QUALITATIVE CONTENT AND SOME PHYSICAL AND CHEMICAL PROPERTIES OF POLYSACCHARIDES FROM ONOPORDUM ACANTHIUM L. HERB

UDC 582.998.1:547.458.8:544.7

  • Ekaterina Robertovna Garsiya Pyatigorsk Medical-Pharmaceutical Institute (PMPI), Branch of Volgograd State Medical University, Ministry of Health of Russia http://orcid.org/0000-0003-3217-0680 Email: x-pharm@mail.ru
  • Liliya Petrovna Myikots Pyatigorsk Medical-Pharmaceutical Institute (PMPI), Branch of Volgograd State Medical University, Ministry of Health of Russia Email: 58041@mail.ru
  • Liliya Veniaminovna Ligay Pyatigorsk Medical-Pharmaceutical Institute (PMPI), Branch of Volgograd State Medical University, Ministry of Health of Russia Email: ligay_59@mail.ru
  • Arnol'd Alekseyevich Shamilov Pyatigorsk Medical-Pharmaceutical Institute (PMPI), Branch of Volgograd State Medical University, Ministry of Health of Russia http://orcid.org/0000-0002-6730-9518 Email: shamilovxii@yandex.ru
  • Dmitriy Alekseyevich Konovalov Pyatigorsk Medical-Pharmaceutical Institute (PMPI), Branch of Volgograd State Medical University, Ministry of Health of Russia http://orcid.org/0000-0002-0960-6127 Email: d.a.konovalov@pmedpharm.ru
Keywords: Onopordum acanthium, water-soluble polysaccharides, pectinic substances, qualitative content, physical and chemical properties

Abstract

Natural polymers are interesting as independent pharmaceutical substances also as complex drugs including herbal drugs. The aim of this work was determination of the main features of water-soluble polysaccharides (WSPS) and pectinic substances (PS) isolated from Onopordum acanthium L. herb for using as pharmaceutical substances. The following tasks were set to achieve this aim: determination of qualitative content of monosaccharides after previous acidic hydrolysis of fractions by paper chromatography, determination of molecular weight, isoelectric point, distribution coefficient, superficial activity these fractions by physical and chemical methods. It was found that WSPS consist of xylose and rhamnose, PS – galacturonic acid. WSPS have molecular weighs 783.96 g/mol, PS – 17351.37 g/mol. Molecules WSPS are neutralize in buffer solution with pH 5.2 and PS – pH 4.7. Also WSPS and PS have similar distribution activity with distribution coefficient 2.97 and 2.59, respectively. But WSPS and PS are superficially inactive substances. Determinate features including well distribution activity may be used for development complex herbal drugs containing herb of Onopordum acanthium L. Also sorption activity should be detected in the future.

Downloads

Download data is not yet available.

Metrics

Metrics Loading ...

Author Biographies

Ekaterina Robertovna Garsiya, Pyatigorsk Medical-Pharmaceutical Institute (PMPI), Branch of Volgograd State Medical University, Ministry of Health of Russia

преподаватель кафедры неорганической, физической и коллоидной химии

Liliya Petrovna Myikots, Pyatigorsk Medical-Pharmaceutical Institute (PMPI), Branch of Volgograd State Medical University, Ministry of Health of Russia

кандидат фармацевтических наук, доцент кафедры неорганической, физической и коллоидной химии

Liliya Veniaminovna Ligay, Pyatigorsk Medical-Pharmaceutical Institute (PMPI), Branch of Volgograd State Medical University, Ministry of Health of Russia

кандидат фармацевтических наук, доцент кафедры органической химии

Arnol'd Alekseyevich Shamilov, Pyatigorsk Medical-Pharmaceutical Institute (PMPI), Branch of Volgograd State Medical University, Ministry of Health of Russia

кандидат фармацевтических наук, доцент кафедры фармакогнозии, ботаники и технологии фитопрепаратов

Dmitriy Alekseyevich Konovalov, Pyatigorsk Medical-Pharmaceutical Institute (PMPI), Branch of Volgograd State Medical University, Ministry of Health of Russia

доктор фармацевтических наук, профессор, заведующий кафедрой фармакогнозии, ботаники и технологии фитопрепаратов

References

Kurkin V.A. Sovremennyye dostizheniya farmatsevticheskoy nauki i praktiki. [Modern achievements of pharmaceutical science and practice]. Vitebsk, 2019, pp. 88–91. (in Russ.).

Dzhonmurodov A.S., Teshayev Kh.I., Kholov Sh.O., Usmanova S.R., Mukhidinov Z.K., Chau Kh.K., Liu L.S. Dokla-dy Akademii nauk Respubliki Tadzhikistan, 2015, vol. 58, no. 3, pp. 241–247. (in Russ.).

