Cell Transplantation and Gene Therapy Institute, The Third Xiangya Hospital, Central South University, Changsha, Hunan, China.
Engineering and Technology Research Center for Xenotransplantation of Human Province, Changsha, Hunan, China.
Theranostics. 2019 Jan 1;9(2):526-536. doi: 10.7150/thno.30779. eCollection 2019.
Molecular photoacoustic imaging (PA) is a promising technology to understand tumor pathology and guide precision therapeutics. Despite the capability of activatable PA probes to image tumor-specific biomarkers, limitations in their molecular structure hamper them from effective drug delivery and the drug release monitoring. Herein, we developed a perylene diimide (PDI) based theranostic platform that provides noninvasive PA imaging signals to monitor tumor-specific pH-responsive drug release. we first designed and synthesized an acid-responsive amine-substituted PDI derivative. The pH sensitive properties of the PDI was demonstrated by density functional theory (DFT) calculations, UV-vis experiments and PA studies. The theranostic platform (THPDINs) was fabricated by self-assembly of the acid-responsive PDI, a pH irrelevant IR825 dye, and anti-cancer drug doxorubicin (DOX). The PA properties in various pH environment, drug delivery, cytotoxicity, cell uptake, ratiometric PA imaging and anti-tumor efficacy of the THPDINs were investigated and by using U87MG glioma cell line and U87MG tumor model. We found that our designed PDI was sensitive to the tumor specific pH environment, reflected by absorbance shift, PA intensity and aggregation morphology changes in aqueous solution. The as-synthesized pH sensitive PDI acted as a molecular switch in the THPDINs, in which the switch can be triggered in the mild acidic tumor microenvironment to accelerate DOX release. Meanwhile, the DOX release could be monitored by ratiometric PA imaging. We developed a multifunctional PDI based theranostic platform for noninvasive real-time ratiometric PA imaging of tumor acidic pH and monitoring of drug release in living mice simultaneously. This strategy will shed light on the development of smart activatable theranostic nanoplatforms and will significantly advance the application of PA theranostics in biology and medicine.
分子光声成像是一种很有前途的技术,可以帮助我们了解肿瘤病理学并指导精准治疗。尽管激活型光声探针能够对肿瘤特异性生物标志物进行成像,但由于其分子结构的限制,它们在有效药物输送和药物释放监测方面的应用受到了阻碍。在这里,我们开发了一种基于苝二酰亚胺(PDI)的诊疗一体化平台,该平台提供非侵入性的光声成像信号,以监测肿瘤特异性 pH 响应性药物释放。
我们首先设计并合成了一种酸响应性的胺取代 PDI 衍生物。通过密度泛函理论(DFT)计算、紫外-可见实验和光声研究证明了 PDI 的 pH 敏感性。该诊疗一体化平台(THPDINs)是通过酸响应 PDI、一种 pH 无关的近红外染料 IR825 和抗癌药物阿霉素(DOX)的自组装制备而成。我们使用 U87MG 神经胶质瘤细胞系和 U87MG 肿瘤模型,研究了 THPDINs 在各种 pH 环境下的光声性质、药物传递、细胞毒性、细胞摄取、比率光声成像和抗肿瘤功效。
我们发现,我们设计的 PDI 对肿瘤特异性 pH 环境敏感,表现在水溶液中吸收峰位移、光声强度和聚集形态的变化。合成的 pH 敏感 PDI 在 THPDINs 中充当分子开关,该开关可在温和的酸性肿瘤微环境中触发,加速 DOX 释放。同时,可通过比率光声成像监测 DOX 的释放。
我们开发了一种多功能 PDI 基诊疗一体化平台,用于非侵入性实时比率光声成像肿瘤酸性 pH 值,并在活体小鼠中监测药物释放。该策略将为智能激活型诊疗一体化纳米平台的发展提供思路,并将显著推动光声诊疗在生物学和医学中的应用。