Showing 1 - 20 results of 8,655 for search '(( significant ((genes decrease) OR (teer decrease)) ) OR ( significantly improved decrease ))', query time: 0.62s Refine Results
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    Table 2_Bibliometric analysis of global research on the clinical applications of aminoglycoside antibiotics: improving efficacy and decreasing risk.docx by Tengxiang Zhao (20749475)

    Published 2025
    “…Therapeutic drug monitoring should be performed in vulnerable populations, such as the elderly, children, and infants, to improve efficacy and reduce toxicity. Avoiding prolonged dosing cycles and refraining from using AGs in patients with the m.1555 A > G gene variant can significantly mitigate the risk of ototoxicity. …”
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    Table 1_Bibliometric analysis of global research on the clinical applications of aminoglycoside antibiotics: improving efficacy and decreasing risk.docx by Tengxiang Zhao (20749475)

    Published 2025
    “…Therapeutic drug monitoring should be performed in vulnerable populations, such as the elderly, children, and infants, to improve efficacy and reduce toxicity. Avoiding prolonged dosing cycles and refraining from using AGs in patients with the m.1555 A > G gene variant can significantly mitigate the risk of ototoxicity. …”
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    The miRNA target genes. by Zhaowen Tan (12283502)

    Published 2025
    “…</p><p>Results</p><p>1) Hemodynamic tests revealed that the blood pressure of SHRs in the BFRT decreased significantly and that the blood pressure level of SHRs in the BFRT decreased more significantly than that of the simple resistance training groups did (P < 0.05). 2) Cardiac function tests revealed that the EF, FS, and MV E/A of SHRs in the BFRT significantly increased, whereas the HR, IVSd, IVSs, LVIDd, LIVDs, LVPWd, LVPWs and LV mass significantly decreased (P < 0.05). 3) Transcriptome sequencing revealed 9 differentially expressed miRNAs in the BFRT group compared with the SHR-SED group (2 miRNAs were significantly upregulated, and 7 miRNAs were significantly downregulated), with P < 0.05 and |log2FoldChange| ≥ 1 used as the criteria for differential significance. …”
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    A Novel Phospholipase A<sub>1</sub> Gene from Tritipyrum Improves Wheat Early Ripening and Salt Tolerance by Jv Zhang (11175243)

    Published 2025
    “…However, the malondialdehyde content decreased. Conversely, <i>TtPLA</i><sub><i>1–1</i></sub> downregulation in “Y1805” using a virus-induced gene silencing system decreased the salt tolerance. …”