# Acipimox

For research use only.

Catalog No.S1806 Synonyms: Olbemox

2 publications

CAS No. 51037-30-0

Acipimox (Olbemox) is a niacin derivative used as a hypolipidemic agent.

Size Price Stock Quantity
 10mM (1mL in DMSO) USD 130 In stock 0 1 2 3 4 5 6 7 8 9 10 50mg USD 97 In stock 0 1 2 3 4 5 6 7 8 9 10 100mg USD 170 In stock 0 1 2 3 4 5 6 7 8 9 10 Bulk Size Bulk Discount

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### Biological Activity

Description Acipimox (Olbemox) is a niacin derivative used as a hypolipidemic agent.

### Solubility (25°C)

 In vitro DMSO 31 mg/mL (201.14 mM) Water Insoluble Ethanol Insoluble

* Please note that Selleck tests the solubility of all compounds in-house, and the actual solubility may differ slightly from published values. This is normal and is due to slight batch-to-batch variations.

Molecular Weight 154.12 C6H6N2O3 51037-30-0 3 years-20°C powder 2 years-80°C in solvent Olbemox CC1=CN=C(C=[N+]1[O-])C(=O)O

### In vivo Formulation Calculator (Clear solution)

 Step 1: Enter information below (Recommended: An additional animal making an allowance for loss during the experiment) Dosage mg/kg Average weight of animals g Dosing volume per animal ul Number of animals Step 2: Enter the in vivo formulation (This is only the calculator, not formulation. Please contact us first if there is no in vivo formulation at the solubility Section.) % DMSO+ % PEG300 Corn oil + % Tween 80+ % ddH2O CalculateReset

### Bio Calculators

Molarity Calculator

## Molarity Calculator

Calculate the mass, volume or concentration required for a solution. The Selleck molarity calculator is based on the following equation:

### Mass (mg) = Concentration (mM) × Volume (mL) × Molecular Weight (g/mol)

• Mass
Concentration
Volume
Molecular Weight

*When preparing stock solutions, please always use the batch-specific molecular weight of the product found on the via label and MSDS / COA (available on product pages).

Dilution Calculator

## Dilution Calculator

Calculate the dilution required to prepare a stock solution. The Selleck dilution calculator is based on the following equation:

### Concentration (start) x Volume (start) = Concentration (final) x Volume (final)

This equation is commonly abbreviated as: C1V1 = C2V2 ( Input Output )

• C1
V1
C2
V2

* When preparing stock solutions always use the batch-specific molecular weight of the product found on the vial label and MSDS / COA (available online).

## The Serial Dilution Calculator Equation

• ### Computed Result

• C1=C0/X C2=C1/X C1: LOG(C1): C2: LOG(C2): C3: LOG(C3): C4: LOG(C4): C5: LOG(C5): C6: LOG(C6): C7: LOG(C7): C8: LOG(C8):
Molecular Weight Calculator

## Molecular Weight Calculator

Enter the chemical formula of a compound to calculate its molar mass and elemental composition:

### Total Molecular Weight: g/mol

Tip: Chemical formula is case sensitive. C10H16N2O2 c10h16n2o2

#### Instructions to calculate molar mass (molecular weight) of a chemical compound:

To calculate molar mass of a chemical compound, please enter its chemical formula and click 'Calculate'.

#### Definitions of molecular mass, molecular weight, molar mass and molar weight:

Molecular mass (molecular weight) is the mass of one molecule of a substance and is expressed in the unified atomic mass units (u). (1 u is equal to 1/12 the mass of one atom of carbon-12)
Molar mass (molar weight) is the mass of one mole of a substance and is expressed in g/mol.

#### Molarity Calculator

 Mass Concentration Volume Molecular Weight pg ng μg mg g kg = fM pM nM μM mM M × nL μL mL L ×

### Clinical Trial Information(data from https://clinicaltrials.gov, updated on 2021-05-17)

NCT Number Recruitment interventions Conditions Sponsor/Collaborators Start Date Phases
NCT01580813 Active not recruiting Drug: Acipimox|Drug: Placebo Type 2 Diabetes University of Colorado Denver|US Department of Veterans Affairs|Pfizer June 2011 Not Applicable
NCT00153179 Completed Drug: acipimox|Drug: placebo Type 2 Diabetes Mellitus Brigham and Women''s Hospital September 2005 Phase 1|Phase 2

### Tech Support

Answers to questions you may have can be found in the inhibitor handling instructions. Topics include how to prepare stock solutions, how to store inhibitors, and issues that need special attention for cell-based assays and animal experiments.

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