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CD4+ T proliferation and autoimmunity
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创建时间:
2025-04-01
相关数据集
Loss of TET2 results in DNA methylation changes in mouse GC B-cells (hMeDIP-Seq data set). Loss of TET2 results in DNA methylation changes in mouse GC B-cells (hMeDIP-Seq data set)
Absence of Tet2 at mouse cells results in loss of hydroxymethylcytosine Overall design: Hydroxymethylmethylcytosine DNA immunoprecipitation sequencing (hMeDIP-seq) of mouse TET2 WT and KO GC B-cells
NIAID Data Ecosystem60
Supporting data for "The role of AIM2 inflammasome in Systemic Lupus Erythematosus"
Systemic Lupus Erythematosus is a chronic autoimmune condition in which the body mistakenly attacks itself. It’s aetiopathogenesis is highly complex. Increasing evidence suggests that the innate immun
DataCite Commons2021-09-15 更新50
Table 4_Disease association study of Autoimmune and autoinflammatory diseases by integrating multi-modal data and hierarchical ontologies.xlsx
BackgroundAutoimmune and autoinflammatory diseases (AIIDs) are characterized by significant heterogeneity and comorbidities, complicating their mechanisms and classification. Disease associations stud
NIAID Data Ecosystem10
Genetically-driven target tissue over-expression of CD40: A novel mechanism in autoimmune disease
The CD40 gene, an important immune regulatory gene, is also expressed and functional on non-myeloid derived cells, many of which are targets for tissue specific autoimmune diseases, including d thyroi
NIAID Data Ecosystem50
Transcriptomic profiling of cultured macrophages derived from bone marrow monocyte subsets
The bone marrow monocyte population contains subsets expressing differing amount of LFA-1 and Mac-1. The current analysis has profiled the macrophages derived from the LFA-1-hi Mac-1-hi subsets (MOhi2
NIAID Data Ecosystem30



