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The microarray results show that our modified technologies are useful to enhance sensitivity and specificity of arrays, identify expression patterns within different cells, and discover differential expression of sRNAs during the differentiation process of bone marrow stem cells.
Expression data from our microarray results show high levels of miR-23a throughout the GP to OL stages.
Our microarray results show that in the context of SOD2 deficiency, oxidant stress leads to a broad down-regulation of genes encoding components of the respiratory chain.
Simulations and real microarray results show that false positive rate of SWang is lower than currently popular methods (T-test, F-test, SAM, and Fold-change) with much higher statistical power.
The microarray results show a similar pattern of expression for most of the growth-responsive genes.
In pigs, our qRT-PCR and microarray results show that MMP7 expression is greater in Yorkshire endometrium on day 12 of pregnancy compared to Meishan.
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The microarray results showed that many genes involved in cell survival and proliferation were regulated by bFGF.
Our microarray results showed significant upregulation of master cardiac transcriptional regulators, as well as cardiac-specific structural and functional genes (Figure 2a, also see Supplemental Results S1).
The microarray results showed that transcription of cluster 6 genes was strongly repressed by HUαβ at all three growth phases analyzed (Fig. 1).
Microarray results showed 7 genes that were significantly changed ≥3-fold in at least one of the two comparisons (Table 6).
Our RT-qPCR measurements in the same 20 samples confirmed the microarray results, showing that this microRNA is indeed down-regulated (FC = −9.4, P = 1.6 7), and a close-to-perfect separation is shown with an AUC of 0.99 (Figure 7).
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