Self-assembled supramolecular material derived from traditional Chinese medicine: Injectable self-assembled natural product gel for drug delivery with biological activity

材料科学 药物输送 阿霉素 天然产物 体内 超分子化学 纳米技术 纳米纤维 自组装 组合化学 生物化学 化学 有机化学 分子 医学 生物 化疗 生物技术 外科
作者
Kangkang Zhi,Ying Sun,Haitian Zhao,Changmei Zhang,Haisheng Peng,Xin Yang
出处
期刊:Materials today communications [Elsevier]
卷期号:23: 101149-101149 被引量:11
标识
DOI:10.1016/j.mtcomm.2020.101149
摘要

Injectable self-assembled gels with physicochemical functions have been widely used to deliver chemotherapeutics to achieve an increase in antitumor effects. However, exploration of physiologically functional gel delivery systems has been relatively rare. In such a system, the gel can not only reach the lesion directly, but also play a synergistic effect on the tumor through the gel's own bioactivity, thereby achieving a better therapeutic effect. Here, the bioactive natural compound poricoic acid A (PAA) derived from Poria mushroom (Poria cocos) was developed into the injectable gel by virtue of direct self-assembly capabilities. The PAA gel (PAA/G) was successfully constructed by simple mixing method to initiate self-assembly. Morphological and rheological studies revealed that PAA/G is composed of nanofibers with diameters less than 100 nm and exhibits good injectability. Hydrogen bonding and π-π interactions have been proven to be the driving force for self-assembly via spectroscopy and contact angle analysis. In view of the antitumor activity of PAA, the antitumor drug doxorubicin (DOX) with matching activity was encapsulated into PAA/G (DOX-PAA/G). In vitro and in vivo antitumor studies have shown that the bioactive DOX-PAA/G can not only exert better tumor inhibition (160 % inhibition of free DOX) through synergy, but also improve the overall health of tumor-bearing mice (healthier blood, normal weight, higher SOD levels). The successful development of bioactive gel delivery systems not only provides new strategies for treating tumors, but also provides potential new uses for bioactive natural products as biomaterials.
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