5-Amino-1MQ – 50mg (Nicotinamide N-Methyltransferase Inhibitor)
R 1,800.00
5-Amino-1MQ
5-Amino-1MQ is a small-molecule nicotinamide N-methyltransferase (NNMT) inhibitor widely researched in laboratory and experimental settings involving cellular metabolism, NAD⁺-related pathways, and metabolic-regulation research.
Research involving 5-Amino-1MQ commonly investigates its interaction with:
- NNMT-related signaling pathways
- Cellular-energy and metabolic-regulation mechanisms
- NAD⁺-related pathways
- Mitochondrial-function and energy-related research
- Adipose- and metabolic-related research models
- Glucose- and insulin-related signaling pathways
- Cellular-maintenance and physiological-resilience mechanisms
Because of its interaction with metabolic and cellular-energy pathways, 5-Amino-1MQ has generated growing research interest within metabolic-regulation, mitochondrial-function, and physiological-maintenance research models.
The BioPeptics™ 5-Amino-1MQ formulation is supplied as a high-purity lyophilised powder to support product stability, purity, and molecular integrity during laboratory handling and biochemical research applications.
For Research Use Only
Not intended for human consumption or therapeutic use.
In stock
How It Works
1. NNMT Inhibition & NAD⁺-Related Pathways
5-Amino-1MQ is widely researched for its interaction with nicotinamide N-methyltransferase (NNMT), an enzyme involved in nicotinamide metabolism and NAD⁺-related cellular pathways.
In laboratory and experimental research settings, NNMT inhibition by 5-Amino-1MQ has been investigated for its potential interaction with:
- Intracellular NAD⁺ regulation
- SIRT1-related signaling pathways
- AMPK-related cellular-energy pathways
- Mitochondrial-related metabolic function
- Cellular-energy and metabolic-regulation pathways
These pathways have contributed to growing research interest in 5-Amino-1MQ within metabolic-regulation and healthy-aging investigations.
2. Adipose & Metabolic Research
Experimental research has explored 5-Amino-1MQ within adipose-related and metabolic research models involving:
- Adipocyte energy-turnover pathways
- Lipid-metabolism investigations
- White-adipose tissue research
- Energy-expenditure models
- Metabolic-efficiency pathways
Research in this area has contributed to broader scientific interest in obesity-related and metabolic-regulation investigations.
3. Insulin & Glucose-Related Research
Through NAD⁺-related and metabolic-signaling pathways, 5-Amino-1MQ has been investigated in research involving:
- Glucose-regulation pathways
- Insulin-related metabolic models
- Mitochondrial glucose-metabolism investigations
- Cellular-energy homeostasis research
- Oxidative-stress and inflammatory-signaling pathways
The interaction between NAD⁺, SIRT1, and AMPK-related pathways remains an ongoing area of metabolic research interest.
4. Cellular & Neurological Research Interest
Emerging experimental research has explored NNMT inhibition and NAD⁺-related pathways in investigations involving:
- Mitochondrial oxidative-stress pathways
- Cellular-maintenance and repair-related mechanisms
- Neuroplasticity-related research models
- Cellular-aging and mitochondrial-function investigations
These areas have contributed to growing scientific interest in 5-Amino-1MQ within neurobiology-related and healthy-aging research models.
For Laboratory and Research Purposes Only
Not intended for human consumption or therapeutic use.
Research Applications
5-Amino-1MQ is widely explored in laboratory and experimental research settings related to NNMT inhibition, NAD⁺-related pathways, cellular metabolism, and metabolic regulation.
Areas of scientific research interest have included:
- NAD⁺ metabolism and NNMT-pathway studies
- Obesity- and adipose-tissue regulation research
- Mitochondrial-function and metabolic-syndrome investigations
- Insulin-sensitivity and glucose-homeostasis research
- Longevity-, healthy-aging-, and cellular-maintenance studies
- Cellular-energy and metabolic-regulation pathways
- Oxidative-stress and mitochondrial-related research models
5-Amino-1MQ has been investigated in biochemical, metabolic, and cellular research models focused on energy regulation, mitochondrial-related pathways, and metabolic function.
