Inhibitor of Ca2+ release from sarcoplasmic reticulum; muscle relaxant.
Features and Benefits
This compound is featured on the InsP3/Ryanodine Receptors page of the Handbook of Receptor Classification and Signal Transduction. To browse other handbook pages, click here.
This compound was developed by JHP Pharmaceuticals. To browse the list of other pharma-developed compounds and Approved Drugs/Drug Candidates, click here.
Frontiers in physiology, 12, 737291-737291 (2021-10-16)
Daily regulation of Ca2+ - and voltage-activated BK K+ channel activity is required for action potential rhythmicity in the suprachiasmatic nucleus (SCN) of the hypothalamus, the brain's circadian clock. In SCN neurons, BK activation is dependent upon multiple types of
Brain research bulletin, 46(3), 257-261 (1998-07-17)
Recent studies suggested that transmitters released from the sympathetic nerve terminals can modulate various inflammatory responses by occupation of receptors on immune cells. These neurotransmitters act via alteration of intracellular concentration of second messengers. For instance, intracellular calcium as a
Frontiers in pharmacology, 13, 882198-882198 (2022-05-07)
Diabetic cardiomyopathy (DCM) is a serious complication of diabetes that can lead to heart failure and death, for which there is no effective treatment. Rhynchophylline (Rhy) is the main effective component of the Chinese herbal medicine Uncaria rhynchophylla, which mainly
Proceedings of the National Academy of Sciences of the United States of America, 90(9), 3933-3937 (1993-05-01)
Severe bloodstream-borne infection--i.e., sepsis--and the resulting multiorgan failure are now the most common cause of death in many intensive care units. One of the most fundamentally important and controversial issues concerning the pathophysiology of sepsis is the role of intracellular
Status epilepticus (SE) is a clinical emergency that can lead to the development of temporal lobe epilepsy (TLE). The development and maintenance of spontaneous seizures in TLE are linked to calcium (Ca+2)-dependent processes such as neuronal cell loss and pathological
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