[HTML][HTML] Identification of cellular microRNA-136 as a dual regulator of RIG-I-mediated innate immunity that antagonizes H5N1 IAV replication in A549 cells

L Zhao, J Zhu, H Zhou, Z Zhao, Z Zou, X Liu, X Lin… - Scientific reports, 2015 - nature.com
Abstract H5N1 influenza A virus (IAV) causes severe respiratory diseases and high mortality
rates in animals and humans. MicroRNAs are being increasingly studied to evaluate their …

[PDF][PDF] Identification of cellular microRNA-136 as a dual regulator of RIG-I-mediated innate immunity that antagonizes H5N1 IAV replication in A549 cells

L Zhao, J Zhu, H Zhou, Z Zhao, Z Zou, X Liu, X Lin… - researchgate.net
H5N1 influenza A virus (IAV) causes severe respiratory diseases and high mortality rates in
animals and humans. MicroRNAs are being increasingly studied to evaluate their potential …

[引用][C] Identification of cellular microRNA-136 as a dual regulator of RIG-I-mediated innate immunity that antagonizes H5N1 IAV replication in A549 cells

L Zhao, J Zhu, H Zhou, Z Zhao, Z Zou, X Liu… - Scientific …, 2015 - ui.adsabs.harvard.edu
Identification of cellular microRNA-136 as a dual regulator of RIG-I-mediated innate immunity
that antagonizes H5N1 IAV replication in A549 cells - NASA/ADS Now on home page ads icon …

[PDF][PDF] Identification of cellular microRNA-136 as a dual regulator of RIG-I-mediated innate immunity that antagonizes H5N1 IAV replication in A549 cells

L Zhao, J Zhu, H Zhou, Z Zhao, Z Zou, X Liu, X Lin… - cyberleninka.org
H5N1 influenza A virus (IAV) causes severe respiratory diseases and high mortality rates in
animals and humans. MicroRNAs are being increasingly studied to evaluate their potential …

Identification of cellular microRNA-136 as a dual regulator of RIG-I-mediated innate immunity that antagonizes H5N1 IAV replication in A549 cells

L Zhao, J Zhu, H Zhou, Z Zhao, Z Zou… - Scientific …, 2015 - pubmed.ncbi.nlm.nih.gov
H5N1 influenza A virus (IAV) causes severe respiratory diseases and high mortality rates in
animals and humans. MicroRNAs are being increasingly studied to evaluate their potential …

Identification of cellular microRNA-136 as a dual regulator of RIG-I-mediated innate immunity that antagonizes H5N1 IAV replication in A549 cells.

L Zhao, J Zhu, H Zhou, Z Zhao, Z Zou, X Liu… - Scientific …, 2015 - search.ebscohost.com
Abstract H5N1 influenza A virus (IAV) causes severe respiratory diseases and high mortality
rates in animals and humans. MicroRNAs are being increasingly studied to evaluate their …

Identification of cellular microRNA-136 as a dual regulator of RIG-I-mediated innate immunity that antagonizes H5N1 IAV replication in A549 cells

L Zhao, J Zhu, H Zhou, Z Zhao, Z Zou, X Liu, X Lin… - Scientific Reports, 2015 - cir.nii.ac.jp
抄録< jats: title> Abstract</jats: title>< jats: p> H5N1 influenza A virus (IAV) causes severe
respiratory diseases and high mortality rates in animals and humans. MicroRNAs are being …

[HTML][HTML] Identification of cellular microRNA-136 as a dual regulator of RIG-I-mediated innate immunity that antagonizes H5N1 IAV replication in A549 cells

L Zhao, J Zhu, H Zhou, Z Zhao, Z Zou, X Liu… - Scientific …, 2015 - ncbi.nlm.nih.gov
Abstract H5N1 influenza A virus (IAV) causes severe respiratory diseases and high mortality
rates in animals and humans. MicroRNAs are being increasingly studied to evaluate their …

Identification of cellular microRNA-136 as a dual regulator of RIG-I-mediated innate immunity that antagonizes H5N1 IAV replication in A549 cells.

L Zhao, J Zhu, H Zhou, Z Zhao, Z Zou, X Liu, X Lin… - Scientific …, 2015 - europepmc.org
Abstract H5N1 influenza A virus (IAV) causes severe respiratory diseases and high mortality
rates in animals and humans. MicroRNAs are being increasingly studied to evaluate their …

Identification of cellular microRNA-136 as a dual regulator of RIG-I-mediated innate immunity that antagonizes H5N1 IAV replication in A549 cells.

L Zhao, J Zhu, H Zhou, Z Zhao, Z Zou, X Liu, X Lin… - Scientific …, 2015 - europepmc.org
Abstract H5N1 influenza A virus (IAV) causes severe respiratory diseases and high mortality
rates in animals and humans. MicroRNAs are being increasingly studied to evaluate their …