Normandie Univ, France; UNICAEN, CERMN (Centre d'Etudes et de Recherche sur le Médicament de Normandie - FR CNRS INC3M - SF ICORE, Université de Caen Basse-Normandie, UFR des Sciences Pharmaceutiques Bd Becquerel), F-14032 Caen, France; UNICAEN, BioTICLA (Centre de Lutte Contre le Cancer F Baclesse, SF ICORE, Université de Caen Basse-Normandie, UFR des Sciences Pharmaceutiques Bd Becquerel), F-14032 Caen, France.
Int J Pharm. 2013 Dec 15;458(1):197-207. doi: 10.1016/j.ijpharm.2013.09.025. Epub 2013 Sep 29.
We report the development of folate-functionalized nanoparticles able to target folate receptors, and to deliver a poorly water soluble cytotoxic agent, a tripentone, in ovarian carcinoma. The stability under incubation of lipid nanoparticles formulated by a low-energy phase inversion temperature method was investigated. Thanks to the presence of Labrasol(®), a macrogolglyceride into the composition of the nanocarriers, the conjugation of different quantities of a folate derivate (folic acid-polyethylene glycol2000-distearylphosphatidylethanolamine) to nanoparticles was possible by a rapid, soft, very simple post-insertion process. As determined by dynamic light scattering, nanoparticles present a monodisperse diameter of about 100 nm, a spherical shape as attested by transmission electron micrographs, a weakly negative surface zeta potential, and are able to encapsulate the tripentone MR22388. The presence of folate receptors on SKOV3 human ovarian cancer cells was identified by fluorescent immunocytochemistry. Cellular uptake studies assessed by flow cytometry indicated that these nanoparticles reached the SKOV3 cells rapidly, and were internalized by a folate-receptor mediated endocytosis pathway. Moreover, nanoparticles allowed the rapid delivery of the antitumor agent tripentone into cells as shown in vitro by real-time cellular activity assay. Such folate-lipid nanoparticles are a potential carrier for targeted delivery of poorly water soluble compounds into ovarian carcinoma.
我们报告了叶酸功能化纳米粒子的开发,这些纳米粒子能够靶向叶酸受体,并将一种疏水性细胞毒性药物三戊酮递送至卵巢癌中。研究了通过低能量相转化温度法制备的脂质纳米粒子在孵育条件下的稳定性。由于 Labrasol(®)的存在,一种大分子甘油酯进入纳米载体的组成中,通过快速、柔软、非常简单的后插入过程,可以将不同数量的叶酸衍生物(叶酸-聚乙二醇 2000-二硬脂酰基磷脂酰乙醇胺)缀合到纳米粒子上。动态光散射测定表明,纳米粒子具有约 100nm 的单分散粒径、透射电子显微镜证明的球形形状、较弱的负表面 zeta 电位,并能够包封三戊酮 MR22388。通过荧光免疫细胞化学鉴定 SKOV3 人卵巢癌细胞上存在叶酸受体。通过流式细胞术评估的细胞摄取研究表明,这些纳米粒子迅速到达 SKOV3 细胞,并通过叶酸受体介导的内吞作用途径被内化。此外,纳米粒子允许将疏水性抗肿瘤药物三戊酮快速递送至细胞中,如实时细胞活性测定所示。这种叶酸脂质纳米粒子是一种将疏水性化合物靶向递送至卵巢癌的潜在载体。