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A facile and universal method to achieve liposomal remote loading of non-ionizable drugs with outstanding safety profiles and therapeutic effect 被引量:3
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作者 Shuang Zhou Jinbo Li +9 位作者 Jiang Yu Liyuan Yang Xiao Kuang Zhenjie Wang Yingli Wang Hongzhuo Liu Guimei Lin Zhonggui He Dan Liu Yongjun Wang 《Acta Pharmaceutica Sinica B》 SCIE CAS CSCD 2021年第1期258-270,共13页
Liposomes have made remarkable achievements as drug delivery vehicles in the clinic.Liposomal products mostly benefited from remote drug loading techniques that succeeded in amphipathic and/or ionizable drugs,but seem... Liposomes have made remarkable achievements as drug delivery vehicles in the clinic.Liposomal products mostly benefited from remote drug loading techniques that succeeded in amphipathic and/or ionizable drugs,but seemed impracticable for nonionizable and poorly water-soluble therapeutic agents,thereby impeding extensive promising drugs to hitchhike liposomal vehicles for disease therapy.In this study,a series of weak acid drug derivatives were designed by a simplistic one step synthesis,which could be remotely loaded into liposomes by p H gradient method.Cabazitaxel(CTX)weak acid derivatives were selected to evaluate regarding its safety profiles,pharmacodynamics,and pharmacokinetics.CTX weak acid derivative liposomes were superior to Jevtanaa in terms of safety profiles,including systemic toxicity,hematological toxicity,and potential central nerve toxicity.Specifically,it was demonstrated that liposomes had capacity to weaken potential toxicity of CTX on cortex and hippocampus neurons.Significant advantages of CTX weak acid derivative-loaded liposomes were achieved in prostate cancer and metastatic cancer therapy resulting from higher safety and elevated tolerated doses. 展开更多
关键词 non-ionizable drugs Weak acid derivatives Remote loading liposome CABAZITAXEL Safety Tolerated doses Cancer Lung metastasis
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