A
Anamika Mishra
Researcher at Indian Council of Agricultural Research
Publications - 29
Citations - 428
Anamika Mishra is an academic researcher from Indian Council of Agricultural Research. The author has contributed to research in topics: Influenza A virus subtype H5N1 & Virus. The author has an hindex of 8, co-authored 24 publications receiving 291 citations. Previous affiliations of Anamika Mishra include Indian Veterinary Research Institute.
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The microRNA miR-485 targets host and influenza virus transcripts to regulate antiviral immunity and restrict viral replication
Harshad Ingle,Sushil Kumar,Ashwin Ashok Raut,Anamika Mishra,Diwakar D. Kulkarni,Takeshi Kameyama,Akinori Takaoka,Shizuo Akira,Himanshu Kumar,Himanshu Kumar +9 more
TL;DR: Inhibition of the expression of mir-485 markedly reduced the replication of Newcastle disease virus and the H5N1 strain of influenza virus in mammalian cells, highlighting the dual role of miR-485 in preventing spurious activation of antiviral signaling and restricting influenza virus infection.
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Genome Wide Host Gene Expression Analysis in Chicken Lungs Infected with Avian Influenza Viruses
P.B. Ranaware,Anamika Mishra,Periyasamy Vijayakumar,Pradeep N. Gandhale,Himanshu Kumar,Diwakar D. Kulkarni,Ashwin Ashok Raut +6 more
TL;DR: The relationship between host immune genes and their roles in pathogenesis of HPAIV infection in chickens and the expression levels of most of these genes was not induced in the lungs of LPAI H9N2 virus infected chickens were indicated.
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MicroRNA hsa-miR-324-5p Suppresses H5N1 Virus Replication by Targeting the Viral PB1 and Host CUEDC2.
Ashish Kumar,Akhilesh Kumar,Harshad Ingle,Sushil Kumar,Richa Mishra,Mahendra Kumar Verma,Debasis Biswas,Nachimuthu Senthil Kumar,Anamika Mishra,Ashwin Ashok Raut,Akinori Takaoka,Himanshu Kumar,Himanshu Kumar +12 more
TL;DR: This work shows that miR-324-5p suppresses H5N1 HPAIV replication by directly targeting the viral genome and cellular CUEDC2 gene, the negative regulator of the interferon pathway (thereby enhancing antiviral genes) and enhances the knowledge of the role of microRNAs in the cellular response to viral infection.
Journal ArticleDOI
Duck gut viral metagenome analysis captures snapshot of viral diversity
Mohammed Fawaz,Periyasamy Vijayakumar,Anamika Mishra,Pradeep N. Gandhale,Rupam Dutta,Nitin M. Kamble,Shashi Bhushan Sudhakar,Parimal Roychoudhary,Himanshu Kumar,Diwakar D. Kulkarni,Ashwin Ashok Raut +10 more
TL;DR: This study deep sequenced the viral nucleic acid extracted from cloacal swabs collected from the flock of 23 ducks which shared the water bodies with wild migratory birds and increased the understanding of the viral diversity and expands the knowledge about the spectrum of viruses harboured in the enteric tract of ducks.