Research involving 5-Amino-1MQ commonly explores how NNMT-related pathways may interact with:
- Cellular-energy homeostasis
- Metabolic-regulation mechanisms
- Mitochondrial-related signaling pathways
- NAD⁺-associated cellular pathways
- Physiological-maintenance and healthy-aging research models
For Laboratory and Research Purposes Only
Not intended for human consumption or therapeutic use.
Common Research Combination Investigations
5-Amino-1MQ + NAD⁺
Commonly researched for complementary interaction with:
- NAD⁺-related cellular pathways
- Cellular-energy metabolism
- Mitochondrial-function investigations
- Healthy-aging and physiological-maintenance research
- Cellular-resilience mechanisms
5-Amino-1MQ + MOTS-c
Frequently investigated in research involving:
- Metabolic-regulation pathways
- Mitochondrial-related signaling
- Cellular-energy homeostasis
- Glucose- and insulin-related pathways
- Physiological-resilience research models
5-Amino-1MQ + L-Carnitine
Commonly explored for complementary interaction with:
- Fatty-acid metabolism pathways
- Cellular-energy and mitochondrial-function research
- Metabolic-regulation mechanisms
- Energy-utilization pathways
- Recovery-focused metabolic investigations
5-Amino-1MQ + Ipamorelin
Frequently investigated for complementary interaction with:
- Growth-hormone–related signaling pathways
- Recovery-focused metabolic investigations
- Cellular-maintenance and physiological-resilience pathways
- Body-composition and metabolic-related research
- Healthy-aging investigations
5-Amino-1MQ + Tesamorelin
Commonly researched in investigations involving:
- Growth-hormone–related pathways
- Metabolic-regulation signaling
- Adipose-related research models
- Cellular-energy investigations
- Recovery-focused physiological pathways
5-Amino-1MQ + CJC-1295 No DAC
Frequently investigated for complementary interaction with:
- Growth-hormone–related signaling pathways
- Cellular-recovery and physiological-maintenance research
- Metabolic-regulation investigations
- Mitochondrial-function pathways
- Healthy-aging and recovery-focused research models
5-Amino-1MQ + GLP-1–Related Research Compounds
Commonly researched alongside:
- Tirzepatide
- Retatrutide
- Semaglutide
for complementary investigation involving:
- Glucose-homeostasis pathways
- Metabolic-regulation signaling
- Appetite- and energy-related research pathways
- Insulin-related metabolic investigations
- Obesity- and adipose-related research models
For Laboratory and Research Purposes Only
Not intended for human consumption or therapeutic use.
Compound Name:
5-Amino-1MQ
Chemical Classification:
NNMT (Nicotinamide N-Methyltransferase) Inhibitor
Chemical Name:
5-Amino-1-Methylquinolinium
Appearance:
White to off-white lyophilised powder
Solubility:
Typically soluble in bacteriostatic water or sterile research-grade diluents
Research Category:
Metabolic- and NAD⁺-pathway research compound
Common Research Areas:
- NAD⁺-metabolism investigations
- NNMT-pathway research
- Mitochondrial-function studies
- Metabolic-regulation investigations
- Glucose- and insulin-related research
- Healthy-aging and cellular-energy research models
- Cellular-maintenance and physiological-resilience investigations
For Laboratory and Research Purposes Only
Not intended for human consumption or therapeutic use.
Reconstitution (Mixing)
Add 3ml bacteriostatic water to the vial.
Mixing Instructions
- Inject slowly down the inside wall of the vial
- Roll gently between palms until dissolved
- Do not shake aggressively
- Refrigerate at 2–8°C after reconstitution
Concentration Calculation
50mg ÷ 3ml = approximately 16.7mg/ml
Syringe Conversion Guide
| Desired Dose | Approximate Volume | Insulin Units |
|---|---|---|
| 1mg | 0.06ml | 6 units |
| 2.5mg | 0.15ml | 15 units |
| 5mg | 0.30ml | 30 units |
Quick Reference
- 1mg = approximately 6 units
- 2.5mg = approximately 15 units
- 5mg = approximately 30 units
Experimental Research Ranges
Lower Experimental Range
- Research range: 1–2.5mg
- Frequency: 3–5× weekly
Commonly Explored In:
- NAD⁺-related pathway investigations
- Cellular-energy research models
- Metabolic-regulation studies
Approximate Vial Duration
- 1mg range = approximately 50 doses
- 2.5mg range = approximately 20 doses
Intermediate Experimental Range
- Research range: 2.5–5mg
- Frequency: 5× weekly
Commonly Explored In:
- Metabolic- and adipose-related research
- Mitochondrial-function investigations
- Glucose- and insulin-related models
Approximate Vial Duration
- 5mg range = approximately 10 doses per vial
Areas of Research Interest
5-Amino-1MQ has been explored in laboratory and experimental research settings involving:
- NNMT-pathway investigations
- NAD⁺-related metabolic pathways
- Mitochondrial-function research
- Adipose- and metabolic-regulation models
- Glucose- and insulin-related investigations
- Cellular-energy and healthy-aging research
Research Duration Context
Typical experimental durations vary depending on research design, dosage ranges, and study objectives.
