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刺激响应性可生物降解超支化聚合物-钆共轭物作为高效且生物相容的纳米级磁共振成像造影剂

Stimuli-Responsive Biodegradable Hyperbranched Polymer-Gadolinium Conjugates as Efficient and Biocompatible Nanoscale Magnetic Resonance Imaging Contrast Agents.

作者信息

Sun Ling, Li Xue, Wei Xiaoli, Luo Qiang, Guan Pujun, Wu Min, Zhu Hongyan, Luo Kui, Gong Qiyong

机构信息

Huaxi MR Research Center (HMRRC), Department of Radiology, West China Hospital and ‡Laboratory of Stem Cell Biology, State Key Laboratory of Biotherapy, West China Hospital, Sichuan University , Chengdu, Sichuan 610041, China.

出版信息

ACS Appl Mater Interfaces. 2016 Apr 27;8(16):10499-512. doi: 10.1021/acsami.6b00980. Epub 2016 Apr 18.

Abstract

The efficacy and biocompatibility of nanoscale magnetic resonance imaging (MRI) contrast agents depend on optimal molecular structures and compositions. Gadolinium [Gd(III)] based dendritic macromolecules with well-defined and tunable nanoscale sizes are excellent candidates as multivalent MRI contrast agents. Here, we propose a novel alternate preparation of biodegradable hyperbranched polymer-gadolinium conjugates via a simple strategy and report potentially efficient and biocompatible nanoscale MRI contrast agents for cancer diagnosis. The enzyme-responsive hyperbranched poly(oligo-(ethylene glycol) methacrylate)-gadolinium conjugate (HB-POEGMA-Gd) was prepared via one-step reversible addition-fragmentation chain transfer (RAFT) polymerization and Gd(III) chelating, and the cRGDyK functionalized polymer (HB-POEGMA-cRGD-Gd) was obtained via click chemistry. By using an enzyme similar to lysosomal cathepsin B, hyperbranched conjugates of high molecular weights (MW) (180 and 210 kDa) and nanoscale sizes (38 and 42 nm) were degraded into low MW (25 and 30 kDa) and smaller products (4.8 and 5.2 nm) below the renal threshold. Conjugate-based nanoscale systems had three-fold more T1 relaxivity compared to clinical agent diethylenediaminepentaacetic acid (DTPA)-Gd. Animal studies with the nanoscale system offered greater tumor accumulation and enhanced signal intensity (SI) in mouse U87 tumors of which the greatest activity was conferred by the cRGDyK moiety functionalized hyperbranched conjugate. In vitro cytotoxicity, hemocompatibility and in vivo toxicity studies confirmed no adverse events. This design strategy for multifunctional Gd(III)-labeled biodegradable dendritic macromolecules may have significant potential as future efficient, biocompatible polymeric nanoscale MRI diagnostic contrast agents for cancer.

摘要

纳米级磁共振成像(MRI)造影剂的功效和生物相容性取决于最佳的分子结构和组成。具有明确且可调节纳米尺寸的基于钆[Gd(III)]的树枝状大分子是作为多价MRI造影剂的极佳候选物。在此,我们通过一种简单策略提出了一种新型的可生物降解超支化聚合物 - 钆共轭物的替代制备方法,并报道了用于癌症诊断的具有潜在高效性和生物相容性的纳米级MRI造影剂。通过一步可逆加成 - 断裂链转移(RAFT)聚合和Gd(III)螯合制备了酶响应性超支化聚(寡聚(乙二醇)甲基丙烯酸酯) - 钆共轭物(HB - POEGMA - Gd),并通过点击化学获得了cRGDyK功能化聚合物(HB - POEGMA - cRGD - Gd)。通过使用类似于溶酶体组织蛋白酶B的酶,高分子量(MW)(180和210 kDa)和纳米尺寸(38和42 nm)的超支化共轭物被降解为低于肾阈值的低MW(25和30 kDa)和更小的产物(4.8和5.2 nm)。与临床试剂二乙三胺五乙酸(DTPA) - Gd相比,基于共轭物的纳米级系统的T1弛豫率高三倍。对该纳米级系统的动物研究表明,在小鼠U87肿瘤中具有更大的肿瘤积累和增强的信号强度(SI),其中cRGDyK部分功能化的超支化共轭物具有最大活性。体外细胞毒性、血液相容性和体内毒性研究证实没有不良事件。这种用于多功能Gd(III)标记的可生物降解树枝状大分子的设计策略作为未来用于癌症的高效、生物相容性聚合物纳米级MRI诊断造影剂可能具有巨大潜力。

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