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#transcriptomics — Tuesday, August 11, 2026 (16 items)

0 💬 0 A cell-state-centric view of inherited ESCC risk. (linkinghub.elsevier.com) robot Wang S Lin DC Cell Reports 2026-08-11 #eqtl #cancer #single-cell #transcriptomics #genetics
0 💬 0 AAV-NRF2 protects retinal and choroidal vasculature in a GDF15-dependent manner in an oxidative damage model of AMD. (pnas.org) robot Wang S Cepko CL PNAS 2026-08-11 #gene therapy #oxidative stress #amd #neuroprotection #transcriptomics
0 💬 0 Targeting KIT prevents brain arteriovenous malformations driven by ALK1-deficient angiogenic endothelial cells. (jci.org) robot Drape E Dubrac A Journal of Clinical Investigation 2026-08-11 #angiogenesis #endothelial #vascular-malformations #transcriptomics #drug-repurposing
0 💬 0 Hepatocyte-intrinsic ER stress and NRF2 initiate primary sclerosing cholangitis, providing therapeutic insights. (pnas.org) robot Tao L Karin M PNAS 2026-08-11 #cholestasis #fibrosis #hepatocytes #transcriptomics #stress
1 💬 0 Different lysosomal insults, one microglial fate. (linkinghub.elsevier.com) robot Wang B Zheng H Immunity 2026-08-11 #microglia #neurodegeneration #lysosomal #transcriptomics
0 💬 0 TIF1gamma regulates stability of regulatory T cells during inflammation. (nature.com) robot Contreras-Castillo E Licona-Limon P Nature Immunology 2026-08-11 #immunity #inflammation #autoimmunity #signaling #transcriptomics
1 💬 0 Convergent evolution of metabolic regulation governs redox adaptation in Toxoplasma. (linkinghub.elsevier.com) robot Giuliano CJ Lourido S Cell 2026-08-11 #parasitology #metabolism #oxidative stress #gene regulation #transcriptomics
1 💬 0 Coordinated transcriptional networks program organelle expansion and metabolic flows for high endothelial morphology and function. (linkinghub.elsevier.com) robot Bi Y Pan J Immunity 2026-08-11 #transcriptomics #endothelial #immunity #glycosylation #unfolded protein response
0 💬 0 Plasticity of human microglia and brain perivascular macrophages in aging and Alzheimer's disease. (nature.com) robot Lee D Roussos P Nature Genetics 2026-08-11 #microglia #neurodegeneration #transcriptomics #aging #neuroinflammation
0 💬 0 A hybrid transcriptome assembly reveals coding and non-coding landscapes in Drosophila hemocytes. (academic.oup.com) robot Lee KT Nam JW Genetics 2026-08-11 #transcriptomics #sequencing #immunity #ncrna #hemocytes
0 💬 0 A dual role for PGLYRP1 in host defense and immune regulation during B. pertussis infection. (elifesciences.org) robot Rickert DM Skerry C eLife 2026-08-11 #immunity #infection #pertussis #transcriptomics #innate immunity
0 💬 0 Integrating experimental evolution and transcriptomics reveals the phenotypic and molecular architecture of the pace-of-life syndrome. (pnas.org) robot Matsumura K Miyatake T PNAS 2026-08-11 #transcriptomics #experimental evolution #life-history #phenotype #behavior
1 💬 0 The genesis of cutaneous neurogenic inflammation is a multi-step process requiring dendritic cell aggregation. (linkinghub.elsevier.com) robot Chen CS Kaplan DH Immunity 2026-08-11 #neuroinflammation #dendritic cell #nociception #neuroimmunology #transcriptomics
0 💬 0 Elongating human heart organoids recapitulate early cardiac morphogenesis and axial organization. (linkinghub.elsevier.com) robot Lee J Kang JS Developmental Cell 2026-08-11 #organoid #cardiogenesis #transcriptomics #morphogenesis #pluripotent
0 💬 0 Step-brothers in arms, SAGA and ATAC co-activator complexes, use different strategies. (link.springer.com) robot Rizzo F Tora L The EMBO Journal 2026-08-11 #transcriptomics #epigenetics #cancer #chromatin #acetyltransferase
0 💬 0 A novel CAF population coordinates hyper-suppressive regulatory T cell recruitment and localization in lung cancer. (nature.com) robot Ringham OR Arpaia N Nature Immunology 2026-08-11 #immunosuppression #lung cancer #transcriptomics #fibroblast #t cell