Independent education resourceInformation here does not replace care from a qualified health professional.
Peptide Therapy GuideClear peptide education

Educational guide

SLU-PP-332 and Testosterone Interaction: Avoid | Peptide Database

Compound Profiles SLU-PP-332 Synthetic Pan-ERR Agonist | Exercise Mimetic & Metabolic Modulator Binds and activates ERRα/β/γ which regulate energy metabolism gene expression. Upregulates PGC-1α (mitochondrial biogenesis master regulator), activates AMPK pathwa

Written by Peptide Therapy Guide Editorial Team
For education only

This guide cannot diagnose a condition or recommend a personal treatment plan. Discuss medical questions with a qualified professional.

Compound Profiles

SLU-PP-332

Synthetic Pan-ERR Agonist | Exercise Mimetic & Metabolic Modulator

Binds and activates ERRα/β/γ which regulate energy metabolism gene expression. Upregulates PGC-1α (mitochondrial biogenesis master regulator), activates AMPK pathway, increases mitochondrial density to 1.

Testosterone

Anabolic-Androgenic Steroid | Primary Male Sex Hormone

Testosterone exerts its effects primarily through binding to the intracellular androgen receptor (AR), forming a hormone-receptor complex that translocates to the nucleus and modulates gene transcription. This drives protein synthesis in skeletal muscle (anabolic effect), stimulates erythropoietin production in the kidneys to increase red blood cell mass, promotes osteoblast activity and bone mineral density, and regulates libido and cognitive function.

Combined Organ Load

Shared Safety Flags

Frequently Asked Questions

Can I take SLU-PP-332 with Testosterone?

Combining SLU-PP-332 with Testosterone is not recommended. Both SLU-PP-332 and Testosterone carry hepatotoxic risk. Combining hepatotoxic compounds significantly increases liver damage potential. If unavoidable, include liver support (TUDCA/NAC) and monitor ALT/AST frequently.

Is SLU-PP-332 and Testosterone safe together?

This combination carries significant risk. Both SLU-PP-332 and Testosterone carry hepatotoxic risk. Combining hepatotoxic compounds significantly increases liver damage potential. If unavoidable, include liver support (TUDCA/NAC) and monitor ALT/AST frequently. Consult a healthcare professional before combining.

What are the interactions between SLU-PP-332 and Testosterone?

Both SLU-PP-332 and Testosterone carry hepatotoxic risk. Combining hepatotoxic compounds significantly increases liver damage potential. If unavoidable, include liver support (TUDCA/NAC) and monitor ALT/AST frequently. This assessment has 53% confidence and is inferred from pharmacological mechanism analysis.

How should I time SLU-PP-332 and Testosterone?

SLU-PP-332 has a half-life of Under investigation (no human PK data) and Testosterone has a half-life of ~8 days (cypionate). No specific timing requirements identified for this combination, but separating administration can help monitor individual effects.

This interaction analysis is compiled from research literature and pharmacological mechanism data. This assessment is inferred from known mechanisms and may not reflect all real-world outcomes. Always consult a healthcare professional before combining compounds.

Connected reading

Helpful context for this guide

Source-derived material selected through this article’s indexed topics.

comparison

What's the ideal 5/5 vs 10/3 ratio for Tesa/IPA and when to use each?

5/5 (equal parts) provides balanced GH stimulation suitable for general recovery. The 10/3 (higher tesamorelin) variant emphasizes visceral fat loss and metabolic effects. Choose 5/5 for at…

Source: peptide-db.com
comparison

Why is TB-500 dosed 2.5x higher in Tri-Heal Max versus standard Wolverine Stack?

Tri-Heal Max emphasizes TB-500's superior cell migration and angiogenesis properties (25mg vs standard 10mg) for more significant tissue damage. The 2.5:1 ratio targets acute injuries, majo…

Source: peptide-db.com
comparison

What's the addiction risk of phenibut vs benzodiazepines?

Phenibut carries similar addiction and withdrawal risk to benzodiazepines despite not being a benzo. Physical dependence can develop in as little as 1-2 weeks of daily use, and withdrawal i…

Source: peptide-db.com
Research context

Read sources and limitations before applying a claim.

