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SLU-PP-332 + BAM-15 research compound 100 mcg capsules – Peptide Medix EU
  • Each component tested analytically; COA on request
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Fat-Loss & Metabolic Peptides

SLU-PP-332 + BAM-15

Capsule combining an ERR agonist and a mitochondrial uncoupler

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€106

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  • FormCapsules in a sealed bottle, two-compound research blend
  • Research areasMitochondrial biogenesis, oxidative phosphorylation efficiency, substrate oxidation

For laboratory research use only. Sold exclusively for in-vitro laboratory research by qualified professionals. Not for human or veterinary use, and not a medicine, food, cosmetic or dietary supplement. Terms and Conditions

Overview

Key facts

Each capsule holds two metabolic research compounds with unrelated mechanisms: 100 mcg of SLU-PP-332, a small-molecule agonist of the estrogen-related receptors, and 15 mg of BAM-15, a mitochondrial protonophore.

Purity
Component-level analytical testing; certificate of analysis available
Form
Capsules in a sealed bottle, two-compound research blend
Storage
Room temperature, sealed, dry and protected from light
Available size
100 mcg · 15 mg · 30 capsules

For research use only. Not for human consumption.

Each capsule holds two metabolic research compounds with unrelated mechanisms: 100 mcg of SLU-PP-332, a small-molecule agonist of the estrogen-related receptors, and 15 mg of BAM-15, a mitochondrial protonophore. They are combined because they work at different levels of one system — the first alters which mitochondria a cell builds, the second alters how efficiently existing mitochondria turn fuel into ATP.

SLU-PP-332 activates ERRα, ERRβ and ERRγ, orphan nuclear receptors that, together with PGC-1 coactivators, drive transcription of genes for oxidative phosphorylation, the Krebs cycle and fatty-acid oxidation — an effect unfolding over hours to days. BAM-15 acts quickly and after transcription: it moves protons across the inner mitochondrial membrane so part of the proton-motive force is lost as heat instead of powering ATP synthase. The literature describes it as a mitochondria-selective uncoupler which, unlike older protonophores such as DNP, leaves the plasma membrane polarised at similar concentrations.

What sets this listing apart

SLU-PP-332 + BAM-15 combines SLU-PP-332 and BAM15 in one listing (100 mcg). Components that are also sold on their own are linked below, each with its own specification and COA.

Same compound, other listings

Specifications

Supply & purity

Form
Capsules in a sealed bottle, two-compound research blend
Purity
Component-level analytical testing; certificate of analysis available

Additional detail

Composition per capsule
100 mcg SLU-PP-332 and 15 mg BAM-15
Available size
30 capsules
Component 1
SLU-PP-332 — small-molecule agonist at ERR alpha, beta and gamma (CAS 2098486-97-2)
Component 2
BAM-15 — oxadiazolopyrazine-class mitochondrial protonophore (uncoupler)
Compound class
Small-molecule metabolic research blend (non-peptide)
Research areas
Mitochondrial biogenesis, oxidative phosphorylation efficiency, substrate oxidation
Evidence base
Cell culture and rodent studies only; no human data published for either component
Storage
Room temperature, sealed, dry and protected from light

Questions about SLU-PP-332 + BAM-15

What kind of compound is BAM-15?

A small-molecule mitochondrial protonophore: it transports protons across the inner mitochondrial membrane, dissipating part of the gradient as heat rather than using it for ATP synthesis. It is described as selective for mitochondria, unlike older uncouplers that also act on the plasma membrane.

What's the point of pairing an ERR agonist with an uncoupler?

They work on different timescales and levels: SLU-PP-332 changes mitochondrial gene transcription over hours to days, while BAM-15 alters the efficiency of existing mitochondria within minutes. Combining them lets researchers see whether the two mechanisms add together or interfere.

Which documents are supplied?

A certificate of analysis covering the identity and purity of both components is available for the lot supplied. File it with your records to keep the analytical data linked to the material you actually used.

What storage do the capsules need?

Keep the sealed bottle dry at room temperature, out of direct light, and closed between uses. Moisture is the main risk for capsules, so avoid fridge-to-room cycles that can cause condensation inside the bottle.

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