STUDY OF THE SORPTION ABILITY OF NATURAL SORBENTS ISOLATED FROM THE CAMPSIS RADICANS

UDC 615.322:[547.458-183:544.723].06:543.245

  • Madina Anatol'yevna Bzhikhatlova Pyatigorsk Medical and Pharmaceutical Institute – branch of the Volgograd State Medical University Email: madina_bzhikhatlova@mail.ru
  • Lidiya Petrovna Mykots Pyatigorsk Medical and Pharmaceutical Institute – branch of the Volgograd State Medical University Email: 58041@mail.ru
  • Nina Aleksandrovna Tukhovskaya Pyatigorsk Medical and Pharmaceutical Institute – branch of the Volgograd State Medical University Email: ninatuk@mail.ru
  • Ol'ga Andreyevna Andreyeva Pyatigorsk Medical and Pharmaceutical Institute – branch of the Volgograd State Medical University Email: oa-51934@yandex.ru
Keywords: campsis radicans, pectin substances, water-soluble polysaccharides, sorption, lead ions, complexing ability

Abstract

Currently, more and more chemical additives are used in food products, which leads to the accumulation of harmful substances in the body. Therefore, it is relevant to search for new substances of natural origin with detoxification properties. The aim of the work was to determine the sorption ability of pectin substances and water-soluble polysaccharides isolated from the leaves and flowers of the campsis radicans. By the method of N.K. Kochetkova and M. Sinner isolated polysaccharides from water-borne campsis leaves and flowers: water-soluble polysaccharides, pectin, hemicellulose A and hemicellulose B. The adsorption capacity of pectins and water-soluble polysaccharides was studied on the basis of their complexing properties with respect to lead ions. The determination of their content in the raffinate was carried out by titration with a solution of sodium ethylenediaminetetraacetate disubstituted. To evaluate the nature of the sorbent, the calculated Langmuir and Freindlich equations were used. A study of the sorption ability of polysaccharides isolated from leaves of the campsis radicans showed the presence of a high binding ability of Pb2+ ions in pectin substances was associated with 54.2%, and in water-soluble polysaccharides – 37.5%. Polysaccharides isolated from the flowers of the campsis radicans showed sorption activity in the ratio: pectin substances – 32.6%, water-soluble polysaccharides – 80.1%.

The expressed complexing ability of the studied polysaccharides with respect to lead ions was revealed. The ratio of the experimental and calculated data on the values of the adsorption of lead ions showed that the sorption process is largely subordinate to the Langmuir equation. Pectic substances and water-soluble polysaccharides obtained from the leaves and flowers of the campsis radicans can be considered as effective detoxifiers. Further study of the physicochemical properties will make it possible to assess the possibility of their biomedical use.

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Author Biographies

Madina Anatol'yevna Bzhikhatlova, Pyatigorsk Medical and Pharmaceutical Institute – branch of the Volgograd State Medical University

аспирант

Lidiya Petrovna Mykots, Pyatigorsk Medical and Pharmaceutical Institute – branch of the Volgograd State Medical University

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

Nina Aleksandrovna Tukhovskaya, Pyatigorsk Medical and Pharmaceutical Institute – branch of the Volgograd State Medical University

кандидат химических наук, преподаватель кафедры аналитической химии

Ol'ga Andreyevna Andreyeva, Pyatigorsk Medical and Pharmaceutical Institute – branch of the Volgograd State Medical University

кандидат химических наук, доцент кафедры органической химии

References

Bzhikhatlova M.A., Andreyeva O.A., Oganesyan E.T., Voronkov A.V., Gerashchenko A.D. Sovremennyye problemy nauki i obrazovaniya, 2015, no. 2–2. URL: http://www.science-education.ru/ru/article/view?id=22562. (in Russ.).

Chan S.Y., Choo W.S., James Young D., Loh X.J. Carbohydrate Polymers, 2017, vol. 161, pp. 118–139. DOI: 10.1016/j.carbpol.2016.12.033.

Minzanova S.T., Mironov V.F., Arkhipova D.M., Khabibullina A.V., Mironova L.G., Zakirova Y.M., Milyukov V.A. Polymers (Basel), 2018, vol. 10(12), 1407. DOI: 10.3390/polym10121407.

