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MOTS-C · 10 MG | Derivado de Mitocondrias - Energía Celular y Longevidad

Product Details

  • Technical Name: MOTS-c 10 mg, Polvo Liofilizado para Investigación
  • Laboratory / Brand: Syntex Labs
  • Active Ingredient (INN): MOTS-C | Péptido derivado de la región de lectura abierta del ARN ribosomal 12S mitocondrial
  • Pharmaceutical Form: Polvo Liofilizado para Solución Inyectable
  • Concentration: 10 mg/vial
  • CAS Number: 1627580-64-6
  • Internal SKU: SKU-MOTSC-10MG-1627580646
Syntex Labs MOTS-C | Péptido derivado de la región de lectura abierta del ARN ribosomal 12S mitocondrial Polvo Liofilizado para Solución Inyectable CAS: 1627580-64-6
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MOTS-C · 10 MG | Derivado de Mitocondrias - Energía Celular y Longevidad

New Release Best Seller Longevity & Performance

10 Servings Per Container: US$10.00 / serving

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US$99.99 USD
In stock (10,000 piece)
MOTS-c is a 16-amino acid mitochondria-derived peptide that improves cellular energy production, glucose sensitivity, and physical endurance. Lab grade with purity ≥99% by HPLC-MS. Each vial contains 10 mg of MOTS-c as sterile lyophilized powder, designed for in vitro and animal model scientific research. Manufactured under strict GMP standards, with complete batch traceability and Certificate of Analysis available. SKU: SKU-MOTSC-10MG. CAS: 1627580-64-6. Store at 2-8°C in a dry place protected from light.

MOTS-c is a mitochondria-derived peptide that improves cellular energy production and metabolic efficiency, raising endurance and speeding adaptation to exercise. Discovered in 2015 by researchers at the University of Southern California, MOTS-c is one of the few peptides encoded by mitochondrial DNA (12S rRNA gene mRNA) that acts as a signaling molecule between mitochondria and the cell nucleus, regulating energy metabolism and oxidative stress response. Unlike other peptides that act on the GH/IGF-1 axis, MOTS-c acts directly in the mitochondria to increase ATP generation efficiency, improve glucose sensitivity, and activate signaling pathways associated with cellular health and longevity.

Primary Benefit: Optimization of Cellular Energy Production

At its core, MOTS-c is designed to improve metabolic efficiency and energy production at the cellular level. By acting directly in the mitochondria, MOTS-c increases ATP generation efficiency (the cell's energy currency), improving glucose uptake and its utilization as an energy source. This effect translates to a significant increase in physical endurance, improved work capacity, and faster post-exercise recovery. MOTS-c also activates the AMPK signaling pathway, which is a central regulator of energy metabolism and cellular homeostasis, promoting fatty acid oxidation and mitochondrial biogenesis.

Secondary Benefits: Endurance, Metabolism, Recovery, and Longevity

MOTS-c's action on energy metabolism triggers a cascade of biological effects impacting multiple systems:

Increased Endurance and Physical Performance: MOTS-c improves aerobic capacity by increasing ATP production efficiency and glucose and fatty acid utilization as fuel. This translates to greater endurance during long-duration exercise and improved overall physical performance.

Optimized Glucose Sensitivity and Metabolism: MOTS-c improves glucose uptake and utilization as an energy source, optimizing insulin sensitivity and carbohydrate metabolism. This effect is especially valuable for metabolic health and prevention of disorders such as insulin resistance and type 2 diabetes.

Accelerated Exercise Adaptation and Recovery: MOTS-c accelerates the body's response to training, improving work capacity and post-workout recovery. By promoting mitochondrial biogenesis and energy efficiency, MOTS-c reduces fatigue and downtime, allowing more frequent and intense training.

Support for Cellular Health and Longevity: MOTS-c activates signaling pathways associated with cellular health and long-term vitality, including SIRT1 activation and improved mitochondrial function. This effect contributes to protection against oxidative stress, cellular aging, and age-related diseases.

Improved Body Composition: By optimizing energy metabolism and nutrient utilization, MOTS-c favors a healthier body composition, with reduced body fat and increased lean muscle mass.

Pairing Strategy: MOTS-c + NAD+

MOTS-c and NAD+ constitute a synergistic stack for enhancing cellular health and longevity. While MOTS-c improves cellular energy production and metabolic efficiency, NAD+ (Nicotinamide Adenine Dinucleotide) is an essential coenzyme for mitochondrial function and DNA repair. The combination of both compounds optimizes mitochondrial function, energy production, and cellular health, offering a comprehensive approach to vitality, performance, and longevity.
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MOTS-C · 10 MG | Derivado de Mitocondrias - Energía Celular y Longevidad

MOTS-c: El Péptido Mitocondrial para la Energía Celular, el Rendimiento y la Longevidad

Para el atleta que busca maximizar su rendimiento y vitalidad, y para cualquier persona interesada en la salud celular y la longevidad, MOTS-c representa una revolución en la investigación del metabolismo energético. Este péptido derivado de las mitocondrias actúa directamente en el centro de producción de energía de la célula, mejorando la eficiencia metabólica y la producción de ATP.

