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1-Aminopentane is an organic compound with the formula CH 3 (CH 2) 4 NH 2. It is used as a solvent , as a raw material in the manufacture of a variety of other compounds, including dyes, emulsifiers , and pharmaceutical products, [ 1 ] and as a flavoring agent .
It is used to treat type 1 diabetes, type 2 diabetes, gestational diabetes, and complications such as diabetic ketoacidosis and hyperosmolar hyperglycemic states. [4] It is also used with glucose to treat high blood potassium levels. [69] Typically administered by injection under the skin, it can also be injected into a vein or muscle. [68]
The Amadori rearrangement is an organic reaction describing the acid or base catalyzed isomerization or rearrangement reaction of the N-glycoside of an aldose or the glycosylamine to the corresponding 1-amino-1-deoxy-ketose. [1] The reaction is important in carbohydrate chemistry, specifically the glycation of hemoglobin (as measured by the ...
The glucose diffuses in the beta-cell facilitated by a GLUT-2 vesicle. Inside the beta cell, the following process occurs: Glucose gets converted to glucose-6-phosphate (G6P) through glucokinase, and G6P is subsequently oxidized to form ATP. This process inhibits the ATP-sensitive potassium ion channels of the cell causing the potassium ion ...
Aminopentane may refer to: 1-Aminopentane; 2-Aminopentane; 3-Aminopentane This page was last edited on 4 August 2019, at 16:05 (UTC). Text is available under the ...
α-Propylphenethylamine (APPEA or α-Pr-PEA), also known as 1-phenyl-2-aminopentane, is a stimulant drug of the phenethylamine and amphetamine families. [1] [2] It is the analogue of the β-phenethylamine (PEA) derivatives amphetamine (α-methylphenethylamine; "AMPEA") and phenylisobutylamine (α-ethylphenethylamine; AEPEA) in which the α-alkyl chain has been further lengthened to be a propyl ...
The medical examiner who ruled the 2011 death of a Philadelphia teacher found with 20 stab wounds a homicide — then later a suicide — now says he believes the case should be ruled as ...
While the pentose phosphate pathway does involve oxidation of glucose, its primary role is anabolic rather than catabolic. The pathway is especially important in red blood cells (erythrocytes). The reactions of the pathway were elucidated in the early 1950s by Bernard Horecker and co-workers. [2] [3] There are two distinct phases in the pathway.