Collaborative Innovation Center of Advanced Drug Delivery System and Biotech Drugs, School of Pharmacy, Yantai University, Yantai, PR China.
Key Laboratory of Modern Preparation of TCM, Ministry of Education, Jiangxi University of Traditional Chinese Medicine, Nanchang, PR China.
Drug Deliv. 2022 Dec;29(1):138-148. doi: 10.1080/10717544.2021.2021324.
Based on the tumor hypoxic microenvironment and the new programmed cell death mode of combined ferroptosis, an angelica polysaccharide-based nanocarrier material was synthesized. The polymer contains hydrophilic angelica polysaccharide (ASP) that is linked by azobenzene (AZO) linker with ferrocene (Fc), and then the side chain was covalently modified with arachidonic acid (AA). It was postulated that the polymer micelles could work as an instinctive liver targeting drug delivery carrier, owing to the existence of ASP with liver targeting. Moreover, the aim was to engineer hypoxia-responsive polymer micelles which was modified by AA, for selective enhancement of ferroptosis in solid tumor, via diminishing glutathione (GSH) under hypoxia. Finally, we synthesized the amphiphilic polymer micelles AA/ASP-AZO-Fc (AAAF) by self-assembling. The structure of AAAF was confirmed by H-NMR and FT-IR. Then, we exemplified the hydrophobic medication curcumin into polymer micelles AAAF@Cur, which has smooth and regular spheres. In vitro release test affirmed that AAAF@Cur can achieve hypoxia response to drug release. In addition, a series of cell experiments confirmed that hypoxia could enhance cell uptake and effectively improve the proliferation inhibitory activity of HepG2 cells. In conclusion, AAAF, as an effective cell carrier, is expected to develop in sensitizing ferroptosis and anti-tumor.
基于肿瘤缺氧微环境和联合细胞铁死亡的新程序性死亡模式,合成了一种基于当归多糖的纳米载体材料。该聚合物含有亲水性当归多糖(ASP),通过偶氮苯(AZO)连接子与二茂铁(Fc)相连,然后侧链通过亚油酸(AA)共价修饰。假设聚合物胶束可以作为一种本能的肝靶向药物递送载体,这是由于存在具有肝靶向的 ASP。此外,目的是通过在缺氧下减少谷胱甘肽(GSH)来设计由 AA 修饰的缺氧反应性聚合物胶束,以选择性增强实体瘤中的铁死亡。最后,我们通过自组装合成了两亲性聚合物胶束 AA/ASP-AZO-Fc(AAAF)。AAAF 的结构通过 H-NMR 和 FT-IR 得到证实。然后,我们将疏水性药物姜黄素举例说明为聚合物胶束 AAAF@Cur,其具有光滑且规则的球体。体外释放试验证实,AAAF@Cur 可以实现缺氧对药物释放的响应。此外,一系列细胞实验证实,缺氧可以增强细胞摄取,并有效提高 HepG2 细胞的增殖抑制活性。总之,AAAF 作为一种有效的细胞载体,有望在敏化铁死亡和抗肿瘤方面得到发展。