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首页> 外文期刊>Acta biomaterialia >Reducing cytotoxicity while improving anti-cancer drug loading capacity of polypropylenimine dendrimers by surface acetylation
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Reducing cytotoxicity while improving anti-cancer drug loading capacity of polypropylenimine dendrimers by surface acetylation

机译:通过表面乙酰化减少细胞毒性,同时提高聚丙烯亚胺树状大分子的抗癌载药量

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Polypropylenimine (PPI) dendrimers have been widely used as effective delivery vehicles for drugs and nucleic acids during the past decade. However, biomedical applications of PPI dendrimers were limited because of their serious cytotoxicity and low drug loading capacity. In the present study, acetylated PPI dendrimers with different degrees of acetylation ranging from 14.2% to 94.3% were synthesized and used to encapsulate drugs, including methotrexate sodium, sodium deoxycholate and doxorubicin. Acetylated PPI dendrimers with a degree of acetylation >80% showed a significantly decreased cytotoxicity (>90% cell viability) on MCF-7 and A549 cells. The drug loading capacity of acetylated PPI dendrimers increased proportionally with the degree of acetylation on the dendrimer surface. In addition, 94.3% acetylated PPI dendrimers exhibited a pH-responsive release profile of anticancer drugs loaded within the nanoparticles. The cytotoxicities of methotrexate sodium and doxorubicin on MCF-7 and A549 cells were significantly reduced when they were complexed with acetylated PPI dendrimers with high degrees of acetylation (>80%), owing to sustained drug release from the dendrimers. The results suggest that surface acetylation can reduce the cytotoxicity and improve the anticancer drug loading capacity of cationic dendrimers, and that acetylated PPI dendrimers are promising vehicles for anticancer drugs in clinical trials.
机译:在过去的十年中,聚丙烯亚胺(PPI)树状聚合物已广泛用作药物和核酸的有效传递载体。但是,PPI树状大分子的生物医学应用受到限制,因为它们具有严重的细胞毒性和较低的载药量。在本研究中,合成了乙酰化程度从14.2%到94.3%不等的乙酰化PPI树状聚合物,并用于封装包括甲氨蝶呤钠,脱氧胆酸钠和阿霉素在内的药物。乙酰化度> 80%的乙酰化PPI树状聚合物对MCF-7和A549细胞的细胞毒性显着降低(> 90%细胞活力)。乙酰化PPI树状聚合物的载药量随树状聚合物表面上的乙酰化程度成比例增加。此外,94.3%的乙酰化PPI树状聚合物表现出纳米颗粒中负载的抗癌药物的pH响应释放曲线。当甲氨蝶呤钠和阿霉素与乙酰化程度高(> 80%)的乙酰化PPI树状聚合物复合时,由于MCP-7和A549细胞从树状聚合物中持续释放药物,因此其细胞毒性显着降低。结果表明,表面乙酰化可以降低阳离子树状聚合物的细胞毒性并提高抗癌药物的负载能力,并且乙酰化的PPI树状聚合物在临床试验中有望成为抗癌药物的载体。

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