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Search results for beta root_notes_note in Note (approximate match)
Status:
US Approved Rx
(2017)
Source:
NDA209241
(2017)
Source URL:
First approved in 2017
Source:
NDA209241
Source URL:
Class (Stereo):
CHEMICAL (ABSOLUTE)
Conditions:
(+)-alpha-Dihydrotetrabenazine (HTBZ) is an active component of tetrabenazine. Tetrabenazine is a mixture of closely-related compounds (isomers) and is readily metabolized in the human body to HTBZ and related isomers. Tetrabenazine is a drug for the symptomatic treatment of hyperkinetic movement disorder and is marketed under the trade names Nitoman in Canada and Xenazine in New Zealand and some parts of Europe, and is also available in the USA as an orphan drug. (+)-alpha-Dihydrotetrabenazine
and related benzo[a]quinolizines have been labeled with tritium and carbon-11 radioisotopes and used for in vitro and in vivo studies of the VMAT2 in animal and human brain. Adeptio Pharmaceuticals is developing alpha-dihydrotetrabenazine (HTBZ) for the treatment of neurological disorders. It acts by inhibiting vesicular monoamine transporter 2 (VMAT2), thereby blocking the transport of dopamine into axon terminals or into storage vesicles.
Status:
US Approved Rx
(2006)
Source:
ANDA040750
(2006)
Source URL:
First approved in 1960
Source:
NDA012151
Source URL:
Class (Stereo):
CHEMICAL (ABSOLUTE)
Targets:
Conditions:
Spironolactone is a synthetic 17-lactone steroid which is a renal competitive aldosterone antagonist in a class of pharmaceuticals called potassium-sparing diuretics. On its own, spironolactone is only a weak diuretic, but it can be combined with other diuretics. Due to its anti-androgen effect, it can also be used to treat hirsutism, and is a common component in hormone therapy for male-to-female transgendered people. Spironolactone inhibits the effect of aldosterone by competing for intracellular aldosterone receptor in the distal tubule cells. This increases the secretion of water and sodium, while decreasing the excretion of potassium. Spironolactone has a fairly slow onset of action, taking several days to develop and similarly the effect diminishes slowly. Spironolactone is a specific pharmacologic antagonist of aldosterone, acting primarily through competitive binding of receptors at the aldosterone-dependent sodium-potassium exchange site in the distal convoluted renal tubule. Spironolactone causes increased amounts of sodium and water to be excreted, while potassium is retained. Spironolactone acts both as a diuretic and as an antihypertensive drug by this mechanism. It may be given alone or with other diuretic agents which act more proximally in the renal tubule. Aldosterone interacts with a cytoplasmic mineralocorticoid receptor to enhance the expression of the Na+, K+-ATPase and the Na+ channel involved in a Na+ K+ transport in the distal tubule . Spironolactone bind to this mineralcorticoid receptor, blocking the actions of aldosterone on gene expression. Aldosterone is a hormone; its primary function is to retain sodium and excrete potassium in the kidneys. Spironolactone is used primarily to treat low-renin hypertension, hypokalemia, and Conn's syndrome.
Status:
US Approved Rx
(2020)
Source:
NDA211281
(2020)
Source URL:
First approved in 1953
Source:
ANDA040621
Source URL:
Class (Stereo):
CHEMICAL (ABSOLUTE)
Conditions:
Lactitol is a sugar alcohol. This ingredient has been determined to be GRAS for specified uses as a direct food additive and foods containing lactitol are eligible for a health claim related to dental caries. Lactitol is used as an oral powder or solution in the management of hepatic encephalopathy and in case of short-term treatment of occasional constipation. Intestinal flora of large intestine is metabolize lactitol to low-molecular organic acid, which leads to an increase in osmotic pressure in intestine, increase in volume of fecal masses bowel function normalization. This drug might cause abdominal discomfort, especially flatulence and abdominal pain rarely or sometimes abdominal distension. These effects tend to diminish or disappear after a few days of regular intake of the drug. Since 'antacids and neomycin can neutralize ' acidifying effect of lactitol on stool, they should not be co-administered with lactitol in cirrhotic patients with hepatic encephalopathy; however both substances do not alter the 'laxative effect in patients with constipation.
