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Longevity & Anti-Aging Peptides

MOTS-C 10mg

Research Peptide · Lyophilised Powder
★★★★★ 4.8 (120+ reviews) Verified buyers
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  • Synthetic research peptide for in-vitro structure & function studies
  • Independently HPLC-tested and batch-verified
  • Batch-specific Certificate of Analysis included with every order
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£28.99per vial · incl. free bac water
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Quality assurance

Every vial is quality-checked to ensure purity and batch-to-batch consistency.

Verified lab quality

  • HPLC-tested to ≥ 98% (HPLC) purity
  • Batch-specific Certificate of Analysis
  • Stored under controlled laboratory conditions
RUO

Research Use Only. Not for human or veterinary use. By purchasing you confirm you are a qualified researcher and accept responsibility for safe, lawful handling.

HPLC testedPurity verified per batch
≥ 98% (HPLC) purityIndependently confirmed
Lyophilised powderStable, easy to reconstitute
Research gradeFor in-vitro lab use only

Introduction

The interest in the use of peptides derived from mitochondria has increased tremendously over the last ten years, as scientists try to unravel the mystery behind communication mechanisms and metabolic regulation inside cells. One of these naturally occurring peptides that has caught the attention of scientists is the MOTS-C due to the uniqueness of the mitochondrial origin and the energy sensing pathways it interacts with.

Unlike other research compounds developed in labs, the MOTS-C is naturally occurring as it originates from mitochondrial DNA, making it interesting to study in molecular biology studies, metabolism, and aging research. Scientific investigations into the communication process of mitochondrial peptides and their interactions with nuclear signaling are ongoing through varied experimental conditions.

In the UK, research laboratories studying mitochondrial function and metabolic or peptide signaling often conduct investigations on this compound using validated techniques and well-documented experimental procedures in the lab. Like any other research compound, it is available only for Research Use Only.

MOTS-C

MOTS-C is a small peptide derived from the mitochondrial 12S ribosomal RNA. The discovery of this molecule expanded scientific knowledge about the functions of mitochondria by showing that these organelles are capable of producing signalling peptides aside from being the source of cellular energy production.

The most exciting aspect regarding this peptide relates to its function in the communication of the mitochondria with the cell nucleus. It was thought that this kind of communication is important in the process of adaptation in metabolic stress condition, making it a useful system to study intracellular signalling.

Presently, experiments on this peptide involve molecular interaction studies rather than its therapeutic use. Research usually revolves around transcriptional regulation, metabolic adaptation, and protein signaling under controlled experimental settings.

In terms of laboratory usage, it is a high purity peptide used in biochemical experiments which require consistent analytical characterization for experiment reproducibility.

How it is Studied

A number of different laboratory experiments make use of various techniques, both analytical and molecular in nature, in order to study the stability, structure and activity of peptides.

Common research methods may include:

  • cell culture experimentation
  • protein expression studies
  • gene transcription analysis
  • studies of mitochondrial signalling
  • metabolomics
  • proteomics
  • biomolecular interactions studies
  • peptide characterization

Researchers often examine how mitochondrial peptides affect signaling pathways in different laboratory conditions, such as those that involve nutrient levels, oxidative stress models, and controlled metabolic states.

Contemporary laboratory facilities even integrate peptide chemistry with computational biology to develop computer models for structural interactions and binding properties of peptides, which need to be confirmed by further experiments.

The increasing number of studies in the field helps to advance scientific knowledge regarding mitochondrial signaling without developing any medical applications.

Scientific Characteristics

A characteristic element that sets this peptide apart is the fact that it originated in the mitochondria, distinguishing it from other experimental peptides.

The most important scientific elements are:

  • A peptide originating from mitochondrial DNA
  • A short amino acid chain
  • Participates in cellular signalling studies
  • Studied for metabolic regulation
  • Studies on communication between mitochondria and the nucleus
  • Appropriate for biochemical analysis

This peptide's compact nature renders it appropriate for advanced biochemical analysis.

Scientists still investigate some biochemical pathways such as:

  • AMP-activated protein kinase (AMPK) signalling pathway
  • Energy regulation within cells
  • Nuclear transcriptional response
  • Mitochondrial adaptation to stress
  • Cellular metabolic balance
  • Protein signalling cascade

These studies still focus on basic biological processes.

Current Research Areas

Research interest is continually growing in many fields, thus leading to a number of research studies in laboratories.

Mitochondrial Biology

The study on the interaction between mitochondria and the nucleus to find out how intracellular signaling adjusts to new environmental situations.

Cellular Metabolism

Laboratory models are used to study the mechanisms related to nutrient sensing, metabolic plasticity and energy utilization in an experimental setting.

