Institut de Recherche Interdisciplinaire (IRI), USR CNRS 3078, Université Lille 1, Parc de la Haute Borne, 50 Avenue de Halley, BP 70478, 59658 Villeneuve d'Ascq, France.
Nanoscale. 2013 Nov 7;5(21):10562-72. doi: 10.1039/c3nr02724d. Epub 2013 Sep 19.
Hypericin (Hy), a naturally occurring photosensitizer (PS), is extracted from Hypericum perforatum plants, commonly known as St. John's wort. The discovery of the in vitro and in vivo photodynamic activities of hypericin as a photosensitizer generated great interest, mainly to induce a very potent antitumoral effect. However, this compound belongs to the family of naphthodianthrones which are known to be poorly soluble in physiological solutions and produce non-fluorescent aggregates (A. Wirz et al., Pharmazie, 2002, 57, 543; A. Kubin et al., Pharmazie, 2008, 63, 263). These phenomena can reduce its efficiency as a photosensitizer for the clinical application. In the present contribution, we have prepared, characterized, and studied the photochemical properties of Hy-loaded lipid nanocapsule (LNC) formulations. The amount of singlet oxygen ((1)O2) generated was measured by the use of p-nitroso-dimethylaniline (RNO) as a selective scavenger under visible light irradiation. Our results showed that Hy-loaded LNCs suppressed aggregation of Hy in aqueous media, increased its apparent solubility, and enhanced the production of singlet oxygen in comparison with free drug. Indeed, encapsulation of Hy in LNCs led to an increase of (1)O2 quantum yield to 0.29-0.44, as compared to 0.02 reported for free Hy in water. Additionally, we studied the photodynamic activity of Hy-loaded LNCs on human cervical carcinoma (HeLa) and Human Embryonic Kidney (HEK) cells. The cell viability decreased radically to 10-20% at 1 μM, reflecting Hy-loaded LNC25 phototoxicity.
金丝桃素(Hy)是一种天然存在的光敏剂(PS),从贯叶连翘植物中提取,俗称贯叶连翘。金丝桃素作为一种光敏剂具有体外和体内光动力活性的发现引起了极大的兴趣,主要是为了诱导非常有效的抗肿瘤作用。然而,该化合物属于萘并二蒽酮家族,已知其在生理溶液中溶解度差,并产生非荧光聚集物(A. Wirz 等人,Pharmazie,2002 年,57 卷,543 页;A. Kubin 等人,Pharmazie,2008 年,63 卷,263 页)。这些现象会降低其作为光敏剂用于临床应用的效率。在本研究中,我们制备、表征并研究了金丝桃素负载脂质纳米囊(LNC)制剂的光化学性质。使用对硝基二甲苯胺(RNO)作为可见光照射下的选择性清除剂来测量单线态氧((1)O2)的生成量。我们的结果表明,金丝桃素负载的 LNC 可抑制金丝桃素在水介质中的聚集,增加其表观溶解度,并与游离药物相比增强单线态氧的产生。实际上,与游离金丝桃素在水中的 0.02 相比,金丝桃素包封在 LNC 中导致(1)O2 量子产率增加至 0.29-0.44。此外,我们研究了金丝桃素负载的 LNC 对人宫颈癌(HeLa)和人胚肾(HEK)细胞的光动力活性。细胞活力在 1 μM 时急剧下降至 10-20%,反映了金丝桃素负载的 LNC25 的光毒性。