Impact of hydrophilic polymers in organosilica matrices on structure, stability, and biocatalytic activity of immobilized methylotrophic yeast used as biofilter bed
Publication type: Journal Article
Publication date: 2021-10-01
scimago Q2
wos Q2
SJR: 0.728
CiteScore: 7.5
Impact factor: 3.7
ISSN: 01410229, 18790909
PubMed ID:
34489032
Biochemistry
Applied Microbiology and Biotechnology
Biotechnology
Bioengineering
Abstract
• Artificial shells are built around yeasts using TEOS, MTES, and structure-directing agents. • Whole-cell biocatalyst was stable when stored for up to one-year at -18 degrees C. • A model trickling biofilter with active aeration has been developed to treat methanol wastewater. The impact of hydrophilic polymers in an organosilica matrix on the features and performance of immobilized methylotrophic yeast cells used as biocatalysts was investigated and described. Yeast cells were immobilized in a matrix made of tetraethoxysilane (TEOS) and methyltriethoxysilane (MTES) by one-step sol-gel route of synthesis in the presence of polyethylene glycol (PEG) or polyvinyl alcohol (PVA). Organosilica shells were spontaneously built around cells as a result of yeast immobilization at a TEOS to MTES ratio of 85/15 vol% and hydrophilic polymer (PEG or PVA). As a structure-directing agent, PVA produces organosilica films. Stable high-performance biocatalysts active for one year, if stored at −18 °C, have been obtained by entrapment of methylotrophic yeast cells. A trickling biofilter with and without active aeration was designed using entrapped yeast cells to treat methanol polluted wastewater. A biofilter model with active aeration could halve methanol input thus demonstrating better performance compared to treatment without active aeration.
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1 citation
Filippova Ekaterina
1 publication
h-index: 0
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Total citations:
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Citations from 2024:
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(53%)
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GOST
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Lavrova D. G. et al. Impact of hydrophilic polymers in organosilica matrices on structure, stability, and biocatalytic activity of immobilized methylotrophic yeast used as biofilter bed // Enzyme and Microbial Technology. 2021. Vol. 150. p. 109879.
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Lavrova D. G., Rybochkin P., Sidorov A. I., Ponamoreva O. N., Kamanina O. A., Alferov V. A. Impact of hydrophilic polymers in organosilica matrices on structure, stability, and biocatalytic activity of immobilized methylotrophic yeast used as biofilter bed // Enzyme and Microbial Technology. 2021. Vol. 150. p. 109879.
Cite this
RIS
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TY - JOUR
DO - 10.1016/j.enzmictec.2021.109879
UR - https://doi.org/10.1016/j.enzmictec.2021.109879
TI - Impact of hydrophilic polymers in organosilica matrices on structure, stability, and biocatalytic activity of immobilized methylotrophic yeast used as biofilter bed
T2 - Enzyme and Microbial Technology
AU - Lavrova, D G
AU - Rybochkin, Pavel
AU - Sidorov, Alexander I
AU - Ponamoreva, O. N.
AU - Kamanina, O A
AU - Alferov, V. A.
PY - 2021
DA - 2021/10/01
PB - Elsevier
SP - 109879
VL - 150
PMID - 34489032
SN - 0141-0229
SN - 1879-0909
ER -
Cite this
BibTex (up to 50 authors)
Copy
@article{2021_Lavrova,
author = {D G Lavrova and Pavel Rybochkin and Alexander I Sidorov and O. N. Ponamoreva and O A Kamanina and V. A. Alferov},
title = {Impact of hydrophilic polymers in organosilica matrices on structure, stability, and biocatalytic activity of immobilized methylotrophic yeast used as biofilter bed},
journal = {Enzyme and Microbial Technology},
year = {2021},
volume = {150},
publisher = {Elsevier},
month = {oct},
url = {https://doi.org/10.1016/j.enzmictec.2021.109879},
pages = {109879},
doi = {10.1016/j.enzmictec.2021.109879}
}