SS-31 30mg
€155.99
SS-31 (Elamipretide) – 30mg
This high-purity, mitochondria-targeting peptide is designed for advanced cellular research. SS-31 selectively localizes to the inner mitochondrial membrane to protect cristae structure and reduce oxidative damage at its source.
Primary Research Applications:
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Mitochondrial Function & Bioenergetics
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Ischemia-Reperfusion Injury Models
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Oxidative Stress & Apoptosis Studies
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Age-Related Cellular Decline Research
This 30mg vial of lyophilized powder is intended for qualified researchers conducting in-vitro studies only. Not for human or veterinary use.
Sequence: D-Arg-Dmt-Lys-Phe-NH₂
Purity: ≥98% (HPLC Verified)
Storage: Store at -20°C or below
SS-31 (Elamipretide) – 30mg – A Mitochondria-Targeting Peptide for Cellular Energy and Apoptosis Research
The SS-31 Elamipretide mitochondria-targeting peptide for research is a groundbreaking tool in the study of cellular bioenergetics. This product contains 30mg of high-purity, lyophilized powder, which researchers utilize to investigate oxidative stress and programmed cell death. As a novel, water-soluble tetra-peptide, it is specifically engineered to accumulate within the inner mitochondrial membrane. Consequently, it has become a foundational compound for experimental design in cardiology, neurology, and nephrology.
The Scientific Basis of SS-31’s Mechanism
The primary research value of the SS-31 Elamipretide mitochondria-targeting peptide for research lies in its ability to accumulate several hundred-fold within the site of ATP synthesis. Its mechanism focuses on two critical interactions:
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Cardiolipin Stabilization: It binds selectively to cardiolipin to stabilize the cristae structure. This prevents the release of pro-apoptotic factors like cytochrome c.
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ROS Scavenging: The dimethyltyrosine (Dmt) residue acts as a potent antioxidant. Specifically, it neutralizes free radicals at the electron transport chain before they cause lipid peroxidation.
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Metabolic Efficiency: By reducing proton leak, the peptide helps restore efficient coupling between electron transport and ATP production.
Key Research Applications
When applying the SS-31 Elamipretide mitochondria-targeting peptide for research in laboratory settings, several domains show significant promise. For instance, peer-reviewed studies highlight the following:
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Ischemia-Reperfusion (IR) Injury: Research demonstrates that SS-31 prevents the mitochondrial permeability transition pore (mPTP) from opening during reoxygenation.
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Age-Related Dysfunction: Scientists use this peptide to test the mitochondrial free radical theory of aging by mitigating DNA and protein damage.
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Cardiomyopathy Models: Because the heart is metabolically active, this peptide is essential for investigating contractility and calcium handling in heart failure models.
Recommended Research Protocols
For successful in-vitro replication, the SS-31 Elamipretide mitochondria-targeting peptide for research requires precise dosing. Effective concentrations in cell culture typically range from 1 nM to 100 nM.
| Research Model | Application Focus | Concentration | Duration |
| Renal Cells | IR Injury Protection | 10-100 nM | Acute Exposure |
| Primary Neurons | Neurodegeneration | 10-50 nM | Chronic (Days) |
| Myotubes | Sarcopenia Research | 50-500 nM | Varies |
Quality Assurance and Handling
At EliteBiogenix, we guarantee $\ge$98% purity for our SS-31 Elamipretide mitochondria-targeting peptide for research. To maintain stability, you must store the lyophilized powder at -20°C and protect it from light. Furthermore, while the peptide is highly soluble in water or sterile saline, we recommend preparing fresh solutions for each experiment to ensure maximum potency.
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Ideal Study Environments
This peptide is perfectly suited for several specific research applications. For instance, it is often utilized in:
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Vaccine adjuvant response protocols.
Important Technical Specifications
Note on Reconstitution: This peptide is highly acidic. Consequently, it requires .1-1% Acetic Acid for proper reconstitution.
Please be aware that cloudiness or clumping may occur because the molecules are "intrinsically disordered." Furthermore, this physical characteristic is a natural property of the molecule.

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