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Showing 1 - 17 results of 17 for search '(( aneuploid _ decrease ) OR ( euploid fold decrease ))', query time: 0.24s Refine Results
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    Chromosomal instability suppresses the growth of K-Ras-induced lung adenomas by Christopher D. Laucius (6816569)

    Published 2023
    “…<p>Chromosomal instability (CIN) is defined as a high rate of whole chromosome loss or gain and is a hallmark of many aneuploid solid tumors. CIN positively correlates with poor patient prognosis and chemotherapeutic resistance. …”
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    Supplementary Figure S1 from Cellular Prion Protein PrP<sup>C</sup> and Ecto-5′-Nucleotidase Are Markers of the Cellular Stress Response to Aneuploidy by Patrícia H. Domingues (14925828)

    Published 2023
    “…<p>Hierarchical clustering analysis of multiple cell surface markers in aneuploid cell lines. The expression of 291 cell surface markers (each row represents a single protein) in 5 different aneuploid cell lines (each column represents a different cell line, namely RPE1 5/3 12/3 - trisomy of chromosome 5 and 12 -, RPE1 21/3 - trisomy of chromosome 21 -, HCT116 5/3 - trisomy of chromosome 5 -, RPT1 - RPE1 post-tetraploid clone -, HPT1 - HCT116 post-tetraploid clone -) is shown in a matrix format. …”
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    Image1_Preimplantation genetic testing for complex chromosomal rearrangements: clinical outcomes and potential risk factors.PDF by Dun Liu (674970)

    Published 2024
    “…</p>Results<p>A total of 100 blastocysts were biopsied and analyzed in 15 CCR couples after 17 PGT-SR cycles, with 16.0% being euploid, 78.0% aneuploid and 6.0% mosaic. 11 normal/balanced embryos and one mosaic embryo were transferred, resulting in eight live births. …”
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    Table1_Preimplantation genetic testing for complex chromosomal rearrangements: clinical outcomes and potential risk factors.PDF by Dun Liu (674970)

    Published 2024
    “…</p>Results<p>A total of 100 blastocysts were biopsied and analyzed in 15 CCR couples after 17 PGT-SR cycles, with 16.0% being euploid, 78.0% aneuploid and 6.0% mosaic. 11 normal/balanced embryos and one mosaic embryo were transferred, resulting in eight live births. …”
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    Table_4_Aneuploidy enables cross-tolerance to unrelated antifungal drugs in Candida parapsilosis.DOCX by Liu-liu Sun (15205327)

    Published 2023
    “…Tolerance to 5-flucytosine might be due to the decreased expression of FUR1. Therefore, the pleiotropic effect of aneuploidy on antifungal tolerance was due to the simultaneous regulation of genes on the aneuploid chromosome and genes on euploid chromosomes. …”
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    Table_2_Aneuploidy enables cross-tolerance to unrelated antifungal drugs in Candida parapsilosis.DOCX by Liu-liu Sun (15205327)

    Published 2023
    “…Tolerance to 5-flucytosine might be due to the decreased expression of FUR1. Therefore, the pleiotropic effect of aneuploidy on antifungal tolerance was due to the simultaneous regulation of genes on the aneuploid chromosome and genes on euploid chromosomes. …”
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    Table_3_Aneuploidy enables cross-tolerance to unrelated antifungal drugs in Candida parapsilosis.XLSX by Liu-liu Sun (15205327)

    Published 2023
    “…Tolerance to 5-flucytosine might be due to the decreased expression of FUR1. Therefore, the pleiotropic effect of aneuploidy on antifungal tolerance was due to the simultaneous regulation of genes on the aneuploid chromosome and genes on euploid chromosomes. …”
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    Image_1_Aneuploidy enables cross-tolerance to unrelated antifungal drugs in Candida parapsilosis.TIF by Liu-liu Sun (15205327)

    Published 2023
    “…Tolerance to 5-flucytosine might be due to the decreased expression of FUR1. Therefore, the pleiotropic effect of aneuploidy on antifungal tolerance was due to the simultaneous regulation of genes on the aneuploid chromosome and genes on euploid chromosomes. …”
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    Table_1_Aneuploidy enables cross-tolerance to unrelated antifungal drugs in Candida parapsilosis.DOCX by Liu-liu Sun (15205327)

    Published 2023
    “…Tolerance to 5-flucytosine might be due to the decreased expression of FUR1. Therefore, the pleiotropic effect of aneuploidy on antifungal tolerance was due to the simultaneous regulation of genes on the aneuploid chromosome and genes on euploid chromosomes. …”
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    Image_3_Aneuploidy enables cross-tolerance to unrelated antifungal drugs in Candida parapsilosis.TIF by Liu-liu Sun (15205327)

    Published 2023
    “…Tolerance to 5-flucytosine might be due to the decreased expression of FUR1. Therefore, the pleiotropic effect of aneuploidy on antifungal tolerance was due to the simultaneous regulation of genes on the aneuploid chromosome and genes on euploid chromosomes. …”
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    Image_2_Aneuploidy enables cross-tolerance to unrelated antifungal drugs in Candida parapsilosis.TIF by Liu-liu Sun (15205327)

    Published 2023
    “…Tolerance to 5-flucytosine might be due to the decreased expression of FUR1. Therefore, the pleiotropic effect of aneuploidy on antifungal tolerance was due to the simultaneous regulation of genes on the aneuploid chromosome and genes on euploid chromosomes. …”
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    Image_4_Aneuploidy enables cross-tolerance to unrelated antifungal drugs in Candida parapsilosis.TIFF by Liu-liu Sun (15205327)

    Published 2023
    “…Tolerance to 5-flucytosine might be due to the decreased expression of FUR1. Therefore, the pleiotropic effect of aneuploidy on antifungal tolerance was due to the simultaneous regulation of genes on the aneuploid chromosome and genes on euploid chromosomes. …”