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用于生物医学成像的酶响应性大环金属配合物

Enzyme-responsive macrocyclic metal complexes for biomedical imaging.

作者信息

Le Quoc-Viet, Lee Jaiwoo, Ko Seungbeom, Kim Hyunjung, Vu Thien Y, Choe Yearn Seong, Oh Yu-Kyoung, Shim Gayong

机构信息

Faculty of Pharmacy Ton Duc Thang University Ho Chi Minh City Vietnam.

College of Pharmacy and Research Institute of Pharmaceutical Sciences Seoul National University Seoul Republic of Korea.

出版信息

Bioeng Transl Med. 2022 Dec 21;8(5):e10478. doi: 10.1002/btm2.10478. eCollection 2023 Sep.

Abstract

Metal chelator-based contrast agents are used as tumor navigators for cancer diagnosis. Although approved metal chelators show excellent contrast performance in magnetic resonance imaging (MRI), large doses are required for cancer diagnoses due to rapid clearance and nonspecific accumulation throughout the body, which can compromise safety. The present study describes an enzyme-responsive metal delivery system, in which enzyme overexpressed in the tumor microenvironment selectively activates the tumor uptake of gadolinium (Gd). Gd was loaded into enzyme-responsive macrocyclam (ErMC) modified with a PEGylated enzyme-cleavable peptide resulting in Gd@ErMC. The PEGylated shell layer protected Gd@ErMC from nonspecific binding in the blood, increasing the half-life of the contrast agent. Specific cleavage of the PEGylated shell layer by the enzyme selectively liberated Gd from Gd@ErMC at the tumor site. Evaluation of the in vivo distribution of Gd@ErMC in tumor-bearing mice by MRI and positron emission tomography (PET) showed that Gd@ErMC had an extended half-life and was highly specific. Histological and serological analysis of Gd@ErMC-treated mice showed that this agent was safe. This novel enzyme-responsive contrast agent delivery system shows promise as specific theranostic agent for MR-guided radiotherapy.

摘要

基于金属螯合剂的造影剂被用作癌症诊断的肿瘤导航剂。尽管已获批的金属螯合剂在磁共振成像(MRI)中显示出优异的造影性能,但由于其在体内的快速清除和非特异性蓄积,癌症诊断需要大剂量使用,这可能会影响安全性。本研究描述了一种酶响应性金属递送系统,其中在肿瘤微环境中过表达的酶选择性地激活钆(Gd)的肿瘤摄取。将Gd负载到用聚乙二醇化酶可裂解肽修饰的酶响应性大环配体(ErMC)中,得到Gd@ErMC。聚乙二醇化壳层保护Gd@ErMC在血液中不发生非特异性结合,从而延长了造影剂的半衰期。酶对聚乙二醇化壳层的特异性裂解在肿瘤部位选择性地将Gd从Gd@ErMC中释放出来。通过MRI和正电子发射断层扫描(PET)对Gd@ErMC在荷瘤小鼠体内的分布进行评估,结果表明Gd@ErMC具有延长的半衰期且具有高度特异性。对Gd@ErMC处理的小鼠进行组织学和血清学分析表明该制剂是安全的。这种新型的酶响应性造影剂递送系统有望成为用于磁共振引导放疗的特异性诊疗剂。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/557e/10487310/1b1406c49af0/BTM2-8-e10478-g002.jpg

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