Elevate your research with NAD+ 1000 mg—an essential coenzyme pivotal for cellular health and vitality. Enhance your scientific exploration into energy production, DNA repair, and healthy aging pathways.
Supports cellular energy and mitochondrial function, essential for optimal cell performance.
Investigated for its role in DNA repair and cellular renewal, promoting longevity.
Produced with high purity standards, intended for rigorous scientific research.
Harness the potential of cutting-edge science to explore the depths of cellular health. NAD+ 1000 mg empowers researchers to delve deeper into the mechanisms of aging and cellular function, potentially unlocking new vistas in health science.
Unlock the future of metabolic health research with MOTS-C, a cutting-edge mitochondrial-derived peptide designed for advanced scientific exploration.
Supports metabolic health research by aiding glucose homeostasis and balance.
Enhances energy and endurance through mitochondrial efficiency and cellular production.
Boosts cellular protection by promoting stress resistance and cell health.
Elevate your research capabilities with MOTS-C, designed to unlock new frontiers in health and metabolic studies. Empower your lab's potential with this groundbreaking research peptide.
SS-31, also known as Elamipretide, Bendavia, or MTP-131, is a synthetic peptide that targets and improves mitochondrial function. Mitochondria generate ATP (the body’s primary energy molecule), regulate cellular homeostasis, and impact nearly all physiological systems. SS-31 is a mitochondrial-targeted antioxidant with extensive therapeutic potential: mitigating oxidative stress, suppressing inflammation, maintaining mitochondrial health, and preventing cellular apoptosis.
Adamax is a modified synthetic derivative of Semax, widely used in preclinical research to investigate enhanced blood-brain barrier penetration, increased enzymatic stability, potentiation of the hepatocyte growth factor/c-Met pathway, and neuronal survival signaling. The adamantane group added to the N-terminus confers significantly greater resistance to enzymatic degradation and greater lipophilicity than the parent Semax analogs. This research-grade peptide is produced under stringent GMP-compliant conditions and provided as a lyophilized powder to ensure superior purity, stability, and reliability in experimental applications.
Unlock the power of advanced cellular research with L-Carnitine 1200mg—your reliable source for meticulous energy studies and metabolic investigations in a lab setting.
1200mg of high-purity, research-grade L-Carnitine designed for scientific study.
Sterile solution suitable for intramuscular or intravenous administration.
Supports energy production, fat metabolism, and mitochondrial function in research settings.
Optimize your research outcomes with L-Carnitine, a crucial component for energy metabolism studies. Enhance your lab's capabilities and deliver compelling, data-backed insights.
AICAR (5-aminoimidazole-4-carboxamide ribonucleoside, also written as acadesine or AICA-riboside) is a nucleoside analogue that is taken up by cells and phosphorylated to form ZMP, a structural analogue of AMP. ZMP accumulation mimics the cell's perception of low energy status by activating AMP-activated protein kinase (AMPK), a central metabolic sensor that governs cellular energy homeostasis across virtually all tissues. AMPK is sometimes described as the cell's master energy switch: it is activated when the AMP-to-ATP ratio rises and it orchestrates a coordinated response to restore energy balance.
Fat Blaster is a multi-compound research formulation designed to support metabolic activity and energy utilization pathways. This advanced blend combines amino acids, vitamins, and cofactors commonly studied for their roles in fat metabolism, cellular energy production, and nutrient processing.
This formulation is often explored in research settings for its potential to:
Support fat metabolism and lipid utilization studies
Promote cellular energy production and mitochondrial activity
Assist in metabolic efficiency and nutrient processing research
Contribute to studies involving energy balance and performance pathways
Fat Blaster brings together key metabolic components to provide a comprehensive approach for researchers investigating how the body processes and utilizes energy at the cellular level.
Ingredients:
L-Carnitine – 300 mg/ml
Methionine – 25 mg/ml
Inositol – 50 mg/ml
Choline – 50 mg/ml
Vitamin B12 – 1 mg/ml
Vitamin B6 – 50 mg/ml
NADH – 50 mg/ml
SS-31 (Elamipretide, Bendavia, MTP-131) is a synthetic peptide that boosts mitochondrial function. Mitochondria make ATP (the cell’s main energy), control cell balance, and affect most body systems. SS-31 is a mitochondria-targeted antioxidant that reduces oxidative stress and inflammation, preserves mitochondrial health, and prevents cell death.
NAD+ is a coenzyme that is involved in a broad number of biological functions. Starting around the age of 30, naturally occurring levels of NAD+ begin to decline, and continue to diminish as time passes. Because it is present in every living cell and aids in so many vital processes—regulating circadian rhythm, DNA repair functions, and immune system health—the decline in NAD+ levels can be linked to a number of health problems. These problems can include various cancers, neurodegenerative diseases like Alzheimer’s and Parkinson’s, and metabolic disorders.
MOTS-C (Mitochondrial open reading frame of the 12S rRNA-c) is a peptide encoded in mitochondrial DNA. It improves glucose metabolism in skeletal muscle, which implies a number of benefits for those with diabetes, obesity, or who are over 30 years old. It is upregulated in response to exercise, and is considered an exercise mimetic.
An exercise mimetic is a drug or compound that mimics the beneficial physiological effects of physical exercise on the body, essentially providing some of the health benefits of working out without the need for actual physical activity. It aims to activate similar cellular pathways triggered by obesity, diabetes, or muscle-wasting by simulating exercise-induced adaptations in the body. This provides a viable alternative to physical exercise in populations who are unable to exercise due to any number of limitations. Also, naturally occurring levels of MOTS-C diminish substantially throughout the aging process.
5-Amino-1MQ is a small molecule compound designed to inhibit the enzyme NNMT (nicotinamide N-methyltransferase), which plays a key role in metabolic regulation and fat cell activity. By suppressing NNMT, 5-Amino-1MQ increases NAD⁺ levels and helps to accelerate energy metabolism, support healthy body composition, and reduce fat mass—especially visceral fat. It has gained attention for its potential to improve insulin sensitivity, mitochondrial function, and cellular repair, making it a popular option in fat loss, longevity, and athletic performance protocols.
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