Incorporation of Pectin into Vaterite Microparticles Prevented Effects of Adsorbed Mucin on Neutrophil Activation

Author:

Mikhalchik Elena V.1,Maltseva Liliya N.12ORCID,Firova Roxalana K.1,Murina Marina A.1,Gorudko Irina V.3,Grigorieva Daria V.3ORCID,Ivanov Viktor A.1,Obraztsova Ekaterina A.14,Klinov Dmitry V.14,Shmeleva Ekaterina V.1,Gusev Sergey A.1ORCID,Panasenko Oleg M.1ORCID,Sokolov Alexey V.15ORCID,Gorbunov Nikolay P.15ORCID,Filatova Lyubov Y.2,Balabushevich Nadezhda G.12

Affiliation:

1. Department of Biophysics, Lopukhin Federal Research and Clinical Center of Physical-Chemical Medicine of Federal Medical Biological Agency, 119435 Moscow, Russia

2. Department of Chemistry, Lomonosov Moscow State University, 119991 Moscow, Russia

3. Department of Biophysics, Belarusian State University, 220030 Minsk, Belarus

4. Moscow Institute of Physics and Technology, 141700 Dolgoprudny, Russia

5. Department of Molecular Genetics, Institute of Experimental Medicine, 197376 St. Petersburg, Russia

Abstract

The application of vaterite microparticles for mucosal delivery depends on their interaction with mucin and immune cells. As we have shown previously, the binding of mucin onto particles enhances the generation of reactive oxygen species by neutrophils. The attenuation of the pro-oxidant effect of the bound mucin through the modification of vaterite could improve its biocompatibility. Hybrid microparticles composed of vaterite and pectin (CCP) were prepared using co-precipitation. In comparison with vaterite (CC), they had a smaller diameter and pores, a greater surface area, and a negative zeta-potential. We aimed to study the cytotoxicity and mucin-dependent neutrophil-activating effect of CCP microparticles. The incorporated pectin did not influence the neutrophil damage according to a lactate dehydrogenase test. The difference in the CC- and CCP-elicited luminol or lucigenin chemiluminescence of neutrophils was insignificant, with no direct pro- or antioxidant effects from the incorporated pectin. Unlike soluble pectin, the CCP particles were ineffective at scavenging radicals in an ABAP–luminol test. The fluorescence of SYTOX Green demonstrated a CCP-stimulated formation of neutrophil extracellular traps (NETs). The pre-treatment of CC and CCP with mucin resulted in a 2.5-times-higher CL response of neutrophils to the CC-mucin than to the CCP-mucin. Thus, the incorporation of pectin into vaterite microspheres enabled an antioxidant effect to be reached when the neutrophils were activated by mucin-treated microparticles, presumably via exposed ligands.

Funder

Russian Science Foundation

elarusian Republican Foundation for Basic Research

Development Program of Lomonosov Moscow State University

Publisher

MDPI AG

Subject

Inorganic Chemistry,Organic Chemistry,Physical and Theoretical Chemistry,Computer Science Applications,Spectroscopy,Molecular Biology,General Medicine,Catalysis

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