Amantadine resistance among highly pathogenic avian influenza viruses (H5N1) isolated from India
Aron Jacob1, Richa Sood1, Kh Victoria Chanu1
1ICAR-National Institute of High Security Animal Diseases, Anand Nagar, Bhopal 462022, Madhya Pradesh, India.
Abstract:
Emergence of antiviral resistance among H5N1 avian influenza viruses is the major challenge in the control of pandemic influenza. Matrix 2 (M2) inhibitors (amantadine and rimantadine) and neuraminidase inhibitors (oseltamivir and zanamivir) are the two classes of antiviral agents that are specifically active against influenza viruses and are used for both treatment and prophylaxis of influenza infections. Amantadine targets the M2 ion channel of influenza A virus and interrupts virus life cycle through blockade of hydrogen ion influx. This prevents uncoating of the virus in infected host cells which impedes the release of ribonucleoprotein required for transcription and replication of virion in the nucleus. The present study was carried out to review the status of amantadine resistance in H5N1 viruses isolated from India and to study their replicative capability. Results of the study revealed resistance to amantadine in antiviral assay among four H5N1 viruses out of which two viruses had Serine 31 Asparagine (AGT-AAT i.e., S31N) mutation and two had Valine 27 Alanine (GTT-GCT i.e., V27A) mutation. The four resistant viruses not only exhibited significant difference in effective concentration 50% (EC50) values of amantadine hydrochloride from that of susceptible viruses (P < 0.0001) but also showed significant difference between two different types (S31N and V27A) of mutant viruses (P < 0.05). Resistance to amantadine could also be demonstrated in a simple HA test after replication of the viruses in MDCK cells in presence of amantadine. The study identifies the correlation between in vitro antiviral assay and presence of established molecular markers of resistance, the retention of replicative capacity in the presence of amantadine hydrochloride by the resistant viruses and the emergence of resistant mutations against amantadine among avian influenza viruses (H5N1) without selective drug pressure.
Insights
Antiviral resistance in H5N1 avian influenza is a major challenge. This study found amantadine resistance in Indian H5N1 viruses, linked to specific mutations (S31N, V27A), with retained viral replication capabilities.
Area of Science:
- Virology
- Infectious Diseases
- Drug Resistance
Background:
- Antiviral resistance in H5N1 avian influenza poses a significant threat to pandemic control.
- Amantadine, an M2 inhibitor, targets the influenza A virus M2 ion channel, blocking viral uncoating and replication.
- Neuraminidase inhibitors (oseltamivir, zanamivir) are another class of antivirals used for influenza treatment and prophylaxis.
Purpose of the Study:
- To review amantadine resistance in H5N1 avian influenza viruses isolated in India.
- To investigate the replicative capacity of amantadine-resistant H5N1 strains.
- To correlate in vitro antiviral assays with molecular markers of resistance.
Main Methods:
- Antiviral assays were performed to determine amantadine resistance.
- Genetic sequencing identified mutations associated with resistance, specifically Serine 31 Asparagine (S31N) and Valine 27 Alanine (V27A).
- Replicative capability was assessed in MDCK cells in the presence of amantadine hydrochloride.
Main Results:
- Four out of the studied H5N1 viruses exhibited resistance to amantadine.
- Two resistant viruses possessed the S31N mutation, and two had the V27A mutation.
- Resistant viruses demonstrated significantly different effective concentration 50% (EC50) values compared to susceptible strains and retained replicative capacity.
Conclusions:
- The study confirms amantadine resistance in Indian H5N1 avian influenza viruses.
- Established molecular markers (S31N, V27A) correlate with in vitro resistance.
- H5N1 viruses can develop amantadine resistance with retained replicative ability, even without direct drug pressure.
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