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首页> 外文期刊>Biochimica et biophysica acta. Biomembranes >Targeted delivery and triggered release of liposomal doxorubicin enhances cytotoxicity against human B lymphoma cells
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Targeted delivery and triggered release of liposomal doxorubicin enhances cytotoxicity against human B lymphoma cells

机译:靶向递送和脂质体阿霉素的触发释放增强了对人B淋巴瘤细胞的细胞毒性

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摘要

Dioleoylphosphatidylethanolamine (DOPE)-containing liposomes that demonstrated pH-dependent release of their contents were stabilized in the bilayer form through the addition of a clearable lipid derivative of polyethylene glycol (PEG) in which the PEG was attached to a lipid anchor via a disulfide linkage (mPEG-S-S-DSPE). Liposomes stabilized with either a non-clearable PEG (mPEG-DSPE) or mPEG-S-S-DSPE retained an encapsulated dye at pH 5.5, but treatment at pH 5.5 of liposomes stabilized with mPEG-S-S-DSPE with either dithiothreitol or cell-free extracts caused contents release due to cleavage of the PEG chains and concomitant destabilization of the DOPE liposomes. While formulations loaded with doxorubicin (DXR) were stable in culture media, DXR was rapidly released in human plasma. pH-Sensitive liposomes, targeted to the CD19 epitope on B-lymphoma cells, showed enhanced DXR delivery into the nuclei of the target cells and increased cytotoxicity compared to non-pH-sensitive liposomes. Pharmacokinetic studies suggested that mPEG-S-S-DSPE was rapidly cleaved in circulation. In a murine model of B-cell lymphoma, the therapeutic efficacy of an anti-CD19-targeted pH-sensitive formulation was superior to that of a stable long-circulating formulation of targeted liposomes despite the more rapid drug release and clearance of the pH-sensitive formulation. These results suggest that targeted pH-sensitive formulations of drugs may be able to increase the therapeutic efficacy of entrapped drugs.
机译:含有二油酰基磷脂酰乙醇胺(DOPE)的脂质体表现出pH依赖性释放,通过添加聚乙二醇(PEG)的可清除脂质衍生物以双层形式稳定化,其中PEG通过二硫键连接到脂质锚上(mPEG-SS-DSPE)。用不可清除的PEG(mPEG-DSPE)或mPEG-SS-DSPE稳定的脂质体在pH 5.5时保留了包封的染料,但在pH 5.5下用二硫苏糖醇或无细胞提取物处理过的用mPEG-SS-DSPE稳定的脂质体的处理由于PEG链断裂和DOPE脂质体伴随的不稳定,导致内含物释放。尽管载有阿霉素(DXR)的制剂在培养基中稳定,但DXR在人血浆中迅速释放。与非pH敏感脂质体相比,靶向B淋巴瘤细胞上CD19表位的pH敏感脂质体显示出DXR增强了向靶细胞核内的传递,并增加了细胞毒性。药代动力学研究表明,mPEG-S-S-DSPE在循环中迅速裂解。在B细胞淋巴瘤的鼠模型中,抗CD19靶向的pH敏感制剂的治疗功效优于靶向脂质体的稳定长循环制剂,尽管药物释放和清除pH的速度更快。敏感的公式。这些结果表明,靶向pH敏感的药物制剂可能能够提高截留药物的治疗功效。

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