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Carbon Nanodots as Functional Excipient to Develop Highly Stable and Smart PLGA Nanoparticles Useful in Cancer Theranostics

机译:碳纳米蛋白作为功能赋形剂在癌症治疗中发育高度稳定和智能的PLGA纳米粒子

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摘要

Theranostic systems have attracted considerable attention for their multifunctional approach to cancer. Among these, carbon nanodots (CDs) emerged as luminescent nanomaterials due to their exceptional chemical properties, synthetic ease, biocompatibility, and for their photothermal and fluorescent properties useful in cancer photothermal therapy. However, premature renal excretion due to the small size of these particles limits their biomedical application. To overcome these limitations, here, hybrid poly(lactic-co-glycolic acid) (PLGA-CDs) nanoparticles with suitable size distribution and stability have been developed. CDs were decisive in the preparation of polymeric nanoparticles, not only conferring them photothermal and fluorescent properties, needed in theranostics, but also having a strategic role in the stabilization of the system in aqueous media. In fact, CDs provide stable PLGA-based nanoparticles in aqueous media and sufficient cryoprotection in combination with 1% PVP. While PLGA nanoparticles required at least 5% of sucrose. Comparing nanosystems with different CDs content, it is also evident how these positively impinge on the loading and release of the drug, favoring high drug loading (~4.5%) and a sustained drug release over 48 h. The therapeutic and imaging potentials were finally confirmed through in vitro studies on a breast cancer cell line (MDA-MB-231) using fluorescence imaging and the MTS cell viability assay.
机译:Theranostic Systems引起了对癌症的多功能方法的相当大的关注。其中,由于其特殊的化学性质,合成容易性,生物相容性以及它们的光热和荧光特性,可用于癌症光热疗法的光热和荧光特性,所以碳纳多特(CDS)被出现为发光纳米材料。然而,由于这些颗粒的小尺寸而导致的过早肾脏排泄限制了它们的生物医学应用。为了克服这些限制,这里,已经开发出具有合适尺寸分布和稳定性的杂合聚(乳酸二乙醇酸)(PLGA-CDS)纳米颗粒。 CD在聚合物纳米颗粒的制备方面具有决定性,不仅赋予它们在治疗中所需的光热和荧光特性,而且在水性介质中稳定体系中具有战略作用。实际上,CD在水性介质中提供稳定的PLGA纳米颗粒,以及与1%PVP组合的足够冷冻保护。虽然PLGA纳米颗粒需要至少5%的蔗糖。将纳米系统与不同的CDS含量进行比较,它也显而易见这些如何积极地撞击药物的载荷和释放,有利于高药物载荷(〜4.5%)和超过48小时的持续药物释放。通过使用荧光成像和MTS细胞活力测定,通过对乳腺癌细胞系(MDA-MB-231)的体外研究确认治疗和成像电位。

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