Chronic skin ultraviolet irradiation induces transcriptomic changes associated with microglial dysfunction in the hippocampus.
Kyeong-No YoonYujin KimYidan CuiJungeun JiGunhyuk ParkJin Ho ChungYong-Seok LeeJoon-Yong AnDong Hoon LeePublished in: Molecular brain (2022)
Recent evidence indicates that ultraviolet (UV) exposure of the skin can affect brain functions such as learning and memory, addictive behavior, and hippocampal neurogenesis. These changes are closely associated with hippocampal function, which plays a pivotal role in learning and memory formation. However, the molecular mechanisms underlying these UV-induced skin-brain interactions remain unclear. To elucidate the molecular signature associated with UV-induced neurobehavioral changes, we analyzed the hippocampal transcriptome in a well-established mouse skin aging model, which showed thickened skin and impaired hippocampal memory. Transcriptome analysis revealed that significantly downregulated genes in UV-irradiated mice are enriched in neuroimmune-related signaling pathways. Furthermore, cell-type analysis showed that DEGs are also enriched in microglia. Consistently, immunofluorescence imaging showed an increased number of Iba1-positive microglia in the hippocampi of UV-irradiated mice. Collectively, our findings highlight that chronic UV irradiation of the skin causes significant changes in the neuroimmune system in the hippocampus, accompanied by microglial dysfunction and cognitive impairment.
Keyphrases
- cerebral ischemia
- soft tissue
- wound healing
- cognitive impairment
- inflammatory response
- single cell
- neuropathic pain
- subarachnoid hemorrhage
- blood brain barrier
- high glucose
- white matter
- oxidative stress
- genome wide
- lipopolysaccharide induced
- signaling pathway
- rna seq
- diabetic rats
- gene expression
- transcription factor
- aqueous solution
- high resolution
- insulin resistance
- photodynamic therapy
- endothelial cells
- radiation induced
- high fat diet induced
- temporal lobe epilepsy
- mass spectrometry
- induced apoptosis