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SS-31

38.95

SS-31 (Elamipretide) – Mitochondria-Targeted Research Peptide

SS-31, also known as Elamipretide, MTP-131 and Bendavia, is an advanced mitochondria-targeted tetrapeptide developed for professional laboratory research involving mitochondrial membranes, cardiolipin interactions, cellular bioenergetics and oxidative-stress pathways. Its compact four-amino-acid structure is designed to associate with the inner mitochondrial membrane, where cardiolipin plays an important role in membrane organisation, respiratory-chain activity and cellular energy production. This distinctive mitochondrial research profile makes SS-31 particularly relevant for advanced biochemical, cellular, analytical and comparative peptide studies.

Vigtige produktfunktioner

  • Advanced mitochondria-targeted tetrapeptide
  • Also known as Elamipretide and MTP-131
  • Compact four-amino-acid structure
  • Relevant for cardiolipin-interaction research
  • Suitable for mitochondrial membrane studies
  • Useful for cellular bioenergetics research
  • Relevant for electron-transport-chain models
  • Suitable for oxidative-stress research
  • Leveres som frysetørret forskningsmateriale
  • Tydelige batchspecifikke produktoplysninger
  • Sikker og diskret emballage
  • Hurtig og sporbar levering i Europa

What Is SS-31?

SS-31 is a synthetic aromatic-cationic tetrapeptide developed as a research tool for investigating mitochondrial structure and function. Its amino-acid sequence is: D-Arg–Dmt–Lys–Phe–NH₂ In this sequence, Dmt represents 2′,6′-dimethyltyrosine. SS-31 is also identified by several alternative names:
  • Elamipretide
  • MTP-131
  • Bendavia
  • SS-31 peptide
  • Cardiolipin-targeting tetrapeptide
Its compact structure and combination of aromatic and positively charged amino-acid components contribute to its distinctive interaction with mitochondrial membranes.

Mitochondria-Targeted Research

Mitochondria are specialised cellular structures responsible for oxidative metabolism, energy conversion and several important signalling processes. SS-31 is widely studied in relation to the inner mitochondrial membrane rather than one conventional cell-surface receptor. Potential research areas include:
  • Mitochondrial membrane organisation
  • Inner mitochondrial membrane function
  • Mitochondrial targeting
  • Membrane-potential-independent peptide localisation
  • Cellular respiration
  • Mitochondrial stress responses
  • Mitochondrial morphology
  • Cristae organisation
  • Organelle-to-cell communication
  • Comparative mitochondrial peptide research
Its ability to associate with mitochondrial membranes makes SS-31 a valuable reference compound for laboratories investigating mitochondrial bioenergetics and membrane biology.

Cardiolipin Research

Cardiolipin is a specialised phospholipid found predominantly within the inner mitochondrial membrane. It contributes to the organisation of mitochondrial cristae and supports the function of proteins associated with the respiratory chain. SS-31 is studied for its interaction with cardiolipin and may be relevant for research involving:
  • Peptide–lipid interactions
  • Cardiolipin binding
  • Cardiolipin organisation
  • Inner membrane stability
  • Mitochondrial cristae structure
  • Membrane curvature
  • Phospholipid oxidation
  • Cardiolipin–protein interactions
  • Cytochrome-c-associated pathways
  • Comparative mitochondrial lipid research
The interaction between SS-31 and cardiolipin is one of the principal characteristics distinguishing it from many conventional research peptides.

Mitochondrial Bioenergetics

Mitochondrial bioenergetics describes how cells convert nutrients into usable chemical energy. SS-31 may be used in research involving:
  • Mitochondrial respiration
  • Oxygen-consumption analysis
  • Oxidative phosphorylation
  • Cellular ATP-related pathways
  • Respiratory-chain efficiency
  • Proton-gradient maintenance
  • Cellular energy metabolism
  • Metabolisk fleksibilitet
  • Mitochondrial coupling
  • Energi-substratudnyttelse
These research applications allow laboratories to investigate relationships between mitochondrial membrane organisation and cellular energy production.

