CRYPTO25 FOR 25% OFF YOUR ORDER WHEN YOU PAY WITH CRYPTO | LP15 FOR 15% OFF YOUR FIRST ORDER
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Advanced Mitochondrial Longevity Research Complex (Research Use Only)
This formulation delivers a high-potency blend of cellular-energy and longevity-focused research compounds engineered for investigators studying mitochondrial biogenesis, NAD⁺ metabolism, lipid oxidation pathways, and cellular resilience. Each ingredient plays a distinct role in supporting metabolic efficiency, mitochondrial density, and protective biochemical cascades relevant to aging research.
⭐ Key Research Actives & Their Investigated Roles
NMN (250 mg)
A direct NAD⁺ precursor studied for its role in supporting metabolic function, cellular repair pathways, and age-related decline in bioenergetic capacity. NMN is widely researched for enhancing mitochondrial respiration and improving cellular energy output.
SLU-PP-332 (100 mg)
A novel PPARδ agonist research compound of high interest for its potential to:
Increase fatty-acid oxidation
Enhance mitochondrial biogenesis
Improve endurance-related metabolism
Shift cellular energy preference toward more efficient pathways
Investigators use SLU-PP-332 to explore “super-metabolic” phenotypes in preclinical models.
PQQ (20 mg)
A redox-active quinone compound studied for its ability to stimulate mitochondrial growth, protect existing mitochondria from oxidative stress, and support neuronal resilience. Often paired with NMN for synergistic mitochondrial support.
Spermidine (5 mg)
A naturally occurring polyamine examined for its role in autophagy activation, cellular renewal, longevity signaling, and oxidative-stress resistance. Spermidine is one of the most researched longevity molecules due to its correlation with improved cellular maintenance.
BioPerine (5 mg)
Included to enhance absorption in research environments by supporting increased bioavailability of select compounds during testing.
🧬 Multi-Pathway Research Approach
This advanced complex is frequently used by researchers examining:
NAD⁺ metabolism and bioenergetics (NMN)
PPARδ activation and enhanced endurance pathways (SLU-PP-332)
Mitochondrial density and protective signaling (PQQ)
Autophagy and cellular cleanup cycles (Spermidine)
Improved uptake of active compounds (BioPerine)
Together, these agents create a multi-mechanistic longevity research matrix designed for deep cellular and metabolic investigations.
⚠️ Research-Only Disclaimer
For laboratory and research use only.
Not for human consumption or medical use.
CRYPTO25 FOR 25% OFF YOUR ORDER WHEN YOU PAY WITH CRYPTO | LP15 FOR 15% OFF YOUR FIRST ORDER


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