Beneficio Principal: Optimización de la Producción de Energía Celular

MOTS-c actúa directamente en las mitocondrias para aumentar la eficiencia en la generación de ATP, mejorando la captación de glucosa y su utilización como fuente de energía. Esto se traduce en:

Aumento significativo de la resistencia física.

Mejora de la capacidad de trabajo y el rendimiento deportivo.

Recuperación más rápida después del ejercicio.

Evidencia Científica de Eficacia

La eficacia de MOTS-c está respaldada por investigaciones en el campo de la biología molecular y la fisiología del ejercicio. Los estudios han demostrado que MOTS-c:

Mejora la sensibilidad a la glucosa: Optimizando la captación de glucosa y su utilización como fuente de energía.

Aumenta la resistencia aeróbica: Mejorando la eficiencia en la producción de ATP y la utilización de ácidos grasos como combustible.

Activa vías de señalización de longevidad: Incluyendo la activación de SIRT1 y la mejora de la función mitocondrial.

Impacto en el Rendimiento Deportivo y la Salud

MOTS-c es una herramienta invaluable para:

Atletas de alto rendimiento: Mejorando la resistencia, la recuperación y la adaptación al entrenamiento.

Personas activas: Optimizando el metabolismo energético y la composición corporal.

Investigadores de la longevidad: Estudiando los mecanismos de la salud celular y el envejecimiento.

Estrategia de Combinación: MOTS-c + NAD+

La combinación de MOTS-c con NAD+ representa una estrategia avanzada para optimizar la salud celular y la longevidad. Mientras que MOTS-c mejora la producción de energía celular, NAD+ es un coenzima esencial para la función mitocondrial y la reparación del ADN. Esta combinación ofrece un enfoque integral para la vitalidad, el rendimiento y la longevidad.