Community Research

Join others researching Meldonium — share findings, ask questions, and learn from real experiences Meldonium (marketed as Mildronate) is a cardioprotective and anti-ischemic drug developed at the Latvian Institute of Organic Synthesis in the 1970s by Ivars Kalvins. It is approved and widely prescribed in Latvia, Lithuania, Russia, and several other post-Soviet states for the treatment of coronary artery disease, heart failure, and cerebrovascular conditions. Meldonium has never been approved by the FDA or EMA, and it remains unavailable through conventional pharmaceutical channels in the United States and most of Western Europe. The drug gained worldwide notoriety in March 2016 when tennis star Maria Sharapova announced she had tested positive for meldonium after the World Anti-Doping Agency (WADA) added it to the Prohibited List effective January 1, 2016. Her positive test was far from isolated -- WADA reported that meldonium was the most common substance detected in doping control samples in early 2016, with hundreds of athletes across multiple sports testing positive, predominantly from Eastern European and Central Asian countries. This widespread use reflected meldonium's longstanding popularity among athletes in those regions, where it was both legally available by prescription and culturally accepted as a general-purpose cardioprotective and performance-enhancing agent. In the performance enhancement community, meldonium has attracted particular interest among anabolic steroid users seeking cardiac protection during cycles, given the well-documented cardiotoxic effects of supraphysiological androgen use including left ventricular hypertrophy, impaired diastolic function, and accelerated atherosclerosis. Meldonium exerts its primary pharmacological effect by inhibiting gamma-butyrobetaine hydroxylase (BBOX), the enzyme responsible for the final step in the biosynthesis of L-carnitine from gamma-butyrobetaine (GBB). By competitively blocking this enzyme, meldonium reduces endogenous carnitine production, which in turn lowers intracellular carnitine concentrations over time. Since carnitine is essential for the transport of long-chain fatty acids across the inner mitochondrial membrane via the carnitine palmitoyltransferase (CPT) system, reduced carnitine levels impair fatty acid beta-oxidation. This forces cells -- particularly cardiomyocytes and skeletal muscle cells -- to shift their metabolic fuel preference from fatty acid oxidation toward glucose oxidation. This metabolic shift is the cornerstone of meldonium's cardioprotective mechanism. Under ischemic conditions (reduced blood flow), fatty acid oxidation becomes metabolically inefficient and even harmful: incomplete fatty acid oxidation generates toxic intermediates (long-chain acylcarnitines and acyl-CoA species) that damage cell membranes and impair mitochondrial function. Glucose oxidation, by contrast, requires less oxygen per molecule of ATP produced and does not generate these toxic intermediates. By forcing the heart to rely more on glucose, meldonium effectively optimizes energy production under oxygen-limited conditions and reduces the accumulation of cardiotoxic lipid metabolites. Additionally, the accumulation of GBB that results from BBOX inhibition has been shown to stimulate nitric oxide (NO) production via an ester-mediated mechanism, promoting vasodilation, improving endothelial function, and reducing peripheral vascular resistance. Meldonium also upregulates the expression of glucose transporter proteins (GLUT-1 and GLUT-4) and activates components of the Akt-dependent cardioprotective signaling pathway, further enhancing myocardial resistance to ischemic injury.

Source: peptide-db.com ↗

Can PE-22-28 work as a standalone antidepressant, or is it just for research?

PE-22-28 shows rapid antidepressant effects in animal models (within 4 days), but it's currently research-only with no human clinical trials completed. It's not approved for therapeutic use. However, the preclinical evidence is strong enough that clinical development may follow if pharmaceutical companies invest in it.

Source: peptide-db.com ↗
Practical and safety references

These excerpts are educational, not personalised medical instructions.

Dosage reference

Dosing Protocols

Direct brain access via olfactory nerves with rapid onset and proven efficacy. Cognitive enhancement 600mcg 1x daily Intranasal spray Mental fatigue resistance 800mcg Memory enhancement 2x daily Neuroprotection 1200mcg

Source: peptide-db.com ↗
Side effects

Common Side Effects

Decreased libido (reported in 3-5% of men; somewhat higher incidence than finasteride due to greater DHT suppression) Erectile dysfunction (reported in 3-5%; more frequently reported than with finasteride) Decreased ejaculate volume (reported in 1-2%) Gynecomastia or breast tenderness (reported in approximately 1-2%)

Source: peptide-db.com ↗
P

About the author

Peptide Therapy Guide Editorial Team

Editorial team for Peptide Therapy Guide.

View all articles →