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Interferome
The Role of Type I Interferon in the Immunobiology of Chikungunya Virus
Stimulation of Innate and Adaptive Immunity by Using Filamentous Bacteriophage Fd Targeted to DEC-205
Type I Interferon Remodels Lysosome Function and Modifies Intestinal Epithelial Defense
Microglial Responses to Peripheral Type 1 Interferon Ernest Aw1,2, Yingying Zhang1 and Michael Carroll1*
Combined Genetic and Transcriptome Analysis of Patients With
An Inflammatory Gene Signature Distinguishes Neurofibroma
(Hies) Infected with Enteric RNA Viruses Identifies Universal and Virus-Specific Epithelial Responses
SNP) at Codon 72 of P53 in the Innate Immune Response Against Virus Infection
Norovirus Replication in Human Intestinal Epithelial Cells Is Restricted by The
Influenza Infection Triggers Disease in a Genetic Model of Experimental
IFN-Stimulated Genes in Zebrafish and Humans Define an Ancient Arsenal of Antiviral Immunity
Transcriptional Dysregulation of Interferome in Experimental and Human Multiple Sclerosis
Chicken Interferome: Avian Interferon-Stimulated Genes Identified by Microarray and RNA-Seq of Primary Chick Embryo Fibroblasts
Fundamental Properties of the Mammalian Innate Immune System Revealed by Multispecies Comparison of Type I Interferon Responses
The Relationship Between Cytokine and Neutrophil Gene Network Distinguishes SARS-Cov-2–Infected Patients by Sex and Age
Dennis, Tristan Philip Wesley (2018) Mining Genome Data for Endogenous Viral Elements and Interferon Stimulated Genes: Insights Into Host Virus Co- Evolution
Gene Expression Profile in Cervical Carcinoma Cells Treated with Heberferon. Perfil De Expresión Génica En Células De Carcinoma Cervical Tratadas Con Heberferon
Transcriptional Dysregulation of Interferome In
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ILF3 Contributes to the Establishment of the Antiviral Type I Interferon
Maternal Type-I Interferon Signaling Adversely Affects the Microglia and the Behavior of the Offspring Accompanied by Increased Sensitivity to Stress
A Cell Type-Specific Transcriptomic Approach to Map B Cell And
ADAR1 Interaction with Z-RNA Promotes Editing of Endogenous Double-Stranded RNA and Prevents MDA5-Dependent Immune Activation