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胆固醇基核脂质-钌配合物通过脂质聚集稳定用于抗肿瘤治疗。

Cholesterol-based nucleolipid-ruthenium complex stabilized by lipid aggregates for antineoplastic therapy.

机构信息

Dipartimento di Chimica Organica e Biochimica, Università Federico II di Napoli, Complesso Universitario di Monte S. Angelo, via Cintia, 4, 80126 Naples, Italy.

出版信息

Bioconjug Chem. 2012 Apr 18;23(4):758-70. doi: 10.1021/bc200565v. Epub 2012 Mar 21.

Abstract

A novel ruthenium complex, linked to a cholesterol-containing nucleolipid (named ToThyCholRu), stabilized by lipid aggregates for antineoplastic therapy is presented. In order to retard the degradation kinetics typically observed for several ruthenium-based antineoplastic agents, ToThyCholRu is incorporated into a liposome bilayer formed by POPC. The resulting nanoaggregates contain up to 15% in moles of the ruthenium complex, and are shown to be stable for several weeks. The liposomes host the ruthenium-nucleolipid complex with the metal ion surrounded by POPC lipid headgroups and the steroid moiety inserted in the more external acyl chain region. These ruthenium-containing liposomes are more effective in inhibiting the growth of cancer cells than a model NAMI-A-like ruthenium complex, prepared for a direct evaluation of their anti-proliferative activity. These results introduce new perspectives in the design of innovative transition-metal-based supramolecular systems for anticancer drug vectorization.

摘要

一种新型钌配合物,与含有胆固醇的核脂质体(命名为 ToThyCholRu)相连,通过脂质聚集体稳定,用于抗肿瘤治疗。为了延缓几种基于钌的抗肿瘤药物通常观察到的降解动力学,将 ToThyCholRu 掺入由 POPC 形成的脂质体双层中。所得的纳米聚集体中含有高达 15%摩尔的钌配合物,并且显示出数周的稳定性。脂质体将钌-核脂质体复合物容纳在内,金属离子被 POPC 脂质头基包围,甾体部分插入更外部的酰链区域。与为直接评估其抗增殖活性而制备的模型 NAMI-A 样钌配合物相比,这些含钌的脂质体在抑制癌细胞生长方面更有效。这些结果为设计用于癌症药物载体化的创新过渡金属基超分子系统引入了新的视角。

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