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3-O-Methyl-L-DOPA-d3 Methyl Ester is a stable isotope labeled analog of the neurotransmitter precursor, L-DOPA. It is commonly used in the field of neuroscience research to study the metabolism and signaling pathways involved in the synthesis and release of dopamine in the brain.
The chemical structure of 3-O-Methyl-L-DOPA-d3 Methyl Ester is similar to that of L-DOPA, with the addition of three deuterium atoms at specific positions in the molecule. These deuterium atoms are stable isotopes of hydrogen, which do not undergo radioactive decay. This allows researchers to track the movement and metabolism of the labeled compound in biological systems using advanced analytical techniques such as mass spectrometry.
The usage of 3-O-Methyl-L-DOPA-d3 Methyl Ester in neuroscience research has provided valuable insights into the mechanisms underlying Parkinson's disease, a neurological disorder that affects the production of dopamine in the brain. It has also been used to investigate the role of dopamine in addiction, reward, and cognitive function.
Overall, 3-O-Methyl-L-DOPA-d3 Methyl Ester is a powerful tool for studying the complex interactions between neurotransmitters and their receptors in the brain. Its unique chemical properties make it an essential component of many cutting-edge research projects in the field of neuroscience.
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