Some experimental structures explore:
- 4–8 week research durations
- Periodic non-research intervals between protocols
Storage & Handling
✔️ Store refrigerated at 2–8°C
✔️ Protect from excessive heat and sunlight
✔️ Use clean laboratory handling practices
✔️ Avoid repeated contamination of the vial
Important Disclaimer
For Laboratory and Research Purposes Only
Not intended for human consumption or therapeutic use.
Possible Side Effects
5-Amino-1MQ has been explored in laboratory and experimental research settings, and observations in some research contexts have included:
- Injection-site irritation or discomfort
- Temporary redness or swelling
- Headaches
- Nausea
- Fatigue or temporary energy-related variability
- Restlessness or stimulation-related observations
- Appetite-related changes
- Gastrointestinal discomfort
Responses and tolerability observations may vary depending on:
- Experimental conditions
- Dosage ranges
- Protocol duration
- Administration frequency
- Concurrent compounds
- Individual sensitivity
Higher-frequency or higher-range experimental protocols may increase the likelihood of tolerability-related observations in some research models.
Research involving multiple metabolic-, mitochondrial-, or stimulant-related compounds may warrant additional caution and individualized evaluation in experimental settings.
For Laboratory and Research Purposes Only
Not intended for human consumption or therapeutic use.
Use With Caution / Additional Monitoring in Research Contexts
5-Amino-1MQ is a metabolic research compound investigated for its interaction with NNMT-related pathways, NAD⁺ metabolism, and cellular-energy regulation. Additional caution or monitoring may be appropriate in research settings involving:
- Pregnancy- or lactation-related research models, where limited safety data is available
- Active cancer-, tumor-, or abnormal proliferative research models, where NAD⁺-related and metabolic-signaling pathways may influence cellular-signaling mechanisms
- Cardiovascular- or uncontrolled-hypertension research models, where metabolic-pathway modulation may influence cardiovascular-related biomarkers in some experimental settings
- Thyroid-related or endocrine research models, where metabolic-pathway investigations may influence endocrine-related observations
- Diabetes- or glucose-regulation research models, where insulin- and glucose-related pathways may warrant closer monitoring in experimental settings
- Moderate to severe hepatic- or renal-impairment research models, where compound metabolism or clearance mechanisms may be altered
- Autoimmune- or inflammatory-response research models, where immune-metabolic signaling pathways may influence inflammatory-related biomarkers or cytokine observations
Research conditions, dosage ranges, administration frequency, protocol duration, and concurrent compounds may influence tolerability observations across experimental settings.
For Laboratory and Research Purposes Only
Not intended for human consumption or therapeutic use.
Possible Side Effects
5-Amino-1MQ is a metabolic research compound widely explored in laboratory and experimental settings related to NNMT inhibition, NAD⁺-related pathways, cellular-energy regulation, and metabolic function.
In some research contexts, observations have included mild and transient tolerability-related effects such as:
- Headaches
- Nausea
- Stimulation-related observations
- Temporary injection-site irritation or localized skin-response variability
Research conditions, concentration ranges, dosage ranges, hydration status, administration frequency, and protocol structure may influence tolerability observations across experimental settings.
Proper laboratory handling practices and carefully controlled experimental conditions are generally preferred in metabolic- and mitochondrial-related research models.
For Laboratory and Research Purposes Only
Not intended for human consumption or therapeutic use.



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