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Amphotericin B as antiviral drug: Possible efficacy against COVID-19
Falah Hasan Obayes Al-Khikani1
1Department of Microbiology, Al- Shomali General Hospital, Babil, Iraq.
Abstract:
Since its discovery, amphotericin B (AmB) is still one of the most common first-line choices in treatment pulmonary mycoses for over seventh decades from discovery. AmB which is belonged to the polyene group has a wide spectrum in vitro and in vivo antimicrobial activity against fungi and parasites, resistance to AmB is rare despite extensive use. Recently, some studies focused on the potential antimicrobial action of AmB against some enveloped viruses such as human immunodeficiency virus, Japanese encephalitis virus, and rubella virus. Coronaviruses are enveloped positive-sense RNA nucleic acid viruses that have club-like spikes, characterized by a distinctive replication strategy; they are round and sometimes pleomorphic shapes. COVID-19 is regarding the new genera of coronaviridae that appear the first time in Wuhan, China, in early December 2019. Due to the continuous spreading of the novel COVID-19 with the exponential rise in death numbers, new therapeutic development is urgent, in general, there are no specific antiviral drugs or vaccines for 2019-novel coronavirus. Hence, this review may serve as an impetus for researchers working in the field of medical microbiology, vaccination, and antiviral drug design by discussion the most recent information about the antiviral action of AmB against COVID-19 infection as well as trying to a deep understanding of major properties, mechanisms of action, immune system responses, and antimicrobial efficiency of AmB. Since AmB is expected to alter the structure of the viral envelope, membrane integrity of cells, and internal cellular organelles, besides its other unique properties such as host immunomodulatory effects, so this review suggested that AmB as an effective anti-fungi drug thus may hold the promise of formulating a novel therapeutic option to treat COVID-19.
Insights
Amphotericin B, an antifungal drug, shows potential as a novel therapeutic option for COVID-19. Its known antimicrobial properties suggest it may disrupt the viral envelope and cellular integrity, offering a new treatment avenue.
Area of Science:
- Medical Microbiology
- Antiviral Drug Design
- Immunology
Background:
- Amphotericin B (AmB) is a widely used antifungal polyene with a broad spectrum of activity against fungi and parasites.
- Resistance to AmB is rare, and it has demonstrated potential antimicrobial action against enveloped viruses like HIV and rubella virus.
- Coronaviruses, including SARS-CoV-2 causing COVID-19, are enveloped viruses for which specific antiviral treatments are urgently needed.
Purpose of the Study:
- To review the potential antiviral action of Amphotericin B against COVID-19.
- To explore the properties, mechanisms of action, and immunomodulatory effects of AmB.
- To assess AmB's efficacy as a potential therapeutic option for COVID-19.
Main Methods:
- Literature review of existing studies on Amphotericin B's antimicrobial and antiviral properties.
- Analysis of AmB's known mechanisms of action, including effects on cell membranes and viral envelopes.
- Discussion of AmB's immunomodulatory effects and potential application against coronaviruses.
Main Results:
- Amphotericin B exhibits broad-spectrum antimicrobial activity and rare resistance.
- Studies suggest AmB may act against enveloped viruses by altering viral envelopes and cell membrane integrity.
- AmB possesses immunomodulatory properties that could be beneficial in viral infections.
Conclusions:
- Amphotericin B's established efficacy against fungi and its potential antiviral properties warrant further investigation for COVID-19 treatment.
- AmB may offer a novel therapeutic strategy by targeting the viral envelope and host cell integrity.
- Further research into Amphotericin B could lead to new treatment options for COVID-19 and other viral diseases.
Related Concept Videos
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