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Status:
Possibly Marketed Outside US
Source:
NCT02418130: Phase 4 Interventional Completed Fatigue
(2014)
Source URL:
First approved in 1984
Source:
NDA019018
Source URL:
Class (Stereo):
CHEMICAL (ACHIRAL)
Taurine is a semi-essential amino acid and is not incorporated into proteins. Taurine is considered conditionally essential because it cannot be synthesized by infants younger than 4-6 weeks, and it may not be adequately synthesized in patients receiving long-term parenteral nutrition and patients with short-term hypermetabolic conditions. In mammalian tissues, taurine is ubiquitous and is the most abundant free amino acid in the heart, retina, skeletal muscle, brain, and leukocytes. Taurin occurs naturally in fish and meat. The mean daily intake from omnivore diets was determined to be around 58 mg. Taurine is a component of energy drinks, with many contain 1000 mg per serving. In medicine, taurine supplementation demonstrated efficacy in relieving symptoms of heart failure, hepatitis, hypertension and psychotic disorder. Taurine exerts many physiological functions, including membrane stabilization, osmoregulation and cytoprotective effects, antioxidant and anti-inflammatory actions as well as modulation of intracellular calcium concentration and ion channel function. In addition taurine may control muscle metabolism and gene expression, through yet unclear mechanisms. The cellular and biochemical mechanisms mediating the actions of taurine are not fully known.
Status:
Possibly Marketed Outside US
Source:
NCT02418130: Phase 4 Interventional Completed Fatigue
(2014)
Source URL:
First approved in 1984
Source:
NDA019018
Source URL:
Class (Stereo):
CHEMICAL (ACHIRAL)
Taurine is a semi-essential amino acid and is not incorporated into proteins. Taurine is considered conditionally essential because it cannot be synthesized by infants younger than 4-6 weeks, and it may not be adequately synthesized in patients receiving long-term parenteral nutrition and patients with short-term hypermetabolic conditions. In mammalian tissues, taurine is ubiquitous and is the most abundant free amino acid in the heart, retina, skeletal muscle, brain, and leukocytes. Taurin occurs naturally in fish and meat. The mean daily intake from omnivore diets was determined to be around 58 mg. Taurine is a component of energy drinks, with many contain 1000 mg per serving. In medicine, taurine supplementation demonstrated efficacy in relieving symptoms of heart failure, hepatitis, hypertension and psychotic disorder. Taurine exerts many physiological functions, including membrane stabilization, osmoregulation and cytoprotective effects, antioxidant and anti-inflammatory actions as well as modulation of intracellular calcium concentration and ion channel function. In addition taurine may control muscle metabolism and gene expression, through yet unclear mechanisms. The cellular and biochemical mechanisms mediating the actions of taurine are not fully known.
Status:
Possibly Marketed Outside US
Source:
NCT02418130: Phase 4 Interventional Completed Fatigue
(2014)
Source URL:
First approved in 1984
Source:
NDA019018
Source URL:
Class (Stereo):
CHEMICAL (ACHIRAL)
Taurine is a semi-essential amino acid and is not incorporated into proteins. Taurine is considered conditionally essential because it cannot be synthesized by infants younger than 4-6 weeks, and it may not be adequately synthesized in patients receiving long-term parenteral nutrition and patients with short-term hypermetabolic conditions. In mammalian tissues, taurine is ubiquitous and is the most abundant free amino acid in the heart, retina, skeletal muscle, brain, and leukocytes. Taurin occurs naturally in fish and meat. The mean daily intake from omnivore diets was determined to be around 58 mg. Taurine is a component of energy drinks, with many contain 1000 mg per serving. In medicine, taurine supplementation demonstrated efficacy in relieving symptoms of heart failure, hepatitis, hypertension and psychotic disorder. Taurine exerts many physiological functions, including membrane stabilization, osmoregulation and cytoprotective effects, antioxidant and anti-inflammatory actions as well as modulation of intracellular calcium concentration and ion channel function. In addition taurine may control muscle metabolism and gene expression, through yet unclear mechanisms. The cellular and biochemical mechanisms mediating the actions of taurine are not fully known.
Status:
Possibly Marketed Outside US
Source:
LEUKOTRAP WB SYSTEM by Kossel, A.
Source URL:
First approved in 1980
Source:
BN800077
Source URL:
Class (Stereo):
CHEMICAL (ACHIRAL)
Conditions:
Adenine is a nucleobase (a purine derivative). Its derivatives have a variety of roles in biochemistry including cellular respiration, in the form of both the energy-rich adenosine triphosphate (ATP) and the cofactors nicotinamide adenine dinucleotide (NAD) and flavin adenine dinucleotide (FAD). It also has functions in protein synthesis and as a chemical component of DNA and RNA. The shape of adenine is complementary to either thymine in DNA or uracil in RNA
Status:
Possibly Marketed Outside US
Source:
LEUKOTRAP WB SYSTEM by Kossel, A.
