Lot #260518SS103

SS-31 [10mg]

4.9 / 5

Trusted by 5,000+ researchers

10mg / vial

≥99% HPLC

Mitochondria-targeted tetrapeptide

Mitochondria-Targeted Cardiolipin-Protective Tetrapeptide

SS-31 [10mg]

10mg / vial

Mitochondria-targeted tetrapeptide

≥99% HPLC

4.9 / 5

Trusted by 5,000+ researchers

$50.00

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Research use only · Not for human or veterinary use

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≥99% HPLC Purity

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Compound Profile

Researcher-grade specs. No guesswork.

Each vial ships with structural data and lot identifiers for the compound, plus a Certificate of Analysis documenting purity and identity. Ready for the bench. Synthesized via solid-phase peptide synthesis (SPPS), purified by reverse-phase HPLC, verified by mass spectrometry, and tested for sterility and endotoxin load. Every spec is documented on the signed Certificate of Analysis that ships with your vial.

SS-31 (D-Arg-2,6-Dmt-Lys-Phe-NH₂; also designated elamipretide) is an aromatic-cationic tetrapeptide developed by Hazel H. Szeto at Weill Cornell Medical College, where the compound class was first described in the early 2000s. The Szeto-Schiller (SS) peptides are defined by an alternating aromatic–cationic backbone motif that confers high affinity for the inner mitochondrial membrane and selective accumulation in mitochondria independent of membrane potential.

The primary mechanistic focus of published research is SS-31’s interaction with cardiolipin — the signature phospholipid of the inner mitochondrial membrane. Work from Szeto’s laboratory and from Birk, Lim, and colleagues at Weill Cornell demonstrated that SS-31 stabilizes cardiolipin’s association with cytochrome c, preventing its conversion to a peroxidase and preserving electron transport chain architecture under ischemic and oxidative stress conditions. Additional preclinical models have examined SS-31 in renal ischemia-reperfusion, heart failure, and skeletal muscle mitochondrial dysfunction. All findings referenced here derive from preclinical models and have not been validated in controlled human clinical trials.

SS-31 research appears in British Journal of Pharmacology, Journal of the American Society of Nephrology, and Journal of Molecular and Cellular Cardiology. It is not approved by the U.S. Food and Drug Administration for any diagnostic, therapeutic, or preventive application. It is classified as a research compound only.

Documented Research Areas

  • Cardiolipin binding and inner mitochondrial membrane integrity preservation
  • Cytochrome c peroxidase activity suppression under oxidative stress
  • Electron transport chain complex activity and mitochondrial ATP production
  • Renal ischemia-reperfusion injury and tubular cell mitochondrial recovery
  • Cardiac mitochondrial bioenergetics in heart failure models
  • Skeletal muscle mitochondrial dysfunction in aging and disuse atrophy models

For research use only. Statements above describe published research literature and do not constitute health, medical, or therapeutic claims for either compound or for the blend. Not for human or veterinary use. Not evaluated by the FDA.

Compound Profile

Researcher-grade specs. No guesswork.

Each vial ships with structural data and lot identifiers for the compound, plus a Certificate of Analysis documenting purity and identity. Ready for the bench. Synthesized via solid-phase peptide synthesis (SPPS), purified by reverse-phase HPLC, verified by mass spectrometry, and tested for sterility and endotoxin load. Every spec is documented on the signed Certificate of Analysis that ships with your vial.

— Component 01
SS-31 · 10mg
Class
Aromatic-cationic mitochondria-targeted tetrapeptide
Sequence
D-Arg-2,6-Dmt-Lys-Phe-NH₂ (Dmt = 2',6'-dimethyltyrosine)
CAS Number
736992-21-5
Molecular Formula
C₃₂H₄₉N₉O₅
Molecular Weight
639.8 g/mol
Per-component purity
≥ 99%
Form
Lyophilized white powder, single vial
Identity (LC-MS)
All confirmed
Sterility / LAL
PASS
Storage
2-8°C, sealed, dry
Origin
Made in the USA
In the Literature

One compound. One research record.

