Unique transcriptomic alterations in 5XFAD;PS19 mouse model identify glial lipid dysregulation and coordinated microglial-oligodendrocyte responses
Unique transcriptomic alterations in 5XFAD;PS19 mouse model identify glial lipid dysregulation and coordinated microglial-oligodendrocyte responses
Alzheimers. Dement., DOI: 10.1002/alz.71742
2026-08
생명과학
한빛사논문
김연진/upload/board/files/hbs_author/author_7/0037957_1.jpg(University of Washington)김연진
Modeling maternal immune activation in 3D ex vivo human fetal brain cerebroids reveals IL-17A-driven disruption of cortical development
Modeling maternal immune activation in 3D ex vivo human fetal brain cerebroids reveals IL-17A-driven disruption of cortical development
Nat. Neurosci., DOI: 10.1038/s41593-026-02400-2
2026-08
생명과학
한빛사논문
이동훈/upload/board/files/hbs_author/author_6/0032626_1.jpg(Icahn School of Medicine at Mount Sinai)이동훈
Plasticity of human microglia and brain perivascular macrophages in aging and Alzheimer’s disease
Plasticity of human microglia and brain perivascular macrophages in aging and Alzheimer’s disease
Nat. Genet., DOI: 10.1038/s41588-026-02716-6
2026-08
생명과학
한빛사논문
김윤석/upload/board/files/hbs_author/author_1/0031971_1.jpg(Stanford University, 현 EPFL)김윤석
Neuroligin-3–CSPG4 interaction maintains oligodendrocyte precursor cell progenitor state and promotes glioma proliferation through mechanotransduction
Neuroligin-3–CSPG4 interaction maintains oligodendrocyte precursor cell progenitor state and promotes glioma proliferation through mechanotransduction
Asymmetric distribution of mitochondrial Ca2+ regulators specifies compartment-specific mitochondrial function and neuronal development
Asymmetric distribution of mitochondrial Ca2+ regulators specifies compartment-specific mitochondrial function and neuronal development
Exp. Mol. Med., DOI: 10.1038/s12276-026-01803-2
2026-08
생명과학
한빛사논문
이준혁/upload/board/files/hbs_author/author_9/0033429_1.png(Harvard Medical School/Brigham and Women's Hospital)이준혁
[Perspective] Beyond the sugar coating: mucin-type O-Glycosylation as an underappreciated player in brain function and disease
[Perspective] Beyond the sugar coating: mucin-type O-Glycosylation as an underappreciated player in brain function and disease