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The effect of various compounds on the COVID mechanisms, from chemical to molecular aspects.
Mahmoudi, Samira; Dehkordi, Mehrdad Mohammadpour; Asgarshamsi, Mohammad Hossein.
  • Mahmoudi S; Department of Microbial Biotechnology, School of Biological Sciences, Islamic Azad University Tehran North Branch, Tehran, Iran. Electronic address: mahmoudi90@gmail.com.
  • Dehkordi MM; Department of Medicinal Chemistry, School of Pharmacy and Pharmaceutical Sciences, Isfahan University of Medical Sciences, Isfahan, Iran. Electronic address: mehrdad_m_d@pharm.mui.ac.ir.
  • Asgarshamsi MH; Department of Medicinal Chemistry, School of Pharmacy and Pharmaceutical Sciences, Isfahan University of Medical Sciences, Isfahan, Iran. Electronic address: mhas.shamsi@gmail.com.
Biophys Chem ; 288: 106824, 2022 09.
Статья в английский | MEDLINE | ID: covidwho-1944352
ABSTRACT
The novel coronavirus that caused COVID-19 pandemic is SARS-CoV-2. Although various vaccines are currently being used to prevent the disease's severe consequences, there is still a need for medications for those who become infected. The SARS-CoV-2 has a variety of proteins that have been studied extensively since the virus's advent. In this review article, we looked at chemical to molecular aspects of the various structures studied that have pharmaceutical activity and attempted to find a link between drug activity and compound structure. For example, designing of the compounds which bind to the allosteric site and modify hydrogen bonds or the salt bridges can disrupt SARS-CoV2 RBD-ACE2 complex. It seems that quaternary ammonium moiety and quinolin-1-ium structure could act as a negative allosteric modulator to reduce the tendency between spike-ACE2. Pharmaceutical structures with amino heads and hydrophobic tails can block envelope protein to prevent making mature SARS-CoV-2. Also, structures based on naphthalene pharmacophores or isosteres can form a strong bond with the PLpro and form a π-π and the Mpro's active site can be occupied by octapeptide compounds or linear compounds with a similar fitting ability to octapeptide compounds. And for protein RdRp, it is critical to consider pH and pKa so that pKa regulation of compounds to comply with patients is very effective, thus, the presence of tetrazole, phenylpyrazole groups, and analogs of pyrophosphate in the designed drugs increase the likelihood of the RdRp active site inhibition. Finally, it can be deduced that designing hybrid drug molecules along with considering the aforementioned characteristics would be a suitable approach for developing medicines in order to accurate targeting and complete inhibition this virus.
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Полный текст: Имеется в наличии Коллекция: Международные базы данных база данных: MEDLINE Основная тема: SARS-CoV-2 / COVID-19 Drug Treatment Тип исследования: Экспериментальные исследования / Рандомизированные контролируемые испытания Темы: Вакцина Пределы темы: Люди Язык: английский Журнал: Biophys Chem Год: 2022 Тип: Статья

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Полный текст: Имеется в наличии Коллекция: Международные базы данных база данных: MEDLINE Основная тема: SARS-CoV-2 / COVID-19 Drug Treatment Тип исследования: Экспериментальные исследования / Рандомизированные контролируемые испытания Темы: Вакцина Пределы темы: Люди Язык: английский Журнал: Biophys Chem Год: 2022 Тип: Статья