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基于三苯甲基保护基的新型可调酸敏感连接子用于天然药物释放。

A New Class of Tunable Acid-Sensitive Linkers for Native Drug Release Based on the Trityl Protecting Group.

机构信息

Cristal Therapeutics, Maastricht 6229 EV, The Netherlands.

Department of Pharmaceutics, Utrecht Institute for Pharmaceutical Sciences, Utrecht University, Utrecht 3584 CG, The Netherlands.

出版信息

Bioconjug Chem. 2022 Sep 21;33(9):1707-1715. doi: 10.1021/acs.bioconjchem.2c00310. Epub 2022 Aug 18.

Abstract

Core-cross-linked polymeric micelles (CCPMs) are a promising nanoparticle platform due to favorable properties such as their long circulation and tumor disposition exploiting the enhanced permeability and retention (EPR) effect. Sustained release of covalently linked drugs from the hydrophobic core of the CCPM can be achieved by a biodegradable linker that connects the drug and the core. This study investigates the suitability of trityl-based linkers for the design of acid-triggered native active pharmaceutical ingredient (API) release from CCPMs. Trityl linker derivatives with different substituent patterns were synthesized and conjugated to model API compounds such as DMXAA-amine, doxorubicin, and gemcitabine, and their release kinetics were studied. Hereafter, API release from CCPMs based on mPEG-b-pHPMAmLac block copolymers was investigated. Variation of the trityl substitution pattern showed tunability of the API release rate from the trityl-based linker with varying from <1.0 to 5.0 h at pH 5.0 and from 6.5 to >24 h at pH 7.4, all at 37 °C. A clear difference in release kinetics was found between gemcitabine and doxorubicin, with gemcitabine showing no detectable release for 72 h at pH 5.0 and doxorubicin showing a of less than 1 h. Based on these findings, we show that the reaction mechanism of trityl deprotection plays an important role in the API release kinetics. The first step in this mechanism, which is protonation of the trityl-bound amine, is pK-dependent, which explains the difference in release rate. In conclusion, acid-sensitive and tunable trityl linkers are highly promising for the design of linker-API conjugates and for their use in CCPMs.

摘要

核交联聚合物胶束(CCPMs)是一种很有前途的纳米颗粒平台,因为其具有长循环和肿瘤分布等优点,利用了增强的通透性和保留(EPR)效应。通过连接药物和核心的可生物降解连接体,可以从 CCPM 的疏水性核心中实现共价连接的药物的持续释放。本研究考察了三苯甲基连接体在设计酸触发的天然活性药物成分(API)从 CCPM 释放中的适用性。合成了具有不同取代模式的三苯甲基连接体衍生物,并将其与模型 API 化合物如 DMXAA-胺、阿霉素和吉西他滨缀合,研究了它们的释放动力学。此后,研究了基于 mPEG-b-pHPMAmLac 嵌段共聚物的 CCPM 中的 API 释放。三苯甲基取代模式的变化表明,三苯甲基连接体的 API 释放速率具有可调性,在 pH 5.0 时从 <1.0 到 5.0 h 不等,在 pH 7.4 时从 6.5 到 >24 h 不等,所有温度均为 37°C。在吉西他滨和阿霉素之间发现了释放动力学的明显差异,吉西他滨在 pH 5.0 下 72 h 内没有检测到释放,而阿霉素的释放不到 1 h。基于这些发现,我们表明三苯甲基去保护的反应机制在 API 释放动力学中起着重要作用。该机制的第一步是三苯甲基结合的胺质子化,这是 pK 依赖性的,这解释了释放速率的差异。总之,酸敏感和可调的三苯甲基连接体非常有希望用于设计连接体-API 缀合物及其在 CCPM 中的应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c594/9501768/11e47f534543/bc2c00310_0002.jpg

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