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Dopamine receptors are a class of G protein-coupled receptors that are prominent in the vertebrate central nervous system (CNS) and are implicated in many neurological processes, including motivational and incentive salience, cognition, memory, learning, and fine motor control, as well as modulation of neuroendocrine signaling.
Peripherally selective DDCIs incapable of crossing the protective blood–brain barrier (BBB) are used in augmentation of L-DOPA (levodopa) in the treatment of Parkinson's disease (PD) to block the conversion of L-DOPA into dopamine outside the brain, for the purpose of reducing adverse side effects. [3]
l-DOPA can be manufactured and in its pure form is sold as a drug with the INN Tooltip International Nonproprietary Name levodopa. Trade names include Sinemet, Pharmacopa, Atamet, and Stalevo. As a drug, it is used in the clinical treatment of Parkinson's disease and dopamine-responsive dystonia. l-DOPA has a counterpart with opposite chirality ...
DopAmide, or L-DopAmide, is a synthetic levodopa (L-DOPA) analogue that can serve as a levodopa and dopamine prodrug and is of potential interest in the treatment of Parkinson's disease. [ 1 ] [ 2 ] [ 3 ] DopAmide has an amide rather than the carboxyl group of L -DOPA, [ 2 ] [ 3 ] which imparts greater water solubility .
Levodopa crosses the protective blood–brain barrier, whereas dopamine itself cannot. [3] [4] Thus, levodopa is used to increase dopamine concentrations in the treatment of Parkinson's disease, Parkinsonism, dopamine-responsive dystonia and Parkinson-plus syndrome. The therapeutic efficacy is different for different kinds of symptoms.
Levodopa (L-DOPA), a prodrug of dopamine which is used to treat Parkinson's disease and certain other conditions. A neurotransmitter prodrug, or neurotransmitter precursor, is a drug that acts as a prodrug of a neurotransmitter. A variety of neurotransmitter prodrugs have been developed and used in medicine.
Although it is important to know that there is a correlation between the two drugs, if l-DOPA doesn't work dopamine agonists are also ineffective. [1] The early dopamine agonists, such as bromocriptine, were ergot derived and activated the D 2-receptor. [7] They induced major side effects such as fibrosis of cardiac valves.
Other medications that convert into dopamine, as opposed to functioning as dopamine analogs, alleviate the effects of the degeneration of dopamine-producing neurons. One dopamine precursor, Levodopa, was the first drug approved specifically for Parkinson's disease. [2] DRT increases dopamine in the brain to optimal levels in order to return ...