Date published: 2026-4-1

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Gm1045 Activators

Gm1045 activators are a class of chemical compounds specifically designed to enhance the function of Gm1045, a gene that encodes a protein with currently not well-characterized functions but is believed to play a role in specific cellular processes based on its gene expression profile and associated pathways. Gm1045, like other genes identified through genome-wide studies, is part of a larger network of genes involved in regulating cellular activities, including signaling pathways, gene expression regulation, and possibly responses to external stimuli. Activating Gm1045 through specific activators may increase the expression or function of the Gm1045 protein, thereby amplifying its effects on the cellular processes it influences. This can be crucial for studying the gene's role in particular biological pathways and understanding how it contributes to broader cellular functions.

In research settings, Gm1045 activators are valuable tools for dissecting the functional role of Gm1045 within cells and for exploring its potential interactions with other proteins and pathways. By enhancing the activity of Gm1045, scientists can observe the resulting changes in cellular behavior, such as alterations in gene expression profiles, shifts in metabolic activities, or modifications in cell signaling dynamics. This allows researchers to investigate the downstream effects of Gm1045 activation, providing insights into how this gene might regulate specific cellular functions, such as growth, differentiation, or response to environmental changes. Additionally, Gm1045 activators enable the exploration of the gene's role in maintaining cellular homeostasis, particularly in contexts where its expression might be naturally induced or repressed. Through these studies, the use of Gm1045 activators enhances our understanding of the molecular mechanisms underlying gene regulation, the specific functions of Gm1045 in cellular physiology, and the broader implications of its activity within complex biological systems.

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Product NameCAS #Catalog #QUANTITYPriceCitationsRATING

L-Ascorbic acid, free acid

50-81-7sc-202686
100 g
$46.00
5
(1)

Crucial for collagen synthesis, it can support odontoblast differentiation, thereby potentially enhancing the activity of ODAPH.

Dexamethasone

50-02-2sc-29059
sc-29059B
sc-29059A
100 mg
1 g
5 g
$91.00
$139.00
$374.00
36
(1)

A glucocorticoid that can stimulate odontoblastic differentiation, thus indirectly enhancing ODAPH activity by promoting the environment where it functions.

Retinoic Acid, all trans

302-79-4sc-200898
sc-200898A
sc-200898B
sc-200898C
500 mg
5 g
10 g
100 g
$66.00
$325.00
$587.00
$1018.00
28
(1)

By influencing the differentiation of dental tissue, retinoic acid can indirectly enhance ODAPH activity related to tooth development.

Cholecalciferol

67-97-0sc-205630
sc-205630A
sc-205630B
1 g
5 g
10 g
$71.00
$163.00
$296.00
2
(1)

Regulates calcium homeostasis and promotes bone and tooth mineralization, indirectly enhancing ODAPH activity.

Strontium Ranelate

135459-87-9sc-208403
10 mg
$320.00
(0)

Known to enhance bone mineralization, which could also enhance ODAPH activity in the context of tooth development.

Zinc

7440-66-6sc-213177
100 g
$48.00
(0)

Zinc plays a role in tooth mineralization and could indirectly enhance ODAPH activity by affecting odontoblast function.