Coil-helix transition of ι-carrageenan as a function of chain regularity

被引:93
作者
van de Velde, F
Rollema, HS
Grinberg, NV
Burova, TV
Grinberg, VY
Tromp, RH
机构
[1] NIZO Food Res, Prod Technol Dept, NL-6710 BA Ede, Netherlands
[2] Wageningen Ctr Food Sci, NL-6700 AN Wageningen, Netherlands
[3] TNO, Nutr & Food Res Inst, Carbohydrate Technol Dept, NL-6700 AJ Zeist, Netherlands
关键词
carrageenan; polysaccharides; coil-to-helix transition; optical rotation; differential scanning calorimetry; rheometry; NMR; structure analysis;
D O I
10.1002/bip.10250
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
A series of iota-carrageenans containing different amounts of nu-carrageenan (0-23 monomer %) have been prepared from neutrally extracted carrageenan of Eucheuma denticulatum. nu-Carrageenan is the biochemical precursor of iota-carrageenan. The conformational order-disorder transition and rheological properties of these carrageenans were studied using optical rotation, rheometry, size exclusion chromatography coupled to multiangle laser light scattering, and high-sensitivity differential scanning calorimetry. The helix forming capacity of iota-carrageenan turns out to decrease monotonously with increasing amount of nu-units. In contrast, the rheological properties Of iota-carrageenan are remarkably enhanced by the presence of a small amount of v-units, yielding a maximum twofold increase in G' at 3% nu-units. It is concluded that the structure-forming capacity Of iota-carrageenan, containing a small amount of nu-carrageenan, is significantly higher than that of pure iota-carrageenan. This phenomenon is explained in terms of the balance between the helical content and the number of cross-links between chains, taking into consideration the fact that nu-units introduce "kinks" in the chain conformation enabling neighboring chains to connect. Increasing amounts of nu-units increase the number of cross-links in the network, resulting in increased gel strength. On the other hand, a reduced length of the helical strands weakens the cross-links between the different chains and, consequently, the gel. (C) 2002 Wiley Periodicals, Inc.
引用
收藏
页码:299 / 312
页数:14
相关论文
共 31 条
[1]   THERMODYNAMICS OF HELIX-COIL EQUILIBRIUM IN OLIGOADENYLIC ACID FROM HYPOCHROMICITY STUDIES [J].
APPLEQUIST, J ;
DAMLE, V .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 1965, 87 (07) :1450-+
[2]  
APPLEQUIST J, 1967, CONFORM BIOPOLYM, P403
[3]   ALKALI-MODIFICATION OF CARRAGEENANS - MECHANISM AND KINETICS IN THE KAPPA-IOTA-SERIES, MU-NU-SERIES AND LAMBDA-SERIES [J].
CIANCIA, M ;
NOSEDA, MD ;
MATULEWICZ, MC ;
CEREZO, AS .
CARBOHYDRATE POLYMERS, 1993, 20 (02) :95-98
[4]  
CLARK AH, 1987, ADV POLYM SCI, V83, P57
[5]   RATIONALIZATION OF THE ELASTIC-MODULUS MOLECULAR-WEIGHT RELATIONSHIP FOR KAPPA-CARRAGEENAN GELS USING CASCADE THEORY [J].
CLARK, AH .
CARBOHYDRATE POLYMERS, 1994, 23 (04) :247-251
[6]  
de Ruiter G. A., 2000, World patent application, Patent No. [WO0068395, 0068395]
[7]  
Denef B, 1998, BIOPOLYMERS, V45, P105, DOI 10.1002/(SICI)1097-0282(199802)45:2<105::AID-BIP2>3.3.CO
[8]  
2-U
[9]  
Hansen J.H., 2000, U.S. Patent, Patent No. 6063915
[10]  
Imeson A. P., 2000, Handbook of hydrocolloids, P87