SS-31 (D-Arg-2,6-Dmt-Lys-Phe-NH₂; also designated elamipretide) is an aromatic-cationic tetrapeptide developed by Hazel H. Szeto at Weill Cornell Medical College, where the compound class was first described in the early 2000s. The Szeto-Schiller (SS) peptides are defined by an alternating aromatic–cationic backbone motif that confers high affinity for the inner mitochondrial membrane and selective accumulation in mitochondria independent of membrane potential.

The primary mechanistic focus of published research is SS-31’s interaction with cardiolipin — the signature phospholipid of the inner mitochondrial membrane. Work from Szeto’s laboratory and from Birk, Lim, and colleagues at Weill Cornell demonstrated that SS-31 stabilizes cardiolipin’s association with cytochrome c, preventing its conversion to a peroxidase and preserving electron transport chain architecture under ischemic and oxidative stress conditions. Additional preclinical models have examined SS-31 in renal ischemia-reperfusion, heart failure, and skeletal muscle mitochondrial dysfunction. All findings referenced here derive from preclinical models and have not been validated in controlled human clinical trials.

SS-31 research appears in British Journal of Pharmacology, Journal of the American Society of Nephrology, and Journal of Molecular and Cellular Cardiology. It is not approved by the U.S. Food and Drug Administration for any diagnostic, therapeutic, or preventive application. It is classified as a research compound only.

For research use only. Statements above describe published research literature and do not constitute health, medical, or therapeutic claims for either compound or for the blend. Not for human or veterinary use. Not evaluated by the FDA.

Documented Research Areas

  • Cardiolipin binding and inner mitochondrial membrane integrity preservation
  • Cytochrome c peroxidase activity suppression under oxidative stress
  • Electron transport chain complex activity and mitochondrial ATP production
  • Renal ischemia-reperfusion injury and tubular cell mitochondrial recovery
  • Cardiac mitochondrial bioenergetics in heart failure models
  • Skeletal muscle mitochondrial dysfunction in aging and disuse atrophy models

Selected Studies · Peer-Reviewed Literature

A curated list of published peer-reviewed papers indexed in PubMed where BPC-157 has been studied. Provided for research-context only. Linking to the literature does not constitute endorsement of any therapeutic application.

01

Szeto HH. (2014) · British Journal of Pharmacology

First-in-class cardiolipin-protective compound as a therapeutic agent to restore mitochondrial bioenergetics

PubMed · PubMed · 24117226
02

Birk AV, et al. (2013) · Journal of the American Society of Nephrology

The mitochondrial-targeted compound SS-31 re-energizes ischemic mitochondria by interacting with cardiolipin

PubMed · PubMed · 23813215

Compound database reference for chemical and structural data:

Research You Can Trust.

At Revvd Research, quality comes first. Our peptides are produced using advanced manufacturing processes and verified through comprehensive testing protocols to deliver dependable results for research applications.

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Every lot. Every researcher. Same proof.

Each batch ships with a third-party Certificate of Analysis from BioRegen Analytical. HPLC purity, mass-spectrometry identity, sterility, and LAL endotoxin screening. Every test, every lot.

Your lot number ships on the label and on the COA. Enter it in the verifier any time to retrieve the original lab report.

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Certificate of Analysis

CompoundSS-31
CAS#736992-21-5
FormulaC₃₂H₄₉N₉O₅
Mol. Weight639.8 g/mol
Identity (LC-MS)PASS
Purity (HPLC)99.76%
Sterility / LALPASS
Date Tested07 Jun 2026

Pairs With

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2

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Research use only · Not for human or veterinary use

$40.00

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3

BPC-157 + TB-500 [5mg/5mg]

5mg / 5mg per vial

CAS#

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Research use only · Not for human or veterinary use

$47.50

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TESAMORELIN + IPAMORELIN [5mg/5mg]

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