Showing 201 - 220 results of 102,394 for search '(( 5 ((((ng decrease) OR (nn decrease))) OR (a decrease)) ) OR ( 2 fold decrease ))', query time: 1.33s Refine Results
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    Nitrile in the Hole: Discovery of a Small Auxiliary Pocket in Neuronal Nitric Oxide Synthase Leading to the Development of Potent and Selective 2‑Aminoquinoline Inhibitors by Maris A. Cinelli (1309419)

    Published 2017
    “…We previously developed a class of membrane-permeable 2-aminoquinoline inhibitors and later rearranged the scaffold to decrease off-target binding. …”
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    WT1 siRNA decreases proliferation, pAKT, and Bcl2 expression. by Ayana E. Morales (17756335)

    Published 2024
    “…Corresponding densitometry analysis is noted as protein fold expression compared to GAPDH for WT1, p<0.001(***), vFLIP(ns), LANA p<0.05(*), pAKT p<0.05(*), and BCL2 p <0.05(*) using two-sided, unpaired student t-tests. …”
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    VRK1 overexpression is seen in human breast cancer and is associated with decreased relapse-free survival. by Aye M. Mon (5714912)

    Published 2018
    “…Data for cancer subtypes are shown in boxes numbered 1–11: 1: benign breast neoplasm (rank 6459, 1.4 fold-change, NS), 2: breast carcinoma (rank 833, 1.5 fold-change, p = 3.83x10<sup>-5</sup>), 3: breast phyllodes tumor (rank 512, 1.2 fold-change, p = 0.002), 4: ductal breast carcinoma in situ (rank 1969, 1.5 fold-change, p = 0.002), 5: invasive breast carcinoma (rank 1060, 1.6 fold-change, p = 1.28x10<sup>-5</sup>), 6: invasive ductal and invasive lobular breast carcinoma (rank 941, 1.5 fold-change, p = 6.76x10<sup>-22</sup>), 7: invasive ductal breast carcinoma (rank 613, 1.5-fold change, p = 2.71x10<sup>-71</sup>), 8: invasive lobular breast carcinoma (rank 947, 1.3 fold-change, p = 3.64x10<sup>-28</sup>), 9: medullary breast carcinoma (rank 400, 1.8 fold-change, p = 3.25x10<sup>-12</sup>), 10: mucinous breast carcinoma (rank 1932, 1.4 fold-change, p = 7.41x10<sup>-10</sup>) and 11: tubular breast carcinoma (rank 1253, 1.4 fold-change, p = 1.24x10<sup>-17</sup>). …”
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    Signatures of the Protein Folding Pathway in Two-Dimensional Ultraviolet Spectroscopy by Jun Jiang (149215)

    Published 2015
    “…The complexity of signals decreases as the conformational entropy decreases in the course of the folding process. …”
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