancer treatment because it is relatively non-invasive and has a higher therapeutic specificity than chemotherapy. However, without the use of safe and efficient carriers, siRNAs cannot effectively penetrate the cell membranes and RNAi is impeded. In this work, cationic poly(lactic acid) (CPLA)-based degradable nanocapsules (NCs) are utilized as novel carriers of siRNA for effective gene silencing of pancreatic cancer cells. These CPLA-NCs can readily form nanoplexes with K-Ras siRNA and over 90% transfection efficiency is achieved using the nanoplexes. Cell viability studies show that the nanoparticles are highly biocompatible and non-toxic, indicating that CPLA-NC is a promising potential candidate for gene therapy in a clinical setting. Cationic poly(lactic acid) (CPLA)-based degradable nanocapsules (NCs) are utilized as novel carriers of siRNA for effective gene silencing of pancreatic cancer cells. These CPLA-NCs can readily form nanoplexes with K-Ras siRNA and over 90% transfection efficiency is achieved using the nanoplexes.
机译:基于小干扰RNA(siRNA)的RNA干扰(RNAi)在癌症基因治疗中的应用引起了极大的关注。基因治疗是一种有前途的癌症治疗策略,因为它相对无创,并且比化学疗法具有更高的治疗特异性。但是,如果不使用安全有效的载体,siRNA将无法有效穿透细胞膜,从而阻碍RNAi的发展。在这项工作中,基于阳离子聚乳酸(CPLA)的可降解纳米胶囊(NCs)被用作siRNA的新型载体,用于胰腺癌细胞的有效基因沉默。这些CPLA-NC可以轻松地与K-Ras siRNA形成纳米复合物,并且使用纳米复合物可实现90%以上的转染效率。细胞活力研究表明,纳米颗粒具有高度的生物相容性且无毒,这表明CPLA-NC是临床环境中基因治疗的有希望的潜在候选者。基于阳离子聚乳酸(CPLA)的可降解纳米胶囊(NCs)被用作siRNA的新型载体,可有效沉默胰腺癌细胞。这些CPLA-NC可以轻松地与K-Ras siRNA形成纳米复合物,并且使用纳米复合物可实现90%以上的转染效率。

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