Buy Methylene Blue (Methylthioninium Chloride) for Laboratory Research
Methylene Blue (also known as Methylthioninium Chloride) is a synthetic phenothiazine compound widely studied in biochemical, cellular, and analytical research. Originally developed as a synthetic dye in the late 19th century, Methylene Blue has become a commonly investigated reference compound due to its unique redox properties and interactions with cellular signaling pathways.
Researchers studying mitochondrial biology, oxidative signaling, electron transfer mechanisms, and molecular interactions frequently utilize Methylene Blue in controlled laboratory environments. PureRawz supplies research-grade Methylene Blue with quality documentation and Certificate of Analysis (COA) verification for analytical and scientific applications.
Overview of Methylene Blue
Methylene Blue is a water-soluble synthetic dye belonging to the phenothiazine chemical class. The compound has been investigated extensively due to its ability to participate in reversible oxidation-reduction reactions, allowing researchers to examine electron transfer processes and cellular biochemical pathways.
In laboratory research models, Methylene Blue is commonly evaluated for its interaction with:
- Electron transport pathways
- Mitochondrial signaling systems
- Reactive oxygen species (ROS) regulation
- Cellular redox mechanisms
- Protein aggregation pathways
All research involving Methylene Blue should be conducted under appropriate laboratory conditions by qualified researchers.
Mechanism of Action
Electron Transport Chain Research
Methylene Blue is frequently investigated for its ability to participate in electron transfer reactions. In experimental models, it may function as an alternative electron carrier, allowing researchers to study mitochondrial electron transport processes and cellular energy pathways.
Mitochondrial Function Studies
Research models have examined Methylene Blue in relation to mitochondrial activity and oxidative metabolism. Scientists investigate how redox-active compounds influence mitochondrial signaling and cellular energy regulation.
Redox Cycling and Oxidative Stress Pathways
Because Methylene Blue can undergo reversible oxidation and reduction reactions, researchers study its relationship with reactive oxygen species (ROS), oxidative signaling, and cellular antioxidant pathways.
Neurochemical Signaling Research
Laboratory investigations have explored Methylene Blue interactions with neurochemical pathways, including studies involving monoamine metabolism and intracellular signaling mechanisms.
Protein Aggregation Research
Methylene Blue has been examined in experimental models investigating protein aggregation processes and molecular mechanisms associated with misfolded proteins.
These descriptions represent laboratory research findings only and should not be interpreted as medical, therapeutic, or clinical recommendations.
Chemical Properties of Methylene Blue
| Property | Information |
|---|---|
| Compound Name | Methylene Blue |
| Synonyms | Methylthioninium Chloride, Solvent Blue 8, Methylene Blue N |
| CAS Number | 61-73-4 |
| IUPAC Name | [7-(dimethylamino)phenothiazin-3-ylidene]-dimethylazanium chloride |
| Molecular Formula | C16H18ClN3S |
| Molecular Weight | 319.9 g/mol |
| Chemical Classification | Phenothiazine Dye |
| Storage | 2β30Β°C (36β86Β°F) |
Research Applications of Methylene Blue
Mitochondrial Biology Research
Researchers utilize Methylene Blue in experimental systems studying mitochondrial electron transport, cellular energy pathways, and biochemical regulation.
Oxidative Stress Research
Methylene Blue is investigated in laboratory models examining oxidative stress pathways, reactive oxygen species regulation, and cellular redox balance.
Neurochemical Pathway Studies
Experimental researchers study Methylene Blue to evaluate interactions with neurotransmitter-related signaling pathways and molecular communication systems.
Cellular Signaling Research
The compound is used in biochemical studies exploring intracellular signaling, enzyme activity, and molecular pathway regulation.
Why Choose PureRawz for Methylene Blue?
- High-quality research-grade Methylene Blue
- Batch-specific Certificate of Analysis (COA)
- Purity verification through analytical testing
- Secure laboratory-grade packaging
- Reliable sourcing for research applications
PureRawz provides Methylene Blue exclusively as a research compound intended for laboratory and analytical applications.
Frequently Asked Questions
What is Methylene Blue?
Methylene Blue is a synthetic phenothiazine compound studied in laboratory research involving redox chemistry, mitochondrial pathways, and cellular signaling mechanisms.
What is Methylene Blue used for in research?
Researchers study Methylene Blue in areas including electron transfer mechanisms, oxidative stress pathways, mitochondrial biology, and biochemical signaling.
How is Methylene Blue quality verified?
Research-grade Methylene Blue may be evaluated through analytical testing methods such as HPLC, with Certificate of Analysis documentation available for verification.
Is Methylene Blue intended for human use?
No. Methylene Blue supplied by PureRawz is intended strictly for laboratory research purposes and is not intended for human or veterinary use.
Research Disclaimer
This information is provided for educational and scientific reference purposes only and does not constitute medical advice.
Products supplied by PureRawz are intended strictly for laboratory and research use. Research must be conducted by qualified professionals following appropriate institutional guidelines, including IRB or IACUC oversight where applicable.
Verify all information independently before purchasing. By completing your order, you agree to the PureRawz Terms and Conditions.
If you are not 100% satisfied with your product, please contact:
support@purerawz.co
ATTENTION: All products are for LABORATORY AND RESEARCH PURPOSES ONLY, not for veterinary or human use.
Related Research Compounds
Researchers studying Methylene Blue may also explore related research compounds, including
Glutathione,
MOTS-c, and
Epicatechin, which are investigated in laboratory studies involving cellular signaling and metabolic pathways.
Additional research compounds include
9-Me-BC,
Bromantane, and
Noopept, studied in experimental biochemical and neuroscience research models.







Reviews
There are no reviews yet.