Metabolic Efficiency Research Bundle – High-Purity Research Compounds
Metabolic Efficiency Research Bundle – High-Purity Research Compounds
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Metabolic Efficiency Research Bundle – High-Purity Research Compounds
The Elevr Metabolic Efficiency Research Bundle combines three compounds of interest in metabolic and mitochondrial research: MOTS-c, NAD+ and 5-Amino-1MQ, together with Bacteriostatic Water for laboratory reconstitution where appropriate. Supplied in lyophilised (freeze-dried) form to preserve stability and peptide integrity, each batch is independently verified at >99% purity (HPLC-tested) and accompanied by a full Certificate of Analysis (COA) to support transparency and reproducibility across research applications.
The combination brings together distinct areas of metabolic research, including cellular energy production, mitochondrial signalling, NAD+ metabolism, AMPK pathways and NNMT-related metabolic regulation. MOTS-c, for example, has been investigated in preclinical models for its relationship with AMPK activation, insulin sensitivity and metabolic homeostasis.
Elevr supplies this bundle strictly as a research-grade collection of laboratory materials and not for human or veterinary use.
What’s Included?
- 1 × MOTS-c 10mg
- 1 × NAD+ 500mg
- 1 × 5-Amino-1MQ 5mg
- 1 × Bacteriostatic Water 10ml
What are the Components?
MOTS-c is a 16-amino-acid mitochondrial-derived peptide encoded within mitochondrial DNA. It has attracted research interest for its involvement in metabolic homeostasis, AMPK signalling, glucose utilisation and cellular energy regulation.
NAD+ (Nicotinamide Adenine Dinucleotide) is an essential cellular coenzyme involved in numerous metabolic reactions. Research surrounding NAD+ includes mitochondrial energy production, redox balance, cellular signalling and enzymes involved in processes such as sirtuin and PARP activity.
5-Amino-1MQ is a small-molecule research compound investigated as an inhibitor of nicotinamide N-methyltransferase (NNMT). Research has explored its potential influence on methylation metabolism, NAD+ availability and metabolic pathways, particularly in cellular and preclinical models.
Bacteriostatic Water is included as a laboratory mixing/reconstitution solution where an appropriate aqueous diluent is required by an established research protocol.
Usage & Reconstitution
MOTS-c, NAD+ and 5-Amino-1MQ are supplied in their respective laboratory formats. Where reconstitution is required, researchers should use the supplied bacteriostatic water or another validated laboratory solvent in accordance with the specific research protocol.
Each compound should be handled according to its individual research requirements. Do not combine the components unless specifically required by an established and validated research protocol.
Storage Information
Unopened research compounds:
Store according to the individual product label. Lyophilised materials should generally be kept sealed and protected from light, moisture and excessive heat. Refrigerated storage at 2–8°C may be appropriate for certain products.
After reconstitution:
Store prepared research solutions at 2–8°C where appropriate and minimise exposure to light. For longer-term laboratory storage, aliquoting and freezing at −20°C may be appropriate where supported by the relevant stability protocol.
Avoid repeated freeze–thaw cycles.
Bacteriostatic Water:
Keep sealed and store according to the manufacturer’s labelled conditions. Once opened, follow the manufacturer’s specified in-use period and maintain appropriate aseptic laboratory handling.
Research Benefits
Mitochondrial Function Research
MOTS-c has been investigated for its interaction with mitochondrial-derived signalling and metabolic homeostasis, including pathways involving AMPK and cellular energy regulation.
Cellular Energy Metabolism
NAD+ plays a central role in cellular redox reactions and energy metabolism, making it an important subject of research into mitochondrial function and cellular bioenergetics.
AMPK & Metabolic Signalling
MOTS-c has been studied in relation to AMPK signalling and metabolic responses in preclinical models, including research into glucose utilisation and metabolic adaptation.
NAD+ Metabolism Research
The inclusion of NAD+ provides a research tool for investigating NAD+-dependent cellular pathways, including redox metabolism and NAD+-dependent enzyme activity.
NNMT & Methylation Research
5-Amino-1MQ is investigated for its inhibition of NNMT, an enzyme involved in nicotinamide and methylation metabolism. This provides an additional research pathway alongside NAD+ and mitochondrial signalling studies.
Metabolic Homeostasis Research
The three research compounds cover complementary areas of metabolic biology, allowing investigation into mitochondrial signalling, cellular energy regulation, NAD+ metabolism and methylation-related pathways.
Cellular Stress & Metabolic Adaptation
MOTS-c and NAD+-related pathways have attracted research interest in cellular responses to metabolic stress and changes in energy availability.
Manufacturing Information
Metabolic Efficiency Bundle is manufactured under strict quality control standards to support consistency, stability and reliability across laboratory research applications.
This product is supplied strictly for laboratory research purposes only. Not for human consumption.
