Fabrication and properties of calcium pectinate hydrogel nanoparticles with trans-cinnamic acid
https://doi.org/10.29235/1561-8323-2020-64-2-164-172
Abstract
Hydrogel negatively charged (–13.5 ± 5.0 mV) calcium pectinate nano- and submicroparticles (50–150 nm) were obtained. A technique for entrapment of a plant growth regulator (trans-cinnamic acid) in the particles up to 40 wt. % has been developed. It has been established that the complete release of trans-cinnamic acid in the Murashige–Skoog medium takes 2.5 hours. The obtained particles of calcium pectinate do not affect the growth processes of cells in suspension culture and can be used as neutral carriers for growth regulators.
About the Authors
A. N. KraskouskiBelarus
Kraskouski Aliaksandr M. – Researcher.
36, F. Skorina Str., 220141, Minsk
V. I. Kulikouskaya
Belarus
Kulikouskaya Viktoryia I. – Ph. D. (Chemistry), Associate professor, Head of the Laboratory.
36, F. Skorina Str., 220141, Minsk
O. V. Molchan
Belarus
Molchan Olga V. – Ph. D. (Biology), Associate professor, Head of the Laboratory.
27, Akademicheskaya Str., 220072, Minsk
K. S. Hileuskaya
Belarus
Hileuskaya Kseniya S. – Ph. D. (Chemistry), Senior researcher, Associate professor.
36, F. Skorina Str., 220141, Minsk
V. M. Yurin
Belarus
Yurin Vladimir M. – D. Sc. (Biology), Professor.
4, Nezavisimosti Ave., 220030, Minsk
V. E. Agabekov
Belarus
Agabekov Vladimir E. – Academician, D. Sc. (Chemistry), Director.
36, F. Skorina Str., 220141, Minsk
References
1. Lozovskaya M. E., Kulikovskaya V. I., Ignatovich Zh. V., Koroleva E. V., Agabekov V. E. Hydrogel Nanoparticles of Chitosan–Folic-Acid Conjugate with Imatinib Methanesulfonate. Pharmaceutical Chemistry Journal, 2018, vol. 52, no. 2, pp. 127–132. https://doi.org/10.1007/s11094-018-1777-6
2. Gilevskaya K. S., Ignatovich Zh. V., Golubeva M. B., Koroleva E. V., Agabekov V. E. Preparation and Properties of Protamine/Pectin-Ag Biopolymer Microcapsules Containing a 2-Arylaminopyrimidine Derivative. Pharmaceutical Chemistry Journal, 2018, vol. 51, no. 10, pp. 922–927. https://doi.org/10.1007/s11094-018-1717-5
3. Aslani F., Bagheri S., Muhd Julkapli N., Juraimi A. S., Hashemi F. S. G., Baghdadi A. Effects of Engineered Nanomaterials on Plants Growth: An Overview. Scientific World Journal, 2014, vol. 2014, art. ID 641759. 28 p. https://doi.org/10.1155/2014/641759
4. Tsatsakis A. M., Shtilman M. I. Polymeric derivatives of plant growth regulators: synthesis and properties. Plant Growth Regulation, 1994, vol. 14, no. 1, pp. 69–77. https://doi.org/10.1007/bf00024143
5. Pereira A. E. S., Silva P. M., Oliveira J. L., Oliveira H. C., Fraceto L. F. Chitosan nanoparticles as carrier systems for the plant growth hormone gibberellic acid. Colloids Surfaces B: Biointerfaces, 2017, vol. 150, pp. 141–152. https://doi.org/10.1016/j.colsurfb.2016.11.027
6. Pereira A. E. S., Oliveira H. C., Fraceto L. F. Polymeric nanoparticles as an alternative for application of gibberellic acid in sustainable agriculture: a field study. Scientific Reports, 2019, vol. 9, no. 1, art. 7135 (1–10). https://doi.org/10.1038/s41598-019-43494-y
7. Pereira A. E. S., Sandoval-Herrera I. E., Zavala-Betancourt S. A., Oliveira H. C., Ledezma-Pérez A. S., Romero J., Fraceto L. F. γ-Polyglutamic acid/chitosan nanoparticles for the plant growth regulator gibberellic acid: Characterization and evaluation of biological activity. Carbohydrate Polymers, 2017, vol. 157, pp. 1862–1873. https://doi.org/10.1016/j.carbpol.2016.11.073
8. Dzhus M. A., Molchan O. V., Kuhareva L. V., Spiridovich E. V., Jurin V. M. Distribution and ecological-coenotic characteristics of species of the genus Vinca L. in the flora of Belarus. Ukrainskii botanicheskii zhurnal = Ukrainian Botanical Journal, 2009, vol. 66, pp. 783–793 (in Russian).
9. Jurin V. M., Molchan O. V. Nanomaterials and рlants: look at the problem. Trudy Belorusskogo gosudarstvennogo universiteta. Seriya “Fiziologicheskie, biokhimicheskie i molekulyarnye osnovy funktsionirovaniya biosistem” [Proceedings of the Belarusian State University. Series “Physiological, biochemical and molecular fundamentals of the functioning of biosystems”], 2015, vol. 10, no. 1, pp. 9–21 (in Russian).
10. Molchan O. V., Zaprudskaya E. V., Kudelina T. N. Effect of fullerenol on growth and the content of photosynthetic pigments in barley seedlings. Botanika (issledovaniya) [Botany (research)]. Minsk, 2017, vol. 46, pp. 224–232 (in Russian).
11. Kraskouski A. N., Hileuskaya K. S., Kulikouskaya V. I., Agabekov V. E. Synthesis and properties of calcium pectinate nanoparticles. Vestsi Natsyianal’nai akademii navuk Belarusi. Seryia khimichnykh navuk = Proceedings of the National Academy of Sciences of Belarus. Chemical series, 2014, no. 1, pp. 51–56 (in Russian).