以紫杉醇和碳量子点为载体的新型配体装饰疗法泽因纳米粒子:配方与优化。

Nanomedicine (London, England) Pub Date : 2024-02-01 Epub Date: 2024-02-02 DOI:10.2217/nnm-2023-0197
Parth Patel, Anchal Pathak, Keerti Jain
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引用次数: 0

摘要

目的:本研究的重点是开发和优化配体装饰的、封装紫杉醇和碳量子点(CQDs)的治疗纳米载体。研究方法:通过微波辅助热解法制备碳量子点,并对其粒度和荧光行为进行表征。采用一步纳米沉淀法制备了配体装饰的泽因纳米颗粒,其中添加了紫杉醇和 CQDs,并对各种工艺参数进行了优化。结果显示有包覆和无包覆纳米粒子的粒径分别为 90.16 ± 1.65 nm 和 179.26 ± 3.61 nm,夹带效率大于 80%。圆二色性光谱显示玉米素保留了其二级结构,释放研究显示了双相释放行为。结论在不改变玉米素二级结构的情况下,制备的治疗纳米载体显示出最佳的荧光和理想的释放行为。
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Novel ligand decorated theranostic zein nanoparticles coloaded with paclitaxel and carbon quantum dots: formulation and optimization.

Aim: The present research focused on development and optimization of ligand decorated theranostic nanocarrier encapsulating paclitaxel and carbon quantum dots (CQDs). Methods: CQDs were prepared by microwave-assisted pyrolysis and were characterized for particle size and fluorescence behavior. Ligand decorated zein nanoparticles, coloaded with paclitaxel and CQDs, were formulated using a one-step nanoprecipitation method and optimized for various process parameters. Results: Particle size for coated and uncoated nanoparticles was 90.16 ± 1.65 and 179.26 ± 3.61 nm, respectively, and entrapment efficiency was >80%. The circular dichroism spectroscopy showed zein retained its secondary structure and release study showed biphasic release behavior. Conclusion: The prepared theranostic nanocarrier showed optimal fluorescence and desired release behavior without altering the secondary structure of zein.

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