Wellman Center for Photomedicine, Massachusetts General Hospital, Harvard Medical School, 13th St, CNY149, Charlestown, MA, 02129, USA.
Department of Radiology, Division of Nuclear Medicine and Molecular Imaging, Massachusetts General Hospital, Harvard Medical School, 13th St, CNY149, Charlestown, MA, 02129, USA.
Sci Rep. 2017 Oct 17;7(1):13375. doi: 10.1038/s41598-017-13803-4.
Targeted antineoplastic agents show great promise in the treatment of cancer, having the ability to impart cytotoxicity only to specific tumor types. However, these therapies do not experience uniform uptake throughout tumors, leading to sub-lethal cell killing that can impart treatment resistance, and cause problematic off-target effects. Here we demonstrate a photodynamic therapy construct that integrates both a cyclic RGD moiety for integrin-targeting, as well as a 5 kDa PEG chain that passivates the construct and enables its rapid diffusion throughout tumors. PEGylation of the photosensitizer construct was found to prevent photosensitizer aggregation, boost the generation of cytotoxic reactive radical species, and enable the rapid uptake of the construct into cells throughout large (>500 µm diameter) 3D tumor spheroids. Replacing the cyclic RGD with the generic RAD peptide led to the loss of cellular uptake in 3D culture, demonstrating the specificity of the construct. Photodynamic therapy with the construct was successful in inducing cytotoxicity, which could be competitively blocked by a tenfold concentration of free cyclic RGD. This construct is a first-of-its kind theranostic that may serve as a new approach in our growing therapeutic toolbox.
靶向抗肿瘤药物在癌症治疗中显示出巨大的潜力,因为它们具有仅对特定肿瘤类型产生细胞毒性的能力。然而,这些治疗方法在肿瘤中不能均匀吸收,导致亚致死细胞杀伤,从而产生治疗抵抗,并导致有问题的脱靶效应。在这里,我们展示了一种光动力治疗构建体,它将整合环肽(RGD)部分用于整合素靶向,以及一个 5 kDa 的聚乙二醇(PEG)链,该链使构建体失活,并使其能够在肿瘤中快速扩散。PEG 化的光敏剂构建体被发现可以防止光敏剂聚集,提高细胞毒性反应性自由基的生成,并使构建体能够快速进入大(>500 µm 直径)3D 肿瘤球体中的细胞。用通用的 RAD 肽代替环肽(RGD)导致 3D 培养中细胞摄取的丧失,证明了构建体的特异性。该构建体的光动力疗法成功地诱导了细胞毒性,而十倍浓度的游离环肽(RGD)可竞争性地阻断该毒性。这种构建体是一种首创的治疗诊断一体化药物,可能成为我们不断增长的治疗工具包中的一种新方法。