The Researcher’s Choice
for High-Purity MB.

Science-First Formulation

mitochondrial booster
mitochondrial booster
mitochondrial booster
mitochondrial booster

MitoLabs delivers a standardized 10mg/mL Methylthioninium Chloride solution, synthesized to USP-grade purity for high-stakes analytical research. Formulated for maximum molecular stability, the reagent is housed in a UV-protective amber glass vessel with a precision-calibrated pipette for accurate volumetric titration.

Core Research Applications
  • Histological Staining: Optimized for observing metachromasia and morphological identification in bacterial taxa such as Corynebacteria.

  • Redox & Mitochondrial Inquiry: A high-purity catalyst for investigating cellular electron transport and oxidative metabolism.

  • Aquatic Analysis: A standardized reagent for environmental monitoring and aquatic science protocols.

Engineered for professionals requiring contaminant-free chemistry and consistent experimental reproducibility.

OVERVIEW

USP-Grade Purity

Pharmaceutical-Grade Precision: Synthesized to exceed USP (United States Pharmacopeia) standards, ensuring the absolute molecular integrity required for sensitive laboratory and cellular research.

Ultra-Pure Molecular Standard: Engineered specifically for investigative protocols that demand zero compromise on purity and analytical accuracy.

Trusted by Researchers

The Researcher’s Catalyst of Choice: Trusted by global institutions for its consistent performance in complex redox and mitochondrial inquiry.

Validated by the Scientific Community: A preferred high-purity reagent for laboratories worldwide, recognized for its exceptional reliability and documented results.

Rigorous Quality Testing

Triple-Phase Analytical Verification: Every batch undergoes rigorous chromatography and third-party heavy metal screening to ensure a contaminant-free profile.

Full-Spectrum Transparency: Each solution is backed by a comprehensive Certificate of Analysis (CoA) and MSDS, guaranteeing traceability for every microliter.