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- W2768003126 endingPage "121" @default.
- W2768003126 startingPage "101" @default.
- W2768003126 abstract "Whole genome gene expression datasets of tissues or homogeneous cell populations isolated from healthy or disease states (humans or animals) provide a glimpse of the entire transcriptome within a narrow temporal and spatial functional window, and thereby assist the identification of key molecules and transcriptional regulatory networks within a biological system. Clusters of co-expressed genes can guide the discovery of candidate lineage markers and regulators of cell function. While gene expression microarrays have not yet been explored to their full potential in the field of skeletal biology, work over the last decade has presented data that have greatly benefited from genomic approaches. Here we will review recent work that has used gene expression microarrays as a tool for furthering our understanding of: (1) cell-specific gene expression (osteoblast and osteocyte); (2) skeletal development (endochondral bone formation); (3) biomechanical effects on bone; (4) molecular changes in animal models of bone disease, and (5) patients with osteoporosis (OP). We will focus primarily on literature that describes profiling of homogeneous cells, cell samples, tissue microdissection from patients or live animals, to provide an overview of genomic profiling that may more faithfully adhere to in vivo bone physiology." @default.
- W2768003126 created "2017-11-17" @default.
- W2768003126 creator A5012395081 @default.
- W2768003126 creator A5026487959 @default.
- W2768003126 date "2013-01-01" @default.
- W2768003126 modified "2023-09-25" @default.
- W2768003126 title "Genomic Profiling in Bone" @default.
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