Electron Transport Chain Research

The mitochondrial electron transport chain contains several protein complexes located within the inner mitochondrial membrane. These complexes transfer electrons and help create the electrochemical gradient needed for ATP synthesis. Potential SS-31 research areas include:
  • Respiratory-chain complex organisation
  • Electron-transfer efficiency
  • Electron leakage
  • Supercomplex assembly
  • Cytochrome-c electron-carrier activity
  • Mitochondrial membrane potential
  • Oxygen-consumption rates
  • Oxidative phosphorylation
  • ATP-synthesis pathways
  • Comparative respiratory-chain models
SS-31 may be particularly useful in models examining how cardiolipin organisation influences respiratory-chain function.

Cytochrome-c and Cardiolipin Research

Cytochrome c participates in mitochondrial electron transfer and can interact with cardiolipin within the inner mitochondrial membrane. SS-31 has been investigated in relation to the cardiolipin–cytochrome-c complex. Potential research topics include:
  • Cytochrome-c electron transport
  • Cardiolipin binding
  • Peroxidase-associated activity
  • Mitochondrial redox signalling
  • Electron-carrier function
  • Membrane-protein interactions
  • Cytochrome-c localisation
  • Mitochondrial stress responses
  • Comparative peptide–lipid interaction
  • Oxidative membrane models
These pathways remain important areas of mitochondrial and cellular research.

Oxidative-Stress Research

Mitochondria are both producers and targets of reactive oxygen species. Excessive electron leakage from the respiratory chain can contribute to oxidative reactions involving proteins, lipids and mitochondrial DNA. SS-31 may be studied in laboratory models involving:
  • Mitochondrial reactive oxygen species
  • Electron leakage
  • Lipid peroxidation
  • Cardiolipin oxidation
  • Protein oxidation
  • Cellular redox balance
  • Oxidative-stress responses
  • Antioxidant-pathway signalling
  • Mitochondrial DNA stress
  • Comparative oxidative models
These applications describe experimental research areas and do not represent guaranteed therapeutic effects.

Mitochondrial Membrane-Potential Research

Mitochondrial membrane potential reflects the electrochemical gradient across the inner mitochondrial membrane. This gradient is closely linked to respiratory-chain activity and ATP-related energy production. Potential research involving SS-31 may examine:
  • Mitochondrial membrane potential
  • Membrane depolarisation
  • Proton-gradient stability
  • Mitochondrial permeability
  • Calcium-associated mitochondrial stress
  • Mitochondrial swelling
  • Organelle integrity
  • Stress-induced membrane changes
  • Cellular-energy disruption
  • Comparative mitochondrial assays

Mitochondrial Structure and Cristae Research

Cristae are folds in the inner mitochondrial membrane that increase the available surface area for respiratory-chain proteins. Cardiolipin contributes to the specialised curvature and organisation of these membrane structures. SS-31 may be relevant for research involving:
  • Cristae morphology
  • Inner membrane curvature
  • Mitochondrial ultrastructure
  • Mitochondrial fragmentation
  • Mitochondrial fusion and fission models
  • Membrane remodelling
  • Respiratory supercomplex organisation
  • Electron microscopy studies
  • Organelle structural analysis
  • Cellular stress adaptation

Cellular-Stress Research

Mitochondrial function can be influenced by metabolic, oxidative, inflammatory and environmental stress. SS-31 may be studied in controlled models involving:
  • Metabolic stress
  • Oxidative cellular injury
  • Nutrient deprivation
  • Hypoxia-associated pathways
  • Ischaemia-related laboratory models
  • Calcium overload
  • Mitochondrial permeability-transition research
  • Cellular survival signalling
  • Stress-responsive gene expression
  • Organelle-quality-control pathways
Results can vary according to cell type, experimental conditions, exposure duration and analytical method.

Skeletal-Muscle Research

Skeletal muscle contains large numbers of mitochondria and requires efficient energy production. SS-31 has therefore attracted research interest in laboratory and clinical models involving:
  • Muscle mitochondrial function
  • Cellular respiration in muscle tissue
  • ATP-related energy production
  • Muscle-fibre bioenergetics
  • Mitochondrial morphology
  • Oxidative muscle metabolism
  • Age-related mitochondrial models
  • Cellular fatigue pathways
  • Cardiolipin-associated muscle research
  • Comparative muscle-cell assays
These studies examine mitochondrial mechanisms and should not be presented as guaranteed performance-enhancing effects.

