Date published: 2025-9-23

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GPD2 Inhibitors

GPD2 inhibitors belong to a distinctive chemical class characterized by their capacity to modulate the activity of the glycerol-3-phosphate dehydrogenase 2 (GPD2) enzyme. GPD2 is a mitochondrial protein crucial for cellular energy metabolism, playing a pivotal role in the glycerol phosphate shuttle, a process involved in the transfer of reducing equivalents across the inner mitochondrial membrane. Inhibition of GPD2 is often targeted for its potential implications in altering cellular energetics and metabolic pathways.

Members of the GPD2 inhibitors class typically exhibit specific structural motifs that interact with the active site of the enzyme, thereby impeding its catalytic function. The binding interactions between GPD2 inhibitors and the enzyme's active site lead to the disruption of glycerol phosphate shuttle-mediated processes, with potential downstream effects on cellular bioenergetics.GPD2 inhibitors may comprise diverse chemical scaffolds, allowing for a range of chemical modifications to enhance binding affinity and selectivity. Researchers investigating GPD2 inhibitors aim to elucidate the precise mechanisms through which these compounds interfere with mitochondrial function, providing valuable insights into the regulatory role of GPD2 in cellular metabolism. Understanding the structural and biochemical properties of GPD2 inhibitors contributes to the ongoing exploration of novel strategies to modulate cellular energy dynamics and provides a foundation for further research in diverse biological contexts.

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Items 1 to 10 of 12 total

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Product NameCAS #Catalog #QUANTITYPriceCitationsRATING

DHEA

53-43-0sc-202573
10 g
$109.00
3
(1)

DHEA (Dehydroepiandrosterone) inhibits GPD2 by binding to the enzyme and altering its structure, thus reducing its activity.

Indomethacin

53-86-1sc-200503
sc-200503A
1 g
5 g
$28.00
$37.00
18
(1)

Indomethacin inhibits GPD2 by reducing the availability of the substrate for the enzyme, decreasing its activity.

Quercetin

117-39-5sc-206089
sc-206089A
sc-206089E
sc-206089C
sc-206089D
sc-206089B
100 mg
500 mg
100 g
250 g
1 kg
25 g
$11.00
$17.00
$108.00
$245.00
$918.00
$49.00
33
(2)

Quercetin inhibits GPD2 by attaching to the active site of the enzyme, preventing the substrate from binding and thus reducing enzymatic activity.

(−)-Epigallocatechin Gallate

989-51-5sc-200802
sc-200802A
sc-200802B
sc-200802C
sc-200802D
sc-200802E
10 mg
50 mg
100 mg
500 mg
1 g
10 g
$42.00
$72.00
$124.00
$238.00
$520.00
$1234.00
11
(1)

Epigallocatechin Gallate inhibits GPD2 by binding to the enzyme and altering its structure, thereby reducing its activity.

Curcumin

458-37-7sc-200509
sc-200509A
sc-200509B
sc-200509C
sc-200509D
sc-200509F
sc-200509E
1 g
5 g
25 g
100 g
250 g
1 kg
2.5 kg
$36.00
$68.00
$107.00
$214.00
$234.00
$862.00
$1968.00
47
(1)

Curcumin inhibits GPD2 by attaching to the enzyme's active site, blocking substrate binding and thus decreasing enzymatic activity.

Ursolic Acid

77-52-1sc-200383
sc-200383A
50 mg
250 mg
$55.00
$176.00
8
(1)

Ursolic acid inhibits GPD2 by binding to the enzyme and altering its structure, thereby reducing its activity.

Resveratrol

501-36-0sc-200808
sc-200808A
sc-200808B
100 mg
500 mg
5 g
$60.00
$185.00
$365.00
64
(2)

Resveratrol inhibits GPD2 by attaching to the enzyme's active site, blocking substrate binding and thus decreasing enzymatic activity.

Berberine

2086-83-1sc-507337
250 mg
$90.00
1
(0)

Berberine inhibits GPD2 by binding to the enzyme and altering its structure, thereby reducing its activity.

Apigenin

520-36-5sc-3529
sc-3529A
sc-3529B
sc-3529C
sc-3529D
sc-3529E
sc-3529F
5 mg
100 mg
1 g
5 g
25 g
100 g
1 kg
$32.00
$210.00
$720.00
$1128.00
$2302.00
$3066.00
$5106.00
22
(1)

Apigenin inhibits GPD2 by attaching to the enzyme's active site, blocking substrate binding and thus decreasing enzymatic activity.

Fisetin

528-48-3sc-276440
sc-276440A
sc-276440B
sc-276440C
sc-276440D
50 mg
100 mg
500 mg
1 g
100 g
$51.00
$77.00
$102.00
$153.00
$2856.00
7
(1)

Fisetin inhibits GPD2 by binding to the enzyme and altering its structure, thereby reducing its activity.