Fast Worldwide Shipping With Tracked 48 hour DHL Express Delivery
SLU-PP-332 is part of a new class of "exercise mimetics" compound designed for research to reproduce the cellular benefits of physical activity without exertion. By stimulating ERRα, studies show it may promote mitochondrial biogenesis and energy efficiency, which are central to endurance and metabolic resilience. Studies also indicate it may interact with neuropeptide Y pathways, influencing appetite, stress response, and possibly cognition.
SLU-PP-332 is a small molecule compound increasingly studied within laboratory research for its role in metabolic signalling investigation and energy regulation pathway modelling. It is scientifically distinguished by its interaction with intracellular signalling mechanisms associated with cellular energy balance and metabolic adaptation processes. Due to its defined molecular structure and consistent experimental behaviour SLU-PP-332 has become a valuable research tool in advanced metabolic and molecular biology studies. In controlled research environments it is utilised to explore complex signalling networks related to energy utilisation mitochondrial activity models and integrated metabolic regulation systems.
(Recommend, Reconstitute with-Acetic Acid)
SLU-PP-322 is examined in molecular research for its influence on intracellular energy regulation pathways linked to mitochondrial activity and metabolic gene expression. Studies focus on its interaction with regulatory signalling systems that coordinate oxidative metabolism, substrate utilisation, and energy sensing at the cellular level. Research models investigate how SLU-PP-332 modulates transcriptional regulators involved in mitochondrial efficiency and adaptive metabolic response, supporting analysis of metabolic signalling integration and cellular energy homeostasis under controlled laboratory conditions.
SLU-PP-332 is utilised in laboratory research to examine intracellular energy sensing mechanisms and mitochondrial driven metabolic regulation. Experimental models apply this compound to study how signalling pathways influence oxidative metabolism, substrate flux, and cellular energy output under controlled conditions. Researchers also employ this compound in transcription focused studies investigating regulation of metabolic gene expression and coordination between nuclear and mitochondrial signalling systems. These applications support mechanistic analysis of metabolic pathway integration, cellular energy adaptation, and signalling coherence within complex metabolic networks.
Note: Reconstitute with 50% Bacteriostatic (BAC) water and 50% Acetic Acid for best results.
AOD9604 10mg
MOT-c 10mg
Hexarelin 5mg
Trade supply
Peptides sets
Bulk purchase range
SLU-PP-332 is part of a new class of "exercise mimetics" compound designed for research to reproduce the cellular benefits of physical activity without exertion. By stimulating ERRα, studies show it may promote mitochondrial biogenesis and energy efficiency, which are central to endurance and metabolic resilience. Studies also indicate it may interact with neuropeptide Y pathways, influencing appetite, stress response, and possibly cognition.
SLU-PP-332 is a small molecule compound increasingly studied within laboratory research for its role in metabolic signalling investigation and energy regulation pathway modelling. It is scientifically distinguished by its interaction with intracellular signalling mechanisms associated with cellular energy balance and metabolic adaptation processes. Due to its defined molecular structure and consistent experimental behaviour SLU-PP-332 has become a valuable research tool in advanced metabolic and molecular biology studies. In controlled research environments it is utilised to explore complex signalling networks related to energy utilisation mitochondrial activity models and integrated metabolic regulation systems.
(Recommend, Reconstitute with-Acetic Acid)
SLU-PP-322 is examined in molecular research for its influence on intracellular energy regulation pathways linked to mitochondrial activity and metabolic gene expression. Studies focus on its interaction with regulatory signalling systems that coordinate oxidative metabolism, substrate utilisation, and energy sensing at the cellular level. Research models investigate how SLU-PP-332 modulates transcriptional regulators involved in mitochondrial efficiency and adaptive metabolic response, supporting analysis of metabolic signalling integration and cellular energy homeostasis under controlled laboratory conditions.
SLU-PP-332 is utilised in laboratory research to examine intracellular energy sensing mechanisms and mitochondrial driven metabolic regulation. Experimental models apply this compound to study how signalling pathways influence oxidative metabolism, substrate flux, and cellular energy output under controlled conditions. Researchers also employ this compound in transcription focused studies investigating regulation of metabolic gene expression and coordination between nuclear and mitochondrial signalling systems. These applications support mechanistic analysis of metabolic pathway integration, cellular energy adaptation, and signalling coherence within complex metabolic networks.
Note: Reconstitute with 50% Bacteriostatic (BAC) water and 50% Acetic Acid for best results.
AOD9604 10mg
MOT-c 10mg
Hexarelin 5mg
Trade supply
Peptides sets
Bulk purchase range


Allow the vial to reach room temperature
This helps prevent condensation, which can compromise sterility when you open the vial.

