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AD-8007 1g  | Purity Not Available

Selleck Chemicals

AD-8007 is a selective and brain-penetrant inhibitor of acetyl CoA synthase 2 (ACSS2). AD-8007 significantly reduces lipid storage, cell colony formation, acetyl-CoA levels and cell survival in vitro models, and increase tumor cell death, tumor burden and increases survival in in-vivo models. AD-8007 exhibits anti-cancer activity.

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AD-8007 100mg  | Purity Not Available

Selleck Chemicals

AD-8007 is a selective and brain-penetrant inhibitor of acetyl CoA synthase 2 (ACSS2). AD-8007 significantly reduces lipid storage, cell colony formation, acetyl-CoA levels and cell survival in vitro models, and increase tumor cell death, tumor burden and increases survival in in-vivo models. AD-8007 exhibits anti-cancer activity.

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AD-8007 25mg  | Purity Not Available

Selleck Chemicals

AD-8007 is a selective and brain-penetrant inhibitor of acetyl CoA synthase 2 (ACSS2). AD-8007 significantly reduces lipid storage, cell colony formation, acetyl-CoA levels and cell survival in vitro models, and increase tumor cell death, tumor burden and increases survival in in-vivo models. AD-8007 exhibits anti-cancer activity.

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AD-8007 5mg  | Purity Not Available

Selleck Chemicals

AD-8007 is a selective and brain-penetrant inhibitor of acetyl CoA synthase 2 (ACSS2). AD-8007 significantly reduces lipid storage, cell colony formation, acetyl-CoA levels and cell survival in vitro models, and increase tumor cell death, tumor burden and increases survival in in-vivo models. AD-8007 exhibits anti-cancer activity.

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LTGO-33 1g  | Purity Not Available

Selleck Chemicals

LTGO-33 is a potent and selective inhibitor of voltage-gated sodium channel NaV1.8. LTGO-33, with its potency in the nanomolar range, selectively inhibits NaV1.8 over 600 times more than human NaV1.1-NaV1.7 and NaV1.9. Its inhibition is not dependent on the state of the channels and displays consistent potency against both closed and inactivated conformations. LTGO-33 holds […]

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LTGO-33 100mg  | Purity Not Available

Selleck Chemicals

LTGO-33 is a potent and selective inhibitor of voltage-gated sodium channel NaV1.8. LTGO-33, with its potency in the nanomolar range, selectively inhibits NaV1.8 over 600 times more than human NaV1.1-NaV1.7 and NaV1.9. Its inhibition is not dependent on the state of the channels and displays consistent potency against both closed and inactivated conformations. LTGO-33 holds […]

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LTGO-33 25mg  | Purity Not Available

Selleck Chemicals

LTGO-33 is a potent and selective inhibitor of voltage-gated sodium channel NaV1.8. LTGO-33, with its potency in the nanomolar range, selectively inhibits NaV1.8 over 600 times more than human NaV1.1-NaV1.7 and NaV1.9. Its inhibition is not dependent on the state of the channels and displays consistent potency against both closed and inactivated conformations. LTGO-33 holds […]

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LTGO-33 5mg  | Purity Not Available

Selleck Chemicals

LTGO-33 is a potent and selective inhibitor of voltage-gated sodium channel NaV1.8. LTGO-33, with its potency in the nanomolar range, selectively inhibits NaV1.8 over 600 times more than human NaV1.1-NaV1.7 and NaV1.9. Its inhibition is not dependent on the state of the channels and displays consistent potency against both closed and inactivated conformations. LTGO-33 holds […]

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PF-05251749(CK1-IN-2) 1g  | Purity Not Available

Selleck Chemicals

PF-05251749 (CK1-IN-2, Compound Nr.4) is a potent, selective, brain-penetrant inhibitor of Casein Kinase 1 (CK1) in a concentration-dependent manner, with IC50 values of 33.1 nM for CK1d and 51.6 nM for CK1e. It also functions as an inducer of CYP3A, with the potential to treat circadian rhythm disruptions in Alzheimer’s and Parkinson’s diseases.

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PF-05251749(CK1-IN-2) 100mg  | Purity Not Available

Selleck Chemicals

PF-05251749 (CK1-IN-2, Compound Nr.4) is a potent, selective, brain-penetrant inhibitor of Casein Kinase 1 (CK1) in a concentration-dependent manner, with IC50 values of 33.1 nM for CK1d and 51.6 nM for CK1e. It also functions as an inducer of CYP3A, with the potential to treat circadian rhythm disruptions in Alzheimer’s and Parkinson’s diseases.

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