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载姜黄素聚乙二醇功能化多壁碳纳米管的吸附和体外释放研究:动力学和等温线研究。

Adsorption and in vitro release study of curcumin form polyethyleneglycol functionalized multi walled carbon nanotube: kinetic and isotherm study.

机构信息

Universiti Teknologi Malaysia, Johor Bahru, Johor, Malaysia.

Department of Food Science & Technology, Faculty of Food Industry and Agriculture, Standard Research Institute (SRI), Karaj, P.O. Box: 31745-139, Iran.

出版信息

Daru. 2019 Jun;27(1):9-20. doi: 10.1007/s40199-018-0232-2. Epub 2018 Dec 15.

Abstract

Polyethylene glycol functionalized with oxygenated multi-walled carbon nanotubes (O-PEG-MWCNTs) as an efficient nanomaterial for the in vitro adsorption/release of curcumin (CUR) anticancer agent. The synthesized material was morphologically characterized using scanning electron microscopy, Fourier transform infrared spectroscopy and transmission electron microscopy. In addition, the CUR adsorption process was assessed with kinetic and isotherm models fitting well with pseudo-second order and Langmuir isotherms. The results showed that the proposed O-PEG-MWCNTs has a high adsorption capacity for CUR (2.0 × 10 mg/g) based on the Langmuir model. The in vitro release of CUR from O-PEG-MWCNTs was studied in simulating human body fluids with different pHs (ABS pH 5, intestinal fluid pH 6.6 and body fluid pH 7.4). Lastly, to confirm the success compliance of the O-PEG-MWCNT nanocomposite as a drug delivery system, the parameters affecting the CUR release such as temperature and PEG content were investigated. As a result, the proposed nanocomposite could be used as an efficient carrier for CUR delivery with an enhanced prolonged release property. Graphical Abstract ᅟ.

摘要

用含氧多壁碳纳米管(O-PEG-MWCNTs)功能化的聚乙二醇作为一种有效的纳米材料,用于体外吸附/释放姜黄素(CUR)抗癌剂。使用扫描电子显微镜、傅里叶变换红外光谱和透射电子显微镜对合成材料进行了形态学表征。此外,通过动力学和等温线模型评估了 CUR 的吸附过程,这些模型与准二级和朗缪尔等温线拟合良好。结果表明,基于朗缪尔模型,所提出的 O-PEG-MWCNTs 对 CUR 具有高的吸附能力(2.0×10 mg/g)。在不同 pH 值的模拟人体液中(ABS pH 5、肠液 pH 6.6 和体液 pH 7.4)研究了 CUR 从 O-PEG-MWCNTs 的体外释放。最后,为了确认 O-PEG-MWCNT 纳米复合材料作为药物传递系统的成功合规性,研究了影响 CUR 释放的参数,如温度和 PEG 含量。结果表明,所提出的纳米复合材料可用作 CUR 传递的有效载体,具有增强的缓释性能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9f2b/6593009/8819e89a2085/40199_2018_232_Figa_HTML.jpg

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