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Recently, a large-scale microarray study characterized gene expression differences between current, former, and never smokers [ 5], and identified specific genes related to xenobiotic functions, anti-oxidation, cell adhesion and electron transport to be more highly expressed in current smokers relative to never smokers.
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Over the last decade, microarray studies have characterized the gene expression profile of the human endometrium in different physiological states, such as during decidualization, the window of implantation, endometriosis, the normal menstrual and stimulated cycles, and endometrial cancer (Horcajadas et al., 2007; Haouzi et al., 2009a, b).
Microarray studies have previously characterized gene expression profiles in human skeletal muscle in relation to sex, age, endurance and resistance training [ 15, 16].
We further characterized the miRNA expression by miRNA microarray study, and both sequencing and microarray data uncovered the similar expression pattern of several known miRNAs in developing seeds.
The number of genes influenced by hypoxia in this study is markedly smaller than that of cold-regulated genes [ 12], but is quite similar with the previous studies characterizing hypoxia-regulated gene expression using microarray [ 27, 28].
To better characterize the signaling pathways responsive to BMP6, we conducted a time series microarray study to track BMP6 induced osteoblast differentiation and mineralization.
The resulting phenotypes were characterized and microarray studies were conducted on 24 hpf zebrafish embryos microinjected with the most potent of the two MOs, prp2-MO2.
Most multiple-comparison spotted DNA microarray studies to date can be characterized as one of three types of experimental design.
This isoform of ATG8 has been previously characterized by microarray studies [ 36] which reveal the highest level of floral expression within petal tissue, followed by stamen, with lesser amounts in sepal and carpel tissue; however, MPSS analysis reveals gynoecia enriched expression inclusive of the ovule.
Pathways regulated by glucocorticoids in omental and subcutaneous human adipose tissues: a microarray study.
Microarray study.
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