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Enhancement of Physico-chemical Properties of the Hydrophobic Anticancer Molecule Following Nanoencapsulation

机译:纳米封装后疏水抗癌分子理化性质的增强

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Flavonoids are one of the important naturally available small molecules found in our daily diets. They have been considered as potential therapeutic agents for anticancer therapy. Despite their anti-cancer properties, their therapeutic application is very limited due to poor water solubility, which results in poor bioavailability to the diseased cells. Hence, to overcome this limitation of Flavonoids, Quercetin (Qct), the most extensively studied flavonoid, prompted us to encapsulate it within nanoparticles. We have successfully encapsulated Qct within cationic polymer based nanoparticles using simple two-step self-assembly fabrication method and studied its effect on absorption and emission properties of Qct. This study was aimed at Qct encapsulation and its effect on the optical properties of Qct for the diagnostic applications. Our results indicate that Qct was efficiently encapsulated within the polymeric nanoparticles. This resulted into ~17 times increase in fluorescence emission of encapsulated Qct (Qct-NPs) in comparison with its aqueous suspension. Thus, Qct-NPs can be utilized as a fluorescent probe for various biomedical applications. These probes will have multiple functions integrated into a single nanostructure, enabling the Qct nanoparticles for imaging and therapy. This is the first report on the effect of nanoencapsulation on optical properties of Qct. Thus, Qct-NPs can be harnessed as an effective theranostic agent, and that will not only allow to image and but also treat the cancer in a single clinical procedure.
机译:黄酮类化合物是我们日常饮食中发现的重要的天然小分子之一。它们被认为是抗癌治疗的潜在治疗剂。尽管它们具有抗癌特性,但是由于不良的水溶性而使其治疗应用受到很大限制,这导致患病细胞的不良生物利用度。因此,为了克服类黄酮的这种限制,槲皮素(Qct)是研究最广泛的类黄酮,促使我们将其封装在纳米颗粒中。我们已经使用简单的两步自组装制造方法成功地将Qct封装在阳离子聚合物基纳米颗粒中,并研究了其对Qct吸收和发射性能的影响。这项研究的目的在于Qct封装及其对Qct光学性质的影响,以用于诊断应用。我们的结果表明,Qct被有效地封装在聚合物纳米颗粒中。与水悬浮液相比,封装的Qct(Qct-NPs)的荧光发射增加了约17倍。因此,Qct-NPs可以用作各种生物医学应用的荧光探针。这些探针将具有整合到单个纳米结构中的多种功能,从而使Qct纳米颗粒可用于成像和治疗。这是有关纳米封装对Qct光学性能影响的第一份报告。因此,可以将Qct-NP用作有效的治疗剂,不仅可以在单一临床程序中成像,而且可以治疗癌症。

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