Raman and infrared spectroscopy of carbohydrates: A review

被引:708
作者
Wiercigroch, Ewelina [1 ]
Szafraniec, Ewelina [1 ]
Czamara, Krzysztof [1 ]
Pacia, Marta Z. [1 ]
Majzner, Katarzyna [1 ]
Kochan, Kamila [1 ]
Kaczor, Agnieszka [1 ]
Baranska, Malgorzata [1 ]
Malek, Kamilla [1 ]
机构
[1] Jagiellonian Univ, Fac Chem, Ingardena 3, PL-30060 Krakow, Poland
关键词
Carbohydrates; Sugars; Saccharides; FT-Raman; ATR FT-IR; Vibrational analysis; CRYSTAL-STRUCTURE; D-RIBOSE; VIBRATIONAL-SPECTRA; GLYCOSIDIC LINKAGES; MOLECULAR-STRUCTURE; COORDINATE ANALYSIS; NUCLEIC-ACIDS; D-FRUCTOSE; D-GLUCOSE; FT-RAMAN;
D O I
10.1016/j.saa.2017.05.045
中图分类号
O433 [光谱学];
学科分类号
0703 ; 070302 ;
摘要
Carbohydrates are widespread and naturally occurring compounds, and essential constituents for living organisms. They are quite often reported when biological systems are studied and their role is discussed. However surprisingly, up till now there is no database collecting vibrational spectra of carbohydrates and their assignment, as has been done already for other biomolecules. So, this paper serves as a comprehensive review, where for selected 14 carbohydrates in the solid state both FT-Raman and ATR FT-IR spectra were collected and assigned. Carbohydrates can be divided into four chemical groups and in the same way is organized this review. First, the smallest molecules are discussed, i.e. monosaccharides (D-(-)-ribose, 2-deoxy-D-ribose, L-(-)-arabinose, D-(+)-xylose, D-(+)-glucose, D-( +)-galactose and D-(-)-fructose) and disaccharides (D-( +)-sucrose, D-( +)maltose and D-(+)-lactose), and then more complex ones, i.e. trisaccharides (D-(+)-raffinose) and polysaccharides (amylopectin, amylose, glycogen). Both Raman and IR spectra were collected in the whole spectral range and discussed looking at the specific regions, i.e. region V (3600-3050 cm(-1)), IV (3050-2800 cm(-1)) and II (1200-800 cm(-1)) assigned to the stretching vibrations of the OH, CH/CH2 and C-O/C-C groups, respectively, and region III (1500-1200 cm(-1)) and I (800-100 cm(-1)) dominated by deformational modes of the CH/CH2 and CCO groups, respectively. In spite of the fact that vibrational spectra of saccharides are significantly less specific than spectra of other biomolecules (e.g. lipids or proteins), marker bands of the studied molecules can be identified and correlated with their structure. (C) 2017 Elsevier B.V. All rights reserved.
引用
收藏
页码:317 / 335
页数:19
相关论文
共 116 条
[1]   Effects of fish oil on hypertension, plasma lipids, and tumor necrosis factor-α in rats with sucrose-induced metabolic syndrome [J].
Aguilera, AA ;
Díaz, GH ;
Barcelata, ML ;
Guerrero, OA ;
Ros, RMO .
JOURNAL OF NUTRITIONAL BIOCHEMISTRY, 2004, 15 (06) :350-357
[2]  
[Anonymous], 1992, CURR TOP BIOPHYS, V16
[3]  
Barron L.D., 1996, Circular Dichroism and the Conformational Analysis of Biomolecules, P653
[4]   Infrared spectroscopy of proteins [J].
Barth, Andreas .
BIOCHIMICA ET BIOPHYSICA ACTA-BIOENERGETICS, 2007, 1767 (09) :1073-1101
[5]   XYLAN STRUCTURE, MICROBIAL XYLANASES, AND THEIR MODE OF ACTION [J].
BASTAWDE, KB .
WORLD JOURNAL OF MICROBIOLOGY & BIOTECHNOLOGY, 1992, 8 (04) :353-368
[6]   FT-Raman spectroscopic simultaneous determination of fructose and glucose in honey [J].
Batsoulis, AN ;
Siatis, NG ;
Kimbaris, AC ;
Alissandrakis, EK ;
Pappas, CS ;
Tarantilis, PA ;
Harizanis, PC ;
Polissiou, MG .
JOURNAL OF AGRICULTURAL AND FOOD CHEMISTRY, 2005, 53 (02) :207-210
[7]   A complete characterization of the vibrational spectra of sucrose [J].
Beatriz Brizuela, Alicia ;
Cecilia Bichara, Laura ;
Romano, Elida ;
Yurquina, Alisia ;
Locatelli, Silvano ;
Antonia Brandan, Silvia .
CARBOHYDRATE RESEARCH, 2012, 361 :212-218
[8]  
Berg J.M., 2012, GLYCOLYSIS GLUCOGENE, P453
[9]  
Berg J.M., 2012, LIGHT REACTIONS PHOT, P565
[10]   Feasibility of measuring blood glucose concentration by near-infrared Raman spectroscopy [J].
Berger, AJ ;
Itzkan, I ;
Feld, MS .
SPECTROCHIMICA ACTA PART A-MOLECULAR AND BIOMOLECULAR SPECTROSCOPY, 1997, 53 (02) :287-292