Showing 99,901 - 99,920 results of 104,446 for search '(( a step decrease ) OR ( 5 ((((mean decrease) OR (point decrease))) OR (a decrease)) ))', query time: 1.64s Refine Results
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    DNA Repair Pathway Selection Caused by Defects in <i>TEL1</i>, <i>SAE2</i>, and <i>De Novo</i> Telomere Addition Generates Specific Chromosomal Rearrangement Signatures by Christopher D. Putnam (249172)

    Published 2014
    “…By analyzing over 95 mutant strains of <i>Saccharomyces cerevisiae</i>, we found that the frequency of GCRs that deleted an internal <i>CAN1/URA3</i> cassette on chrV L while retaining a chrV L telomeric <i>hph</i> marker was significantly higher in <i>tel1Δ</i>, <i>sae2Δ</i>, <i>rad53Δ sml1Δ</i>, and <i>mrc1Δ tof1Δ</i> mutants. …”
  10. 99910

    Image6_Lanatoside C decelerates proliferation and induces apoptosis through inhibition of STAT3 and ROS-mediated mitochondrial membrane potential transformation in cholangiocarcino... by Chao Zhang (51048)

    Published 2023
    “…</p><p>Methods: In this study, we extracted five cardiac glycosides (CGs) from natural plants: digoxin, lanatoside A, lanatoside C, lanatoside B, and gitoxin. …”
  11. 99911

    Image7_Lanatoside C decelerates proliferation and induces apoptosis through inhibition of STAT3 and ROS-mediated mitochondrial membrane potential transformation in cholangiocarcino... by Chao Zhang (51048)

    Published 2023
    “…</p><p>Methods: In this study, we extracted five cardiac glycosides (CGs) from natural plants: digoxin, lanatoside A, lanatoside C, lanatoside B, and gitoxin. …”
  12. 99912

    Image1_Lanatoside C decelerates proliferation and induces apoptosis through inhibition of STAT3 and ROS-mediated mitochondrial membrane potential transformation in cholangiocarcino... by Chao Zhang (51048)

    Published 2023
    “…</p><p>Methods: In this study, we extracted five cardiac glycosides (CGs) from natural plants: digoxin, lanatoside A, lanatoside C, lanatoside B, and gitoxin. …”
  13. 99913

    Image2_Lanatoside C decelerates proliferation and induces apoptosis through inhibition of STAT3 and ROS-mediated mitochondrial membrane potential transformation in cholangiocarcino... by Chao Zhang (51048)

    Published 2023
    “…</p><p>Methods: In this study, we extracted five cardiac glycosides (CGs) from natural plants: digoxin, lanatoside A, lanatoside C, lanatoside B, and gitoxin. …”
  14. 99914

    Table1_Lanatoside C decelerates proliferation and induces apoptosis through inhibition of STAT3 and ROS-mediated mitochondrial membrane potential transformation in cholangiocarcino... by Chao Zhang (51048)

    Published 2023
    “…</p><p>Methods: In this study, we extracted five cardiac glycosides (CGs) from natural plants: digoxin, lanatoside A, lanatoside C, lanatoside B, and gitoxin. …”
  15. 99915

    Image4_Lanatoside C decelerates proliferation and induces apoptosis through inhibition of STAT3 and ROS-mediated mitochondrial membrane potential transformation in cholangiocarcino... by Chao Zhang (51048)

    Published 2023
    “…</p><p>Methods: In this study, we extracted five cardiac glycosides (CGs) from natural plants: digoxin, lanatoside A, lanatoside C, lanatoside B, and gitoxin. …”
  16. 99916

    Image3_Lanatoside C decelerates proliferation and induces apoptosis through inhibition of STAT3 and ROS-mediated mitochondrial membrane potential transformation in cholangiocarcino... by Chao Zhang (51048)

    Published 2023
    “…</p><p>Methods: In this study, we extracted five cardiac glycosides (CGs) from natural plants: digoxin, lanatoside A, lanatoside C, lanatoside B, and gitoxin. …”
  17. 99917

    Adaptive parameter of standard deviation enhances the power of noninvasive prenatal screens by Li Qu (89645)

    Published 2022
    “…Another 6592 samples were used to compare the two methods on detecting five recurrent fetal copy number variation (CNV) syndromes, in which the FP samples have decreased from 99 to 39.…”
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    K70Q Adds High-Level Tenofovir Resistance to “Q151M Complex” HIV Reverse Transcriptase through the Enhanced Discrimination Mechanism by Atsuko Hachiya (233188)

    Published 2011
    “…<div><p>HIV-1 carrying the “Q151M complex” reverse transcriptase (RT) mutations (A62V/V75I/F77L/F116Y/Q151M, or Q151Mc) is resistant to many FDA-approved nucleoside RT inhibitors (NRTIs), but has been considered susceptible to tenofovir disoproxil fumarate (TFV-DF or TDF). …”
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