Showing 5,361 - 5,380 results of 18,609 for search 'significantly ((((((lower decrease) OR (a decrease))) OR (linear decrease))) OR (greater decrease))', query time: 0.49s Refine Results
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    Periodic Open Cellular Structures with Streamlined Elliptical Struts for the Intensification of Mass Transfer-Limited Catalytic Reactors by Claudio Ferroni (10972436)

    Published 2025
    “…Decreasing α results in a streamlined structure with a reduced friction factor and a reduced transport coefficient, consistent with previous observations for POCS with circular struts. …”
  10. 5370

    Multistimuli-Responsive Porous Organic Polymers for Drug-Gas Anticancer Combination Therapy by Tina Skorjanc (4230178)

    Published 2025
    “…Herein, we use a porous organic polymer (POP) as a design strategy to prepare a combination therapy vehicle with spatially segregated gas and drug loading sites. …”
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    Homotransplantation of Engineered Macrophages with Surface-Modified Nanomedicines for Mitigating Myocardial Ischemia–Reperfusion Injury by Jiahui Cheng (6056966)

    Published 2025
    “…Specifically, PS-c@M significantly inhibited STING-related signaling pathways, thereby remodeling the immune-inflammatory homeostasis, as evidenced by the increased proportions of M2 macrophages, reparative cardiac resident macrophages, and regulatory T cells and the decreased recruitment and infiltration of M1 macrophages and neutrophils. …”
  19. 5379

    Homotransplantation of Engineered Macrophages with Surface-Modified Nanomedicines for Mitigating Myocardial Ischemia–Reperfusion Injury by Jiahui Cheng (6056966)

    Published 2025
    “…Specifically, PS-c@M significantly inhibited STING-related signaling pathways, thereby remodeling the immune-inflammatory homeostasis, as evidenced by the increased proportions of M2 macrophages, reparative cardiac resident macrophages, and regulatory T cells and the decreased recruitment and infiltration of M1 macrophages and neutrophils. …”
  20. 5380

    Homotransplantation of Engineered Macrophages with Surface-Modified Nanomedicines for Mitigating Myocardial Ischemia–Reperfusion Injury by Jiahui Cheng (6056966)

    Published 2025
    “…Specifically, PS-c@M significantly inhibited STING-related signaling pathways, thereby remodeling the immune-inflammatory homeostasis, as evidenced by the increased proportions of M2 macrophages, reparative cardiac resident macrophages, and regulatory T cells and the decreased recruitment and infiltration of M1 macrophages and neutrophils. …”