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esculetin/hypoxia

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ČlankiKliničnih preskušanjPatenti
4 rezultatov

Evaluation of cobalt(III) complexes as potential hypoxia-responsive carriers of esculetin

Samo registrirani uporabniki lahko prevajajo članke
Prijava / prijava
Differentiation between hypoxic and normoxic tissues have been exploited for the development of selective chemotherapeutic agents. In this context, cobalt(III)-based coordination compounds have been designed and investigated as prospective hypoxia-responsive drug delivery systems. Three cobalt(III)

Esculetin inhibits oxidative stress and apoptosis in H9c2 cardiomyocytes following hypoxia/reoxygenation injury.

Samo registrirani uporabniki lahko prevajajo članke
Prijava / prijava
Esculetin (6,7-dihydroxycoumarin), a natural coumarin compound extracted from natural plants, was reported to be involved in ischemia/reperfusion (I/R) injury. However, the role of esculetin in myocardial I/R injury remains unclear. This study was designed to investigate the protective effects of

HIF-prolyl hydroxylase is a potential molecular target for esculetin-mediated anti-colitic effects.

Samo registrirani uporabniki lahko prevajajo članke
Prijava / prijava
We investigated a potential molecular target for anti-colitic effects of esculetin, 6,7-dihydroxycoumarin. Esculetin administered rectally effectively ameliorated TNBS-induced rat colitis and attenuated the expression of pro-inflammatory mediators in the inflamed colon. In human colon carcinoma

Esculetin Inhibits Cancer Cell Glycolysis by Binding Tumor PGK2, GPD2, and GPI.

Samo registrirani uporabniki lahko prevajajo članke
Prijava / prijava
Glycolysis can improve the tolerance of tissue cells to hypoxia, and its intermediates provide raw materials for the synthesis and metabolism of the tumor cells. If it can inhibit the activity of glycolysis-related enzymes and control the energy metabolism of tumor, it can be targeted for the
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