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热休克蛋白 90 抑制剂 RGRN-305 可有效抑制皮肤炎症。

Heat shock protein 90 inhibitor RGRN-305 potently attenuates skin inflammation.

机构信息

Department of Dermatology and Venereology, Aarhus University Hospital, Aarhus, Denmark.

Department of Biomedicine, Aarhus University, Aarhus, Denmark.

出版信息

Front Immunol. 2023 Feb 7;14:1128897. doi: 10.3389/fimmu.2023.1128897. eCollection 2023.

Abstract

INTRODUCTION

Chronic inflammatory skin diseases may have a profound negative impact on the quality of life. Current treatment options may be inadequate, offering an unsatisfactory response or side effects. Therefore, ongoing efforts exist to identify novel effective and safe treatments. Heat shock protein (HSP) 90 is a chaperone that promotes the activity of a wide range of client proteins including key proinflammatory molecules involved in aberrant inflammation. Recently, a proof-of-concept clinical trial of 13 patients suggested that RGRN-305 (an HSP90 inhibitor) may be an oral treatment for psoriasis. However, HSP90 inhibition may be a novel therapeutic approach extending beyond psoriasis to include multiple immune-mediated inflammatory skin diseases.

METHODS

This study aimed to investigate () the anti-inflammatory effects and mechanisms of HSP90 inhibition and () the feasibility of topical RGRN-305 administration (new route of administration) in models of inflammation elicited by 12-O-tetradecanoylphorbol-13-acetate (TPA) in primary human keratinocytes and mice (irritative dermatitis murine model).

RESULTS/DISCUSSION: In primary human keratinocytes stimulated with TPA, a Nanostring® nCounter gene expression assay demonstrated that HSP90 inhibition with RGRN-305 suppressed many proinflammatory genes. Furthermore, when measured by quantitative real-time polymerase chain reaction (RT-qPCR), RGRN-305 significantly reduced the gene expression of and . We next demonstrated that topical RGRN-305 application significantly ameliorated TPA-induced skin inflammation in mice. The increase in ear thickness (a marker of inflammation) was significantly reduced (up to 89% inhibition). In accordance, RT-qPCR of the ear tissue demonstrated that RGRN-305 robustly reduced the gene expression of proinflammatory markers ( and ). Moreover, RNA sequencing revealed that RGRN-305 mitigated TPA-induced alterations in gene expression and suppressed genes implicated in inflammation. Lastly, we discovered that the anti-inflammatory effects were mediated, at least partly, by suppressing the activity of NF-κB, ERK1/2, p38 MAPK and c-Jun signaling pathways, which are consistent with previous findings in other experimental models beyond skin inflammation. In summary, HSP90 inhibition robustly suppressed TPA-induced inflammation by targeting key proinflammatory cytokines and signaling pathways. Our findings suggest that HSP90 inhibition may be a novel mechanism of action for treating immune-mediated skin disease beyond psoriasis, and it may be a topical treatment option.

摘要

简介

慢性炎症性皮肤病可能对生活质量产生深远的负面影响。目前的治疗选择可能不够充分,疗效不尽人意或存在副作用。因此,人们一直在努力寻找新的有效且安全的治疗方法。热休克蛋白 90(HSP90)是一种伴侣蛋白,可促进广泛的客户蛋白的活性,包括参与异常炎症的关键促炎分子。最近,一项针对 13 名患者的概念验证临床试验表明,RGRN-305(一种 HSP90 抑制剂)可能是一种治疗银屑病的口服药物。然而,HSP90 抑制可能是一种新的治疗方法,不仅可用于治疗银屑病,还可用于治疗多种免疫介导的炎症性皮肤病。

方法

本研究旨在探讨(i)抑制 HSP90 的抗炎作用及其机制,以及(ii)在原发性人角质形成细胞和小鼠(刺激性皮炎小鼠模型)中,用 RGRN-305(新的给药途径)进行 12-O-十四酰佛波醇-13-乙酸酯(TPA)诱导的炎症模型中局部给药的可行性。

结果/讨论:在 TPA 刺激的原代人角质形成细胞中,Nanostring® nCounter 基因表达分析表明,RGRN-305 抑制 HSP90 可抑制许多促炎基因。此外,通过定量实时聚合酶链反应(RT-qPCR)测量,RGRN-305 显著降低了 和 的基因表达。接下来,我们证明局部应用 RGRN-305 可显著改善 TPA 诱导的小鼠皮肤炎症。耳厚度(炎症标志物)的增加(高达 89%的抑制)显著降低。相应地,耳组织的 RT-qPCR 显示 RGRN-305 强烈降低了促炎标志物( 和 )的基因表达。此外,RNA 测序显示 RGRN-305 减轻了 TPA 诱导的基因表达改变,并抑制了与炎症相关的基因。最后,我们发现抗炎作用是通过抑制 NF-κB、ERK1/2、p38 MAPK 和 c-Jun 信号通路来介导的,这与皮肤炎症以外的其他实验模型中的先前发现一致。总之,HSP90 抑制通过靶向关键的促炎细胞因子和信号通路,强烈抑制 TPA 诱导的炎症。我们的研究结果表明,HSP90 抑制可能是治疗除银屑病以外的免疫介导性皮肤病的一种新的作用机制,并且可能是一种局部治疗选择。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3f78/9941631/aeabf731e244/fimmu-14-1128897-g001.jpg

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