Please use this identifier to cite or link to this item: https://er.knutd.edu.ua/handle/123456789/29136
Title: A biotechnological approach to studying the toxicity of isoniazid and hepatoprotectors
Authors: Hretskyi, Ihor
Zewen, Wang
Keywords: artificial intelligence
bibliometrics
network pharmacology
isoniazid
Dracocephalum moldavuca L.
Issue Date: Jun-2024
Publisher: Київський національний університет технологій та дизайну
Citation: Zewen Wang. A biotechnological approach to studying the toxicity of isoniazid and hepatoprotectors : Bachelor's thesis. Specialty 162 "Biotechnology and Bioengineering" / Wang Zewen ; scientific supervisor Ihor Hretskyi ; reviewer Liubov Zelena. – Kyiv : KNUTD, 2024. – 45 p.
Abstract: This article explores the application of artificial intelligence in drug screening and its integration with traditional scientific research, utilizing bibliometrics and network pharmacology methods to analyze and predict the safety evaluation and activity screening of drugs. Through advanced machine learning algorithms and big data analysis techniques, artificial intelligence has significantly enhanced screening efficiency, processing capabilities, and substantially reduced research and development costs. In terms of bibliometric research, the Web of Science database was employed for comprehensive analysis to uncover hotspots and trends in isoniazid toxicity research. Furthermore, an in-depth investigation into the mechanism of isoniazid hepatotoxicity was conducted to provide future research directions. Network pharmacology was utilized to predict for the first time both the hepatoprotective activity as well as its target action of Dracocephalum moldavuca L., thereby offering novel candidate substances for drug discovery and development. In conclusion, this study presents innovative ideas and methodologies for drug research and development while also suggesting further exploration into the application of artificial intelligence within this field. Such investigations will provide a theoretical foundation along with data support for subsequent studies on isoniazid-induced hepatotoxicity mechanisms as well as hepato-protective activities exhibited by natural compounds like vanilla.
URI: https://er.knutd.edu.ua/handle/123456789/29136
Faculty: Факультет хімічних та біофармацевтичних технологій
Department: Кафедра біотехнології, шкіри та хутра
Appears in Collections:Бакалаврський рівень

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