Acute viral infection accelerates neurodegeneration in a mouse model of ALS
Острая вирусная инфекция ускоряет нейродегенерацию в мышиной модели БАС
2026-08-29
SCID: 54.1/czncrn9h
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SOD1 G93A mouse modelacute viral infectionamyotrophic lateral sclerosisgliosisinfluenza A virus and SARS-CoV-2
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Abstract (AI)
Summary While several viral infections have been associated with amyotrophic lateral sclerosis (ALS), the mechanism(s) through which they promote disease has remained almost entirely elusive. This study investigated the impact of common, acute viral infections prior to disease onset on ALS progression in the SOD1 G93A mouse model. A single sublethal infection prior to onset of ALS clinical signs was associated with markedly accelerated ALS disease progression characterized by rapid loss of hindlimb function. Prior infection resulted in gliosis in the lumbar spine and upregulation of transcriptional pathways involved in inflammatory responses, metabolic dysregulation, and muscular dysfunction. Therapeutic suppression of gliosis with an anti-inflammatory small molecule, or administration of a direct-acting antiviral, was associated with significantly improved ALS clinical signs, akin to what was observed in uninfected animals. This study provides causal and mechanistic evidence that the immune response elicited by acute viral infections may be an important etiological factor that alters ALS disease trajectory, and provides insight into novel therapeutic and preventative strategies for ALS. One Sentence Summary Acute viral infection with influenza A virus and SARS-CoV-2 accelerates the progression of ALS in SOD1 G93A mice.
Key Findings
1
A single sublethal acute viral infection before symptom onset markedly accelerates ALS progression in SOD1 G93A mice, causing rapid hindlimb function loss.
2
Influenza A virus and SARS-CoV-2 infections accelerate ALS disease progression in the SOD1 G93A mouse model.
3
Prior viral infection induces lumbar spinal gliosis and upregulates pathways related to inflammation, metabolic dysregulation, and muscle dysfunction.
4
Suppressing gliosis with an anti-inflammatory small molecule or treating with a direct-acting antiviral significantly improves ALS clinical signs toward uninfected-animal levels.
5
The findings provide causal and mechanistic evidence that immune responses to acute viral infection can alter ALS disease trajectory and suggest therapeutic and preventive strategies.
Research Object
ALS progression in SOD1 G93A mice following acute influenza A virus or SARS-CoV-2 infection
Research Subject
The causal and mechanistic effects of acute viral infection and its immune response on ALS progression, including gliosis, inflammatory and metabolic dysregulation, muscular dysfunction, and therapeutic modulation
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2026-08-29
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