紫杉醇
胶束
化学
紫杉烷
药理学
化疗
癌症
医学
有机化学
内科学
水溶液
乳腺癌
作者
Feiyan Gao,Zhongyi Ma,Xing Luo,Yahua Wang,Ying He,Mei San Tang,Junyu Chen,Jianfang Feng,Defang Ouyang,Ji Zheng,Chong Li
标识
DOI:10.1021/acs.molpharmaceut.4c00204
摘要
Paclitaxel (PTX) is one of the first-line drugs for prostate cancer (PC) treatment. However, the poor water solubility, inadequate specific targeting ability, multidrug resistance, and severe neurotoxicity are far from being fully resolved, despite diverse PTX formulations in the market, such as the gold-standard PTX albumin nanoparticle (Abraxane) and polymer micelles (Genexol-PM). Some studies attempting to solve the multiple problems of chemotherapy delivery fall into the trap of an extremely complicated formulation design and sacrifice druggability. To better address these issues, this study designed an efficient, toxicity-reduced paclitaxel-ginsenoside polymeric micelle (RPM). With the aid of the inherent amphiphilic molecular structure and pharmacological effects of ginsenoside Rg5, the prepared RPM enhances the water solubility and active targeting of PTX, inhibiting chemotherapy resistance in cancer cells. Moreover, the polymeric micelles demonstrated favorable anti-inflammatory and neuroprotective effects, providing ideas for the development of new clinical anti-PC preparations.
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