Showing 1,421 - 1,440 results of 2,287 for search '"biology"', query time: 0.09s Refine Results
  1. 1421

    Call to Action: Lead Pharmacy into the Next Decade by Kerry K Fierke, Gardner Lepp, Bridget McGugan, Marta Brooks, Gregory Zumach

    Published 2025-01-01
    “…"Ten simple rules for innovative dissemination of research." PLoS computational biology, 2020;16.4: e1007704. • AM Last Page. Academic Medicine 84(6):p 814, June 2009…”
    Get full text
    Article
  2. 1422
  3. 1423

    Ethnobotanical survey of medicinal plants used in management of breast cancers in Qatar by Rasha.S.Abo El Alaa, Hend Al-Jaber, Fatima Al Zahraa Chokor, Abdullah A. Shaito, Layla Al-Mansoori

    Published 2025-02-01
    “…The complexity of breast cancer requires diverse treatment approaches influenced by tumor characteristics and biology. Despite advancements, current treatments still fall short of providing definitive solutions, particularly for triple-negative breast cancer. …”
    Get full text
    Article
  4. 1424

    Crinum jagus (J. Thomps. Dandy): Antioxidant and protective properties as a medicinal plant on toluene-induced oxidative stress damages in liver and kidney of rats by Mariama, Salihu, Gaber, El-Saber Batiha, Keneth Iceland, Kasozi, George D., Zouganelis, Souty M.Z., Sharkawi, Eman, Ibrahim Ahmed, Ibe Michael, Usman, Halima, Nalugo, Juma J., Ochieng, Ibrahim, Ssengendo, Olatayo Segun, Okeniran, Theophilus, Pius, Kyobe Ronald, Kimanje, Eric Simidi, Kegoye, Ritah, Kenganzi, Fred Ssempijja

    Published 2023
    “…The findings showed that toluene is a very aggressive xenobiotic due to the promotion of oxidative stress and peroxidation of cellular lipids, but C. jagus leaves provide significant protection through the reducing power of nonenzymatic antioxidants and their ability to induce endogenous antioxidant enzymes (SOD, CAT, and glutathione reductase or GR) causing reduced cellular lipid peroxidation and tissue damages, quickened tissue repair, and improved cell biology of liver and kidneys during toluene toxicity. …”
    Get full text
    Article
  5. 1425
  6. 1426
  7. 1427
  8. 1428

    TGF-β induces cholesterol accumulation to regulate the secretion of tumor-derived extracellular vesicles by Dorival Mendes Rodrigues-Junior, Chrysoula Tsirigoti, Konstantina Psatha, Dimitris Kletsas, Michalis Aivaliotis, Carl-Henrik Heldin, Aristidis Moustakas

    Published 2025-02-01
    “…To this end, we used a large number of cancer cell models, coupled to EV cell biological assays, unbiased proteomic and transcriptomic screens, followed by signaling and cancer biology analyses, including drug resistance assays. …”
    Get full text
    Article
  9. 1429
  10. 1430

    Call to Action: Lead Pharmacy into the Next Decade by Gregory Zumach, Kerry K Fierke, Gardner Lepp, Bridget McGugan, Marta Brooks, Anthony Olson, Andrew Bartlett, Nilushi Karunaratne, Betty Exintaris

    Published 2025-01-01
    “…"Ten simple rules for innovative dissemination of research." PLoS computational biology, 2020;16.4: e1007704. • AM Last Page. Academic Medicine 84(6):p 814, June 2009…”
    Get full text
    Article
  11. 1431
  12. 1432
  13. 1433
  14. 1434
  15. 1435
  16. 1436
  17. 1437
  18. 1438
  19. 1439
  20. 1440

    EGFR inhibition augments the therapeutic efficacy of the NAT10 inhibitor Remodelin in Colorectal cancer by Yongbin Zheng, Dan Song, Ming Guo, Chenhong Wang, Mingzhen Ma, Gongcai Tao, Licui Liu, Xiaobo He, Fengyu Cao, Dan Luo, Qingchuan Zhao, Zhongyuan Xia, Yanxin An

    Published 2025-02-01
    “…Additional in vivo and in vitro experiments, including CCK-8 assays, colony formation and mouse xenograft models, were conducted to explore the biological role of NAT10-mediated ac4C modifications. …”
    Get full text
    Article