Organic Chemistry Department, Universidad Autónoma de Madrid, 28049 Cantoblanco, Madrid, Spain.
Department of Pharmaceutics, Utrecht Institute for Pharmaceutical Sciences (UIPS), Utrecht University, Universiteitsweg 99, 3508 TB Utrecht, The Netherlands.
J Mater Chem B. 2020 Jan 14;8(2):282-289. doi: 10.1039/c9tb02014d. Epub 2019 Dec 5.
In this paper we describe a straightforward supramolecular strategy to encapsulate silicon phthalocyanine (SiPc) photosensitizers (PS) in polymeric micelles made of poly(ε-caprolactone)-b-methoxypoly(ethylene glycol) (PCL-PEG) block copolymers. While PCL-PEG micelles are promising nanocarriers based on their biocompatibility and biodegradability, the design of our new PS favors their encapsulation. In particular, they combine two axial benzoyl substituents, each of them carrying either three hydrophilic methoxy(triethylenoxy) chains (1), three hydrophobic dodecyloxy chains (3), or both kinds of chains (2). The SiPc derivatives 1 and 2 are therefore amphiphilic, with the SiPc unit contributing to the hydrophobic core, while lipophilicity increases along the series, making it possible to correlate the loading efficacy in PCL-PEG micelles with the hydrophobic/hydrophilic balance of the PS structure. This has led to a new kind of third-generation nano-PS that efficiently photogenerates O, while preliminary in vitro experiments demonstrate an excellent cellular uptake and a promising PDT activity.
在本文中,我们描述了一种将硅酞菁(SiPc)光敏剂(PS)封装在由聚(ε-己内酯)-b-甲氧基聚(乙二醇)(PCL-PEG)嵌段共聚物制成的聚合物胶束中的简单超分子策略。虽然 PCL-PEG 胶束因其生物相容性和可生物降解性而成为有前途的纳米载体,但我们新 PS 的设计有利于其封装。具体来说,它们结合了两个轴向苯甲酰取代基,每个取代基都带有三个亲水性甲氧基(三乙撑氧基)链(1)、三个疏水性十二烷氧基链(3)或两种链(2)。因此,SiPc 衍生物 1 和 2 具有两亲性,SiPc 单元有助于形成疏水性核心,而疏水性沿系列增加,使得能够将 PS 结构的疏水性/亲水性平衡与在 PCL-PEG 胶束中的负载效率相关联。这导致了一种新型的第三代纳米 PS,它能够有效地光生成 O,同时初步的体外实验表明具有优异的细胞摄取和有前途的 PDT 活性。