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MOTS-c 40mg Analytical Research Material
MOTS-C 40 mg
Mitochondrial-derived research peptide for metabolic and cellular signaling investigation
MOTS-C 40 mg is a mitochondrial-derived research peptide investigated for its role in metabolic signaling, cellular energy regulation, mitochondrial communication, and adaptive cellular stress pathways.
MOTS-C is unusual because it is encoded within mitochondrial DNA rather than nuclear DNA. This mitochondrial origin has made it a distinct subject of research involving mitochondrial biology, AMPK-associated signaling, cellular metabolism, energy-sensing pathways, and communication between mitochondria and the rest of the cell.
Its origin and signaling profile distinguish MOTS-C from many conventional peptide research compounds.
Each vial contains:
MOTS-C — 40 mg
Total peptide content — 40 mg
What is MOTS-C?
MOTS-C, short for Mitochondrial Open Reading Frame of the 12S rRNA-c, is a small mitochondrial-derived peptide encoded within the mitochondrial genome.
Mitochondria are commonly associated with cellular energy production, but they also participate in complex signaling networks that communicate information about energy status, nutrient availability, cellular stress, and metabolic conditions.
MOTS-C has been investigated as one of the signaling molecules involved in this broader mitochondrial communication system.
Research involving MOTS-C commonly examines:
Mitochondrial signaling
Cellular energy regulation
Metabolic pathway signaling
AMPK-associated pathways
Mitochondrial-to-nuclear communication
Cellular stress-response signaling
Glucose-related metabolic pathways
Energy-sensing mechanisms
Adaptive metabolic signaling
Mitochondrial-derived peptide biology
Why is MOTS-C researched?
A major area of scientific interest surrounding MOTS-C is the question of how mitochondria communicate metabolic and energetic information to the rest of the cell.
MOTS-C has been investigated in connection with AMP-activated protein kinase (AMPK), a major cellular signaling system associated with energy sensing and metabolic regulation.
AMPK-related research examines how cells detect changes in available energy and alter cellular processes in response to those conditions.
Because MOTS-C originates from mitochondrial DNA and has been associated with these signaling pathways, researchers study it in the context of:
mitochondrial function, cellular energy status, metabolic signaling, glucose-related pathways, and adaptive responses to energetic or cellular stress.
MOTS-C research also contributes to the broader study of mitochondrial-derived peptides, an emerging class of signaling molecules investigated for communication between mitochondrial activity and cellular physiology.
In simple terms, MOTS-C gives researchers a way to investigate how a peptide encoded by the mitochondrial genome may participate in signaling beyond the mitochondria themselves.
What makes MOTS-C different?
Many peptide research compounds originate from genes encoded within nuclear DNA or are synthetic analogs designed around established receptor systems.
MOTS-C is different because its sequence originates from the mitochondrial genome.
That gives MOTS-C a distinctly different research profile:
Mitochondrial origin
MOTS-C is encoded within mitochondrial DNA and belongs to the developing field of mitochondrial-derived peptide research.
AMPK-associated signaling
MOTS-C has been investigated in connection with pathways involved in cellular energy sensing and metabolic regulation.
Mitochondrial communication
Researchers examine how mitochondrial-derived signals may influence cellular processes outside the mitochondria.
Metabolic pathway research
MOTS-C is studied in experimental models involving cellular metabolism, glucose-related signaling, and energy-regulation pathways.
Cellular stress signaling
Its relationship with mitochondrial biology has made MOTS-C relevant to research examining adaptive responses to changing energetic and metabolic conditions.
Mitochondrial origin. Energy-sensing pathways. Distinct cellular signaling.
What makes the TPG standard different?
We don’t rely on supplier paperwork alone.
Every TPG batch is built around independent analytical verification, lot-level traceability, and accessible testing documentation.
Where applicable to the analytical methods performed, independent laboratory testing evaluates whether the tested material matches its stated identity, quantity, and purity specifications.
MOTS-C — 40 mg
✓ Batch-specific identification
✓ Quantitative content analysis
✓ Chromatographic purity analysis where performed
✓ Independent third-party laboratory testing
✓ Lot-specific documentation
✓ Certificate of Analysis availability
✓ Cold stored and carefully shipped
The Peptide Group Standard
Supplier documentation tells you what a material is claimed to contain.
Independent analytical testing determines whether the tested sample matches those stated specifications.
That distinction is central to the TPG standard.
We focus on identifiable lots, independent analytical data, and documentation researchers can review rather than relying solely on manufacturer or supplier claims.
Our standard is straightforward:
Identity. Quantity. Purity. Traceability.
Clearly identified material backed by analytical documentation.
Research first. Receipts included.
Product Information
MOTS-C 40 mg is supplied as a single vial of analytical research material.
Lot-specific documentation and Certificate of Analysis information may be provided for applicable batches to support laboratory recordkeeping, material identification, analytical review, and batch traceability.
Specifications
Compound: MOTS-C
Full name: Mitochondrial Open Reading Frame of the 12S rRNA-c
Content: 40 mg per vial
Compound class: Mitochondrial-derived research peptide
Primary research areas: Mitochondrial signaling, AMPK-associated pathways, cellular energy regulation, metabolic signaling
Analytical research material
Batch-specific identification
Independent third-party analytical testing
Certificate of Analysis where applicable
Lot-level traceability
Cold stored and carefully shipped
Research Use Notice
For analytical and laboratory research purposes only.
Not for human consumption. Not intended to diagnose, treat, cure, or prevent any disease.
Manufacturer and supplier information may be redacted from publicly displayed certificates to protect proprietary sourcing information and prevent unauthorized duplication or reuse. Analytical results, purity data, tested content, and reported quantities are not altered by these redactions.
