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Development of paclitaxel-loaded liposomal nanocarrier stabilized by triglyceride incorporation

机译:甘油三酸酯掺入稳定紫杉醇负载脂质体纳米载体的开发

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摘要

Studies have highlighted the challenge of developing injectable liposomes as a paclitaxel (PTX) carrier, a challenge attributable to the limitations in liposomal stability caused by PTX loading. Poor stability of PTX-loaded liposomes is caused by PTX-triggered aggregation or fusion of liposomal membranes and is exacerbated in the presence of PEGylated lipid. In the present study, the effect of triglyceride incorporation on the stability of PTX-loaded/PEGylated liposomes was explored. Incorporation of a medium chain triglyceride Captex 300 into saturated phosphatidylcholine (PC)-based liposomes (1,2-dimyristoyl-sn-glycero-3-phosphocholine [DMPC]:cholesterol [CHOL]:N-(Carbonyl-methoxypolyethyleneglycol 2000)-1, 2-distearoyl-sn-glycero-3-phospho-ethanolamine [PE-PEG]), produced a fine, homogeneous, and membrane-filterable PTX-loaded liposomes fulfilling the requirement of an injectable lipid formulation. Triglyceride incorporation also greatly inhibited the time-dependent leakage of PTX from saturated PC-based liposomes, which appears to be mediated by the inhibition of liposome fusion. In contrast, triglyceride incorporation induced the destabilization and PTX leakage of unsaturated PC-based liposomes, indicating the opposite effect of triglyceride depending on the fluidity status of PC constituting the liposomal membrane. PTX release profile and the in vitro and in vivo anticancer efficacy of triglyceride-incorporated DMPC:CHOL:PE-PEG liposomes were similar to Taxol® while the toxicity of liposomal PTX was significantly lower than that of Taxol. Taken together, triglyceride incorporation provided an injectable PTX formulation by functioning as a formulation stabilizer of PEGylated/saturated PC-based liposomes.
机译:研究强调了开发作为紫杉醇(PTX)载体的可注射脂质体的挑战,这一挑战可归因于PTX负载导致脂质体稳定性的局限性。负载PTX的脂质体的稳定性差是由PTX触发的脂质体膜的聚集或融合引起的,并且在存在PEG化脂质的情况下加剧了稳定性。在本研究中,探讨了甘油三酸酯掺入对PTX负载/聚乙二醇化脂质体稳定性的影响。将中链甘油三酸酯Captex 300掺入基于饱和磷脂酰胆碱(PC)的脂质体中(1,2-二肉豆蔻酰基-sn-甘油-3-磷酸胆碱[DMPC]:胆固醇[CHOL]:N-(羰基-甲氧基聚乙二醇2000)-1 ,2-二硬脂酰基-sn-甘油-3-磷酸-乙醇胺(PE-PEG))产生了精细,均质且可膜过滤的PTX负载脂质体,可满足可注射脂质制剂的要求。甘油三酸酯的掺入也极大地抑制了PTX从饱和的基于PC的脂质体的时间依赖性泄漏,这似乎是通过抑制脂质体融合来介导的。相反,甘油三酸酯的引入引起不饱和基于PC的脂质体的失稳和PTX泄漏,表明甘油三酸酯的相反作用取决于构成脂质体膜的PC的流动状态。掺有甘油三酸酯的DMPC:CHOL:PE-PEG脂质体的PTX释放特征和体内外抗癌效果与Taxol ®相似,而脂质体PTX的毒性却明显低于Taxol。总之,甘油三酸酯的掺入通过充当基于PEG的/饱和的基于PC的脂质体的制剂稳定剂而提供了可注射的PTX制剂。

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