Date published: 2025-10-10

021-6093-6350

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IL-17REL 抑制因子

IL-17REL inhibitors are a specialized class of chemical compounds designed to specifically target and inhibit the activity of IL-17REL, a member of the interleukin-17 receptor family. IL-17REL, or Interleukin-17 Receptor E-like, is a protein that plays a role in the complex signaling pathways involved in immune responses. While its exact functions are still under investigation, IL-17REL is believed to be involved in modulating immune responses, particularly those related to inflammatory processes. By inhibiting IL-17REL, researchers aim to dissect its specific role within the broader context of immune system regulation and to understand how it interacts with other members of the IL-17 receptor family, which are known to be critical in host defense mechanisms.

The study of IL-17REL inhibitors is important for expanding our knowledge of the intricate network of cytokine signaling that underpins immune system function. These inhibitors are used in various experimental settings to block the activity of IL-17REL and observe the resulting changes in cellular behavior and immune responses. This approach allows scientists to identify the pathways and molecular interactions in which IL-17REL is involved, providing insights into how this receptor contributes to the regulation of inflammation and immune homeostasis. Additionally, understanding the specific actions of IL-17REL through the use of inhibitors can shed light on its potential role in pathological conditions where immune dysregulation is a factor. By studying IL-17REL inhibitors, researchers can gain a deeper understanding of the receptor's function, which may have broader implications for understanding the immune system's balance and how it responds to various stimuli.

関連項目

产品名称CAS #产品编号数量价格应用排名

Apilimod

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Apilimod是一种选择性PIKfyve抑制剂,可通过改变内体运输来破坏与白细胞介素-17(IL-17)受体家族轴相关的细胞内信号通路,从而减弱白细胞介素-17(IL-17)受体家族介导的信号。

Wortmannin

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sc-3505A
sc-3505B
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(3)

Wortmannin是一种PI3K抑制剂,可通过其在PI3K-Akt通路中的作用间接抑制白细胞介素17(IL-17)受体家族的信号传导,该通路与IL-17R通路交叉。