MOTS-C 40 mg
Mitochondrial-derived research peptide for metabolic and cellular signaling investigation
MOTS-C 40 mg is a mitochondrial-derived research peptide investigated for its role in metabolic signaling, cellular energy regulation, mitochondrial communication, and adaptive cellular stress pathways.
MOTS-C is unusual because it is encoded within mitochondrial DNA rather than nuclear DNA. This mitochondrial origin has made it a distinct subject of research involving mitochondrial biology, AMPK-associated signaling, cellular metabolism, energy-sensing pathways, and communication between mitochondria and the rest of the cell.
Its origin and signaling profile distinguish MOTS-C from many conventional peptide research compounds.
Each vial contains:
MOTS-C — 40 mg
Total peptide content — 40 mg
What is MOTS-C?
MOTS-C, short for Mitochondrial Open Reading Frame of the 12S rRNA-c, is a small mitochondrial-derived peptide encoded within the mitochondrial genome.
Mitochondria are commonly associated with cellular energy production, but they also participate in complex signaling networks that communicate information about energy status, nutrient availability, cellular stress, and metabolic conditions.
MOTS-C has been investigated as one of the signaling molecules involved in this broader mitochondrial communication system.
Research involving MOTS-C commonly examines:
Mitochondrial signaling
Cellular energy regulation
Metabolic pathway signaling
AMPK-associated pathways
Mitochondrial-to-nuclear communication
Cellular stress-response signaling
Glucose-related metabolic pathways
Energy-sensing mechanisms
Adaptive metabolic signaling
Mitochondrial-derived peptide biology
Why is MOTS-C researched?
A major area of scientific interest surrounding MOTS-C is the question of how mitochondria communicate metabolic and energetic information to the rest of the cell.
MOTS-C has been investigated in connection with AMP-activated protein kinase (AMPK), a major cellular signaling system associated with energy sensing and metabolic regulation.
AMPK-related research examines how cells detect changes in available energy and alter cellular processes in response to those conditions.
Because MOTS-C originates from mitochondrial DNA and has been associated with these signaling pathways, researchers study it in the context of:
mitochondrial function, cellular energy status, metabolic signaling, glucose-related pathways, and adaptive responses to energetic or cellular stress.
MOTS-C research also contributes to the broader study of mitochondrial-derived peptides, an emerging class of signaling molecules investigated for communication between mitochondrial activity and cellular physiology.
In simple terms, MOTS-C gives researchers a way to investigate how a peptide encoded by the mitochondrial genome may participate in signaling beyond the mitochondria themselves.
What makes MOTS-C different?
Many peptide research compounds originate from genes encoded within nuclear DNA or are synthetic analogs designed around established receptor systems.
MOTS-C is different because its sequence originates from the mitochondrial genome.
That gives MOTS-C a distinctly different research profile:
Mitochondrial origin
MOTS-C is encoded within mitochondrial DNA and belongs to the developing field of mitochondrial-derived peptide research.
AMPK-associated signaling
MOTS-C has been investigated in connection with pathways involved in cellular energy sensing and metabolic regulation.
Mitochondrial communication
Researchers examine how mitochondrial-derived signals may influence cellular processes outside the mitochondria.
Metabolic pathway research
MOTS-C is studied in experimental models involving cellular metabolism, glucose-related signaling, and energy-regulation pathways.
Cellular stress signaling
Its relationship with mitochondrial biology has made MOTS-C relevant to research examining adaptive responses to changing energetic and metabolic conditions.
Mitochondrial origin. Energy-sensing pathways. Distinct cellular signaling.
What makes the TPG standard different?
We don’t rely on supplier paperwork alone.
Every TPG batch is built around independent analytical verification, lot-level traceability, and accessible testing documentation.
Where applicable to the analytical methods performed, independent laboratory testing evaluates whether the tested material matches its stated identity, quantity, and purity specifications.
MOTS-C — 40 mg
✓ Batch-specific identification
✓ Quantitative content analysis
✓ Chromatographic purity analysis where performed
✓ Independent third-party laboratory testing
✓ Lot-specific documentation
✓ Certificate of Analysis availability
✓ Cold stored and carefully shipped
The Peptide Group Standard
Supplier documentation tells you what a material is claimed to contain.
Independent analytical testing determines whether the tested sample matches those stated specifications.
That distinction is central to the TPG standard.
We focus on identifiable lots, independent analytical data, and documentation researchers can review rather than relying solely on manufacturer or supplier claims.
Our standard is straightforward:
Identity. Quantity. Purity. Traceability.
Clearly identified material backed by analytical documentation.
Research first. Receipts included.
Product Information
MOTS-C 40 mg is supplied as a single vial of analytical research material.
Lot-specific documentation and Certificate of Analysis information may be provided for applicable batches to support laboratory recordkeeping, material identification, analytical review, and batch traceability.
Specifications
Compound: MOTS-C
Full name: Mitochondrial Open Reading Frame of the 12S rRNA-c
Content: 40 mg per vial
Compound class: Mitochondrial-derived research peptide
Primary research areas: Mitochondrial signaling, AMPK-associated pathways, cellular energy regulation, metabolic signaling
Analytical research material
Batch-specific identification
Independent third-party analytical testing
Certificate of Analysis where applicable
Lot-level traceability
Cold stored and carefully shipped
Research Use Notice
For analytical and laboratory research purposes only.
Not for human consumption. Not intended to diagnose, treat, cure, or prevent any disease.
Manufacturer and supplier information may be redacted from publicly displayed certificates to protect proprietary sourcing information and prevent unauthorized duplication or reuse. Analytical results, purity data, tested content, and reported quantities are not altered by these redactions.

