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Active mixing of immobilised enzymatic system in microfluidic chip
Автор | Лукьяненко, Кирилл А. | |
Автор | Kirill I. Belousov | |
Автор | Ivan A. Denisov | |
Автор | Anton S. Yakimov | |
Автор | Elena N. Esimbekova | |
Автор | Anton S. Bukatin | |
Автор | Anatoly A. Evstrapov | |
Автор | Peter I. Belobrov | |
Дата внесения | 2019-07-01T07:27:38Z | |
Дата, когда ресурс стал доступен | 2019-07-01T07:27:38Z | |
Дата публикации | 2017 | |
Библиографическое описание | Лукьяненко, Кирилл А. Active mixing of immobilised enzymatic system in microfluidic chip [Текст] / Кирилл А. Лукьяненко, Kirill I. Belousov, Ivan A. Denisov, Anton S. Yakimov, Elena N. Esimbekova, Anton S. Bukatin, Anatoly A. Evstrapov, Peter I. Belobrov // Micro and Nano Letters. — 2017. — Т. 12 (№ 6). — С. 377-381 | |
ISSN | 17500443 | |
URI (для ссылок/цитирований) | http://digital-library.theiet.org/content/journals/10.1049/mnl.2016.0646 | |
URI (для ссылок/цитирований) | https://elib.sfu-kras.ru/handle/2311/110997 | |
Аннотация | Parameters for sample introduction, dried reagents dissolution and mixing with sample for bienzyme system NAD(H):FMN-oxidoreductase and luciferase immobilised in microfluidic chip were successfully determined. Numerical simulations of reaction chamber geometry, flavin mononucleotide (FMN) escape from starch gel and mixing options were conducted to achieve higher sensitivity of bioluminescent reaction. Results of numerical simulations were verified experimentally. The active mixer for dried reagents was made from an electro-mechanical speaker's membrane which was connected to the input of the chip. Such a mixer provided better efficiency than a passive mixing, and it is simple enough for use in point-of-care devices with any systems based on immobilised enzymes in chips. | |
Тема | molecular biophysics | |
Тема | biological techniques | |
Тема | numerical analysis | |
Тема | bioMEMS | |
Тема | biochemistry | |
Тема | enzymes | |
Название | Active mixing of immobilised enzymatic system in microfluidic chip | |
Тип | Journal Article | |
Тип | Journal Article Preprint | |
Страницы | 377-381 | |
ГРНТИ | 34.17 | |
Дата обновления | 2019-07-01T07:27:38Z | |
DOI | 10.1049/mnl.2016.0646 | |
Институт | Институт фундаментальной биологии и биотехнологии | |
Подразделение | Кафедра биофизики | |
Журнал | Micro and Nano Letters | |
Квартиль журнала в Scopus | Q3 |