Keywords
activity
adsorption
calcium carbonate
carrier particles
catalase
chymotrypsin
coprecipitation
glycoproteins
mucin
protein release
proteins
stability
Abstract
The ability of proteins and glycoproteins loading was compared for submicron vaterite particles obtained in an ethylene glycol-containing medium and micron vaterite particles prepared in a Tris buffer medium. Various proteins were encapsulated into submicron vaterite particles by coprecipitation and adsorption, and the protein content and enzyme activity preservation were assessed. The behavior of submicron vaterite particles with adsorbed catalase was investigated under conditions simulating passage through the human gastrointestinal tract, including the presence of proteolytic enzymes.
Funders
Ministry of Education and Science of the Russian Federation
121041500039-8
References
1.
Volodkin D.
Advances in Colloid and Interface Science,
2014
2.
Islan G.A., Cacicedo M.L., Bosio V.E., Castro G.R.
Journal of Colloid and Interface Science,
2015
3.
Memar M.Y., Ahangarzadeh Rezaee M., Barzegar-Jalali M., Gholikhani T., Adibkia K.
Current Microbiology,
2023
4.
Ferreira A.M., Vikulina A.S., Volodkin D.
Journal of Controlled Release,
2020
5.
Trushina D.B., Borodina T.N., Belyakov S., Antipina M.N.
Materials Today Advances,
2022
6.
Vikulina A., Voronin D., Fakhrullin R., Vinokurov V., Volodkin D.
New Journal of Chemistry,
2020
7.
Balabushevich N.G., Maltseva L.N., Filatova L.Y., Mosievich D.V., Mishin P.I., Bogomiakova M.E., Lebedeva O.S., Murina M.A., Klinov D.V., Obraztsova E.A., Kharaeva Z.F., Firova R.K., Grigorieva D.V., Gorudko I.V., Panasenko O.M., et. al.
Heliyon,
2024
8.
Mosievich D.V., Balabushevich N.G., Mishin P.I., Filatova L.Y., Murina M.A., Pobeguts O.V., Galyamina M.A., Obraztsova E.A., Grigorieva D.V., Gorudko I.V., Sokolov A.V., Shmeleva E.V., Panasenko O.M., Mikhalchik E.V.
Marine Drugs,
2025
10.
Parakhonskiy B.V., Haase A., Antolini R.
Angewandte Chemie - International Edition,
2011
11.
Trushina D.B., Bukreeva T.V., Antipina M.N.
Crystal Growth and Design,
2016
12.
Gusliakova O., Atochina-Vasserman E.N., Sindeeva O., Sindeev S., Pinyaev S., Pyataev N., Revin V., Sukhorukov G.B., Gorin D., Gow A.J.
Frontiers in Pharmacology,
2018
13.
Choukrani G., Álvarez Freile J., Avtenyuk N.U., Wan W., Zimmermann K., Bremer E., Dähne L.
Particle and Particle Systems Characterization,
2021
14.
Saikia J., Saha B., Das G.
RSC Advances,
2012
15.
Haug M., Bouville F., Adrien J., Bonnin A., Maire E., Studart A.R.
Acta Materialia,
2020
16.
Yao H., Ge J., Mao L., Yan Y., Yu S.
Advanced Materials,
2013
17.
Unger R.E., Stojanovic S., Besch L., Alkildani S., Schröder R., Jung O., Bogram C., Görke O., Najman S., Tremel W., Barbeck M.
International Journal of Molecular Sciences,
2022
18.
Chi Y., Sun P., Gao Y., Zhang J., Wang L.
Biosensors,
2022
19.
Immobilization of Antioxidant Enzyme Catalase on Porous Hybrid Microparticles of Vaterite with Mucin
Balabushevich N.G., Kovalenko E.A., Maltseva L.N., Filatova L.Y., Moysenovich A.M., Mikhalchik E.V., Volodkin D., Vikulina A.S.
Advanced Engineering Materials,
2022
20.
Balabushevich N.G.
Applied Biochemistry and Microbiology,
2025
21.
Avdeef A.
Current Topics in Medicinal Chemistry,
2001