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PDF) Ectromelia Virus Affects Mitochondrial Network Morphology,  Distribution, and Physiology in Murine Fibroblasts and Macrophage Cell Line
PDF) Ectromelia Virus Affects Mitochondrial Network Morphology, Distribution, and Physiology in Murine Fibroblasts and Macrophage Cell Line

Ectromelia - an overview | ScienceDirect Topics
Ectromelia - an overview | ScienceDirect Topics

Induction of Natural Killer Cell Responses by Ectromelia Virus Controls  Infection
Induction of Natural Killer Cell Responses by Ectromelia Virus Controls Infection

A virus-encoded type I interferon decoy receptor enables evasion of host  immunity through cell-surface binding | Nature Communications
A virus-encoded type I interferon decoy receptor enables evasion of host immunity through cell-surface binding | Nature Communications

Frontiers | The in Vitro Inhibitory Effect of Ectromelia Virus Infection on  Innate and Adaptive Immune Properties of GM-CSF-Derived Bone Marrow Cells  Is Mouse Strain-Independent | Microbiology
Frontiers | The in Vitro Inhibitory Effect of Ectromelia Virus Infection on Innate and Adaptive Immune Properties of GM-CSF-Derived Bone Marrow Cells Is Mouse Strain-Independent | Microbiology

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Viruses | Free Full-Text | Loss of Actin-Based Motility Impairs Ectromelia  Virus Release In Vitro but Is Not Critical to Spread In Vivo | HTML
Viruses | Free Full-Text | Loss of Actin-Based Motility Impairs Ectromelia Virus Release In Vitro but Is Not Critical to Spread In Vivo | HTML

Table 1 from H-2-linked control of resistance to Ectromelia virus infection  in 1310 congenic mice | Semantic Scholar
Table 1 from H-2-linked control of resistance to Ectromelia virus infection in 1310 congenic mice | Semantic Scholar

Frontiers | The in Vitro Inhibitory Effect of Ectromelia Virus Infection on  Innate and Adaptive Immune Properties of GM-CSF-Derived Bone Marrow Cells  Is Mouse Strain-Independent | Microbiology
Frontiers | The in Vitro Inhibitory Effect of Ectromelia Virus Infection on Innate and Adaptive Immune Properties of GM-CSF-Derived Bone Marrow Cells Is Mouse Strain-Independent | Microbiology

Abortive Ectromelia Virus Infection in Peritoneal Macrophages Activated by  Corynebacterium parvum
Abortive Ectromelia Virus Infection in Peritoneal Macrophages Activated by Corynebacterium parvum

PDF) Ectromelia Virus Affects Mitochondrial Network Morphology,  Distribution, and Physiology in Murine Fibroblasts and Macrophage Cell Line
PDF) Ectromelia Virus Affects Mitochondrial Network Morphology, Distribution, and Physiology in Murine Fibroblasts and Macrophage Cell Line

Ectromelia-encoded virulence factor C15 specifically inhibits antigen  presentation to CD4+ T cells post peptide loading
Ectromelia-encoded virulence factor C15 specifically inhibits antigen presentation to CD4+ T cells post peptide loading

Poxvirus tropism | Nature Reviews Microbiology
Poxvirus tropism | Nature Reviews Microbiology

Comparable Polyfunctionality of Ectromelia Virus- and Vaccinia Virus-Specific  Murine T Cells despite Markedly Different In Vivo Replication and  Pathogenicity | Journal of Virology
Comparable Polyfunctionality of Ectromelia Virus- and Vaccinia Virus-Specific Murine T Cells despite Markedly Different In Vivo Replication and Pathogenicity | Journal of Virology

THE CELLâ•'MEDIATED IMMUNE RESPONSE TO ECTROMELIA VIRUS INFECTION
THE CELLâ•'MEDIATED IMMUNE RESPONSE TO ECTROMELIA VIRUS INFECTION

Evidence for Persistence of Ectromelia Virus in Inbred Mice, Recrudescence  Following Immunosuppression and Transmission to Naïve Mice
Evidence for Persistence of Ectromelia Virus in Inbred Mice, Recrudescence Following Immunosuppression and Transmission to Naïve Mice

Frontiers | The in Vitro Inhibitory Effect of Ectromelia Virus Infection on  Innate and Adaptive Immune Properties of GM-CSF-Derived Bone Marrow Cells  Is Mouse Strain-Independent | Microbiology
Frontiers | The in Vitro Inhibitory Effect of Ectromelia Virus Infection on Innate and Adaptive Immune Properties of GM-CSF-Derived Bone Marrow Cells Is Mouse Strain-Independent | Microbiology

Mouse NK cell recognition of ectromelia virus-infected cells. The... |  Download Scientific Diagram
Mouse NK cell recognition of ectromelia virus-infected cells. The... | Download Scientific Diagram

Ectromelia Virus - an overview | ScienceDirect Topics
Ectromelia Virus - an overview | ScienceDirect Topics

Reprogrammed viruses as cancer therapeutics: targeted, armed and shielded |  Nature Reviews Microbiology
Reprogrammed viruses as cancer therapeutics: targeted, armed and shielded | Nature Reviews Microbiology

Ectromelia virus lacking the E3L ortholog is replication-defective and  nonpathogenic but does induce protective immunity in a mouse strain  susceptible to lethal mousepox - ScienceDirect
Ectromelia virus lacking the E3L ortholog is replication-defective and nonpathogenic but does induce protective immunity in a mouse strain susceptible to lethal mousepox - ScienceDirect

Methodical Review on Poxvirus Replication, Genes Responsible for the  Development of Infection and Host Immune Response Against the Disease
Methodical Review on Poxvirus Replication, Genes Responsible for the Development of Infection and Host Immune Response Against the Disease

Comparable Polyfunctionality of Ectromelia Virus- and Vaccinia Virus-Specific  Murine T Cells despite Markedly Different In Vivo Replication and  Pathogenicity | Journal of Virology
Comparable Polyfunctionality of Ectromelia Virus- and Vaccinia Virus-Specific Murine T Cells despite Markedly Different In Vivo Replication and Pathogenicity | Journal of Virology

Ectromelia virus accumulates less double-stranded RNA compared to vaccinia  virus in BS-C-1 cells - ScienceDirect
Ectromelia virus accumulates less double-stranded RNA compared to vaccinia virus in BS-C-1 cells - ScienceDirect

Poxvirus tropism | Nature Reviews Microbiology
Poxvirus tropism | Nature Reviews Microbiology

Evidence for Persistence of Ectromelia Virus in Inbred Mice, Recrudescence  Following Immunosuppression and Transmission to Naïve Mice
Evidence for Persistence of Ectromelia Virus in Inbred Mice, Recrudescence Following Immunosuppression and Transmission to Naïve Mice