Cardiac Mitochondrial Research

Cardiac muscle depends heavily on mitochondrial energy production. Potential laboratory research applications include:
  • Cardiac mitochondrial respiration
  • Cardiomyocyte energy metabolism
  • Mitochondrial membrane organisation
  • Oxidative cardiac stress
  • Cardiolipin-associated pathways
  • Electron-transport efficiency
  • Cellular calcium handling
  • Mitochondrial morphology
  • Ischaemia and reperfusion models
  • Comparative cardiac-cell research

Neurological and Neuronal Models

Neurons require continuous mitochondrial energy production and are sensitive to changes in oxidative balance. SS-31 may be relevant for controlled research involving:
  • Neuronal mitochondrial function
  • Neural-cell energy metabolism
  • Mitochondrial transport within neurons
  • Oxidative neuronal stress
  • Mitochondrial fragmentation
  • Neurite morphology
  • Excitotoxicity-associated models
  • Neural-cell survival pathways
  • Cardiolipin changes in neural tissue
  • Comparative neuronal assays
Research findings from cellular and animal models should not automatically be applied to humans.

Renal and Metabolic Research Models

Kidney cells contain numerous mitochondria and rely on efficient oxidative metabolism. SS-31 has been studied in preclinical models involving:
  • Renal mitochondrial respiration
  • Tubular-cell energy metabolism
  • Oxidative kidney stress
  • Mitochondrial membrane potential
  • Cellular ATP-related pathways
  • Mitochondrial permeability
  • Calcium-associated stress
  • Metabolic kidney models
  • Cardiolipin-related signalling
  • Comparative renal-cell research

Potentielle forskningsanvendelser

SS-31 may be relevant for professional laboratory studies involving:
  • Mitochondrial membrane biology
  • Cardiolipin interactions
  • Mitochondrial bioenergetics
  • Oxidative phosphorylation
  • Electron transport
  • Respiratory-chain organisation
  • Cytochrome-c-associated pathways
  • Oxidative-stress models
  • Reactive oxygen species
  • Cristae morphology
  • Membrane potential
  • Mitochondrial permeability
  • Cellular ATP-related pathways
  • Muscle mitochondrial models
  • Cardiac mitochondrial research
  • Neuronal mitochondrial models
  • Renal mitochondrial research
  • Peptide–lipid interactions
  • Analytisk peptidkarakterisering
  • Stabilitets- og nedbrydningstest
The exact experimental conditions, concentrations, controls and analytical procedures should be established by the qualified laboratory conducting the research.

Analytisk forskning

SS-31 may be suitable for analytical applications involving:
  • Højtydende væskekromatografi
  • Væskekromatografi-massespektrometri
  • Bekræftelse af peptididentitet
  • Amino-acid-sequence verification
  • Renhedsvurdering
  • Molekylvægtanalyse
  • Stabilitetstestning
  • Nedbrydningsprofilering
  • Lipid-binding assays
  • Cardiolipin-interaction studies
  • Sammenligning af referencematerialer
  • Udvikling af analytiske metoder
Because SS-31 contains D-amino acids and the modified amino acid Dmt, analytical methods should be validated specifically for this peptide.

Produktspecifikationer

Produktkarakteristik Information
Produktnavn SS-31
Scientific name Elamipretide
Alternative names MTP-131 and Bendavia
Produktkategori Syntetisk forskningspeptid
Peptidtype Mitochondria-targeted tetrapeptide
Peptidlængde Four amino-acid components
Sekvens D-Arg–Dmt–Lys–Phe–NH₂
Primary research interaction Mitochondrial cardiolipin
Vigtigste forskningsområder Mitochondrial membranes and bioenergetics
Form Frysetørret forskningsmateriale
Præsentation Sikkert forseglet forskningsflaske
Dokumentation Batchspecifikke analytiske oplysninger
Emballage Sikker og diskret emballage
Tilsigtet anvendelse Videnskabelig, analytisk og laboratorieforskning

Frysetørret forskningsformat

SS-31 is supplied as a lyophilised research material in a securely sealed vial. Lyophilisation removes moisture and helps support peptide stability during controlled storage and transport. Minor differences in physical appearance may occur because of product quantity, production conditions and residual moisture. Product identity, sequence and analytical quality should be confirmed through the documentation associated with the applicable batch.

