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5-Amino-1MQ 10mg Vial

Price range: £45.00 through £70.00

For research use only — Not for human or animal use

Our 5-Amino-1MQ 10mg vial is available for research purposes. 5-Amino-1MQ is a small molecule studied for its role in nicotinamide metabolism and cellular energy processes. It is commonly referenced in connection with nicotinamide N methyltransferase NNMT and how this enzyme influences metabolic activity.

NNMT 5-Amino-1MQ is used in laboratory settings to explore NNMT inhibition. This enzyme is linked to the conversion of nicotinamide into methylated nicotinamide, which can impact intracellular NAD levels and broader metabolic pathways. Because of this, it is often included in models that examine cellular energy and metabolic balance.

 

How It Works

5-Amino-1MQ is studied for its ability to support blocking NNMT activity. NNMT plays a role in how the body processes nicotinamide, which is connected to NAD levels and energy production.

This process is linked to:

  • Intracellular NAD regulation
  • Cellular energy balance
  • Nicotinamide metabolism
  • Salvage pathways related to NAD production

 

By influencing NNMT activity, this small molecule is used to observe how cells manage energy and maintain metabolic function at a cellular level.

 

Research Overview

5-Amino-1MQ is used in laboratory research focused on metabolic pathways and enzyme activity. It is often included in models that explore NNMT inhibition and how this affects intracellular NAD levels.

Areas of focus include:

  • NNMT inhibition and enzyme activity
  • Intracellular NAD and salvage pathways
  • Cellular energy regulation
  • Adipose tissue response in diet induced models

 

These models are used to understand how metabolic pathways respond when NNMT activity is reduced or altered.

 

Biological Relevance

NNMT, or nicotinamide N methyltransferase, is involved in the methylation of nicotinamide. This process affects how NAD is used and recycled within cells.

Research has examined how 5-Amino-1MQ may influence:

  • NAD levels and recycling pathways
  • Methylated nicotinamide production
  • Cellular energy processes
  • Adipose tissue metabolism

 

Because of its role in these pathways, this compound is often used in studies that look at how cells respond to changes in metabolic demand.

 

Usage In Research Settings

Some models reference use in diet induced systems, where changes in adipose tissue and metabolic response are observed over time.

The compound is usually stored at -20°C to maintain stability. Proper handling helps preserve consistency across research applications.

This format allows for flexibility in study design, particularly in models that examine long term metabolic response.

 

Side Effects And Limitations

Information on side effects remains limited. Current data focuses on enzyme activity and metabolic response rather than long term outcomes.

Because this compound works within metabolic pathways, results may vary depending on the model and conditions used.

Long term effects are not fully established, and all use is limited to controlled laboratory environments.

 

Format And Handling

The 5-Amino-1MQ 10mg vial is supplied as a high purity small molecule. This format supports stability during storage and transport.

Handling should follow standard laboratory procedures. This includes maintaining correct storage conditions and avoiding exposure to unsuitable temperatures.

Our 5-Amino-1MQ 10mg vial provides a defined format for laboratory research focused on NNMT inhibition, intracellular NAD pathways, and cellular energy processes.

Disclaimer: This product is sold strictly for research purposes only. Not for human consumption.

  • Product: 5-Amino-1MQ 10mg vial
  • Total content: 10mg per vial
  • Composition: 10mg 5-Amino-1MQ (small molecule NNMT inhibitor)
  • Form: Powder compound
  • Vial type: Sterile sealed glass vial
  • Appearance: White to off-white powder
  • Purity: High purity
  • Storage: Store at -20°C
  • Molecular Formula: C7H10N2O
  • Molecular Weight: 138.17 g/mol
  • Solubility: Soluble in appropriate laboratory solvents
  • Intended Use: Research purposes only
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