Showing 341 - 360 results of 415 for search '(( greater decrease ) OR ((( peer decrease ) OR ((( line increase ) OR ( peers decrease ))))))*', query time: 0.13s Refine Results
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    Immunomodulatory effects of tumor Lactate Dehydrogenase C (LDHC) in breast cancer by Adviti Naik (673163)

    Published 2025
    “…Silencing LDHC in breast cancer cell lines (MDA-MB-468, BT-549, HCC-1954) enhanced early T cell activation and cytolytic activity. …”
  6. 346

    G9a-mediated repression of CDH10 in hypoxia enhances breast tumour cell motility and associates with poor survival outcome by Francesco Casciello (18557613)

    Published 2020
    “…CDH10 overexpression significantly reduces cellular movements in breast cancer cell lines and prevents the hypoxia-mediated increase in cell motility. …”
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    The relationship between Determinants of Risk Governance assurance and efficacy of the Public projects in the Government of Dubai from the perspective of Internal Audit Function by MUBARAK, ALIA MARJAN

    Published 2018
    “…These mega-projects may include the construction of major buildings, roads, railway lines and airports. The success of these public initiatives may create the course for the government to decrease its reliance on other sectors. …”
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    RFX3 is essential for the generation of functional human pancreatic islets from stem cells by Bushra Memon (4792767)

    Published 2025
    “…</p><h3>Methods</h3><p dir="ltr">We generated <i>RFX3 </i> knockout (<i>RFX3 KO</i>) iPSC lines using CRISPR/Cas9 and differentiated them into pancreatic islet organoids. …”
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    Targeting acute myeloid leukemia cells with novel photosensitive ruthenium-based metal-organic compounds. (c2015) by Azar, Daniel Fadi

    Published 2016
    “…Furthermore, we have attempted to examine the photochemical potential of our metal-organic compound model by combining L-II and L-III in the same metal complex, thus generating four final complexes with differing net charges (from +2 to -4), and examining their activities on a panel of AML cell lines with or without exposure to blue light. Of the four final complexes Ru-II3, Ru-II2-III, Ru-II-III2 and Ru-III3, only Ru-II3 and Ru-II2-III have shown significant activity against all tested cell lines in the dark, whereas photo-activation against ML2 has shown a marked increase of potency of all four complexes, even those shown to be biologically inert in the dark, reaching IC50 values in the nM range. …”
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