Date published: 2025-10-10

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FAM22A Inhibitors

The chemical class of FAM22A Inhibitors comprises a diverse range of compounds that exert their effects through indirect pathways. These chemicals interact with various cellular processes and signaling pathways, potentially influencing the activity of the FAM22A protein. This indirect influence is crucial because direct activators of FAM22A are not well-established or documented.

Compounds like Nifedipine and Phloretin, for instance, impact calcium channels and glucose transporters, respectively, which could lead to alterations in the cellular environment and subsequently affect FAM22A's activity. Astaxanthin and Ellagic Acid, known for their antioxidant properties, may modulate the protein's activity by affecting the cellular oxidative stress response, a critical factor in regulating various proteins.

Similarly, compounds like Berberine and Emodin, which interact with metabolic enzymes and kinase pathways, highlight the intricate relationship between metabolism, cell signaling, and the regulation of proteins like FAM22A. This further underscores the complexity of identifying indirect activators of proteins.

Moreover, Genipin's interaction with apoptosis mechanisms and Hesperidin's influence on vascular function and inflammation provide insights into the diverse ways in which FAM22A's activity can be modulated. This diversity in mechanisms reflects the multifaceted nature of protein regulation in cells, where multiple interconnected pathways can influence a single protein's function.

In conclusion, the class of FAM22A Inhibitors represents a broad spectrum of chemical entities, each contributing to the modulation of FAM22A activity through various indirect means. These compounds, with their differing mechanisms of action, illuminate the complex interplay of cellular pathways and networks in regulating key proteins. Understanding these interactions is crucial for comprehending the regulation of specific proteins like FAM22A, and the broader implications of these mechanisms in cellular biology.

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Items 1 to 10 of 11 total

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Product NameCAS #Catalog #QUANTITYPriceCitationsRATING

Nifedipine

21829-25-4sc-3589
sc-3589A
1 g
5 g
$58.00
$170.00
15
(1)

May enhance FAM22A activity by modulating calcium channels and altering intracellular signaling.

Phloretin

60-82-2sc-3548
sc-3548A
200 mg
1 g
$63.00
$250.00
13
(1)

Could influence FAM22A through its impact on glucose transporters and cellular metabolism.

Berberine

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

Might affect FAM22A function by interacting with metabolic enzymes and cellular signaling.

Emodin

518-82-1sc-202601
sc-202601A
sc-202601B
50 mg
250 mg
15 g
$103.00
$210.00
$6132.00
2
(1)

Could alter FAM22A activity through its impact on various kinase pathways.

Ellagic Acid, Dihydrate

476-66-4sc-202598
sc-202598A
sc-202598B
sc-202598C
500 mg
5 g
25 g
100 g
$57.00
$93.00
$240.00
$713.00
8
(1)

May influence FAM22A by modulating antioxidant response and cellular detoxification pathways.

Genipin

6902-77-8sc-203057
sc-203057A
25 mg
100 mg
$80.00
$246.00
6
(2)

Potentially affects FAM22A activity by interacting with enzymes involved in cellular apoptosis.

Hesperidin

520-26-3sc-205711
sc-205711A
25 g
100 g
$80.00
$200.00
5
(1)

Might modulate FAM22A through its effects on blood vessel function and inflammation.

Luteolin

491-70-3sc-203119
sc-203119A
sc-203119B
sc-203119C
sc-203119D
5 mg
50 mg
500 mg
5 g
500 g
$26.00
$50.00
$99.00
$150.00
$1887.00
40
(1)

Could influence FAM22A by altering kinase signaling and cellular metabolism.

Myricetin

529-44-2sc-203147
sc-203147A
sc-203147B
sc-203147C
sc-203147D
25 mg
100 mg
1 g
25 g
100 g
$95.00
$184.00
$255.00
$500.00
$1002.00
3
(1)

Potentially modulates FAM22A activity via its impact on oxidative stress and kinase pathways.

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)

Might affect FAM22A function by modulating cellular signaling networks and metabolic pathways.