Key Benefits of MOTS-c Optimization of Cellular Energy (ATP) Production MOTS-c acts directly in the mitochondria to increase ATP generation efficiency, the cell's energy currency. By improving electron transport chain efficiency and oxidative phosphorylation, MOTS-c increases energy production from glucose and fatty acids. This effect translates to a significant increase in physical endurance and work capacity, allowing more intense and prolonged training. Improved Glucose Sensitivity and Energy Metabolism MOTS-c improves glucose uptake and its utilization as an energy source, optimizing insulin sensitivity and carbohydrate metabolism. By increasing GLUT4 transporter translocation to the cell membrane, MOTS-c facilitates glucose entry into muscle cells, improving energy availability for training and recovery. This effect is especially valuable for metabolic health and prevention of insulin resistance and type 2 diabetes. Increased Endurance and Physical Performance MOTS-c improves aerobic capacity by increasing ATP production efficiency and glucose and fatty acid utilization as fuel. Studies have demonstrated that MOTS-c increases endurance during long-duration exercise and improves overall physical performance. Athletes using MOTS-c report greater capacity to maintain training intensity and less fatigue during exercise. Accelerated Exercise Adaptation and Recovery MOTS-c accelerates the body's response to training, improving work capacity and post-workout recovery. By promoting mitochondrial biogenesis and energy efficiency, MOTS-c reduces fatigue and downtime, allowing more frequent and intense training. This effect is especially valuable for athletes seeking to maximize performance and training adaptation. Support for Cellular Health and Longevity MOTS-c activates signaling pathways associated with cellular health and long-term vitality, including SIRT1 activation (a protein from the sirtuin family that regulates cellular health and longevity) and improved mitochondrial function. This effect contributes to protection against oxidative stress, cellular aging, and age-related diseases. MOTS-c also promotes autophagy and elimination of damaged organelles, maintaining long-term cellular health. Improved Body Composition By optimizing energy metabolism and nutrient utilization, MOTS-c favors a healthier body composition, with reduced body fat and increased lean muscle mass. This effect is especially pronounced when combined with appropriate training and nutrition protocols, potentiating fat loss and muscle development.
Function and Mechanism of Action of MOTS-c MOTS-c (Mitochondrial Open Reading Frame of the 12S rRNA-c) is a 16-amino acid peptide (sequence: Met-Arg-Trp-Gln-Glu-Met-Gly-Tyr-Ile-Phe-Tyr-Pro-Arg-Lys-Leu-Arg) encoded by mitochondrial DNA (12S rRNA gene). It is one of the few peptides encoded by the mitochondrial genome that acts as a signaling molecule between mitochondria and the cell nucleus, regulating energy metabolism and oxidative stress response. Detailed Mechanism of Action: Mitochondrial-Nuclear Signaling: MOTS-c is synthesized in mitochondria and translocated to the cell nucleus, where it regulates expression of genes involved in energy metabolism, stress response, and cellular homeostasis. This retrograde signaling allows mitochondria to communicate with the nucleus and adapt cellular function to energy demands. AMPK Signaling Pathway Activation: MOTS-c activates AMP-activated protein kinase (AMPK), which is a central regulator of energy metabolism and cellular homeostasis. AMPK promotes fatty acid oxidation, mitochondrial biogenesis, glucose uptake, and insulin sensitivity. AMPK activation also inhibits lipid synthesis and gluconeogenesis, improving metabolic efficiency. SIRT1 Signaling Pathway Activation: MOTS-c activates SIRT1 (sirtuin 1), a protein from the sirtuin family that regulates cellular health and longevity. SIRT1 promotes deacetylation of proteins such as PGC-1α, which is a master regulator of mitochondrial biogenesis and energy metabolism. SIRT1 activation is also associated with protection against oxidative stress and cellular aging. Improved Glucose Uptake and Insulin Sensitivity: MOTS-c improves glucose uptake and its utilization as an energy source, increasing GLUT4 transporter translocation to the cell membrane. This effect improves insulin sensitivity and carbohydrate metabolism, optimizing performance during exercise and recovery. Promotion of Mitochondrial Biogenesis: MOTS-c promotes formation of new mitochondria (mitochondrial biogenesis) through activation of PGC-1α and other transcription factors. This effect increases cellular energy production capacity and improves physical endurance and exercise adaptation. Protection Against Oxidative Stress: MOTS-c activates signaling pathways that protect cells against oxidative stress, including activation of antioxidant enzymes such as superoxide dismutase (SOD) and catalase. This effect contributes to cellular health and longevity, protecting against oxidative damage and premature aging.
How to Use MOTS-c Route of Administration: Injectable via subcutaneous (SC) or intramuscular (IM). Subcutaneous administration is the most common and preferred, as it allows gradual and constant absorption. Injection sites should be rotated (abdomen, thigh, gluteal region). Reconstitution: The product is presented as a lyophilized powder in a sterile vial. It must be reconstituted with bacteriostatic water for injection (or sterile water for injection) before use. Add the diluent slowly, gently swirling the vial to dissolve the powder. Do not shake vigorously. Research Protocol: Dosage and frequency must be determined by the researcher according to protocol goals. Common research protocols for MOTS-c use doses of 5-10 mg per administration, administered 2-3 times per week. Research cycles of 8 to 12 weeks are recommended to assess changes in endurance, metabolism, and body composition. Storage: The lyophilized powder should be stored in a cool, dry place, protected from light and at controlled temperature (2-8°C). Once reconstituted, it must be refrigerated (2-8°C) and used within 30 days. Important Notice: Product intended EXCLUSIVELY FOR SCIENTIFIC RESEARCH in vitro and in animal models. Not approved for human use without prescription.
Ingredients of MOTS-c Active Ingredient: MOTS-c (Mitochondrial-Derived Peptide): A 16-amino acid peptide (sequence: Met-Arg-Trp-Gln-Glu-Met-Gly-Tyr-Ile-Phe-Tyr-Pro-Arg-Lys-Leu-Arg) encoded by mitochondrial DNA that acts as a signaling molecule between mitochondria and the cell nucleus, regulating energy metabolism and oxidative stress response. The active ingredient purity is ≥99% by HPLC-MS. Excipients: Mannitol: A sugar alcohol that acts as a cryoprotectant and bulking agent, used to stabilize the peptide structure during the lyophilization process. Water for Injection (WfI): High-purity water (USP/EP grade) used as a vehicle in the lyophilization process. Note for Researchers: This product is a high-purity synthetic peptide (>99% by HPLC-MS), manufactured without unnecessary additives, preservatives, or fillers. Its production is carried out under strict quality control standards (GMP).
Onset Time & Expected Results of MOTS-c Onset of Action (Days to Weeks): MOTS-c begins acting within the first hours after administration, with effects on energy metabolism and glucose sensitivity observed within the first days. Full effects on endurance and body composition require several weeks of consistent use. Measurable Benefits (2-4 Weeks): Improved glucose sensitivity and perception of greater energy and reduced fatigue are typically the first observable effects. Endurance during exercise begins to improve in this period. Full Effect (8-12 Weeks): For significant changes in endurance, body composition, and metabolic health, the full effect often requires 8-12 weeks of consistent use according to the research protocol. Factors Influencing Results: The speed and magnitude of results depend on dose administered, injection frequency, subject's nutritional status, and adherence to the research protocol.
Clinical Research & 3rd Party Test Results of MOTS-c Scientific evidence on MOTS-c is supported by preclinical and clinical studies demonstrating its efficacy as a modulator of energy metabolism and its safety in research populations. Scientific Evidence: Animal Model Studies: MOTS-c has demonstrated improved insulin sensitivity, increased exercise endurance, and protection against obesity and diabetes in animal models. Human Studies: MOTS-c has demonstrated improved glucose uptake and insulin sensitivity in human subjects, with a favorable safety profile. Cell Studies: MOTS-c has demonstrated activation of AMPK and SIRT1 signaling pathways, promoting mitochondrial biogenesis and protection against oxidative stress. Research Applications: MOTS-c is used in research on energy metabolism, physical endurance, glucose sensitivity, cellular health, and longevity. Syntex Labs Quality Standards: Lab Grade: Purity ≥99% by HPLC-MS. QR Tracking: Complete batch traceability. Secure Batch Label: "Scratch to See" security system. 3rd Party Results: Access to Certificates of Analysis (COA) from accredited external laboratories.

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