Draw up the solvent
Using a sterile syringe, measure the precise amount of bacteriostatic water or your chosen solvent.

Inject the solvent gently
Insert the needle into the vial at a 45-degree angle so the liquid runs down the inside wall, which reduces bubbling and foam.

Dissolve the peptide
Swirl the vial gently until the peptide powder is completely dissolved. Avoid shaking, as this can damage the peptide bonds.

Aliquot the solution
If smaller, single-use portions are needed, divide the solution into sterile microtubes using a new, sterile syringe or pipette for each.

If you have any questions regarding our research peptides for sale, please feel free to reach out below.

Read More on Storage Guidelines

If you have any questions regarding our research peptides for sale, please feel free to reach out below.
Evri UK Tracked 1-2 Business Days
This costs; £4.99 per order
European DHL Express Tracked 1-2 Days
This cost; £24.99 per order
Bioplex Peptides offers fast and reliable 1-2 days delivery across the UK with full tracking included. Note; Due to the nature of our products, we only dispatch samples between Monday-Thursday, orders after 12pm will be shipped the following day.
*We aim to dispatch and deliver orders within the stated timeframes, but delays can occur due to severe weather, transport issues, public holidays, or other unforeseen events. Once an order has been dispatched, extended delivery times are outside our control.
United States of America & Canada 1-2 Business Days
This cost; £24.99 per order
International Delivery 1-3 Business Days
This cost; £29.99 per order
Bioplex Peptides offers fast and reliable 1-3 days worldwide delivery with full tracking included using the worlds fastest and most reliable courier available with a discounted rate for all EU & International customers. Delays may occur due to natural causes such as severe weather conditions, transportation disruptions, public holidays, or other unforeseen events. All international samples ship Monday–Saturday, ensuring steady worldwide delivery scheduling.
Orders are typically processed within 24hrs after payment confirmation. Custom peptide synthesis orders and wholesale orders may require additional lead time depending on complexity and quantity. Clients will be notified of estimated delivery timelines upon order confirmation.
We utilize reliable courier services such DHL Express Premium 1-2 Business days for all International deliveries and Evri & Royal Mail tracked 1-2 days delivery for all United Kingdom deliveries to ensure timely and traceable delivery. Shipping options may vary depending on destination, order size, and regulatory requirements.
BioPleX Peptides is not responsible for delays caused by customs clearance, weather disruptions, or carrier-related issues.
Due to the specialised and perishable nature of our research peptide products, BioPlex Peptides does not offer general refunds or accept returns once an order has been shipped. All purchases are considered final unless they meet specific criteria outlined below.
We do not provide refunds for products that have been correctly fulfilled and delivered. However, if an item arrives damaged, compromised, or incorrect due to an error on our part, we will offer a replacement at no additional cost. Claims must be submitted within 48 hours of delivery, accompanied by photographic evidence and a description of the issue.
If your parcel has not arrived within the estimated delivery window, please contact our logistics team promptly. We will initiate an investigation with the carrier and provide updates throughout the process. If the parcel is confirmed lost, we will issue a replacement shipment or credit, depending on the circumstances.
Orders may be cancelled within 24 hours of placement, provided production has not yet begun. Custom peptide synthesis orders are non-cancellable once processing has started. To request a cancellation, please email us at enquiries@bioplexpeptides.co.uk with your order number and reason for cancellation.
In the rare event that you receive a damaged or incorrect item, please notify us within 48 hours of receipt. Include your order number, photos of the product and packaging, and a description of the issue. We will assess the claim and, if validated, arrange for a replacement to be shipped promptly.
Read More on Our Returns & Refunds Policy

If you have any questions regarding our research peptides for sale, please feel free to reach out below.