L-m-Tyrosine: Unlocking Potential in Neurodegenerative Disease Research and Beyond
Explore the research applications of this unnatural amino acid in critical areas of neurological health.
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m-Tyrosine
L-m-Tyrosine, also known as (S)-2-Amino-3-(3-hydroxyphenyl)propanoic acid or Phenylalanine, 3-hydroxy-, is a crucial unnatural amino acid. Its research applications are significant, particularly in exploring potential treatments for Parkinson's disease and Alzheimer's disease, as well as investigating inflammatory conditions like arthritis. With a confirmed purity of 98.56%, it meets stringent factory standards for research use.
- Leverage m-Tyrosine for Parkinson's disease research, investigating its role in neurological pathways and potential therapeutic interventions.
- Utilize L-m-Tyrosine in Alzheimer's disease research to understand its impact on neurodegenerative processes.
- Explore the applications of m-Tyrosine in arthritis research, contributing to the study of inflammatory conditions.
- Benefit from the high purity of m-Tyrosine, ensuring reliable and accurate results in your scientific investigations.
Key Advantages
Research Versatility
L-m-Tyrosine's unique structure as an unnatural amino acid makes it a valuable tool for researchers studying complex biological mechanisms, particularly in neurodegenerative diseases.
High Purity and Quality
With an assay result of 98.56%, m-Tyrosine ensures consistency and reliability for critical research applications, supporting accurate scientific discovery.
Potential Therapeutic Insights
Investigating L-m-Tyrosine could unlock new insights into managing debilitating conditions, advancing the development of future treatments for neurological and inflammatory disorders.
Key Applications
Neuroscience Research
Essential for studying the brain's complex pathways, L-m-Tyrosine aids in understanding neurological disorders and developing potential therapeutic strategies.
Pharmaceutical Development
As a key intermediate or research compound, m-Tyrosine supports the pipeline for new drug discovery, particularly in neurological and inflammatory disease areas.
Biomedical Research
Its role in studying cellular mechanisms and disease pathology makes L-m-Tyrosine valuable across various biomedical research fields.
Academic and Industrial Labs
Providing researchers with high-quality, well-characterized biochemicals like m-Tyrosine is crucial for advancing scientific knowledge and innovation.
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