

5-Amino-1MQ 50mg
€42.00

5-Amino-1MQ 50mg
€42.00
- Description
- Peptide Details
- Risks
- Additional information
- Research
Description
5-Amino-1MQ (5-Amino-1-methylquinolinium) is a small-molecule research compound studied in laboratory environments for its interaction with nicotinamide N-methyltransferase (NNMT), an enzyme involved in cellular metabolism and energy regulation.
In experimental research, 5-Amino-1MQ is of particular interest due to its potential role in metabolic pathway modulation, specifically in relation to fat metabolism, energy expenditure, and cellular NAD+ balance. By influencing NNMT activity, it is used in studies exploring metabolic efficiency and biochemical regulation of energy systems.
As demand increases for pure research peptides and compounds in Ireland and across Europe, 5-Amino-1MQ has become a key compound in research areas such as:
- Metabolic pathway modulation
- Energy regulation and cellular efficiency
- NAD+ metabolism research
- Fat metabolism and biochemical signalling
This product is supplied as a high-purity research compound, intended strictly for scientific and laboratory use.
Disclaimer: This product is strictly for research purposes only and is not for human consumption.
Technical Information – 5-Amino-1MQ
| Specification | Details |
|---|---|
| Product Name | 5-Amino-1MQ |
| Chemical Name | 5-Amino-1-methylquinolinium |
| Compound Type | Small-molecule research compound |
| Functional Class | NNMT inhibitor |
| Mechanism of Action | Inhibition of nicotinamide N-methyltransferase (NNMT) |
| Molecular Target | NNMT enzyme |
| Format | Lyophilised powder |
| Purity | Research-grade (high purity) |
| Storage | Refrigerated (2–8°C, protected from light) |
| Application | Laboratory research use only |
* Images for illustration purposes only
Researched Benefits & Focus Areas – 5-Amino-1MQ
1. NNMT Inhibition & Metabolic Regulation
5-Amino-1MQ has been studied for its role in inhibiting NNMT:
- Supports research into cellular energy regulation pathways
- Investigated for metabolic efficiency and enzyme modulation
- Explored in biochemical signalling related to fat metabolism
Reference basis: Derived from biochemical research into NNMT inhibitors and their role in metabolic regulation and energy balance.
2. Fat Metabolism & Energy Expenditure Research
Research models have explored:
- Increased energy expenditure pathways
- Altered fat storage and utilisation mechanisms
- Metabolic signalling affecting adipose tissue
Reference basis: Based on preclinical metabolic studies examining NNMT inhibition and its downstream effects on fat metabolism.
3. NAD+ Pathway & Cellular Energy Systems
5-Amino-1MQ has been investigated in:
- NAD+ metabolism and cellular energy balance
- Mitochondrial efficiency and signalling pathways
- Cellular ageing and metabolic research models
Reference basis: Supported by studies exploring the relationship between NNMT activity and NAD+ availability in cellular systems.
4. Biochemical Pathway Modulation
Due to its mechanism, 5-Amino-1MQ is used in:
- Enzyme inhibition studies
- Metabolic pathway research models
- Cellular signalling and regulatory systems
Reference basis: Derived from molecular biology and pharmacology research into enzyme inhibitors and metabolic signalling pathways.
Disclaimer: These are research-based findings only. This product is not intended for human use or consumption.
Researched Risks & Considerations – 5-Amino-1MQ
1. Limited Human Research
- Most data is derived from preclinical and laboratory studies
- Lack of extensive human trials
- Long-term effects remain uncertain
Reference basis: Reflects the current early-stage status of NNMT inhibitor research.
2. Metabolic Pathway Disruption
Due to its mechanism:
- May influence multiple interconnected metabolic systems
- Potential for unintended pathway alterations
Reference basis: Based on metabolic research highlighting complexity of enzyme inhibition within cellular systems.
3. Systemic Biological Impact
- NNMT plays a role across various tissues
- Inhibition may result in broad systemic effects in research models
Reference basis: Derived from biochemical studies on NNMT distribution and function in biological systems.
4. Unknown Long-Term Effects
- No validated long-term safety profile
- Requires controlled experimental conditions
Reference basis: Based on limited longitudinal data in metabolic research compounds.
Disclaimer: These risks are based on available research data only. This product is strictly a research compound and not for human consumption.
Additional information
| Weight | 23 kg |
|---|---|
| Dimensions | 12 × 23 × 56 cm |
| Quantity | 1 Vial, 1 Kit (10 Vials) |