Title of article
Synthesis, thermal properties, and cytotoxicity evaluation of hydrocarbon and fluorocarbon alkyl β-d-xylopyranoside surfactants Original Research Article
Author/Authors
Wenjin Xu، نويسنده , , Gifty Osei-Prempeh، نويسنده , , Carolina Lema، نويسنده , , E. Davis Oldham، نويسنده , , Renato J. Aguilera، نويسنده , , Sean Parkin، نويسنده , , Stephen E. Rankin، نويسنده , , Barbara L. Knutson، نويسنده , , Hans-Joachim Lehmler، نويسنده ,
Issue Information
دوهفته نامه با شماره پیاپی سال 2012
Pages
12
From page
12
To page
23
Abstract
Alkyl β-d-xylopyranosides are highly surface active, biodegradable surfactants that can be prepared from hemicelluloses and are of interest for use as pharmaceuticals, detergents, agrochemicals, and personal care products. To gain further insights into their structure–property and structure–activity relationships, the present study synthesized a series of hydrocarbon (–C6H13 to –C16H33) and fluorocarbon (–(CH2)2C6F13) alkyl β-d-xylopyranosides in four steps from d-xylose by acylation or benzoylation, bromination, Koenigs–Knorr reaction, and hydrolysis, with the benzoyl protecting group giving better yields compared to the acyl group in the Koenigs–Knorr reaction. All alkyl β-d-xylopyranosides formed thermotropic liquid crystals. The phase transition of the solid crystalline phase to a liquid crystalline phase increased linearly with the length of the hydrophobic tail. The clearing points were near constant for alkyl β-d-xylopyranosides with a hydrophobic tail ⩾8, but occurred at a significantly lower temperature for hexyl β-d-xylopyranoside. Short and long-chain alkyl β-d-xylopyranosides displayed no cytotoxicity at concentration below their aqueous solubility limit. Hydrocarbon and fluorocarbon alkyl β-d-xylopyranosides with intermediate chain length displayed some toxicity at millimolar concentrations due to apoptosis.
Keywords
Structure–activity relationship , Koenigs–Knorr reaction , Structure–property relationship , Next-generation surfactants , Renewable precursors , Xylose
Journal title
Carbohydrate Research
Serial Year
2012
Journal title
Carbohydrate Research
Record number
967458
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