Status:
US Approved Rx
(2021)
Source:
ANDA212296
(2021)
Source URL:
First approved in 1942
Source:
Doxychol by Breon
Source URL:
Class (Stereo):
CHEMICAL (ABSOLUTE)
Targets:
Conditions:
Deoxycholic acid is a a bile acid which emulsifies and solubilizes dietary fats in the intestine, and when injected subcutaneously, it disrupts cell membranes in adipocytes and destroys fat cells in that tissue. In April 2015, deoxycholic acid was approved by the FDA for the treatment submental fat to improve aesthetic appearance and reduce facial fullness or convexity. It is marketed under the brand name Kybella by Kythera Biopharma and is the first pharmacological agent available for submental fat reduction, allowing for a safer and less invasive alternative than surgical procedures. As a bile acid, deoxycholic acid emulsifies fat in the gut. Synthetically derived deoxycholic acid, when injected, stimulates a targeted breakdown of adipose cells by disrupting the cell membrane and causing adipocytolysis. This results in an inflammatory reaction and clearing of the adipose tissue remnants by macrophages. Deoxycholic acid's actions are reduced by albumin and tissue-associated proteins, therefore its effect is limited to protein-poor subcutaneous fat tissue. Protein-rich tissues like muscle and skin are unaffected by deoxycholic acid, contributing to its safety profile. Deoxycholic acid is a cytolytic agent. The physiologic effect of deoxycholic acid is by means of decreased cell membrane integrity. Deoxycholic acid inhibits miR-21 expression in primary rat hepatocytes in a dose-dependent manner, and increases miR-21 pro-apoptotic target programmed cell death 4 (PDCD4) and apoptosis. Deoxycholic acid decreases NF-κB activity, shown to represent an upstream mechanism leading to modulation of the miR-21/PDCD4 pathway.
Status:
Investigational
Source:
NCT01082471: Phase 3 Interventional Completed Postoperative Pain
(2005)
Source URL:
Class (Stereo):
CHEMICAL (ABSOLUTE)
Morphine-6-glucuronide is a pharmacologically active metabolite of morphine that is being developed by CeNeS Pharmaceuticals as an alternative to morphine for the management of postoperative pain. Compared to morphine, Morphine-6-glucuronide has been reported to have6 and 86 times lower affinity for the human mu and kappa opioid receptors, respectively, and similar affinity for the delta opioid receptor. Morphine-6-glucuronide is was studied in phase III clinical trials for postoperative pain management. Unfortunately, Morphine-6-glucuronide failed to demonstrate superior safety compared to Morphine and further development was discontinued. Morphine-6-glucuronide accumulates after administration of morphine to patients with renal insufficiency, and analgesia can be obtained with lower doses of morphine compared to patients with normal renal function. More importantly, the dose should be reduced to avoid serious side-effects, although the simulations in this review did not account for side-effects.
Status:
Investigational
Source:
NCT03298373: Phase 1 Interventional Unknown status Healthy Men
(2017)
Source URL:
Class (Stereo):
CHEMICAL (ABSOLUTE)
Status:
Investigational
Source:
NCT00357357: Phase 2 Interventional Completed Alzheimer's Disease
(2006)
Source URL:
Class (Stereo):
CHEMICAL (ABSOLUTE)
Status:
Investigational
Source:
NCT02648178: Not Applicable Interventional Completed Nicotine Dependence, Other Tobacco Product
(2016)
Source URL:
Class (Stereo):
CHEMICAL (ABSOLUTE)
Status:
Investigational
Source:
NCT03966833: Not Applicable Interventional Completed Mental Depression
(2019)
Source URL:
Class (Stereo):
CHEMICAL (ABSOLUTE)
Targets:
Conditions:
Isopropyl β-D-1-thiogalactopyranoside (IPTG) is a molecular biology reagent that induces β-galactosidase activity in many bacteria. This compound is a molecular mimic of allolactose, a lactose metabolite that triggers transcription of the lac operon, and it is therefore used to induce protein expression where the gene is under the control of the lac operator. Like allolactose, IPTG binds to the lac repressor and releases the tetrameric repressor from the lac operator in an allosteric manner, thereby allowing the transcription of genes in the lac operon, such as the gene coding for beta-galactosidase, a hydrolase enzyme that catalyzes the hydrolysis of β-galactosides into monosaccharides. But unlike allolactose, the sulfur atom creates a chemical bond which is non-hydrolyzable by the cell, preventing the cell from metabolizing or degrading the inducer.
Status:
Investigational
Source:
NCT02653729: Phase 2 Interventional Completed Psychosis
(2015)
Source URL:
Class (Stereo):
CHEMICAL (ACHIRAL)