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首页> 外文期刊>Journal of Nanobiotechnology >Fluorescent carbon dots as an efficient siRNA nanocarrier for its interference therapy in gastric cancer cells
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Fluorescent carbon dots as an efficient siRNA nanocarrier for its interference therapy in gastric cancer cells

机译:荧光碳点作为一种有效的siRNA纳米载体,可在胃癌细胞中进行干扰治疗

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摘要

Fluorescent carbon dots (Cdots) have attracted increasing attention due to their potential applications in sensing, catalysis, and biomedicine. Currently, intensive research has been concentrated on the synthesis and imaging-guided therapy of these benign photoluminescent materials. Meanwhile, Cdots have been explored as nonviral vector for nucleic acid or drug delivery by chemical modification on purpose. We have developed a microwave assisted one-step synthesis of Cdots with citric acid as carbon source and tryptophan (Trp) as both nitrogen source and passivation agent. The Cdots with uniform size show superior water solubility, excellent biocompatibility, and high quantum yield. Afterwards, the PEI (polyethylenimine)-adsorbed Cdots nanoparticles (Cdots@PEI) were applied to deliver Survivin siRNA into human gastric cancer cell line MGC-803. The results have confirmed the nanocarrier exhibited excellent biocompatibility and a significant increase in cellular delivery of siRNA, inducing efficient knockdown for Survivin protein to 6.1%. In addition, PEI@Cdots complexes mediated Survivin silencing, the arrested cell cycle progression in G1 phase as well as cell apoptosis was observed. The Cdots-based and PEI-adsorbed complexes both as imaging agents and siRNA nanocarriers have been developed for Survivin siRNA delivery. And the results indicate that Cdots-based nanocarriers could be utilized in a broad range of siRNA delivery systems for cancer therapy.
机译:荧光碳点(Cdot)由于其在传感,催化和生物医学中的潜在应用而引起了越来越多的关注。当前,大量研究集中在这些良性光致发光材料的合成和成像指导疗法上。同时,Cdots已被开发为通过化学修饰进行核酸或药物输送的非病毒载体。我们开发了一种微波辅助的一步法,以柠檬酸为碳源,色氨酸(Trp)为氮源和钝化剂,一步一步合成了Cdot。具有均匀大小的Cdots具有优异的水溶性,出色的生物相容性和高量子产率。然后,将PEI(聚乙烯亚胺)吸附的Cdots纳米颗粒(Cdots @ PEI)用于将Survivin siRNA递送至人胃癌细胞系MGC-803。结果已经证实,纳米载体表现出优异的生物相容性,并且siRNA在细胞中的递送显着增加,从而将Survivin蛋白的有效击倒率降低至6.1%。另外,观察到PEI @ Cdots复合物介导了Survivin沉默,观察到了G1期细胞周期的停滞以及细胞凋亡。已经开发了基于Cdots和PEI吸附的复合物作为成像剂和siRNA纳米载体,用于Survivin siRNA递送。结果表明,基于Cdots的纳米载体可在广泛的siRNA递送系统中用于癌症治疗。

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