MHP AGE-X Research Stack
$164.00
Research Use Disclaimer
All products are offered for laboratory research and educational purposes only. Mile High Peptides LLC does not provide dosing, reconstitution, administration, stacking, side-effect, or human-use guidance under any circumstances.
Observations in research settings can vary widely based on handling, environment, formulation, and study conditions. No specific outcome, timeline, or result should be assumed or expected from any research material.
In stock
Description
MHP AGE-X Research Stack
The MHP AGE-X Research Stack combines SS-31, MOTS-C, and
Epitalon as three separate research compounds for controlled
laboratory investigation of mitochondrial signaling, cellular
bioenergetics, oxidative-stress response pathways, metabolic
regulation, circadian biology, and aging-associated cellular
mechanisms.
Each research material represents a distinct but complementary area
of experimental investigation. SS-31 is studied primarily in models
involving mitochondrial membrane-associated processes and cellular
bioenergetics. MOTS-C is investigated for mitochondrial-derived
signaling, cellular energy sensing, and metabolic communication.
Epitalon is studied in experimental models involving cellular aging,
circadian-associated signaling, and molecular-regulation pathways.
Together, these three research materials provide a multi-pathway
system for examining relationships among mitochondrial function,
cellular-energy regulation, oxidative-stress responses, metabolic
signaling, circadian biology, and aging-associated cellular
processes.
Research Stack Includes
- SS-31: 10 mg
- MOTS-C: 20 mg
- Epitalon: 10 mg
- Total research material: 40 mg across three separate research components
- System format: Three separate research materials
Commonly Researched For
- Mitochondrial function and signaling
- Cellular bioenergetics
- Cellular energy-regulation mechanisms
- Mitochondrial membrane-associated pathways
- Oxidative-stress response mechanisms
- AMPK-associated signaling pathways
- Metabolic regulation and cellular adaptation
- Circadian-associated signaling
- Cellular-aging-associated pathways
- Molecular-regulation mechanisms
- Interactions among mitochondrial, metabolic, and aging-associated pathways
About This Research Stack
Cellular aging involves multiple interconnected biological systems,
including mitochondrial function, cellular-energy regulation,
oxidative balance, metabolic signaling, circadian regulation, and
molecular mechanisms associated with cellular maintenance.
Laboratory models examining these processes allow researchers to
investigate how mitochondrial, metabolic, and age-associated
signaling pathways interact under controlled experimental conditions.
SS-31 is a mitochondria-associated research peptide
investigated in experimental models involving mitochondrial membrane
processes, cellular bioenergetics, oxidative-stress responses, and
mitochondrial signaling mechanisms.
Researchers study SS-31 to better understand relationships between
mitochondrial membrane-associated activity, cellular-energy
production, oxidative balance, and broader mitochondrial-response
pathways.
MOTS-C is a mitochondrial-derived research peptide
investigated in laboratory models involving mitochondrial
communication, cellular metabolism, energy-sensing mechanisms,
glucose and lipid metabolism, and AMPK-associated signaling.
Research involving MOTS-C examines how mitochondrial-derived
signaling may influence cellular responses to changing metabolic
and energetic conditions.
Epitalon is a synthetic tetrapeptide investigated
in experimental research involving cellular aging, circadian
biology, molecular regulation, and aging-associated signaling
pathways.
Laboratory research involving Epitalon examines cellular and
molecular mechanisms associated with age-related biological
processes and regulatory signaling within controlled experimental
systems.
Together, SS-31, MOTS-C, and Epitalon provide three distinct
research approaches within one multi-pathway system.
SS-31 provides a pathway centered primarily on mitochondrial
membrane-associated processes and cellular bioenergetics. MOTS-C
provides a mitochondrial-derived signaling pathway associated with
cellular energy sensing and metabolic communication. Epitalon adds
a separate pathway centered on cellular-aging-associated,
circadian, and molecular-regulation mechanisms.
This combination allows investigators to examine relationships
among mitochondrial function, cellular-energy regulation,
oxidative-stress responses, metabolic signaling, circadian biology,
and aging-associated cellular pathways within appropriately
designed laboratory models.
The compounds are supplied separately rather than combined in one
vial. This allows each research material to be incorporated
independently into experimental protocols and evaluated as an
individual research component.
Product Details
- Product designation: MHP AGE-X Research Stack
- Components: SS-31 + MOTS-C + Epitalon
- SS-31 quantity: 10 mg
- MOTS-C quantity: 20 mg
- Epitalon quantity: 10 mg
- Total research material: 40 mg
- Format: Lyophilized powder
- System format: Three separate research components
- Primary research area: Mitochondrial function, cellular bioenergetics, metabolic signaling, circadian biology, and aging-associated research
- Intended use: Laboratory research only
- Application: Analytical and in-vitro research
Research Use Only
These materials are supplied strictly for laboratory research
and analytical applications. They are not intended for human
consumption or for medical, cosmetic, veterinary, or
therapeutic use.
Research observations may vary depending on methodology,
handling, storage conditions, and experimental design.
Research areas described here do not represent safety,
efficacy, therapeutic benefit, or suitability for human use.
Researcher Responsibility
Purchasers are responsible for ensuring that materials are acquired, handled, stored, and used in accordance with applicable laws, regulations, institutional requirements, and appropriate laboratory practices.
Mile High Peptides LLC supplies compounds strictly for legitimate laboratory research and analytical applications.





