Showing 1,821 - 1,840 results of 4,566 for search '(( significant decrease decrease ) OR ( significantly enhanced decrease ))~', query time: 0.28s Refine Results
  1. 1821

    Experimental treatments and groups. by Luqiong Liu (11537092)

    Published 2024
    “…Compared with LPS treatment alone, BA significantly mitigated the reduction in the TEER, decreased FD-4 flux permeability, increased the mRNA expression of ZO-1 and Occludin, and normalized the distribution of ZO-1 and Occludin in Caco2 cells. …”
  2. 1822

    Primers for RT-qPCR. by Luqiong Liu (11537092)

    Published 2024
    “…Compared with LPS treatment alone, BA significantly mitigated the reduction in the TEER, decreased FD-4 flux permeability, increased the mRNA expression of ZO-1 and Occludin, and normalized the distribution of ZO-1 and Occludin in Caco2 cells. …”
  3. 1823

    Enhancing <i>o</i>-cresol biodegradation in wastewater via <i>T. obliquus</i>/TiO<sub>2</sub> composite: construction and mechanistic insights by Daohong Zhang (1746094)

    Published 2025
    “…The results demonstrate a significant improvement, with the o-cresol degradation rate using the composite being 1.79 times higher than that of <i>T. obliquus</i> alone. …”
  4. 1824
  5. 1825
  6. 1826
  7. 1827

    Image 4_Tuber indicum colonization enhances plant drought tolerance by modifying physiological, rhizosphere metabolic and bacterial community responses in Pinus armandii.jpeg by Lanlan Huang (421909)

    Published 2025
    “…The results showed that T. indicum colonization significantly increased the contents of chlorophyll a and total pigments, but decreased the malondialdehyde content in the leaves under moderate drought stress. …”
  8. 1828

    Image 6_Tuber indicum colonization enhances plant drought tolerance by modifying physiological, rhizosphere metabolic and bacterial community responses in Pinus armandii.jpeg by Lanlan Huang (421909)

    Published 2025
    “…The results showed that T. indicum colonization significantly increased the contents of chlorophyll a and total pigments, but decreased the malondialdehyde content in the leaves under moderate drought stress. …”
  9. 1829

    Image 1_Tuber indicum colonization enhances plant drought tolerance by modifying physiological, rhizosphere metabolic and bacterial community responses in Pinus armandii.jpeg by Lanlan Huang (421909)

    Published 2025
    “…The results showed that T. indicum colonization significantly increased the contents of chlorophyll a and total pigments, but decreased the malondialdehyde content in the leaves under moderate drought stress. …”
  10. 1830

    Image 3_Tuber indicum colonization enhances plant drought tolerance by modifying physiological, rhizosphere metabolic and bacterial community responses in Pinus armandii.jpeg by Lanlan Huang (421909)

    Published 2025
    “…The results showed that T. indicum colonization significantly increased the contents of chlorophyll a and total pigments, but decreased the malondialdehyde content in the leaves under moderate drought stress. …”
  11. 1831

    Image 9_Tuber indicum colonization enhances plant drought tolerance by modifying physiological, rhizosphere metabolic and bacterial community responses in Pinus armandii.jpeg by Lanlan Huang (421909)

    Published 2025
    “…The results showed that T. indicum colonization significantly increased the contents of chlorophyll a and total pigments, but decreased the malondialdehyde content in the leaves under moderate drought stress. …”
  12. 1832

    Image 7_Tuber indicum colonization enhances plant drought tolerance by modifying physiological, rhizosphere metabolic and bacterial community responses in Pinus armandii.jpeg by Lanlan Huang (421909)

    Published 2025
    “…The results showed that T. indicum colonization significantly increased the contents of chlorophyll a and total pigments, but decreased the malondialdehyde content in the leaves under moderate drought stress. …”
  13. 1833

    Image 8_Tuber indicum colonization enhances plant drought tolerance by modifying physiological, rhizosphere metabolic and bacterial community responses in Pinus armandii.jpeg by Lanlan Huang (421909)

    Published 2025
    “…The results showed that T. indicum colonization significantly increased the contents of chlorophyll a and total pigments, but decreased the malondialdehyde content in the leaves under moderate drought stress. …”
  14. 1834

    Image 5_Tuber indicum colonization enhances plant drought tolerance by modifying physiological, rhizosphere metabolic and bacterial community responses in Pinus armandii.jpeg by Lanlan Huang (421909)

    Published 2025
    “…The results showed that T. indicum colonization significantly increased the contents of chlorophyll a and total pigments, but decreased the malondialdehyde content in the leaves under moderate drought stress. …”
  15. 1835

    Image 2_Tuber indicum colonization enhances plant drought tolerance by modifying physiological, rhizosphere metabolic and bacterial community responses in Pinus armandii.jpeg by Lanlan Huang (421909)

    Published 2025
    “…The results showed that T. indicum colonization significantly increased the contents of chlorophyll a and total pigments, but decreased the malondialdehyde content in the leaves under moderate drought stress. …”
  16. 1836
  17. 1837
  18. 1838

    Table 1_Claudin-2 enhances human antibody-mediated complement-dependent cytotoxicity of porcine endothelial cells by modulating antibody binding and complement activation.docx by Weilong Li (8778146)

    Published 2025
    “…Importantly, the loss of Claudin-2 significantly decreased the deposition of the C5b-9 complex, commonly referred to as the membrane attack complex (MAC), whereas the overexpression of Claudin-2 enhanced the deposition of the C5b-9 complex, indicating that Claudin-2 facilitates complement activation. …”
  19. 1839

    Data Sheet 1_Shenmai Injection enhances short-term outcomes in ischemic stroke patients after thrombolysis via AMPKα1.docx by Jing Wu (54032)

    Published 2025
    “…In the H2O2-induced cell model, SMI enhanced cell viability, reduced apoptosis, and decreased the levels of malondialdehyde (MDA) and reactive oxygen species (ROS). …”
  20. 1840

    Data Sheet 1_The cultivation of Panax notoginseng enhances the metabolites and microbial network complexity in the soil of Pinus armandii rather than Pinus kesiya.docx by Jingying Hei (20655971)

    Published 2025
    “…</p>Results and discussion<p>After cultivating Sanqi, the content of total phosphorus, ammonium nitrogen, and total potassium as well as water content and soil pH were significantly increased in P. armandii soil. Moreover, the bacterial and fungal copy numbers, alpha- and beta-diversity, remained unchanged in the soil of P. armandii, but significantly decreased in the soil of P. kesiya following Sanqi planting. …”