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雷公藤红素型 HSP90 调节剂可产生强大的心脏保护作用。

Celastrol-type HSP90 modulators allow for potent cardioprotective effects.

机构信息

Centre de Recherche du Centre Hospitalier de l'Université de Montréal (CRCHUM), Montreal, Quebec, Canada.

Centre de Recherche du Centre Hospitalier de l'Université de Montréal (CRCHUM), Montreal, Quebec, Canada; Department of Surgery, Faculty of Medicine, Université de Montréal, Montreal, Quebec, Canada.

出版信息

Life Sci. 2019 Jun 15;227:8-19. doi: 10.1016/j.lfs.2019.04.025. Epub 2019 Apr 12.

Abstract

AIMS

Cardiac ischemic conditioning has been shown to decrease ischemic injury in experimental models and clinically. Activation of survival pathways leading to heat shock proteins (HSP) modulation is an important contributor to this effect. We have previously shown that celastrol, an HSP90 modulator, achieves cardioprotection through activation of cytoprotective HSP's and heme-oxygenase-1 (HO-1). This is the first comparative evaluation of several modulators of HSP90 activity for cardioprotection. Furthermore, basic celastrol structure-activity relationship was characterized in order to develop novel potent infarct sparing agents suitable for clinical development.

MAIN METHODS

Combining in vitro cell culture using rat myocardial cell line exposed to ischemic and ischemia/reperfusion (I/R) stresses, and ex vivo Langendorff rat heart perfusion I/R model, we evaluated cardioprotective effects of various compounds. Selected signalling pathways were evaluated by western blot and reporter gene activation.

KEY FINDINGS

From a variety of HSP90 modulator chemotypes, the celastrol family was most efficient in inducing cytoprotective HSP70 and HO-1 protein overexpression and cell survival in vitro. Celastrol and two synthetic analogs were protective against ischemia and prevented ischemia/reperfusion (I/R) injury when given as pre-treatment or at time of reperfusion, increasing viability and reducing mitochondrial permeability transition pore opening. Ex vivo experiments demonstrated that the two synthetic analogs show cardioprotective activity at lower concentrations compared to celastrol, with activation of multiple survival pathways.

SIGNIFICANCE

Celastrol backbone is essential for cardioprotection through HSP90 activity modulation. These compounds hold promise as novel adjunct treatment to improve outcome in the clinical management of I/R injury.

摘要

目的

心脏缺血预处理已被证明可减少实验模型和临床中的缺血性损伤。导致热休克蛋白 (HSP) 调节的存活途径的激活是这种作用的重要贡献者。我们之前已经表明,作为 HSP90 调节剂的 celastrol 通过激活细胞保护 HSP 和血红素加氧酶-1 (HO-1) 来实现心脏保护作用。这是对几种 HSP90 活性调节剂进行心脏保护作用的首次比较评估。此外,对 HSP90 活性调节剂的基本 celastrol 结构-活性关系进行了表征,以便开发适合临床开发的新型有效的梗塞性保护剂。

主要方法

我们结合了在体外使用暴露于缺血和缺血/再灌注 (I/R) 应激的大鼠心肌细胞系的细胞培养,以及在体 Langendorff 大鼠心脏 I/R 模型,评估了各种化合物的心脏保护作用。通过 Western blot 和报告基因激活评估了选定的信号通路。

主要发现

在各种 HSP90 调节剂化学型中,celastrol 家族在体外最有效地诱导细胞保护 HSP70 和 HO-1 蛋白的过表达和细胞存活。 Celastrol 和两种合成类似物在预处理或再灌注时对缺血和预防缺血/再灌注 (I/R) 损伤具有保护作用,增加了活力并减少了线粒体通透性转换孔的开放。在体实验表明,与 celastrol 相比,两种合成类似物在较低浓度下具有心脏保护活性,同时激活了多种存活途径。

意义

Celastrol 骨架对于通过 HSP90 活性调节的心脏保护至关重要。这些化合物有望成为改善 I/R 损伤临床管理中结局的新型辅助治疗方法。

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