Shi Chunshan, Yu Haiyang, Sun Dejun, Ma Lili, Tang Zhaohui, Xiao Qiusheng, Chen Xuesi
College of Pharmacy, Jilin University, Changchun 130021, Jilin, PR China; The People's Liberation Army 208th Hospital 461 Clinical Departments, Changchun 130021, Jilin, PR China.
Key Laboratory of Polymer Ecomaterials, Changchun Institute of Applied Chemistry, Chinese Academy of Sciences, Changchun 130022, PR China.
Acta Biomater. 2015 May;18:68-76. doi: 10.1016/j.actbio.2015.02.009. Epub 2015 Feb 20.
Cisplatin-loaded poly(l-glutamic acid)-g-methoxy poly(ethylene glycol 5K) nanoparticles (CDDP-NPs) were characterized and exploited for the treatment of non-small cell lung carcinoma (NSCLC). In vitro metabolism experiments showed that a glutamic acid 5-mPEG ester [CH3O(CH2CH2O)nGlu] was generated when the poly(l-glutamic acid)-g-methoxy poly(ethylene glycol 5K) (PLG-g-mPEG5K) was incubated with HeLa cells. This suggests that the poly(glutamic acid) backbone of the PLG-g-mPEG5K is biodegradable. Furthermore, the size of the CDDP-NPs in an aqueous solution was affected by varying the pH (5.0-8.0) and their degradation rate was dependent on temperature. The CDDP-NPs could also bind to the model nucleotide 2'-deoxyguanosine 5'-monophosphate, indicating a biological activity similar to cisplatin. The CDDP-NPs showed a significantly lower peak renal platinum concentration after a single systemic administration when compared to free cisplatin. In vivo experiments with a Lewis lung carcinoma (LLC) model showed that the CDDP-NPs suppressed the growth of tumors. In addition, LLC tumor-bearing mice treated with the CDDP-NPs (5mg/kg cisplatin eq.) showed much longer survival rates (median survival time: 51days) as compared with mice treated with free cisplatin (median survival time: 18days), due to the acceptable antitumor efficacy and low systemic toxicity of CDDP-NPs. These results suggest that the CDDP-NPs may be successfully applied to the treatment of NSCLC.
负载顺铂的聚(L-谷氨酸)-g-甲氧基聚(乙二醇5K)纳米颗粒(CDDP-NPs)进行了表征,并用于治疗非小细胞肺癌(NSCLC)。体外代谢实验表明,当聚(L-谷氨酸)-g-甲氧基聚(乙二醇5K)(PLG-g-mPEG5K)与HeLa细胞孵育时,会生成谷氨酸5-mPEG酯[CH3O(CH2CH2O)nGlu]。这表明PLG-g-mPEG5K的聚谷氨酸主链是可生物降解的。此外,水溶液中CDDP-NPs的尺寸受pH值(5.0-8.0)变化的影响,其降解速率取决于温度。CDDP-NPs还能与模型核苷酸2'-脱氧鸟苷5'-单磷酸结合,表明其具有与顺铂相似的生物活性。与游离顺铂相比,单次全身给药后,CDDP-NPs的肾铂浓度峰值显著降低。在Lewis肺癌(LLC)模型上进行的体内实验表明,CDDP-NPs能抑制肿瘤生长。此外,用CDDP-NPs(5mg/kg顺铂当量)治疗的LLC荷瘤小鼠的生存率比用游离顺铂治疗的小鼠长得多(中位生存时间:51天),这是因为CDDP-NPs具有可接受的抗肿瘤疗效和低全身毒性。这些结果表明,CDDP-NPs可能成功应用于NSCLC的治疗。
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