Suppr超能文献

环辛烯功能化的 Pepto 刷,提高了反式环辛烯连接的反应动力学,用于靶向核成像。

-Cyclooctene-Functionalized PeptoBrushes with Improved Reaction Kinetics of the Tetrazine Ligation for Pretargeted Nuclear Imaging.

机构信息

Department of Drug Design and Pharmacology, Faculty of Health and Medical Sciences , University of Copenhagen , Universitetsparken 2 , 2100 Copenhagen , Denmark.

Department of Clinical Physiology, Nuclear Medicine & PET , Rigshospitalet , Blegdamsvej 9 , 2100 Copenhagen , Denmark.

出版信息

ACS Nano. 2020 Jan 28;14(1):568-584. doi: 10.1021/acsnano.9b06905. Epub 2020 Jan 2.

Abstract

Tumor targeting using agents with slow pharmacokinetics represents a major challenge in nuclear imaging and targeted radionuclide therapy as they most often result in low imaging contrast and high radiation dose to healthy tissue. To address this challenge, we developed a polymer-based targeting agent that can be used for pretargeted imaging and thus separates tumor accumulation from the imaging step in time. The developed targeting agent is based on polypeptide--polypeptoid polymers (PeptoBrushes) functionalized with -cyclooctene (TCO). The complementary In-labeled imaging agent is a 1,2,4,5-tetrazine derivative, which can react with aforementioned TCO-modified PeptoBrushes in a rapid bioorthogonal ligation. A high degree of TCO loading (up to 30%) was achieved, without altering the physicochemical properties of the polymeric nanoparticle. The highest degree of TCO loading resulted in significantly increased reaction rates (77-fold enhancement) compared to those with small molecule TCO moieties when using lipophilic tetrazines. Based on computer simulations, we hypothesize that this increase is a result of hydrophobic effects and significant rearrangements within the polymer framework, in which hydrophobic patches of TCO moieties are formed. These patches attract lipophilic tetrazines, leading to increased reaction rates in the bioorthogonal ligation. The most reactive system was evaluated as a targeting agent for pretargeted imaging in tumor-bearing mice. After the setup was optimized, sufficient tumor-to-background ratios were achieved as early as 2 h after administration of the tetrazine imaging agent, which further improved at 22 h, enabling clear visualization of CT-26 tumors. These findings show the potential of PeptoBrushes to be used as a pretargeting agent when an optimized dose of polymer is used.

摘要

利用药代动力学缓慢的试剂进行肿瘤靶向是核医学成像和靶向放射性核素治疗的主要挑战,因为它们通常导致低成像对比度和高健康组织辐射剂量。为了解决这一挑战,我们开发了一种基于聚合物的靶向试剂,可用于预靶向成像,从而将肿瘤积聚与成像步骤在时间上分开。所开发的靶向试剂基于多肽-多肽聚合物(PeptoBrushes),其用 -环辛烯(TCO)官能化。互补的 In 标记成像剂是一种 1,2,4,5-四嗪衍生物,它可以与上述 TCO 修饰的 PeptoBrushes 在快速生物正交连接中反应。实现了高 TCO 负载(高达 30%),而不会改变聚合物纳米颗粒的物理化学性质。与使用亲脂性四嗪时相比,小分子 TCO 部分的负载度最高导致反应速率显著提高(增强 77 倍)。基于计算机模拟,我们假设这种增加是疏水性效应和聚合物骨架内的显著重排的结果,其中形成 TCO 部分的疏水区。这些斑块吸引亲脂性四嗪,导致生物正交连接中的反应速率增加。最具反应性的系统被评估为用于荷瘤小鼠的预靶向成像的靶向试剂。在优化设置后,早在给予四嗪成像剂 2 小时后就实现了足够的肿瘤与背景的比率,在 22 小时进一步提高,从而能够清楚地可视化 CT-26 肿瘤。这些发现表明,当使用优化剂量的聚合物时,PeptoBrushes 具有作为预靶向试剂的潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2c06/7075664/ec24da4e4691/nn9b06905_0001.jpg

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验