[Construction and in vitro pharmacodynamic evaluation of a polydopamine nanodelivery system co-loaded with gambogic acid, Fe(Ⅲ), and glucose oxidase].

Q3 Pharmacology, Toxicology and Pharmaceutics
Jian Liu, Zhi-Huai Chen, Xin-Qi Wei, Ling-Ting Lin, Wei Xu
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引用次数: 0

Abstract

Gambogic acid(GA), a caged xanthone derivative isolated from Garcinia Hanburyi, exhibits significant antitumor activity and has advanced to phase Ⅱ clinical trials for lung cancer treatment in China. However, the clinical application of GA is severely hindered by its inherent limitations, including poor water solubility, a lack of targeting specificity, and significant side effects. Novel drug delivery systems not only overcome these pharmacological deficiencies but also integrate multiple therapeutic modalities, transcending the limitations of monotherapeutic approaches. In this study, we designed a multifunctional nanodelivery platform(PDA-PEG-Fe(Ⅲ)-GOx-GA) using polydopamine(PDA) as the core material. After the modification of PDA with polyethylene glycol(PEG), Fe(Ⅲ) ions, glucose oxidase(GOx), and GA were sequentially loaded via coordination interactions, electrostatic adsorption, and hydrophobic interactions, respectively. This system demonstrated excellent physiological stability, hemocompatibility, and photothermal conversion efficiency. Notably, under dual stimuli of pH and near-infrared(NIR) irradiation, PDA-PEG-Fe(Ⅲ)-GOx-GA achieved controlled GA release, with a cumulative release rate of 58.3% at 12 h, 3.6-fold higher than that under non-stimulated conditions. Under NIR irradiation, the synergistic effects of PDA-mediated photothermal therapy, Fe(Ⅲ)-induced chemodynamic therapy, GOx-generated starvation therapy, and GA-mediated chemotherapy resulted in effective inhibition of tumor cell proliferation(91.5% inhibition rate) and induction of apoptosis(83.3% apoptosis rate). This multi-modal approach realized a comprehensive treatment strategy for lung cancer, integrating various therapeutic pathways.

甘宝酸(GA)是从汉防己(Garcinia Hanburyi)中分离出来的一种笼状黄酮衍生物,具有显著的抗肿瘤活性,在中国已进入治疗肺癌的Ⅱ期临床试验阶段。然而,GA 的固有局限性严重阻碍了其临床应用,包括水溶性差、缺乏靶向特异性和明显的副作用。新型给药系统不仅能克服这些药理缺陷,还能整合多种治疗模式,突破单一治疗方法的局限性。本研究以聚多巴胺(PDA)为核心材料,设计了一种多功能纳米给药平台(PDA-PEG-Fe(Ⅲ)-GOx-GA)。聚乙二醇(PEG)修饰 PDA 后,通过配位相互作用、静电吸附和疏水相互作用,依次载入 Fe(Ⅲ)离子、葡萄糖氧化酶(GOx)和 GA。该系统具有良好的生理稳定性、血液相容性和光热转换效率。值得注意的是,在 pH 值和近红外(NIR)照射的双重刺激下,PDA-PEG-Fe(Ⅲ)-GOx-GA 实现了 GA 的可控释放,12 h 的累积释放率为 58.3%,是非刺激条件下的 3.6 倍。在近红外照射下,PDA 介导的光热疗法、Fe(Ⅲ)诱导的化学动力疗法、GOx 产生的饥饿疗法和 GA 介导的化疗协同作用,有效抑制了肿瘤细胞的增殖(抑制率为 91.5%),诱导了肿瘤细胞的凋亡(凋亡率为 83.3%)。这种多模式方法实现了肺癌的综合治疗策略,整合了多种治疗途径。
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来源期刊
Zhongguo Zhongyao Zazhi
Zhongguo Zhongyao Zazhi Pharmacology, Toxicology and Pharmaceutics-Pharmacology, Toxicology and Pharmaceutics (all)
CiteScore
1.50
自引率
0.00%
发文量
581
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