ISOLATION AND STUDY OF PHYSICAL-CHEMICAL PROPERTIES OF GALACTOMANNANS FROM PLANT MA-TERIALS

  • Luiza Bakhtiyarovna Azimova Institute of Bioorganic Chemistry, Uzbekistan Academy of Sciences Email: luiza8181@mail.ru
  • Nodaliy Sohbalalievich Normakhamatov Institute of Bioorganic Chemistry, Uzbekistan Academy of Sciences Email: nodirali@gmail.com
  • Saida Bokizhonovna Khaytmetova Institute of Bioorganic Chemistry, Uzbekistan Academy of Sciences Email: xsb75@mail.ru
  • Bakhtiyor Ikromovich Muhitdinov Institute of Bioorganic Chemistry, Uzbekistan Academy of Sciences Email: muhitdinov.bahtiyor@gmail.com
  • Dilnoza Mukhtorovna Amonova Institute of Bioorganic Chemistry, Uzbekistan Academy of Sciences Email: amonovadilnoza@gmail.com
  • Al'bina Vasil'yevna Filatova Institute of Bioorganic Chemistry, Uzbekistan Academy of Sciences Email: albfil@mail.ru
  • Gulnoza Abduvakhobovna Khalilova Institute of Bioorganic Chemistry, Uzbekistan Academy of Sciences Email: gulnoza_xalilova@mail.ru
  • Husniddin Hasanbaevich Kirgizbaev Institute of Bioorganic Chemistry, Uzbekistan Academy of Sciences Email: qirgizbaev89@mail.ru
  • Abbaskhan Sabirkhanovich Turaev Institute of Bioorganic Chemistry, Uzbekistan Academy of Sciences Email: abbaskhan@mail.ru
Keywords: polysaccharide, galactomannan, enzymatic hydrolysis, α-galactosidase, double-stranded galactomannan, galactose, mannose

Abstract

The aim of the study is isolation of galactomannan from plant materials and investigation of their physical and chemical properties. Polysaccharides generally consisting of galactomannan were isolated and purified from galactomannans from these eds the plants Sophora japonica and Gleditsia triacanthos by cold and hot extraction methods. Galactose and mannose contents of the galactomannans isolated were quantitatively characterized and physical and chemical properties of the polysaccharides were studied. In addition, polysaccharides isolated were enzymatic hydrolyzed and changes in the monosaccharide composition in the hydrolysis process were studied. The characteristic viscosities of the initial and hydrolyzed galactomannans were 4.85–3.80 dl/g, respectively. Molecular weights of the galactomannans, after treatment with the enzyme, changed in a range of 55600–26200 Da. Studies with 1H NMR and 13CNMR spectroscopy methods showed decreases in galactoside content of the hydrolyzed galactomannans, indicating the primary course of hydrolysis occurs by the side chain of the macromolecule. Increase in duration of enzymatic hydrolysis more than 24 hours led to the formation of poly-mannans with a minor content of galactose units. The obtained data can serve to improve isolation and preparation of galactomannan based materials for biomedical purposes.

Downloads

Download data is not yet available.

Metrics

Metrics Loading ...

Author Biographies

Luiza Bakhtiyarovna Azimova, Institute of Bioorganic Chemistry, Uzbekistan Academy of Sciences

младший научный сотрудник

Nodaliy Sohbalalievich Normakhamatov, Institute of Bioorganic Chemistry, Uzbekistan Academy of Sciences

доктор химических наук, старший научный сотрудник

Saida Bokizhonovna Khaytmetova, Institute of Bioorganic Chemistry, Uzbekistan Academy of Sciences

кандидат технических наук, старший научный сотрудник

Bakhtiyor Ikromovich Muhitdinov, Institute of Bioorganic Chemistry, Uzbekistan Academy of Sciences

младший научный сотрудник

Dilnoza Mukhtorovna Amonova, Institute of Bioorganic Chemistry, Uzbekistan Academy of Sciences

младший научный сотрудник

Al'bina Vasil'yevna Filatova, Institute of Bioorganic Chemistry, Uzbekistan Academy of Sciences

старший научный сотрудник, кандидат химических наук

Gulnoza Abduvakhobovna Khalilova, Institute of Bioorganic Chemistry, Uzbekistan Academy of Sciences

базовый докторант

Husniddin Hasanbaevich Kirgizbaev, Institute of Bioorganic Chemistry, Uzbekistan Academy of Sciences

младший научный сотрудник

Abbaskhan Sabirkhanovich Turaev, Institute of Bioorganic Chemistry, Uzbekistan Academy of Sciences

доктор химических наук, академик, главный научный сотрудник

References

Payne S., Miles D. Scott-Brown's Otorhinolaryngology: Head and Neck Surgery 7Ed: 3 volume set, 2008, p. 34.

