Structural and thermal characterization of galactomannans from non-conventional sources

被引:207
|
作者
Cerqueira, Miguel A. [1 ]
Souza, Bartolomeu W. S. [1 ]
Simoes, Joana [2 ]
Teixeira, Jose A. [1 ]
Domingues, M. Rosario M. [2 ]
Coimbra, Manuel A. [2 ]
Vicente, Antonio A. [1 ]
机构
[1] Univ Minho, Ctr Biol Engn, IBB, P-4710057 Braga, Portugal
[2] Univ Aveiro, Dept Quim, QOPNA, P-3810193 Aveiro, Portugal
关键词
Galactomannan; Methylation; Electrospray Mass Spectrometry; TGA; DSC; FTIR; GLEDITSIA-TRIACANTHOS; GUAR GUM; SEED; WATER; POLYSACCHARIDES; PURIFICATION; SPECTROSCOPY; DERIVATIVES; ENDOSPERM; DELIVERY;
D O I
10.1016/j.carbpol.2010.07.036
中图分类号
O69 [应用化学];
学科分类号
081704 ;
摘要
Galactomannans of Gleditsia triacanthos, Caesalpinia pulcherrima and Adenanthera pavonina were structurally and thermally characterized. Methylation analyses confirmed that these three galactomannans are composed by a 4-linked mannose polymer with galactose side chains attached at the C6 position. G. triacanthos galactomannan had an estimated average degree of polymerization of 224 rnannose residues, with a degree of branching of 0.24, C. pulcherrima galactomannan had a degree of polymerization of 252 and a degree of branching of 0.30, and A. pavonina galactomannan had a degree of polymerization of 475 and a degree of branching of 0.60. Enzymatic hydrolysis with endo-beta-mannanase and the subsequent analyses of the low molecular weight fraction by ESI-MS/MS indicated the presence of characteristic structural features of galactomannans. Furthermore, acetyl and pentosyl residues were detected in the galactomannan of G. triacanthos and analyses of higher molecular weight fractions from G. triacanthos were performed, confirming that presence. Differential scanning calorimetry (DSC) :showed the presence of two peaks related with water loss, confirmed by thermogravimetric analysis (TGA). The different compositions of galactomannans with different mannose content and different molecular weights influence their thermal behaviour. A higher content of mannose lead to higher values of the enthalpy change (first thermal transition) and glass transition temperature (T-g), while the enthalpy change of the second thermal transition was influenced by the viscosity average molecular weight (M-v) of the samples. This work provides understanding of structural and thermal properties of three galactomannans from non-conventional sources, thus contributing to a better insight on their possible food, pharmaceutical or biomedical applications. (C) 2010 Elsevier Ltd. All rights reserved.
引用
收藏
页码:179 / 185
页数:7
相关论文
共 50 条
  • [1] Physicochemical and microstructural characterization of films prepared by thermal and cold gelatinization from non-conventional sources of starches
    Romero-Bastida, CA
    Bello-Pérez, LA
    García, MA
    Martino, MN
    Solorza-Feria, J
    Zaritzky, NE
    [J]. CARBOHYDRATE POLYMERS, 2005, 60 (02) : 235 - 244
  • [2] Rheological characterization of κ-carrageenan/galactomannan and xanthan/galactomannan gels Comparison of galactomannans from non-traditional sources with conventional galactomannans
    Pinheiro, A. C.
    Bourbon, A. I.
    Rocha, C.
    Ribeiro, C.
    Maia, J. M.
    Goncalves, M. P.
    Teixeira, J. A.
    Vicente, A. A.
    [J]. CARBOHYDRATE POLYMERS, 2011, 83 (02) : 392 - 399
  • [3] Non-conventional starch sources
    Tagliapietra, Bruna Lago
    Ferrari Felisberto, Maria Herminia
    Sanches, Edgar Aparecido
    Campelo, Pedro Henrique
    Pedrosa Silva Clerici, Maria Teresa
    [J]. CURRENT OPINION IN FOOD SCIENCE, 2021, 39 : 93 - 102
  • [4] A Process for the Production of Biodiesel from Non-Conventional Sources
    Bondioli, Paolo
    Della Bella, Laura
    Ravasio, Nicoletta
    Zaccheria, Federica
    [J]. CATALYSIS OF ORGANIC REACTIONS, 2009, 123 : 271 - +
  • [5] ELECTRICITY AND SOME NON-CONVENTIONAL SOURCES
    LAFFIN, JJ
    [J]. CIM BULLETIN, 1979, 72 (809): : 34 - &
  • [6] CONVENTIONAL, NON-CONVENTIONAL AND ALTERNATIVE ENERGY-SOURCES
    KATONA, T
    [J]. ENERGIA ES ATOMTECHNIKA, 1984, 37 (11-1): : 530 - 534
  • [7] PROTEINS FROM NON-CONVENTIONAL SOURCES FOR DIRECT HUMAN CONSUMPTION
    CHUGHTAI, MI
    [J]. CHIMIE AND INDUSTRIE GENIE CHIMIQUE, 1972, 105 (15): : C22 - &
  • [8] Functionality and Applications of Non-Conventional Starches from Different Sources
    Bangar, Sneh Punia
    Dhull, Sanju Bala
    Manzoor, Mehnaza
    Chandak, Ankita
    Esua, Okon Johnson
    [J]. STARCH-STARKE, 2024, 76 (1-2):
  • [9] Functionality and Applications of Non-Conventional Starches from Different Sources
    Bangar, Sneh Punia
    Dhull, Sanju Bala
    Manzoor, Mehnaza
    Chandak, Ankita
    Esua, Okon Johnson
    [J]. STARCH-STARKE, 2023,
  • [10] Extraction, purification and characterization of galactomannans from non-traditional sources
    Cerqueira, Miguel A.
    Pinheiro, Ana C.
    Souza, Bartolomeu W. S.
    Lima, Alvaro M. P.
    Ribeiro, Clara
    Miranda, Candida
    Teixeira, Jose A.
    Moreira, Renato A.
    Coimbra, Manuel A.
    Goncalves, M. Pilar
    Vicente, Antonio A.
    [J]. CARBOHYDRATE POLYMERS, 2009, 75 (03) : 408 - 414