Wang Yajing, Lv Shiqun, Cao Fangzhi, Ding Ziwei, Liu Jie, Chen Qian, Gao Jun, Huang Xianfeng
Department of Pharmacy, School of Pharmacy, Changzhou University, Changzhou, China.
Department of Orthaopaedics, Changzhou Chinese Traditional Medicine Hospital, Changzhou, China.
J Liposome Res. 2022 Mar;32(1):92-103. doi: 10.1080/08982104.2021.1998106. Epub 2021 Dec 10.
In the present study, nanoliposomes with tuneable structure elasticity were prepared by reverse-phase evaporation. Both Fluorescence Polarization and Fluorescence Resonance Energy Transfer was employed to characterize the structural elasticity of resultant nanoliposomes. Temozolomide, a kind of hydrophilic drug as the first-line treatment choice for glioblastoma, was encapsulated into nanoliposomes. The results showed that the flexibility of nanoliposomes gradually increased with sodium cholate, while decreasing with cholesterol, Labrafac CC and Labrafac PG adding. Furthermore, the structural flexibility of nanoliposomes was positively correlated with the encapsulation efficiency and release rate and cellular uptake. Our research reveals the structural flexibility of nanoliposomes could affect characteristics and thereafter behaviors of nanoliposomes.
在本研究中,通过反相蒸发法制备了具有可调结构弹性的纳米脂质体。采用荧光偏振和荧光共振能量转移来表征所得纳米脂质体的结构弹性。替莫唑胺是一种亲水性药物,作为胶质母细胞瘤的一线治疗选择,被包封在纳米脂质体中。结果表明,纳米脂质体的柔韧性随着胆酸钠的添加而逐渐增加,而随着胆固醇、Labrafac CC和Labrafac PG的添加而降低。此外,纳米脂质体的结构柔韧性与包封效率、释放速率和细胞摄取呈正相关。我们的研究表明,纳米脂质体的结构柔韧性会影响其特性,进而影响其行为。