Anulov O.V. III Mezhdunarodnyy simpozium «Novyye i netraditsionnyye rasteniya i perspektivy ikh ispol'zovaniya». [III International Symposium “New and nontraditional plants and prospects for their use”]. Pushchino, 1999, pp. 9–11. (in Russ.).

Metody khimii uglevodov [Methods of chemistry of carbohydrates], ed. H.K. Kochetkov. Moscow, 1967, 286 p. (in Russ.).

Lipkind G.M., Shashkov A.C., Kochetkov N.K. Bioorganichekaya khimiya, 1987, vol. 13, no. 6, pp. 833–841. (in Russ.).

Plennik R.Ya. Morfologicheskaya evolyutsiya bobovykh yugo-vostochnogo Altaya. [Morphological evolution of leg-umes of the south-eastern Altai]. Novosibirsk, 1976, 216 p. (in Russ.).

Lobanova I.Ye., Anulov O.V., Shcherbukhin V.D. Rastitel'nyy mir aziatskoy Rossii, 2008, pp. 83–90. (in Russ.).

Dancey J., Arbuck S. Progress in Anti-Cancer Chemotherapy, Springer, Paris, 2000, pр. 91–109.

Mueller C.M. et al. BMC complementary and alternative medicine, 2008, vol. 8, no. 1, p. 17, DOI: 10.1016/j.carbpol.2017.06.033.

Muhitdinov B., Heinze Th., Normakhamatov N., Turaev А. Carbohydrate Polymers, 2017, vol. 173, pp. 631–637.

Fukuda C., Kollmar O. Transpl. Int., 2002, vol. 15, pp. 17–23, DOI: 10.1007/s00147-001-0374-9.

Normakhamatov N.S., Turaev A.S., Ye Yang. Conference on «Actual Problems of Development of the Bioorganic Chemistry», Tashkent, 2013.

Namekata M., Sakamoto N., Yokoyama Y., Takagi M. Yakugaku Zasshi, 1967, vol. 87, pp. 778–780.

Anulov O.V., Plennik R.Ya. Sibirskiy ekologicheskiy zhurnal, 1999, vol. 6, no. 3, pp. 227–229. (in Russ.).

Mestechkina N.M., Anulov O.V., Smirnova N.I., Shcherbukhin V.D. Prikladnaya biokhimiya i mikrobiologiya, 1996, vol. 32, no. 6, pp. 656–659. (in Russ.).

Mestechkina N.M., Anulov O.V., Shcherbukhin V.D. Prikladnaya biokhimiya i mikrobiologiya, 1998, vol. 34, no. 5, pp. 549–552. (in Russ.).

Mestechkina N.M., Dovletmuradov K., Shcherbukhin V.D. Prikladnaya biokhimiya i mikrobiologiya, 1991, vol. 27, no. 3, pp. 435–441. (in Russ.).

Mestechkina N.M., Shcherbukhin V.D. Prikladnaya biokhimiya i mikrobiologiya, 1990, vol. 26, no. 6, pp. 799–803. (in Russ.).

Krishtanova N.A., Safonova M.Yu., Bolotova V.Ts. Vestnik VGU. Seriya khimiya. Biologiya. Farmatsiya, 2005, no. 1, pp. 212–221. (in Russ.).

Anulov O.V., Mestechkina N.M., Shcherbukhin V.D. Prikladnaya biokhimiya i mikrobiologiya, 1997, vol. 33, no. 6, p. 634.

Papkov S.P. Fiziko-khimicheskiye osnovy pererabotki rastvorov polimerov. [Physical and chemical bases of processing polymer solutions]. Moscow, 1971, 372 p. (in Russ.).

гидролизованные образцы галактоманнанов
Published
2019-01-23
How to Cite
1. Azimova L. B., Normakhamatov N. S., Khaytmetova S. B., Muhitdinov B. I., Amonova D. M., Filatova A. V., Khalilova G. A., Kirgizbaev H. H., Turaev A. S. ISOLATION AND STUDY OF PHYSICAL-CHEMICAL PROPERTIES OF GALACTOMANNANS FROM PLANT MA-TERIALS // chemistry of plant raw material, 2019. № 2. P. 35-41. URL: http://journal.asu.ru/cw/article/view/4491.
Section
Biopolymers of plants