Kinetic and pharmacokinetic characteristics of therapeutic methinoninе γ-lyase encapsulated in polyion complex vesicles
Vitalia V Kulikova
1
,
Elena A. Morozova
1
,
Natalya V. Anufrieva
1
,
Vasiliy S Koval
1
,
Anna D. Lyfenko
1
,
Ekaterina I Lesnova
2
,
Alla A. Kushch
2
,
Tatyana V. DEMIDKINA
1
Publication type: Journal Article
Publication date: 2022-03-01
scimago Q2
wos Q3
SJR: 0.884
CiteScore: 6.0
Impact factor: 3.0
ISSN: 03009084, 61831638, 16386183
PubMed ID:
34923045
Biochemistry
General Medicine
Abstract
Therapeutic enzymes used for the treatment of a wide range of human disorders often suffer from suboptimal pharmacokinetics and stability. Engineering approaches such as encapsulation in micro- and nanocarriers, and replacements of amino acid residues of the native enzyme provide significant potential for improving the performance of enzyme therapy. Here, we develop a nanodelivery system on the base of polyion complex vesicles (PICsomes) that includes methionine γ-lyase (MGL) as a therapeutic enzyme. We have two strategies for using the enzyme: first, methionine γ-lyase is an anticancer agent removing l-methionine from plasma, second, the binary system methionine γ-lyase/S-alk(en)yl-l-cysteine sulfoxides is effective in enzyme prodrug therapy (EPT). Various lengths polymers were synthesized, and two mutant forms of the enzyme were used. The catalytic and pharmacokinetic parameters of the nanoformulations were investigated. The catalytic efficiencies of encapsulated enzymes were comparable to that of native enzymes. Pharmacokinetic analysis has shown that inclusion into PICsomes increases half-life of the enzymes, and they can be safely administered in vivo. The results suggest the further use of encapsulated MGLs for EPT and anticancer therapy, and this strategy could be leveraged to improve the efficiency of enzyme-based therapies for managing serious human diseases.
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9
Total citations:
9
Citations from 2025:
2
(22.22%)
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Kulikova V. V. et al. Kinetic and pharmacokinetic characteristics of therapeutic methinoninе γ-lyase encapsulated in polyion complex vesicles // Biochimie. 2022. Vol. 194. pp. 13-18.
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Kulikova V. V., Morozova E. A., Anufrieva N. V., Koval V. S., Lyfenko A. D., Lesnova E. I., Kushch A. A., Revtovich S. V., DEMIDKINA T. V. Kinetic and pharmacokinetic characteristics of therapeutic methinoninе γ-lyase encapsulated in polyion complex vesicles // Biochimie. 2022. Vol. 194. pp. 13-18.
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TY - JOUR
DO - 10.1016/j.biochi.2021.12.004
UR - https://doi.org/10.1016/j.biochi.2021.12.004
TI - Kinetic and pharmacokinetic characteristics of therapeutic methinoninе γ-lyase encapsulated in polyion complex vesicles
T2 - Biochimie
AU - Kulikova, Vitalia V
AU - Morozova, Elena A.
AU - Anufrieva, Natalya V.
AU - Koval, Vasiliy S
AU - Lyfenko, Anna D.
AU - Lesnova, Ekaterina I
AU - Kushch, Alla A.
AU - Revtovich, Svetlana V.
AU - DEMIDKINA, Tatyana V.
PY - 2022
DA - 2022/03/01
PB - Elsevier
SP - 13-18
VL - 194
PMID - 34923045
SN - 0300-9084
SN - 6183-1638
SN - 1638-6183
ER -
Cite this
BibTex (up to 50 authors)
Copy
@article{2022_Kulikova,
author = {Vitalia V Kulikova and Elena A. Morozova and Natalya V. Anufrieva and Vasiliy S Koval and Anna D. Lyfenko and Ekaterina I Lesnova and Alla A. Kushch and Svetlana V. Revtovich and Tatyana V. DEMIDKINA},
title = {Kinetic and pharmacokinetic characteristics of therapeutic methinoninе γ-lyase encapsulated in polyion complex vesicles},
journal = {Biochimie},
year = {2022},
volume = {194},
publisher = {Elsevier},
month = {mar},
url = {https://doi.org/10.1016/j.biochi.2021.12.004},
pages = {13--18},
doi = {10.1016/j.biochi.2021.12.004}
}
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