Showing 501 - 520 results of 2,054 for search '"macrophages"', query time: 0.07s Refine Results
  1. 501

    Regular Voluntary Exercise Potentiates Interleukin-1β and Interleukin-18 Secretion by Increasing Caspase-1 Expression in Murine Macrophages by Ken Shirato, Kazuhiko Imaizumi, Takuya Sakurai, Junetsu Ogasawara, Hideki Ohno, Takako Kizaki

    Published 2017-01-01
    “…Moderate-intensity regular exercise improves proinflammatory responses of lipopolysaccharide- (LPS-) stimulated macrophages. However, intracellular events that mediate the beneficial effects of exercise were unclear. …”
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    Article
  2. 502

    Single‐cell dissection reveals immunosuppressive F13A1+ macrophage as a hallmark for multiple primary lung cancers by Chenglin Yang, Jiahao Qu, Jingting Wu, Songhua Cai, Wenyi Liu, Youjun Deng, Yiran Meng, Liuqing Zheng, Lishen Zhang, Li Wang, Xiaotong Guo

    Published 2024-12-01
    “…Notably, an immunosuppressive macrophage subtype, F13A1+ Macrophage (Mϕ), is specifically enriched in MPLCs. …”
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  3. 503
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  5. 505

    Anodized Ti6Al4V-ELI, electroplated with copper is bactericidal against Staphylococcus aureus and enhances macrophage phagocytosis by Paula Milena Giraldo-Osorno, Adam Benedict Turner, Sebastião Mollet Barros, Robin Büscher, Simone Guttau, Farah Asa’ad, Margarita Trobos, Anders Palmquist

    Published 2025-01-01
    “…As expected, cytotoxicity was observed in THP-1 macrophages without media exchange, though when media was exchanged at 8, 24 and 48 h cell viability was equivalent to Control-Ti. …”
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    Article
  6. 506

    Lysosomes finely control macrophage inflammatory function via regulating the release of lysosomal Fe2+ through TRPML1 channel by Yanhong Xing, Meng-meng Wang, Feifei Zhang, Tianli Xin, Xinyan Wang, Rong Chen, Zhongheng Sui, Yawei Dong, Dongxue Xu, Xingyu Qian, Qixia Lu, Qingqing Li, Weijie Cai, Meiqin Hu, Yuqing Wang, Jun-li Cao, Derong Cui, Jiansong Qi, Wuyang Wang

    Published 2025-01-01
    “…Here, we describe an unrecognized role for the lysosome, showing that it finely controls macrophage inflammatory function by manipulating the lysosomal Fe2+—prolyl hydroxylase domain enzymes (PHDs)—NF-κB—interleukin 1 beta (IL1B) transcription pathway that directly links lysosomes with inflammatory responses. …”
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    Article
  7. 507

    CCR7 and CD48 as Predicted Targets in Acute Rejection Related to M1 Macrophage after Pediatric Kidney Transplantation by Jie Zhang, Jun Pei, Chengjun Yu, Jin Luo, Yifan Hong, Yi Hua, Guanghui Wei

    Published 2024-01-01
    “…In the HPA database, CCR7 and CD48 are mainly expressed in T cells, B cells, macrophages, and tissues where these immune cells are distributed. …”
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  8. 508
  9. 509

    Radical Scavenging Activity-Based and AP-1-Targeted Anti-Inflammatory Effects of Lutein in Macrophage-Like and Skin Keratinocytic Cells by Jueun Oh, Ji Hye Kim, Jae Gwang Park, Young-Su Yi, Kye Won Park, Ho Sik Rho, Min-Seuk Lee, Jae Won Yoo, Seung-Hyun Kang, Yong Deog Hong, Song Seok Shin, Jae Youl Cho

    Published 2013-01-01
    “…Therefore, in the present study, we aimed to investigate the regulatory activity of lutein in the inflammatory responses of skin-derived keratinocytes or macrophages and to elucidate the mechanism of its inhibitory action. …”
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    Article
  10. 510

    Wild-type bone marrow cells repopulate tissue resident macrophages and reverse the impacts of homozygous CSF1R mutation. by Dylan Carter-Cusack, Stephen Huang, Sahar Keshvari, Omkar Patkar, Anuj Sehgal, Rachel Allavena, Robert A J Byrne, B Paul Morgan, Stephen J Bush, Kim M Summers, Katharine M Irvine, David A Hume

    Published 2025-01-01
    “…Circulating C1Q was almost undetectable in Csf1rko rats and rapidly restored to normal levels following BMT. Tissue-specific macrophage signatures were also identified, notably including sinus macrophage populations in the lymph nodes. …”
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    Article
  11. 511

    Nephropathy in Hypertensive Animals Is Linked to M2 Macrophages and Increased Expression of the YM1/Chi3l3 Protein by Paula Andréa Malveira Cavalcante, Natalia Alenina, Alexandre Budu, Leandro Ceotto Freitas-Lima, Thaís Alves-Silva, Juan Sebastian Henao Agudelo, Fatimunnisa Qadri, Niels Olsen Saraiva Camara, Michael Bader, Ronaldo Carvalho Araújo

    Published 2019-01-01
    “…Macrophages contribute to a continuous increase in blood pressure and kidney damage in hypertension, but their polarization status and the underlying mechanisms have not been clarified. …”
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  12. 512

    Cyclic AMP stimulates platelet-derived growth factor B chain mRNA expression in murine macrophage cell lines by Elizabeth J. Kovacs, Susan VanStedum

    Published 1995-01-01
    “…Macrophages were cultured with or without cAMP activators in the presence or absence of LPS. …”
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  13. 513

    F4/80+ Host Macrophages Are a Barrier to Murine Embryonic Stem Cell-Derived Hematopoietic Progenitor Engraftment In Vivo by Heather L. Thompson, Nico van Rooijen, Bryce T. McLelland, Jennifer O. Manilay

    Published 2016-01-01
    “…F4/80+ macrophages demonstrated a striking propensity to phagocytose ESHP targets in vitro. …”
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    Lentinan-functionalized PBAE-G-nanodiamonds as an adjuvant to induce cGAS-STING pathway-mediated macrophage activation and immune enhancement by Zhiqiang Zhang, Li Wang, Xia Ma, Hui Wang

    Published 2024-12-01
    “…The impact of this drug delivery system on the activation and maturation of macrophages was then assessed. Furthermore, LNT-PBAE-G-ND@OVA induced potent antibody response and showed no obvious toxicity in vitro and in vivo. …”
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    Article
  17. 517

    In-Depth Global Analysis of Transcript Abundance Levels in Porcine Alveolar Macrophages Following Infection with Porcine Reproductive and Respiratory Syndrome Virus by Laura C. Miller, John D. Neill, Gregory P. Harhay, Kelly M. Lager, William W. Laegreid, Marcus E. Kehrli

    Published 2010-01-01
    “…Identifying specific cell signaling or activation pathways that associate with variation in PRRSV replication and macrophage function may lead to identification of novel gene targets for the control of PRRSV infection. …”
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    CD133+PD-L1+ cancer cells confer resistance to adoptively transferred engineered macrophage-based therapy in melanoma by Jiaojiao Xu, Zhe Li, Qinli Tong, Sihang Zhang, Jianchen Fang, Aihua Wu, Guoguang Wei, Chen Zhang, Sheng Yu, Binbin Zheng, Hongzheng Lin, Xueling Liao, Zeyu Xiao, Wei Lu

    Published 2025-01-01
    “…Abstract Adoptive transfer of genetically or nanoparticle-engineered macrophages represents a promising cell therapy modality for treatment of solid tumor. …”
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    Article