3-Amino-adamantane-1-carboxylic acid
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3-Amino-adamantane-1-carboxylic acid

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Category
Cyclic Amino Acids
Catalog number
BAT-014222
CAS number
6240-10-4
Molecular Formula
C11H17NO2
Molecular Weight
195.26
3-Amino-adamantane-1-carboxylic acid
IUPAC Name
3-aminoadamantane-1-carboxylic acid
InChI
InChI=1S/C11H17NO2/c12-11-4-7-1-8(5-11)3-10(2-7,6-11)9(13)14/h7-8H,1-6,12H2,(H,13,14)
InChI Key
ZBPOKYGSYKBAAW-UHFFFAOYSA-N
Canonical SMILES
C1C2CC3(CC1CC(C2)(C3)N)C(=O)O
1. Organocatalytic asymmetric synthesis of β(3)-amino acid derivatives
Sun Min Kim, Jung Woon Yang Org Biomol Chem. 2013 Aug 7;11(29):4737-49. doi: 10.1039/c3ob40917a. Epub 2013 Jun 7.
β(3)-Amino acid derivatives are an essential resource for pharmaceutical production, medicinal chemistry, and biochemistry. In this article, recent developments in versatile organocatalysis, i.e., Brønsted acid catalysis, Brønsted base catalysis, Lewis acid catalysis, Lewis base catalysis, and phase-transfer catalysis, for the asymmetric synthesis of β(3)-amino acid derivatives will be presented.
2. The Stephan Curve revisited
William H Bowen Odontology. 2013 Jan;101(1):2-8. doi: 10.1007/s10266-012-0092-z. Epub 2012 Dec 6.
The Stephan Curve has played a dominant role in caries research over the past several decades. What is so remarkable about the Stephan Curve is the plethora of interactions it illustrates and yet acid production remains the dominant focus. Using sophisticated technology, it is possible to measure pH changes in plaque; however, these observations may carry a false sense of accuracy. Recent observations have shown that there may be multiple pH values within the plaque matrix, thus emphasizing the importance of the milieu within which acid is formed. Although acid production is indeed the immediate proximate cause of tooth dissolution, the influence of alkali production within plaque has received relative scant attention. Excessive reliance on Stephan Curve leads to describing foods as "safe" if they do not lower the pH below the so-called "critical pH" at which point it is postulated enamel dissolves. Acid production is just one of many biological processes that occur within plaque when exposed to sugar. Exploration of methods to enhance alkali production could produce rich research dividends.
3. Acid-labile amino acid precursors in the Murchison meteorite. 1: Chromatographic fractionation
J R Cronin Orig Life. 1976 Dec;7(4):337-42. doi: 10.1007/BF00927928.
The amino acid content of a hot water extract of the Murchison meteorite can be increased by over 100 per cent by subjecting the extract to acid hydrolysis. The acid-labile compounds in the extract that account for this increase were fractionated by column chromatography on a cation exchange resin. Seventy mole per cent behaved as neutral or acidic compounds and were eluted from the column with an initial water wash. The remaining 30 mole per cent (basic precursors) were retained on the column and were eluted with the free amino acids by aqueous NH4OH. The acid-labile amino acid precursors in the water eluate could be retained and further fractionated on an anion exchange column, indicating that they are acidic compounds.
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