Showing 5,241 - 5,260 results of 43,595 for search '(( 50 ((nn decrease) OR (mean decrease)) ) OR ( 5 ((we decrease) OR (teer decrease)) ))', query time: 0.91s Refine Results
  1. 5241

    DataSheet_1_SARS-CoV-2-Specific IgG and IgA response in maternal blood and breastmilk of vaccinated naïve and convalescent lactating participants.docx by Yesica Longueira (13896795)

    Published 2022
    “…</p>Methods<p>Here, we evaluated anti-SARS-CoV-2 IgG and IgA levels in both serum and milk samples using a longitudinal and a cross-sectional cohort of 208 breastfeeding vaccinated women from Argentina with or without previous SARS-CoV-2 infection.…”
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  3. 5243

    Increased CD4<sup>+</sup>CXCR5<sup>+</sup>T follicular helper cells in diabetic nephropathy by Nan Zhang (46264)

    Published 2016
    “…Post-treatment, there was a significant reduction in the CD4<sup>+</sup>CXCR5<sup>+</sup>PD-1<sup>+</sup> Tfh cell counts and its subsets, with a corresponding decrease in plasma levels of IL-6 and IL-17A (<i>p</i> < 0.05) in DN patients, as compared to the HCs. …”
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  6. 5246

    Data_Sheet_1_Functional Change of Effector Tumor-Infiltrating CCR5+CD38+HLA-DR+CD8+ T Cells in Glioma Microenvironment.docx by Pin-Yuan Chen (391703)

    Published 2019
    “…However, little is known about the characteristics of peripheral and tumor-infiltrating CD8<sup>+</sup> T cells in patients with glioma. In this study, we examined the level of CD8<sup>+</sup> T-cell activation in a group of 143 patients with glioma and determined that peripheral CD3<sup>+</sup> T cells decreased in accordance with disease severity. …”
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  9. 5249

    Table_4_Aneuploidy enables cross-tolerance to unrelated antifungal drugs in Candida parapsilosis.DOCX by Liu-liu Sun (15205327)

    Published 2023
    “…In clinical isolates, tolerance to echinocandins in Candida species is mostly due to point mutations of FKS genes, which encode the target protein of echinocandins. However, here, we found chromosome 5 trisomy was the major mechanism of adaptation to the echinocandin drug caspofungin, and FKS mutations were rare events. …”
  10. 5250

    Table_2_Aneuploidy enables cross-tolerance to unrelated antifungal drugs in Candida parapsilosis.DOCX by Liu-liu Sun (15205327)

    Published 2023
    “…In clinical isolates, tolerance to echinocandins in Candida species is mostly due to point mutations of FKS genes, which encode the target protein of echinocandins. However, here, we found chromosome 5 trisomy was the major mechanism of adaptation to the echinocandin drug caspofungin, and FKS mutations were rare events. …”
  11. 5251

    Table_3_Aneuploidy enables cross-tolerance to unrelated antifungal drugs in Candida parapsilosis.XLSX by Liu-liu Sun (15205327)

    Published 2023
    “…In clinical isolates, tolerance to echinocandins in Candida species is mostly due to point mutations of FKS genes, which encode the target protein of echinocandins. However, here, we found chromosome 5 trisomy was the major mechanism of adaptation to the echinocandin drug caspofungin, and FKS mutations were rare events. …”
  12. 5252

    Image_1_Aneuploidy enables cross-tolerance to unrelated antifungal drugs in Candida parapsilosis.TIF by Liu-liu Sun (15205327)

    Published 2023
    “…In clinical isolates, tolerance to echinocandins in Candida species is mostly due to point mutations of FKS genes, which encode the target protein of echinocandins. However, here, we found chromosome 5 trisomy was the major mechanism of adaptation to the echinocandin drug caspofungin, and FKS mutations were rare events. …”
  13. 5253

    Table_1_Aneuploidy enables cross-tolerance to unrelated antifungal drugs in Candida parapsilosis.DOCX by Liu-liu Sun (15205327)

    Published 2023
    “…In clinical isolates, tolerance to echinocandins in Candida species is mostly due to point mutations of FKS genes, which encode the target protein of echinocandins. However, here, we found chromosome 5 trisomy was the major mechanism of adaptation to the echinocandin drug caspofungin, and FKS mutations were rare events. …”
  14. 5254

    Image_3_Aneuploidy enables cross-tolerance to unrelated antifungal drugs in Candida parapsilosis.TIF by Liu-liu Sun (15205327)

    Published 2023
    “…In clinical isolates, tolerance to echinocandins in Candida species is mostly due to point mutations of FKS genes, which encode the target protein of echinocandins. However, here, we found chromosome 5 trisomy was the major mechanism of adaptation to the echinocandin drug caspofungin, and FKS mutations were rare events. …”
  15. 5255

    Image_2_Aneuploidy enables cross-tolerance to unrelated antifungal drugs in Candida parapsilosis.TIF by Liu-liu Sun (15205327)

    Published 2023
    “…In clinical isolates, tolerance to echinocandins in Candida species is mostly due to point mutations of FKS genes, which encode the target protein of echinocandins. However, here, we found chromosome 5 trisomy was the major mechanism of adaptation to the echinocandin drug caspofungin, and FKS mutations were rare events. …”
  16. 5256

    Image_4_Aneuploidy enables cross-tolerance to unrelated antifungal drugs in Candida parapsilosis.TIFF by Liu-liu Sun (15205327)

    Published 2023
    “…In clinical isolates, tolerance to echinocandins in Candida species is mostly due to point mutations of FKS genes, which encode the target protein of echinocandins. However, here, we found chromosome 5 trisomy was the major mechanism of adaptation to the echinocandin drug caspofungin, and FKS mutations were rare events. …”
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    Down-regulation of HCP5 inhibits cell proliferation, migration, and invasion through regulating EPHA7 by competitively binding miR-101 in osteosarcoma by Yangmao Tu (10461966)

    Published 2021
    “…Long non-coding RNAs (lncRNAs) have been reported to be associated with tumorigenesis and metastasis. In this study, we investigated the expression and roles of lncRNA human histocompatibility leukocyte antigen (HLA) complex P5 (HCP5) in OS, aiming to provide a novel molecular mechanism for OS. …”
  19. 5259

    Lipid Droplet-Binding Protein TIP47 Regulates Hepatitis C Virus RNA Replication through Interaction with the Viral NS5A Protein by Dorothee A. Vogt (247917)

    Published 2013
    “…To identify host proteins that interact with NS5A, we performed a yeast two-hybrid screen with the N-terminus of NS5A (amino acids 1–31), a well-studied α-helical domain important for the membrane tethering of NS5A. …”
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