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基于Box-Behnken法的红细胞膜包载紫杉醇纳米混悬液处方优化

[Optimization of formulation of paclitaxel nanosuspension encapsulated by erythrocyte membrane based on Box-Behnken method].

作者信息

Fan Yue-Yue, Cui Yue-Xin, Hao Wen-Yan, Chen Meng-Yu, Yang Yang, Gao Chun-Sheng

机构信息

School of Pharmacy, Henan University Kaifeng 475000, China Institute of Pharmacology and Toxicology, Academy of Military Medical Sciences Beijing 100850, China.

Institute of Pharmacology and Toxicology, Academy of Military Medical Sciences Beijing 100850, China.

出版信息

Zhongguo Zhong Yao Za Zhi. 2022 May;47(9):2457-2464. doi: 10.19540/j.cnki.cjcmm.20210409.301.

Abstract

In view of the longevity and innate immune escape of red blood cells, this study designed the red blood cell membrane-coated paclitaxel nanosuspension [RBC-(PTX)NS] and investigated its physicochemical properties and antitumor effect in vitro. Paclitaxel nanosuspension [(PTX)NS] was prepared by ultrasonic precipitation and then RBC-(PTX)NS by ultrasonic coating. The formulation of(PTX)NS was optimized with Box-Behnken method and indexes of particle diameter, zeta potential, and stability. The morphology, particle diameter, stability, in vitro dissolution, and antitumor effect of(PTX)NS and RBC-(PTX)NS were characterized. The results showed that the particle diameter and zeta potential were(129.38±0.92) nm and(-22.41±0.48) mV, respectively, for the optimized(PTX)NS, while(142.5±0.68) nm and(-29.85±0.53) mV, respectively, for RBC-(PTX)NS. Under the transmission electron microscope,(PTX)NS was spherical and RBC-(PTX)NS had obvious core-shell structure. RBC-(PTX)NS remained stable for 5 days at 4 ℃. The in vitro dissolution test demonstrated that the cumulative release rate of RBC-(PTX)NS reached 79% within 20 min, which was significantly higher than that(25%) of(PTX)NS(P<0.05). As evidenced by MTT assay, RBC-(PTX)NS highly inhibited the proliferation of HepG2 cells in a dose-dependent manner. The cell membrane-coated nano-preparation preparation method is simple and reproducible. It improves the solubility of PTX and endows RBC-(PTX)NS with higher stability and stronger cytotoxicity. Thus, it is a new method for the delivery of PTX via nanocrystallization.

摘要

鉴于红细胞的长寿性和先天免疫逃逸特性,本研究设计了红细胞膜包被的紫杉醇纳米混悬液[RBC-(PTX)NS],并研究了其理化性质及体外抗肿瘤作用。通过超声沉淀法制备紫杉醇纳米混悬液[(PTX)NS],然后通过超声包被法制备RBC-(PTX)NS。采用Box-Behnken法以粒径、ζ电位和稳定性为指标对(PTX)NS的处方进行优化。对(PTX)NS和RBC-(PTX)NS的形态、粒径、稳定性、体外溶出度及抗肿瘤作用进行了表征。结果显示,优化后的(PTX)NS的粒径和ζ电位分别为(129.38±0.92)nm和(-22.41±0.48)mV,而RBC-(PTX)NS分别为(142.5±0.68)nm和(-29.85±0.53)mV。在透射电子显微镜下,(PTX)NS呈球形,RBC-(PTX)NS具有明显的核壳结构。RBC-(PTX)NS在4℃下可稳定保存5天。体外溶出试验表明,RBC-(PTX)NS在20分钟内的累积释放率达到79%,显著高于(PTX)NS的累积释放率(25%)(P<0.05)。MTT法检测结果表明,RBC-(PTX)NS以剂量依赖性方式高度抑制HepG2细胞的增殖。细胞膜包被纳米制剂的制备方法简单且可重复。它提高了PTX的溶解度,赋予RBC-(PTX)NS更高的稳定性和更强的细胞毒性。因此,这是一种通过纳米结晶递送PTX的新方法。

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