Noreen A., Nazli Z.-i-H., Akram J., Rasul I., Mansha A., Yaqoob N, Iqbal R., Tabasum S., Zuber M., Zia K.M. Inter-national Journal of Biological Macromolecules, 2017, vol. 101, pp. 254–272. DOI: 10.1016/j.ijbiomac.2017.03.029.

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

Mykots L.P., Bogdashev N.N., Tukhovskaya N.A. Razrabotka, issledovaniye i marketing novoy farmatsevticheskoy produktsii: sb. nauch. tr. [Development, research and marketing of new pharmaceutical products: collection of scientific papers]. Pyatigorsk, 2008, vol. 63, pp. 309–310. (in Russ.).

Shelukhina N.P., Abayeva R.Sh., Aymukhamedova G.B. Pektin i parametry yego polucheniya. [Pectin and parameters for its production]. Frunze, 1987, 108 p. (in Russ.).

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

Kochetkov N.K., Bochkov A.F., Dmitriyev B.A., Usov A.I., Chizhov O.S., Shibayev V.N. Khimiya uglevodov. [Chemistry of carbohydrates]. Moscow, 1967, 672 p. (in Russ.).

Adzhiakhmetova S.L., Mykots L.P., Chervonnaya N.M., Kharchenko I.I., Tukhovskaya N.A., Oganesyan E.T. Far-matsiya i farmakologiya, 2017, no. 5, pp. 442–456. DOI: 10.19163/2307-9266-2017-5-5-442-456. (in Russ.).

Vasil'yev V.L., Morozova R.L., Kochergina L.A. Analiticheskaya khimiya: laboratornyy praktikum. [Analytical chemis-try: laboratory practice]. Moscow, 2004, 456 p. (in Russ.).

Vasina T.M., Mykots L.P., Tukhovskaya N.A., Zyablitseva N.S., Belousova A.L., Kompantsev V.A. Sibirskiy med-itsinskiy zhurnal, 2012, no. 5, pp. 115–117. (in Russ.).

Mykots L.P., Zhilina O.M., Sysoyeva T.N. Uspekhi sovremennoy nauki i obrazovaniya, 2017, vol. 9, no. 4, pp. 161–164. (in Russ.).

Mykots L.P., Tukhovskaya N.A., Bondar' S.N. Uspekhi sovremennogo yestestvoznaniya, 2010, no. 6, pp. 55–57. (in Russ.).

Mykots L.P., Butenko L.I., Tukhovskaya N.A., Samobrod A.V. Razrabotka, issledovaniye i marketing novoy farmatsevticheskoy produktsii: sb. nauch. tr. [Development, research and marketing of new pharmaceutical products: collection of scientific papers]. Pyatigorsk, 2014, vol. 69, pp. 146–149. (in Russ.).

Emanuel' N.M., Knorre D.G. Kurs khimicheskoy kinetiki. [Chemical kinetics course]. Moscow, 1974, 400 p. (in Russ.).

Entelis S.G., Tiger R.P. Kinetika reaktsiy v zhidkoy faze. Kolichestvennyy uchet vliyaniya sredy. [Kinetics of reactions in the liquid phase. Quantitative accounting of the influence of the environment]. Moscow, 1973, 416 p. (in Russ.).

Shchukin Ye.D., Pertsev A.V., Amalis A.Ye. Kolloidnaya khimiya. [Colloidal chemistry]. Moscow, 2006, 444 p. (in Russ.).

Mykots L.P., Romantsova N.A., Gushchina A.V. Fundamental'nyye issledovaniya, 2013, no. 3–1, pp. 197–200. (in Russ.).

Frolov Yu.G. Kurs kolloidnoy khimii. [Colloidal chemistry course]. Moscow, 1982, 400 p. (in Russ.).

Tsvetkov V.N., Eskin V.Ye., Frenkel' S.Ya. Struktura makromolekul v rastvorakh. [The structure of macromolecules in solutions]. Moscow, 1964, 718 p. (in Russ.).

Published
2021-03-16
How to Cite
1. Bzhikhatlova M. A., Mykots L. P., Tukhovskaya N. A., Andreyeva O. A. STUDY OF THE SORPTION ABILITY OF NATURAL SORBENTS ISOLATED FROM THE CAMPSIS RADICANS // chemistry of plant raw material, 2021. № 1. P. 71-78. URL: http://journal.asu.ru/cw/article/view/6618.
Section
Biopolymers of plants