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基于 γ-聚谷氨酸纳米凝胶负载聚吡咯的放疗增敏肿瘤光热消融。

Radiotherapy-Sensitized Tumor Photothermal Ablation Using γ-Polyglutamic Acid Nanogels Loaded with Polypyrrole.

机构信息

Department of Radiology, Shanghai Tenth People's Hospital , Tongji University School of Medicine , Shanghai 200072 , People's Republic of China.

State Key Laboratory for Modification of Chemical Fibers and Polymer Materials, College of Chemistry, Chemical Engineering and Biotechnology , Donghua University , Shanghai 201620 , People's Republic of China.

出版信息

Biomacromolecules. 2018 Jun 11;19(6):2034-2042. doi: 10.1021/acs.biomac.8b00184. Epub 2018 Apr 6.

DOI:10.1021/acs.biomac.8b00184
PMID:29601720
Abstract

Development of versatile nanoscale platforms for cancer diagnosis and therapy is of great importance for applications in translational medicine. In this work, we present the use of γ-polyglutamic acid (γ-PGA) nanogels (NGs) to load polypyrrole (PPy) for thermal/photoacoustic (PA) imaging and radiotherapy (RT)-sensitized tumor photothermal therapy (PTT). First, a double emulsion approach was used to prepare the cystamine dihydrochloride (Cys)-cross-linked γ-PGA NGs. Next, the cross-linked NGs served as a reactor to be filled with pyrrole monomers that were subjected to in situ oxidation polymerization in the existence of Fe(III) ions. The formed uniform PPy-loaded NGs having an average diameter of 38.9 ± 8.6 nm exhibited good water-dispersibility and colloid stability. The prominent near-infrared (NIR) absorbance feature due to the loaded PPy endowed the NGs with contrast enhancement in PA imaging. The hybrid NGs possessed excellent photothermal conversion efficiency (64.7%) and stability against laser irradiation, and could be adopted for PA imaging and PTT of cancerous cells and tumor xenografts. Importantly, we also explored the cooperative PTT and X-ray radiation-mediated RT for enhanced tumor therapy. We show that PTT of tumors can be more significantly sensitized by RT using the sequence of laser irradiation followed by X-ray radiation as compared to using the reverse sequence. Our study suggests a promising theranostic platform of hybrid NGs that may be potentially utilized for PA imaging and combination therapy of different types of tumors.

摘要

开发多功能纳米平台用于癌症诊断和治疗对于转化医学的应用非常重要。在这项工作中,我们展示了使用γ-聚谷氨酸(γ-PGA)纳米凝胶(NGs)负载聚吡咯(PPy)用于热/光声(PA)成像和放射治疗(RT)敏化肿瘤光热治疗(PTT)。首先,采用双重乳液法制备半胱胺二盐酸盐(Cys)交联的γ-PGA NGs。接下来,交联的 NGs 作为一个反应器,填充吡咯单体,在 Fe(III)离子存在下进行原位氧化聚合。形成的均匀负载 PPy 的 NGs 平均直径为 38.9±8.6nm,具有良好的水分散性和胶体稳定性。由于负载的 PPy 而具有的显著近红外(NIR)吸收特性赋予了 NGs 在 PA 成像中的对比度增强。该杂化 NGs 具有出色的光热转换效率(64.7%)和对激光照射的稳定性,可用于癌症细胞和肿瘤异种移植的 PA 成像和 PTT。重要的是,我们还探索了协同 PTT 和 X 射线辐射介导的 RT 以增强肿瘤治疗。我们表明,与使用相反的顺序相比,激光照射后紧接着进行 X 射线辐射的顺序可以更显著地敏化肿瘤的 PTT。我们的研究表明,杂化 NGs 的治疗平台具有很大的应用潜力,可用于不同类型肿瘤的 PA 成像和联合治疗。

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