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Category: Capsules

5 AMINO 1MQ

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$159.00

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Description

 

⚠️ Research Use Only Disclaimer

This product is intended strictly for laboratory research purposes only. It is not for human or animal consumption. The information presented is provided for scientific and educational reference within professional laboratory environments. This compound has not been approved by the FDA and is not intended to diagnose, treat, cure, or prevent any disease. All experimentation must be conducted by qualified professionals in licensed research facilitiesin accordance with applicable laws and regulations.


5-Amino-1MQ (5-Amino-1-methylquinolinium)

Targeted NNMT Inhibitor for Metabolic & NAD⁺ Research

5-Amino-1MQ is a synthetic research compound studied for its ability to block an enzyme called Nicotinamide N-Methyltransferase (NNMT).

In simple terms, this enzyme can redirect important cellular nutrients away from the body’s natural energy and repair systems. By inhibiting NNMT in laboratory studies, researchers can explore how preserving these nutrients may affect cellular energy production, metabolic signaling, and biological repair pathways.


Product Highlights

✔ Studied for supporting NAD⁺ production pathways
✔ Targets the NNMT metabolic enzyme
✔ Investigated in metabolic efficiency research
✔ Relevant in cellular energy and longevity studies
✔ Explored for methylation balance research

In simple terms:
This compound helps researchers examine how blocking a specific enzyme may allow cells to use nutrients more efficiently for energy production and repair processes.


What is 5-Amino-1MQ?

5-Amino-1MQ (5-Amino-1-methylquinolinium) is a small synthetic molecule used in laboratory studies to examine how cells regulate energy production and metabolism.

Inside cells, a molecule called nicotinamide is normally recycled to produce NAD⁺, a critical compound that fuels many important cellular processes.

However, the enzyme NNMT can redirect nicotinamide away from this recycling process. When this happens, cells may produce less NAD⁺, which can affect how efficiently they generate energy and repair themselves.

In simpler terms:
Think of nicotinamide as a raw material that cells use to make an energy-supporting molecule (NAD⁺). The NNMT enzyme can sometimes divert that raw material elsewhere. 5-Amino-1MQ is studied because it may block that diversion, allowing more of the raw material to stay in the energy pathway.


Mechanism of Action

How the Compound Works

The primary action of 5-Amino-1MQ is the selective inhibition of NNMT, an enzyme involved in metabolic regulation.

When NNMT is highly active in research models:

• Nicotinamide is redirected away from NAD⁺ production
• Cellular NAD⁺ levels may decline
• Methyl donor molecules such as SAMe are consumed more rapidly
• Metabolic efficiency may be affected

By inhibiting NNMT, 5-Amino-1MQ allows researchers to observe what happens when more nicotinamide remains available for NAD⁺ production.

Layman explanation:
You can think of NNMT like a detour in a factory assembly line. Instead of sending materials where they’re needed, it sends them somewhere else. 5-Amino-1MQ works like blocking that detour, allowing more materials to stay on the main production line.


Research Applications

Researchers study 5-Amino-1MQ because the pathways it affects are involved in several major biological systems.


NAD⁺ Metabolism Research

NAD⁺ is one of the most important molecules in the body’s cellular energy system.

It helps cells:

• Convert nutrients into usable energy
• Repair damaged DNA
• Maintain mitochondrial function
• Activate important regulatory proteins

Layman explanation:
NAD⁺ is often described as cellular fuel for repair and energy production. Researchers study 5-Amino-1MQ to see if blocking NNMT may help cells maintain higher NAD⁺ availability.


Metabolic Regulation Studies

NNMT has been linked to metabolic activity in fat tissue and other energy-regulating cells.

Laboratory studies examine whether inhibiting NNMT may influence:

• Fat cell development
• Energy utilization
• Metabolic efficiency

Layman explanation:
Some researchers view NNMT like a metabolic switch that can influence how cells store or use energy. Blocking this switch may help scientists better understand how metabolism is regulated.


Sirtuin Pathway Research

Proteins known as sirtuins depend on NAD⁺ to function.

These proteins help regulate:

• Cellular stress responses
• DNA repair
• Inflammatory signaling
• Longevity-related cellular pathways

Layman explanation:
Sirtuins are sometimes called “cellular maintenance proteins.” Because they require NAD⁺ to operate, researchers study whether compounds affecting NAD⁺ levels might influence how these systems work.


Neurobiology & Cellular Energy Research

Brain cells require large amounts of energy to function properly.

Because NAD⁺ is involved in mitochondrial activity, researchers examine how changes in NAD⁺ availability may affect:

• Brain energy metabolism
• Neuronal signaling
• Cellular resilience under metabolic stress

Layman explanation:
Brain cells are extremely energy-demanding. Researchers are interested in how compounds that influence cellular energy molecules might affect brain cell energy systems in experimental models.


Methylation Pathway Research

The NNMT enzyme consumes methyl donor molecules such as SAMe when it processes nicotinamide.

These methyl donors are required for many biological processes including:

• Gene regulation
• Cellular signaling
• Protein modification

Layman explanation:
Methyl donors are like chemical tags that help cells control important processes. Researchers study whether inhibiting NNMT may help preserve these molecules for other cellular functions.


Product Specifications

Compound Name: 5-Amino-1-methylquinolinium
Common Name: 5-Amino-1MQ
Compound Type: Synthetic Small Molecule
Target Enzyme: Nicotinamide N-Methyltransferase (NNMT)
Research Category: Metabolic & NAD⁺ Pathway Research


Why Researchers Study 5-Amino-1MQ

5-Amino-1MQ is of interest because it targets a key upstream regulator of NAD⁺ production.

Since NAD⁺ is involved in cellular energy, repair mechanisms, and metabolic signaling, scientists use this compound as a research tool to explore how blocking NNMT may influence these systems.

Layman summary:
Researchers study this compound to better understand how cells manage energy resources and repair processes when a specific metabolic enzyme is inhibited.


Storage & Handling

• Store in a cool, dry environment
• Protect from light and humidity
• Handle according to standard laboratory safety procedures
• Intended for professional laboratory research use only


Important Notice

This product is sold strictly for laboratory research purposes only and is not approved for human consumption, veterinary use, or clinical applications.

By purchasing this product, the buyer acknowledges that it will be used solely for legitimate scientific research conducted by qualified professionals.

Scientific References

  1. Nicotinamide N-Methyltransferase Links NAD⁺ and Methionine Metabolism – Scientific Reports.Nature

  2. NNMT Inhibition and Metabolic Regulation – Journal of Medicinal Chemistry.ACS Publications

  3. NNMT and Cellular Inflammatory Signaling – ACS Omega.ACS Publications

  4. Role of NNMT in NAD⁺ and Metabolic Pathways – BenchChem Research Overview.Benchchem

  5. Nicotinamide Metabolism and Cellular Energy Systems – MDPI Metabolites Journal.MDPI

  6. NNMT and Methylation Regulation – EMBO Journal.EMBO Press

Note: For research and laboratory use only. Not for human or veterinary use. This product must be handled strictly within a controlled laboratory environment.

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