Adzhiakhmetova S.L., Mykots L.P., Chervonnaya N.M., Kharchenko I.I., Tukhovskaya N.A., Oganesyan E.T. Farmatsiya i farmakologiya, 2017, vol. 5, no. 5, pp. 442–456. (in Russ.).

Selina I.I., Pelivanova S.L., Andreyeva O.A., Ligay L.V., Mykots L.P., Oganesyan E.T. Voprosy biologicheskoy, meditsinskoy i farmatsevticheskoy khimii, 2013, vol. 11, no. 10, pp. 20–25. (in Russ.).

Karpovich N.S., Donchenko L.V., Nelina V.V. Pektin. Proizvodstvo i primeneniye. [Pectin. Production and applica-tion]. Kiev, 1989, 88 p. (in Russ.).

Cavers P.B., Qaderi M.M., Threadgill P.F., Steel M.G. Can. J. Plant Sci., 2011, vol. 91, pp. 739–758.

Móricz Á.M., Krüzselyi D., Alberti Á., Darcsi A., Horváth G., Csontos P., Béni S., Ott P.G. J. Chromatogr. A, 2017, vol. 1524, pp. 266–272.

Bruno M., Maggio A., Rosselli S., Safder M., Bancheva S. Curr. Org. Chem., 2011, vol. 15, pp. 888–927.

Garsiya E.R., Konovalov D.A., Shamilov A.A., Glushko M.P., Orynbasarova K.K. Plants, 2019, vol. 8(2), 40 p.

Khalilova A.Z., Shakurova E.R., Nuriev I.F., Akhmetova V.R., Khalilov L.M., Dzhemilev U.M. Plant. Resour., 2007, vol. 43, pp. 97–102.

Sharifi N., Khajeh K., Mahernia S., Balalaie S., Ataie G., Jahanbani R., Amanlou M. Pharm. Sci., 2018, vol. 24, pp. 31–37.

Uryash V.F., Kokurina N.Y., Gruzdeva A.E., Larina V.N. Russian Journal of General Chemistry, 2017, vol. 87(13), pp. 3212–3219.

Garsiya Ye.R., Konovalov D.A. IV Gammermanovskiye chteniya. [IV Gammerman's readings]. Moscow, 2018, pp. 74–76. (in Russ.).

Shamilov A.A. Vestnik VGU. Seriya: Khimiya. Biologiya. Farmatsiya, 2018, no. 3, pp. 271–277. (in Russ.).

Ligay L.V., Rakhimov D.A., Bandyukova V.A. Khimiya prirodnykh soyedineniy, 1989, no. 2, pp. 280–281. (in Russ.).

Bubenchikova V.N., Nikitin Ye.A. Farmatsiya, 2016, vol. 65, no. 7, pp. 25–27. (in Russ.).

Chervonnaya N.M., Kharchenko I.I., Adzhiakhmetova S.L., Mykots L.P., Andreyeva O.A., Oganesyan E.T. Farmatsiya i farmakologiya, 2017, vol. 5, no. 3, pp. 267–282. (in Russ.).

Zhilina O.M., Mykots L.P., Stepanova N.N. Zhurnal nauchnykh statey Zdorov'ye i obrazovaniye v XXI veke, 2018, vol. 20, no. 12, pp. 204–209. (in Russ.).

Tsvetkov V.N., Eskin V.Ye., Frenkel' S.Ya. Struktura makromolekul v rastvorakh. [The structure of macromolecules in solutions]. Moscow, 1964, 720 p. (in Russ.).

Kabirova T.G., Adzhiakhmetova S.L., Mykots L.P., Oganesyan E.T. Farmatsiya i farmakologiya, 2015, vol. 3, no. 3, pp. 49–52. (in Russ.).

Adzhiakhmetova S.L., Pozdnyakov D.I., Chervonnaya N.M., Mykots L.P., Voronkov A.V., Oganesyan E.T. Farmatsiya i farmakologiya, 2018, vol. 6, no. 2, pp. 121–134. (in Russ.).

Abramzon A.A. Poverkhnostno-aktivnyye veshchestva: Svoystva i primeneniye. [Surfactants: Properties and Applica-tions]. Leningrad, 1981, 304 p. (in Russ.).

Published
2021-12-14
How to Cite
1. Garsiya E. R., Myikots L. P., Ligay L. V., Shamilov A. A., Konovalov D. A. QUALITATIVE CONTENT AND SOME PHYSICAL AND CHEMICAL PROPERTIES OF POLYSACCHARIDES FROM ONOPORDUM ACANTHIUM L. HERB // chemistry of plant raw material, 2021. № 4. P. 65-73. URL: http://journal.asu.ru/cw/article/view/9074.
Section
Biopolymers of plants