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经皮给药的超变形脂质体负载锌酞菁和[Ru(NH.NHq)(tpy)NO]用于光动力疗法。

Ultradeformable liposome loaded with zinc phthalocyanine and [Ru(NH.NHq)(tpy)NO] for photodynamic therapy by topical application.

机构信息

Faculty of Sciences Integrated of Pontal, Federal University of Uberlândia, Brazil; Pharmaceutical Science Division, King's College London, Waterloo Campus, SE1 9NH, London, UK.

Departament of Chemistry, Laboratory of Photobiology and Photomedicine, Center of Nanotechnology and Tissue Engineer, Faculty of Philosophy, Sciences and Letters of Ribeirão Preto, University of São Paulo, Brazil.

出版信息

Photodiagnosis Photodyn Ther. 2017 Sep;19:184-193. doi: 10.1016/j.pdpdt.2017.05.013. Epub 2017 May 31.

Abstract

Ultradeformable liposomes (UDLs) as a drug delivery system (DDS), prepared from the unsaturated phospholipid, dioleylphosphocholine (DOPC), and containing the non-ionic surfactant Tween 20 as edge activator, have been explored as topical vehicles for zinc phthalocyanine (ZnPc) and the nitrosyl ruthenium complex [Ru(NH.NHq)(tpy)NO] (RuNO) as a photosensitizers for co-generation of O and NO as reactive species, respectively. However, in order to ensure that ZnPc was present in the UDLs in its monomeric form - essential for maximal ZnPc photophysical properties - it was necessary to replace 40wt% of the DOPC with the saturated phospholipid, dimyristoylphosphocholine (DMPC). The resultant ZnPc and complex [Ru(NH.NHq)(tpy)NO] containing UDLs were stable for at least a month when stored at 4°C, six times more elastic/deformable than conventional liposome (c-Ls), i.e. liposome prepared using the same weight ratio of lipids but in the absence of Tween 20, and to significantly enhance the in vitro permeation of ZnPc across fresh pig ear skin. The UDLs DDS incorporating ZnPc and [Ru(NH.NHq)(tpy)NO] were toxic (by the MTT assay) towards B16-F10 melanoma cells when irradiated with visible light at 670nm, the maximum absorption of ZnPc, and at a dose of 3.18J/cm, but not when applied in the absence of light as expected. Based on these results it is proposed that the novel topical UDLs formulation developed is a suitable delivery vehicle for photodynamic therapy.

摘要

超变形脂质体(UDLs)作为一种药物传递系统(DDS),由不饱和磷脂二油酰基磷脂酰胆碱(DOPC)制成,并含有非离子表面活性剂吐温 20 作为边缘活性剂,已被探索作为锌酞菁(ZnPc)和硝基亚硝酰钌配合物[Ru(NH.NHq)(tpy)NO](RuNO)的局部载体,分别作为产生 O 和 NO 的反应性物质的光敏剂。然而,为了确保 ZnPc 以单体形式存在于 UDLs 中-这对于最大 ZnPc 光物理性质至关重要-有必要用饱和磷脂二肉豆蔻酰磷脂酰胆碱(DMPC)取代 40wt%的 DOPC。当储存在 4°C 时,含有 ZnPc 和复合物[Ru(NH.NHq)(tpy)NO]的 UDLs 至少稳定一个月,比常规脂质体(c-Ls)弹性/变形性高六倍,即使用相同重量比的脂质但没有吐温 20 制备的脂质体,并且显著提高了 ZnPc 穿过新鲜猪耳皮的体外渗透。当用 670nm 的可见光照射时,包含 ZnPc 和[Ru(NH.NHq)(tpy)NO]的 UDLs DDS 对 B16-F10 黑色素瘤细胞具有毒性(通过 MTT 测定),这是 ZnPc 的最大吸收,剂量为 3.18J/cm,但在没有光的情况下如预期的那样没有毒性。基于这些结果,提出所开发的新型局部 UDLs 制剂是光动力疗法的合适递送载体。

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