Kvalitet og produkttransparens

Peptides Divas fokuserer på tydelig produktinformation, professionel håndtering og sporbarhed på batchniveau. Tilgængelig analytisk information kan omfatte:
  • Produktidentifikation
  • Confirmed peptide sequence
  • Batch- eller lotnummer
  • Rapporteret renhed
  • HPLC-analyse
  • Massespektrometridata
  • Molecular-weight information
  • Testoplysninger
  • Produktets udseende
  • Opbevaringsanbefalinger
This provides researchers with clear and traceable product information for the applicable batch.

Opbevaringsoplysninger

Store SS-31 in its original sealed packaging according to the conditions stated on the product label and applicable batch documentation. Protect the research material from:
  • Direkte sollys
  • Overdreven varme
  • Fugtighed
  • Forurening
  • Beskadiget emballage
  • Gentagne temperaturudsving
  • Unødvendig eksponering for luft
The receiving laboratory is responsible for establishing suitable preparation, handling and storage procedures for its specific research protocol.

Why Choose SS-31?

SS-31 provides a highly distinctive molecular profile for advanced mitochondrial and bioenergetic research. Key research advantages include:
  • Compact four-amino-acid structure
  • Direct relevance to cardiolipin research
  • Suitable for inner mitochondrial membrane studies
  • Useful for cellular respiration models
  • Relevant for oxidative-stress research
  • Valuable for peptide–lipid interaction studies
  • Suitable for mitochondrial morphology research
  • Praktisk frysetørret præsentation
  • Tydelige batchspecifikke produktoplysninger

Hvorfor bestille fra Peptides Divas?

Peptides Divas kombinerer omhyggeligt udvalgte forskningsmaterialer med hurtig, pålidelig og professionel service. Kunderne drager fordel af:
  • Tydelig viste produktspecifikationer
  • Batchspecifikke analytiske oplysninger
  • Hurtig ordrebehandling
  • Sikker og diskret emballage
  • Sporbare forsendelsesmuligheder
  • Omhyggelig beskyttelse af hætteglasset
  • Responsiv kundesupport
  • Pålidelig europæisk levering
Choose SS-31 from Peptides Divas for advanced laboratory research involving mitochondrial cardiolipin, cellular bioenergetics, respiratory-chain function and oxidative-stress pathways. For laboratory research use only. Not intended for human or veterinary use.

Nyd hurtig og pålidelig ordrebehandling fra Peptides Divas.

  • Hurtig forsendelse
  • Sikker og diskret emballage
  • Sporbar levering
  • Omhyggelig beskyttelse af hætteglasset
  • Pålidelig europæisk forsendelse
  • Ryd sporingsoplysninger efter afsendelse

Every SS-31 order is professionally packed to help keep the vial sealed, protected and securely stored throughout delivery.

Kvalitet, konsistens og gennemsigtighed er vigtige ting hos Peptides Divas.

SS-31 is supplied with clear product and batch information to support dependable laboratory research and complete product traceability.

Tilgængelig analytisk information kan omfatte:

  • Produktidentifikation
  • Confirmed peptide sequence
  • Batch- eller lotnummer
  • Rapporteret renhed
  • HPLC-analyse
  • Massespektrometridata
  • Molecular-weight information
  • Testoplysninger
  • Produktets udseende
  • Opbevaringsanbefalinger

Gennemgå den analytiske dokumentation, der er knyttet til den relevante produktbatch, før du påbegynder forskning.

SS-31 is supplied as a premium mitochondria-targeted tetrapeptide for professional scientific, analytical and laboratory applications.

Its clearly defined D-Arg–Dmt–Lys–Phe–NH₂ structure makes it suitable for controlled research involving mitochondrial cardiolipin, membrane organisation, cellular respiration and bioenergetics.

Kun til laboratorieforskning. Ikke beregnet til human eller veterinær brug.

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