Date published: 2026-5-7

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BLVRB Inhibitors

BLVRB inhibitors belong to a class of chemical compounds that have garnered interest in the fields of molecular biology and pharmacology due to their to modulate specific cellular processes. BLVRB, or Biliverdin Reductase B, is an enzyme that plays a crucial role in the heme degradation pathway. Heme is a molecule found in hemoglobin and other heme-containing proteins and is essential for oxygen transport and various cellular functions. When heme is broken down in the body, it is converted into biliverdin, a green pigment, by the action of heme oxygenase enzymes. Biliverdin is then converted into bilirubin, a yellow pigment, by the action of biliverdin reductase enzymes, including BLVRB. Bilirubin is further processed and excreted by the liver.

Structurally, BLVRB inhibitors are designed to interact with the active site or binding domain of the BLVRB enzyme, effectively inhibiting its function and influencing cellular processes dependent on biliverdin reduction. By inhibiting BLVRB, these compounds may disrupt the conversion of biliverdin to bilirubin, leading to alterations in heme metabolism and the levels of bilirubin in the body. The study of BLVRB inhibitors is of significant interest to researchers as it provides insights into the regulatory mechanisms governing essential cellular functions related to heme degradation, pigment formation, and the maintenance of heme homeostasis. This knowledge contributes to our understanding of basic cell biology and may have implications in various research areas, including hematology, liver function, and the molecular basis of conditions associated with imbalanced heme metabolism and pigment production. However, further research is required to fully explore the extent of their applications and their impact on cellular physiology in the context of BLVRB-mediated heme degradation.

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Items 1 to 10 of 12 total

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Product NameCAS #Catalog #QUANTITYPriceCitationsRATING

Rapamycin

53123-88-9sc-3504
sc-3504A
sc-3504B
1 mg
5 mg
25 mg
$63.00
$158.00
$326.00
233
(4)

Rapamycin inhibits mTOR signaling, potentially leading to changes in protein synthesis and gene expression that could decrease BLVRB levels.

Actinomycin D

50-76-0sc-200906
sc-200906A
sc-200906B
sc-200906C
sc-200906D
5 mg
25 mg
100 mg
1 g
10 g
$74.00
$243.00
$731.00
$2572.00
$21848.00
53
(3)

Dactinomycin binds DNA and inhibits RNA polymerase, which can reduce mRNA synthesis and potentially lower BLVRB expression.

Puromycin

53-79-2sc-205821
sc-205821A
10 mg
25 mg
$166.00
$322.00
436
(1)

Puromycin causes premature chain termination during protein synthesis, which could destabilize mRNA and decrease BLVRB expression.

Sodium Butyrate

156-54-7sc-202341
sc-202341B
sc-202341A
sc-202341C
250 mg
5 g
25 g
500 g
$31.00
$47.00
$84.00
$222.00
19
(3)

Sodium butyrate acts as a histone deacetylase inhibitor, potentially altering gene expression and possibly reducing transcription of BLVRB.

Resveratrol

501-36-0sc-200808
sc-200808A
sc-200808B
100 mg
500 mg
5 g
$80.00
$220.00
$460.00
64
(2)

Resveratrol might modulate signal transduction and affect transcription factors that regulate BLVRB gene expression.

Fisetin

528-48-3sc-276440
sc-276440A
sc-276440B
sc-276440C
sc-276440D
50 mg
100 mg
500 mg
1 g
100 g
$52.00
$79.00
$104.00
$156.00
$2913.00
7
(1)

Fisetin is known to have various cellular effects including the modulation of signaling pathways that might influence BLVRB gene expression.

D,L-Sulforaphane

4478-93-7sc-207495A
sc-207495B
sc-207495C
sc-207495
sc-207495E
sc-207495D
5 mg
10 mg
25 mg
1 g
10 g
250 mg
$153.00
$292.00
$489.00
$1325.00
$8465.00
$933.00
22
(1)

Sulforaphane may influence transcription factor activity and gene expression, potentially reducing BLVRB mRNA levels.

Phenethyl isothiocyanate

2257-09-2sc-205801
sc-205801A
5 g
10 g
$104.00
$183.00
2
(1)

Phenethyl isothiocyanate can modify transcriptional activity, which may lead to a decrease in BLVRB expression.

Wogonin, S. baicalensis

632-85-9sc-203313
10 mg
$200.00
8
(1)

Wogonin has been shown to affect various signaling pathways that could downregulate BLVRB transcription.

Piperlongumine

20069-09-4sc-364128
10 mg
$107.00
(1)

Piperlongumine affects redox status and might alter the expression of genes like BLVRB that are involved in the response to oxidative stress.