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Results 1-10 of 14
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Issue DateTitleAuthor(s)
1-Apr-2010New insights into the genetic control of gene expression using a Bayesian multi-tissue approach.Petretto, E; Bottolo, L; Langley, SR; Heinig, M; McDermott-Roe, C, et al
1-Jun-1999Genetics of Cd36 and the clustering of multiple cardiovascular risk factors in spontaneous hypertensionPravenec, M; Zidek, V; Simakova, M; Kren, V; Krenova, D, et al
11-Feb-2013Combined ChIP-Seq and transcriptome analysis identifies AP-1/JunD as a primary regulator of oxidative stress and IL-1 beta synthesis in macrophagesHull, RP; Srivastava, PK; D'Souza, Z; Atanur, SS; Mechta-Grigoriou, F, et al
15-Sep-2001DNA microarrays in medical practice.Aitman, TJ
1-Oct-2006Heritability and tissue specificity of expression quantitative trait lociPetretto, E; Mangion, J; Dickens, NJ; Cook, SA; Kumaran, MK, et al
29-Dec-2008Genome-Wide Co-Expression Analysis in Multiple TissuesGrieve, IC; Dickens, NJ; Pravenec, M; Kren, V; Hubner, N, et al
17-Feb-2012Role of Novel Rat-specific Fc Receptor in Macrophage Activation Associated with Crescentic GlomerulonephritisPage, TH; D'Souza, Z; Nakanishi, S; Serikawa, T; Pusey, CD, et al
1-Jul-2012Genetic basis of transcriptome differences between the founder strains of the rat HXB/BXH recombinant inbred panel.Simonis, M; Atanur, SS; Linsen, S; Guryev, V; Ruzius, FP, et al
14-Aug-2014Kcnn4 Is a Regulator of Macrophage Multinucleation in Bone Homeostasis and Inflammatory DiseaseKang, H; Kerloc'h, A; Rotival, M; Xu, X; Zhang, Q, et al
7-Jun-2017Identification of ceruloplasmin as a gene that affects susceptibility to glomerulonephritis through macrophage functionChen, T; Rotival, M; Behmoaras, JV; Chiu, LY; Bagnati, M, et al