Leonid Gurevich
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Explore the profile of Leonid Gurevich including associated specialties, affiliations and a list of published articles.
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35
Citations
328
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Recent Articles
1.
Li P, Luo S, Hao G, Sun K, Liu Q, Moller M, et al.
J Hazard Mater
. 2024 Nov;
481():136553.
PMID: 39561548
The recycling of lithium-ion batteries (LIBs) has been dogged by air pollutants containing fluoride (e.g. HF, PF, POF). Pyrolysis is a technique that can eliminate polyvinylidene fluoride (PVDF) from the...
2.
Lotfi R, Zandi N, Pourjavadi A, de Claville Christiansen J, Gurevich L, Mehrali M, et al.
ACS Biomater Sci Eng
. 2023 Dec;
10(2):800-813.
PMID: 38159039
Light-cured conductive hydrogels have attracted immense interest in the regeneration of electroactive tissues and bioelectronic interfaces. Despite the unique properties of MXene (MX), its light-blocking effect in the range of...
3.
Xuan Z, Gurevich L, de Claville Christiansen J, Zachar V, Pennisi C
Biotechnol Bioeng
. 2023 Aug;
120(11):3396-3408.
PMID: 37526327
During normal urination, smooth muscle cells (SMCs) in the lower urinary tract (LUT) are exposed to mechanical signals that have a critical impact on tissue structure and function. Nevertheless, the...
4.
Pedersen T, Fojan P, Pedersen A, Magnusson N, Gurevich L
Biosensors (Basel)
. 2023 May;
13(5).
PMID: 37232880
State-of-the-art clinical detection methods typically involve standard immunoassay methods, requiring specialized equipment and trained personnel. This impedes their use in the Point-of-Care (PoC) environment, where ease of operation, portability, and...
5.
Xuan Z, Peng Q, Larsen T, Gurevich L, de Claville Christiansen J, Zachar V, et al.
Tissue Eng Regen Med
. 2022 Nov;
20(2):199-212.
PMID: 36401768
Background: Reliable in vitro cellular models are needed to study the phenotypic modulation of smooth muscle cells (SMCs) in health and disease. The aim of this study was to optimize...
6.
Artyukhov A, Nechaeva A, Shtilman M, Chistyakov E, Svistunova A, Bagrov D, et al.
Materials (Basel)
. 2022 Oct;
15(20).
PMID: 36295201
Application of nanocarriers for drug delivery brings numerous advantages, allowing both minimization of side effects common in systemic drug delivery and improvement in targeting, which has made it the focal...
7.
Orlov A, Konstantinova A, Korotkov R, Yudaev P, Mezhuev Y, Terekhov I, et al.
Polymers (Basel)
. 2022 Sep;
14(17).
PMID: 36080667
A method for the synthesis of an amine-containing epoxy resin curing agent by dissolving hexakis-[(4-formyl)phenoxy]cyclotriphosphazene in an excess of isophoronediamine was developed. The curing agent was characterized via NMR and...
8.
Fan W, Du T, Droce A, Jensen L, Youngman R, Ren X, et al.
ACS Nano
. 2022 Jun;
16(6):9748-9761.
PMID: 35679120
Simultaneously improving the strength and toughness of materials is a major challenge. Inorganic-polymer hybrids offer the potential to combine mechanical properties of a stiff inorganic glass with a flexible organic...
9.
Nechaeva A, Artyukhov A, Luss A, Shtilman M, Gritskova I, Shulgin A, et al.
Polymers (Basel)
. 2022 May;
14(9).
PMID: 35566896
Co-delivery of chemotherapeutics in cancer treatment has been proven essential for overcoming multidrug resistance and improving the outcome of therapy. We report the synthesis of amphiphilic copolymers of -vinyl-2-pyrrolidone and...
10.
Kulikov P, Luss A, Nelemans L, Shtilman M, Mezhuev Y, Kuznetsov I, et al.
Materials (Basel)
. 2021 Oct;
14(20).
PMID: 34683572
Development of nanocarrier-based drug delivery systems is a major breakthrough in pharmacology, promising targeted delivery and reduction in drug toxicity. On the cellular level, encapsulation of a drug substantially affects...