Source URL:
First approved in 1980
Source:
BN800077
Source URL:
Class (Stereo):
CHEMICAL (ACHIRAL)
Conditions:
Adenine is a nucleobase (a purine derivative). Its derivatives have a variety of roles in biochemistry including cellular respiration, in the form of both the energy-rich adenosine triphosphate (ATP) and the cofactors nicotinamide adenine dinucleotide (NAD) and flavin adenine dinucleotide (FAD). It also has functions in protein synthesis and as a chemical component of DNA and RNA. The shape of adenine is complementary to either thymine in DNA or uracil in RNA
Status:
Possibly Marketed Outside US
Source:
LEUKOTRAP WB SYSTEM by Kossel, A.
Source URL:
First approved in 1980
Source:
BN800077
Source URL:
Class (Stereo):
CHEMICAL (ACHIRAL)
Conditions:
Adenine is a nucleobase (a purine derivative). Its derivatives have a variety of roles in biochemistry including cellular respiration, in the form of both the energy-rich adenosine triphosphate (ATP) and the cofactors nicotinamide adenine dinucleotide (NAD) and flavin adenine dinucleotide (FAD). It also has functions in protein synthesis and as a chemical component of DNA and RNA. The shape of adenine is complementary to either thymine in DNA or uracil in RNA
Status:
Possibly Marketed Outside US
Source:
LEUKOTRAP WB SYSTEM by Kossel, A.
Source URL:
First approved in 1980
Source:
BN800077
Source URL:
Class (Stereo):
CHEMICAL (ACHIRAL)
Conditions:
Adenine is a nucleobase (a purine derivative). Its derivatives have a variety of roles in biochemistry including cellular respiration, in the form of both the energy-rich adenosine triphosphate (ATP) and the cofactors nicotinamide adenine dinucleotide (NAD) and flavin adenine dinucleotide (FAD). It also has functions in protein synthesis and as a chemical component of DNA and RNA. The shape of adenine is complementary to either thymine in DNA or uracil in RNA
Status:
Possibly Marketed Outside US
Source:
NCT02104596: Phase 4 Interventional Unknown status Knee Osteoarthritis
(2014)
Source URL:
First approved in 1978
Source:
60-Second Fluoride Pina Colada by Patterson Dental Supply Inc
Source URL:
Class (Stereo):
CHEMICAL (ACHIRAL)
Targets:
Xylitol is a naturally occurring alcohol found in most plant material, including many fruits and vegetables. Xylitol is widely used as a sugar substitute and in "sugar-free" chewing gums, mints, and other candies. As a medicine, xylitol is used to prevent middle ear infections (otitis media) in young children, and as a sugar substitute for people with diabetes. Xylitol is added to some chewing gums and other oral care products to prevent tooth decay and dry mouth.
Status:
Possibly Marketed Outside US
Source:
OHUI Wrinkle Science wrinkle repair eye by LG Household and Healthcare, Inc.
(2010)
Source URL:
First approved in 1968
Source:
NDA204017
Source URL:
Class (Stereo):
CHEMICAL (ACHIRAL)
Conditions:
Capric acid (decanoic acid) is a medium-chain fatty acid found in saturated fats (cow butter, and plant oils like coconut oil). Capric acid is a major constituent of the MCT ketogenic diet, providing about 40% of the medium chain fat within the diet. The acid is discussed to have positive effect on seizure control through direct AMPA receptor inhibition and on mitochondrial diseases through the binding to PPARgamma. It readily crosses the blood-brain barrier, probably by a combination of diffusion and saturable carrier-mediated transport via a medium-chain fatty acid transporter.
Status:
Possibly Marketed Outside US
Source:
NCT04704518: Phase 4 Interventional Completed Photorefractive Keratectomy
(2022)
Source URL:
First approved in 1958
Source:
NDA210274
Source URL:
Class (Stereo):
CHEMICAL (ABSOLUTE)
Conditions:
Trehalose, a naturally occurring disaccharide of glucose that appears to function in an anhydrobiotic capacity in many organisms. Bioblast Pharma study trehalose in Phase 2 for treating patients with Oculopharyngeal Muscular Dystrophy (OPMD) and spinocerebellar ataxia, type 3. In OPMD trehalose prevents the aggregation of the pathological protein (PABPN1) in muscle cells, the hallmark of the disease, by stabilizing the protein, reducing the formation of protein aggregations, and promoting their clearance from cells through autophagy, thus preventing muscle cell death. Trehalose induces autophagy via mTOR independent pathway. It activates TFEB, a master controller of lysosomal biogenesis and autophagy, by inhibiting AKT which is a negative regulator of TFEB that acts by direct phosphorylation (and inhibition) of TFEB. In addition, trehalose protects cells from hypoxic and anoxic injury and suppresses protein aggregation. In vivo studies with trehalose show cellular and behavioral beneficial effects in animal models of neurodegenerative diseases. Trehalose was in phase III clinical trial to study if it was possible to use the drug as add-on therapy in Bipolar Depression. Also in combination with hyaluronate, it can be used to treat dry eye syndrome. Trehalose protects the epithelial cells on the ocular surface, improving their resistance to the daily stresses of dry environments and tear film changes in a dry eye.