Healthy Ageing Research

Alterations in mitochondria functions due to aging lead to studies on mitochondrial peptides as experimental methods to study cell survival and biological aging.

Molecular Signalling

The study of the signaling network continues as scientists try to figure out how intracellular messenger systems work during metabolic stress.

Exercise Physiology Models

Some of the laboratory research studies focus on molecular adaptations concerning muscle cell signaling and mitochondria adaptation after physiological stress.

Systems Biology

Combining transcriptomics, proteomics and metabolomics allows scientists to study regulatory networks in relation to mitochondrial peptides.

These research domains continue to produce valuable molecular information from laboratory studies within the UK.

Research Quality & Testing

The first step in the process of conducting sound peptide research relies on adequate analysis. Proper analysis requires proper identification, purity reports, and full quality control at all stages of production.

In addition to independent HPLC testing to determine purity and possible impurities that could occur during synthesis, molecular confirmation using LC-MS for molecular weight and peptide identification can be used when necessary.

The following items are usually included in research documentation:

  • Independent HPLC purity test
  • LC-MS peptide identity verification
  • Batch specific Certificate of Analysis (COA)
  • Material manufacturing batch identification
  • Analytical method used
  • Quality control documentation
  • Laboratory traceability documentation

The full documentation of a research batch COA helps researchers verify analysis results prior to using the material in experiments. Traceability of the batch in research documentation also facilitates reproducibility of research by helping researchers record the material used during their research procedure.

HPLC tested peptide for laboratory purposes needs adequate documentation as part of its quality assurance process.

Laboratory Storage

Proper storage contributes to maintaining the integrity of analysis during laboratory testing.

Recommendations for general laboratory use are:

  • Store based on the laboratory's documented requirements.
  • Use consistent storage temperatures throughout the process.
  • Secure the material from excess moisture.
  • Reduce exposure to light if necessary.
  • Avoid multiple freezing and thawing where required by research requirements.
  • Document batch numbers and storage information in laboratory reports.

The laboratories should always comply with storage requirements provided with research documents.

It is common practice among researchers in the UK to utilize batch tracking in laboratory management system as a way to ensure consistency between different experiments.

Conclusion

MOTS-C is a noteworthy subject in contemporary mitochondrial biology and provides the chance to conduct lab experiments on intracellular communication, metabolism and mitochondrial signalling with well-conducted research in a laboratory setting. The unique mitochondrial genesis of MOTS-C distinguishes it from many other investigative peptides and has helped enhance scientific interest within various scientific fields.

The quality of material is of utmost importance when it comes to conducting any experiment in the lab. Independent HPLC analysis, LC-MS analysis, research documentation and batch specific COA are essential analyses that help to conduct scientific research. The use of a pure peptide from a reliable research peptide UK provider will assist in conducting reproducible scientific research.

Frequently asked questions

What is MOTS-C?

It is a mitochondria-derived signal peptide that has been studied in laboratory research to determine cellular metabolism and mitochondria signalling pathways.

Is this intended for human or veterinary use?

NO. This product is supplied for Research Use Only.

Why are HPLC and LC-MS analyses important?

HPLC analytical tests determine the purity of the compound by assessing its chromatography. LC-MS analytical test identifies the molecule by confirming its molecular identity.

What information is included within a batch COA?

COA will include results of analytical testing, purity details, identification tests, batch information and other pertinent quality control documents.

Why is batch traceability valuable?

Tracing batches allows researchers to know exactly which material they are using in their experiments.

What should researchers consider when selecting a UK peptide supplier?

Researchers should consider analytical testing, quality verification, documentation, COAs, traceability and laboratory research standards when selecting a UK peptide supplier.

Technical specifications

The MOTS-C 10mg research peptide is for use in the laboratory environment under controlled scientific study conditions. Prior to using this product in experiments, researchers must carefully check both the product label and the relevant batch documents.

Chemical nameMOTS-C 10mg
CAS number1627580-64-6
Molecular formulaC101H152N28O22S2
Molecular weight2174.6 g/mo
Purity≥ 98% (HPLC)
FormLyophilised powder
Storage2°C to 8°C (refrigerated), protect from light

All specifications, including purity values and analytical test results, should be checked against the Certificate of Analysis for the specific batch supplied.

Certificate of Analysis

Every batch of MOTS-C 10mg is independently analysed by HPLC, with mass-spec for identity. A batch-specific Certificate of Analysis is supplied with your order, confirming the exact purity of the vial you receive.

Download MOTS-C 10mg CoA (PDF)
DJ
Dr. Dinesh John Rajkumar, Pharm D
Scientific Advisor, Peptides Online

Medically reviewed for scientific accuracy, specialising in biomedical and research compound literature.

Pharm DReviews all listingsChecked against CoA

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