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结合MgZnO纳米颗粒的κ-卡拉胶/PVA纳米复合水凝胶的合成与表征以评估儿茶素释放

Synthesis and Characterization of 𝒌-Carrageenan/PVA Nanocomposite Hydrogels in Combination with MgZnO Nanoparticles to Evaluate the Catechin Release.

作者信息

Sabbagh Farzaneh, Khatir Nadia Mahmoudi, Kiarostami Khadijeh

机构信息

Department of Botany and Plant Science, Faculty of Biological Science, Alzahra University, Tehran 1993891176, Iran.

Department of Chemical Engineering, Chungbuk National University, Cheongju 28644, Republic of Korea.

出版信息

Polymers (Basel). 2023 Jan 5;15(2):272. doi: 10.3390/polym15020272.

Abstract

In the current study, nanocomposites were prepared by combining k-carrageenan, polyvinyl alcohol (PVA), and doped nanoparticles (Magnesium oxide) MgO, (Magnesium Zinc oxide) MgZnO 1%, MgZnO 3%, and MgZnO 5%. The nanoparticles were synthesized by a sol-gel method and mixed with a mixture of k-carrageenan/PVA (Ca/PVA) in various ratios. The structure of the composites was analyzed using thermogravimetric analysis (TGA), X-ray diffraction (XRD), and Fourier transform infrared spectroscopy (FTIR). The Ca/PVA mixture was then mixed with nanoparticles and loaded with active ingredient, catechin. Scanning electron microscope (SEM) and texture analysis were performed to analyze the nanocomposites. Entrapment efficiency (EE%) and drug release studies confirmed that k-carrageenan/PVA/MgZnO 5% had the highest EE% at 81.58% and a drug release of 75.21% ± 0.94. The EE% of k-carrageenan/PVA/MgO was 55.21% and its drug release was 45%. This indicates that ZnO plays an effective role in the structure and performance of Ca/PVA composites. The SEM images of MgO composites show smoother surfaces compared to MgZnO composites. This may be one of the reasons for the increased EE% and drug release of MgZnO composites. The addition of ZnO to the composite structure can lead to the appearance of pores on the surface of the composite, increasing entrapment and drug release.

摘要

在当前研究中,通过将κ-卡拉胶、聚乙烯醇(PVA)与掺杂的纳米颗粒(氧化镁)MgO、(镁锌氧化物)MgZnO 1%、MgZnO 3%和MgZnO 5%相结合来制备纳米复合材料。纳米颗粒通过溶胶-凝胶法合成,并与不同比例的κ-卡拉胶/PVA(Ca/PVA)混合物混合。使用热重分析(TGA)、X射线衍射(XRD)和傅里叶变换红外光谱(FTIR)对复合材料的结构进行分析。然后将Ca/PVA混合物与纳米颗粒混合,并负载活性成分儿茶素。进行扫描电子显微镜(SEM)和质地分析以分析纳米复合材料。包封率(EE%)和药物释放研究证实,κ-卡拉胶/PVA/MgZnO 5%的包封率最高,为81.58%,药物释放率为75.21%±0.94。κ-卡拉胶/PVA/MgO的包封率为55.21%,其药物释放率为45%。这表明ZnO在Ca/PVA复合材料的结构和性能中发挥着有效作用。与MgZnO复合材料相比,MgO复合材料的SEM图像显示表面更光滑。这可能是MgZnO复合材料包封率和药物释放增加的原因之一。向复合结构中添加ZnO可导致复合材料表面出现孔隙,增加包封率和药物释放。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/feae/9864035/d749b40ca566/polymers-15-00272-g001.jpg

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