Date published: 2025-9-11

021-6093-6350

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glutathione S-transferase mu (GSTM) 抑制因子

GSTM, or glutathione S-transferase mu, is part of the GST family of enzymes that are key players in cellular detoxification processes. These enzymes catalyze the conjugation of glutathione, a critical antioxidant, to various substrates, including xenobiotics, drugs, and products of oxidative stress. GSTM enzymes are particularly important in the metabolism and detoxification of carcinogens, and their activity can influence the cellular response to oxidative stress and chemical insults. The expression of GSTM enzymes is often upregulated in response to oxidative stress and in various pathological conditions, including cancer. By facilitating the conjugation of glutathione to reactive intermediates, GSTM enzymes help in neutralizing toxins and protecting cells from damage.

Targeting GSTM for disruption or inhibition has been explored mainly in the context, as these enzymes can contribute to drug resistance and tumor survival. Inhibitors of GSTM are designed to increase the sensitivity of cancer cells to the detoxification of agents. However, the challenge in targeting GSTM lies in achieving specificity, as inhibiting these enzymes can also disrupt normal cellular detoxification processes, leading to increased susceptibility to oxidative stress and toxicity.

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产品名称CAS #产品编号数量价格应用排名

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鞣花酸通过与 GSTM4 的活性位点结合来抑制 GSTM4,破坏其酶活性,阻止谷胱甘肽与异种生物和内源性化合物共轭。

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磺胺沙拉嗪通过形成共价修饰 GSTM4 的活性代谢物来抑制 GSTM4,导致该酶失活和解毒能力下降。

Colcemid

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据报道,这种化合物能抑制 GST。它具有阻止 GST 的潜力,尤其是在癌细胞中。

Brusatol

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(0)

一种从 Brucea javanica 中提取的槲皮素。据报道,Brusatol 可抑制 GST 的活性,因此成为癌症研究的一个热点。

Plumbagin

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(1)

一种萘醌化合物,存在于 Plumbaginaceae 植物中。Plumbagin 可抑制 GST 的活性,从而增强化疗药物的细胞毒性。

Resveratrol

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白藜芦醇通过与 GSTM4 的活性位点结合来抑制 GSTM4 的活性,从而阻断其促进各种异种生物解毒的能力。

Silybin

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水飞蓟宾通过干扰 GSTM4 的活性位点来抑制 GSTM4,从而损害其与谷胱甘肽和毒素及致癌物质的共轭作用。

Indole-3-carbinol

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(1)

吲哚-3-甲醇通过破坏 GSTM4 的活性位点来抑制 GSTM4,从而阻碍其与有害化合物结合谷胱甘肽的能力。

(−)-Epigallocatechin Gallate

989-51-5sc-200802
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sc-200802C
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(1)

表没食子儿茶素没食子酸酯通过与 GSTM4 的活性位点结合而抑制 GSTM4,干扰其在亲电化合物解毒过程中的作用。