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负载 N/S 共掺杂碳点的丁香酚和薄荷醇包封作为具有抗癌特性的治疗药物。这些碳点是从草药提取物混合物中得到的。

Encapsulation of thymol and menthol loaded N/S co-doped carbon dots derived from a mixture of herbal extracts as theranostic agents with anticancer properties.

机构信息

Department of Organic and Biochemistry, Faculty of Chemistry, University of Tabriz, Tabriz, Iran; Department of Phytochemistry, Medicinal Plants and Drugs Research Institute, Shahid Beheshti University, Evin, Tehran, Iran.

Department of Phytochemistry, Medicinal Plants and Drugs Research Institute, Shahid Beheshti University, Evin, Tehran, Iran.

出版信息

Colloids Surf B Biointerfaces. 2023 Dec;232:113603. doi: 10.1016/j.colsurfb.2023.113603. Epub 2023 Oct 19.

Abstract

This research was conducted by synthesizing carbon dots MNE-CDs (mixed natural extract-carbon dots) based on mixed natural extract (ginger, garlic, turmeric) through the hydrothermal routh. Menthol and thymol were loaded as multi-therapeutic drugs with the addition of the bio-enhancer loaded on MNE-CDs with the hydrothermal method during a separate stage. These nanostructures were successfully encapsulated in chitosan by the nanospray drying method to enhance sustainability and release control. This study answered three of these issues by fabricating novel carbon dots for anticancer potential, release behavior and bioimaging at the same time. Preparation carbon dots are characterized using UV-vis, PL, FE-SEM, DLS, EDX, and FT-IR analysis. A moderate and sustained release profile of encapsulated carbon dots was noticed in comparison to the free carbon dots over 48 h of study in both simulated physicological environment (pH 7.4) and tumor tissue (pH 5.2) conditions. It was found that the release of bioactive substances from encapsulated samples was significantly attenuated. The cell viability assay showed all the samples, including free and encapsulated carbon dots, offered acceptable cytotoxicity against MCF-7 breast cancer cells. Despite this, the toxicity of free carbon dots is more than the encapsulated samples, and also the enhancement in anticancer potential was not observed for carbon dots loaded with menthol and thymol. Upon the obtained results, the synthesized fluorescence N/S co-doped carbon dots hold great anticancer potential and biological fluorescent labeling.

摘要

这项研究是通过水热法合成基于混合天然提取物(生姜、大蒜、 turmeric)的碳点 MNE-CDs(混合天然提取物-碳点)来进行的。薄荷醇和百里酚被加载为多治疗药物,通过水热法在单独的阶段在 MNE-CDs 上加载生物增强剂。这些纳米结构通过纳米喷雾干燥法成功地封装在壳聚糖中,以增强可持续性和释放控制。这项研究通过同时制造具有抗癌潜力、释放行为和生物成像的新型碳点来回答了这三个问题。通过紫外可见光谱、PL、FE-SEM、DLS、EDX 和 FT-IR 分析对制备的碳点进行了表征。与游离碳点相比,在模拟生理环境(pH 7.4)和肿瘤组织(pH 5.2)条件下,封装碳点的释放呈现出中等且持续的释放曲线,研究时间超过 48 小时。结果表明,从封装样品中释放的生物活性物质明显减少。细胞活力测定表明,所有样品,包括游离和封装的碳点,对 MCF-7 乳腺癌细胞均具有可接受的细胞毒性。尽管如此,游离碳点的毒性比封装样品更大,而且负载薄荷醇和百里酚的碳点也没有观察到抗癌潜力的增强。根据所得结果,合成的荧光 N/S 共掺杂碳点具有很大的抗癌潜力和生物荧光标记能力。

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