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碱性条件对形成有效的G4.0聚酰胺-胺(PAMAM)与阿霉素复合物的影响。

Effect of Alkaline Conditions on Forming an Effective G4.0 PAMAM Complex with Doxorubicin.

作者信息

Szota Magdalena, Jachimska Barbara

机构信息

Jerzy Haber Institute of Catalysis and Surface Chemistry, Polish Academy of Sciences, 30-239 Krakow, Poland.

出版信息

Pharmaceutics. 2023 Mar 8;15(3):875. doi: 10.3390/pharmaceutics15030875.

Abstract

In this study, special attention was paid to the correlation between the degree of ionization of the components and the effective formation of the complex under alkaline conditions. Using UV-Vis, H NMR, and CD, structural changes of the drug depending on the pH were monitored. In the pH range of 9.0 to 10.0, the G4.0 PAMAM dendrimer can bind 1 to 10 DOX molecules, while the efficiency increases with the concentration of the drug relative to the carrier. The binding efficiency was described by the parameters of loading content (LC = 4.80-39.20%) and encapsulation efficiency (EE = 17.21-40.16%), whose values increased twofold or even fourfold depending on the conditions. The highest efficiency was obtained for G4.0PAMAM-DOX at a molar ratio of 1:24. Nevertheless, regardless of the conditions, the DLS study indicates system aggregation. Changes in the zeta potential confirm the immobilization of an average of two drug molecules on the dendrimer's surface. Circular dichroism spectra analysis shows a stable dendrimer-drug complex for all the systems obtained. Since the doxorubicin molecule can simultaneously act as a therapeutic and an imaging agent, the theranostic properties of the PAMAM-DOX system have been demonstrated by the high fluorescence intensity observable on fluorescence microscopy.

摘要

在本研究中,特别关注了碱性条件下各组分的电离程度与复合物有效形成之间的相关性。使用紫外可见光谱、核磁共振氢谱和圆二色光谱监测了药物结构随pH值的变化。在9.0至10.0的pH范围内,G4.0聚酰胺-胺型树枝状大分子可结合1至10个阿霉素分子,且结合效率随药物相对于载体的浓度增加而提高。结合效率用载药量(LC = 4.80 - 39.20%)和包封率(EE = 17.21 - 40.16%)参数来描述,其值根据条件可提高两倍甚至四倍。在摩尔比为1:24时,G4.0PAMAM - DOX获得最高效率。然而,无论条件如何,动态光散射研究表明体系发生聚集。zeta电位的变化证实平均有两个药物分子固定在树枝状大分子表面。圆二色光谱分析表明所得到的所有体系中树枝状大分子 - 药物复合物均稳定。由于阿霉素分子可同时作为治疗剂和成像剂,通过荧光显微镜观察到的高荧光强度证明了PAMAM - DOX体系的诊疗特性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ddf3/10057121/4a38bc1c2026/pharmaceutics-15-00875-g001.jpg

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