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首页> 外文期刊>Transplantation: Official Journal of the Transplantation Society >Multifunctional magnetic nanocarriers for image-tagged SiRNA delivery to intact pancreatic islets.
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Multifunctional magnetic nanocarriers for image-tagged SiRNA delivery to intact pancreatic islets.

机译:多功能磁性纳米载体,用于将图像标记的SiRNA递送至完整的胰岛。

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BACKGROUND: With the ultimate hope of finding a cure for diabetes, researches are looking into altering the genetic profile of the beta cell as a way to manage metabolic dysregulation. One of the most powerful new approaches for the directed regulation of gene expression uses the phenomenon of RNA interference. METHODS: Here, we establish the feasibility of a novel technology centered around multifunctional magnetic nanocarriers, which concurrently deliver siRNA to intact pancreatic islets and can be detected by magnetic resonance and optical imaging. RESULTS: In the proof-of-principle studies described here, we demonstrate that, after in vitro incubation, magnetic nanoparticles carrying siRNA designed to target the model gene for enhanced green fluorescent protein are efficiently taken up by murine pancreatic islets, derived from egfp transgenic animals. This uptake can be visualized by magnetic resonance imaging and near-infrared fluorescence optical imaging and results in suppression of the target gene. CONCLUSIONS: These results illustrate the value of our approach in overcoming the challenges associated with genetic modification of intact pancreatic islets in a clinically acceptable manner. Furthermore, an added advantage of our technology derives from the combined capability of our magnetic nanoparticles for siRNA delivery and magnetic labeling of pancreatic islets.
机译:背景:怀着找到治疗糖尿病的最终希望,研究人员正在研究改变β细胞的遗传特征,以解决代谢异常的方法。定向调控基因表达的最强大的新方法之一就是利用RNA干扰现象。方法:在这里,我们建立了以多功能磁性纳米载体为中心的新技术的可行性,该技术可同时将siRNA递送至完整的胰岛,并且可以通过磁共振和光学成像进行检测。结果:在此处所述的原理验证研究中,我们证明,在体外孵育后,带有siRNA的磁性纳米颗粒被设计为靶向来自egfp转基因的鼠胰岛,有效地吸收了设计为靶向增强型绿色荧光蛋白模型基因的siRNA。动物。该摄取可以通过磁共振成像和近红外荧光光学成像来可视化,并导致靶基因的抑制。结论:这些结果说明了我们的方法在以临床上可接受的方式克服与完整胰岛基因修饰相关的挑战中的价值。此外,我们技术的另一个优势来自磁性纳米颗粒对siRNA递送和胰岛磁性标记的综合能力。

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