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表皮生长因子受体靶向纳米体功能化载甲氧基多聚己内酯的聚合物胶束用于选择性光动力治疗。

EGFR-Targeted Nanobody Functionalized Polymeric Micelles Loaded with mTHPC for Selective Photodynamic Therapy.

机构信息

Department of Pharmaceutics, Utrecht Institute for Pharmaceutical Sciences, Utrecht University, 3584 CS Utrecht, The Netherlands.

Division of Cell Biology, Department of Biology, Utrecht University, 3584 CH Utrecht, The Netherlands.

出版信息

Mol Pharm. 2020 Apr 6;17(4):1276-1292. doi: 10.1021/acs.molpharmaceut.9b01280. Epub 2020 Mar 13.

Abstract

-Tetra(hydroxyphenyl)chlorin (mTHPC) is one of the most potent second-generation photosensitizers, clinically used for photodynamic therapy (PDT) of head and neck squamous cell carcinomas. However, improvements are still required concerning its present formulation (i.e., Foscan, a solution of mTHPC in ethanol/propylene glycol (40:60 w/w)), as mTHPC has the tendency to aggregate in aqueous media, e.g., biological fluids, and it has limited tumor specificity. In the present study, polymeric micelles with three different diameters (17, 24, and 45 nm) based on benzyl-poly(ε-caprolactone)--poly(ethylene glycol) (PCL-PEG; = 9, 15, or 23) were prepared with mTHPC loadings ranging from 0.5 to 10 wt % using a film-hydration method as advanced nanoformulations for this photosensitizer. To favor the uptake of the micelles by cancer cells that overexpress the epidermal growth factor receptor (EGFR), the micelles were decorated with an EGFR-targeted nanobody (named EGa1) through maleimide-thiol chemistry. The enhanced binding of the EGFR-targeted micelles at 4 °C to EGFR-overexpressing A431 cells, compared to low-EGFR-expressing HeLa cells, confirmed the specificity of the micelles. In addition, an enhanced uptake of mTHPC-loaded micelles by A431 cells was observed when these were decorated with the EGa1 nanobody, compared to nontargeted micelles. Both binding and uptake of targeted micelles were blocked by an excess of free EGa1 nanobody, demonstrating that these processes occur through EGFR. In line with this, mTHPC loaded in EGa1-conjugated PCL-PEG (EGa1-P) micelles demonstrated 4 times higher photocytotoxicity on A431 cells, compared to micelles lacking the nanobody. Importantly, EGa1-P micelles also showed selective PDT against A431 cells compared to the low-EGFR-expressing HeLa cells. Finally, an pharmacokinetic study shows that after intravenous injection, mTHPC incorporated in the P micelles displayed prolonged blood circulation kinetics, compared to free mTHPC, independently of the presence of EGa1. Thus, these results make these micelles a promising nanomedicine formulation for selective therapy.

摘要

四(对羟苯基)卟啉(mTHPC)是第二代最有效的光敏剂之一,临床上用于头颈鳞状细胞癌的光动力疗法(PDT)。然而,目前的制剂(即 Foscan,mTHPC 溶于乙醇/丙二醇(40:60 w/w)的溶液)仍需要改进,因为 mTHPC 有在水介质中聚集的倾向,例如生物体液,并且它的肿瘤特异性有限。在本研究中,基于苄基-聚(ε-己内酯)-聚(乙二醇)(PCL-PEG; = 9、15 或 23)的三种不同直径(17、24 和 45nm)的聚合物胶束,使用薄膜水化法制备了 mTHPC 负载量为 0.5 至 10wt%的载药胶束,作为该光敏剂的先进纳米制剂。为了促进高表达表皮生长因子受体(EGFR)的癌细胞对胶束的摄取,通过马来酰亚胺-巯基化学将 EGFR 靶向纳米体(命名为 EGa1)修饰到胶束上。与低 EGFR 表达的 HeLa 细胞相比,EGFR 靶向胶束在 4°C 时与过表达 EGFR 的 A431 细胞的增强结合,证实了胶束的特异性。此外,当用 EGa1 纳米体修饰时,观察到载 mTHPC 的胶束被 A431 细胞摄取增加,与非靶向胶束相比。用过量的游离 EGa1 纳米体阻断了靶向胶束的结合和摄取,证明这些过程是通过 EGFR 发生的。与此一致,与缺乏纳米体的胶束相比,负载在 EGa1 缀合的 PCL-PEG(EGa1-P)胶束中的 mTHPC 对 A431 细胞的光细胞毒性高 4 倍。重要的是,与低 EGFR 表达的 HeLa 细胞相比,EGa1-P 胶束对 A431 细胞也表现出选择性 PDT。最后,药代动力学研究表明,静脉注射后,与游离 mTHPC 相比,包载在 P 胶束中的 mTHPC 显示出延长的血液循环动力学,与 EGa1 的存在无关。因此,这些结果使这些胶束成为一种有前途的用于选择性治疗的纳米医学制剂。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/dbe8/7140040/f7aa288a2a61/mp9b01280_0006.jpg

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