Department of Chemical Engineering, Yasuj Branch, Islamic Azad University, Yasuj, Iran.
Department of Chemical Engineering, Yasuj Branch, Islamic Azad University, Yasuj, Iran; Department of Chemical Engineering, Gachsaran Branch, Islamic Azad University, Gachsaran, Iran.
Int J Biol Macromol. 2022 Nov 30;221:508-522. doi: 10.1016/j.ijbiomac.2022.09.037. Epub 2022 Sep 9.
The present study synthesized a new kind of pH-responsive active targeting glycodendrimer (ATGD) for doxorubicin delivery to cancerous cells. First, the glycodendrimer was synthesized based on the cultivation of chitosan dendrons on amine-functionalized, silica-grafted cellulose nanocrystals. Afterward, glycodendrimer was conjugated with folic acid to provide a folate receptor-targeting agent. The response surface method was employed to obtain the optimum conditions for the preparation of doxorubicin-loaded ATGD. The effect of doxorubicin/ATGD ratio, temperature, and pH on doxorubicin loading capacity was evaluated, and high loading capacity was achieved under optimized conditions. After determining doxorubicin release pattern at acidic and physiological pH, ATGD cytotoxicity was surveyed by MTT assay. Based on the results, the loading behavior of doxorubicin onto ATGD was in good agreement with monolayer-physisorption, and drug release was Fickian diffusion-controlled. ATGD could release the doxorubicin much more at acidic pH than physiological pH, corresponding to pH-responsive release behavior. Results of MTT assay confirmed the cytotoxicity of doxorubicin-loaded ATGD in cancer cells, while ATGD (without drug) was biocompatible with no tangible toxicity. These results suggested that ATGD has the potential for the treatment of cancer.
本研究合成了一种新型的 pH 响应性主动靶向糖树状大分子(ATGD)用于阿霉素递送到癌细胞。首先,基于壳聚糖树突在胺功能化、硅烷接枝纤维素纳米晶上的培养来合成糖树状大分子。然后,糖树状大分子与叶酸偶联,提供叶酸受体靶向剂。采用响应面法获得载阿霉素的 ATGD 的最佳制备条件。评估了阿霉素/ATGD 比、温度和 pH 对阿霉素载药能力的影响,并在优化条件下实现了高载药能力。在确定了阿霉素在酸性和生理 pH 下的释放模式后,通过 MTT 测定法研究了 ATGD 的细胞毒性。结果表明,阿霉素在 ATGD 上的装载行为符合单层物理吸附,药物释放为菲克扩散控制。ATGD 在酸性 pH 下比生理 pH 下能释放更多的阿霉素,表现出 pH 响应性释放行为。MTT 测定结果证实了载阿霉素的 ATGD 在癌细胞中的细胞毒性,而无药物的 ATGD 与细胞无明显毒性,具有生物相容性。这些结果表明 ATGD 具有治疗癌症的潜力。