1. A combination of high dose rate (10X FFF/2400 MU/min/10 MV X-rays) and total low dose (0.5 Gy) induces a higher rate of apoptosis in melanoma cells in vitro and superior preservation of normal melanocytes
    Sreeja Sarojini et al, 2015, Melanoma Research CrossRef
  2. Notch system is differentially expressed and activated in pituitary adenomas of distinct histotype, tumor cell lines and normal pituitaries
    Sofia Perrone et al, 2017, Oncotarget CrossRef
  3. Synergistic Antitumor Activities of Docetaxel and Octreotide Associated with Apoptotic-Upregulation in Castration-Resistant Prostate Cancer
    Sha Zhu et al, 2014, PLoS ONE CrossRef
  4. JAG1, Regulated by microRNA-424-3p, Involved in Tumorigenesis and Epithelial–Mesenchymal Transition of High Proliferative Potential-Pituitary Adenomas
    Yiyuan Chen et al, 2020, Frontiers in Oncology CrossRef
  5. Exploring the Role of Novel Medical Therapies for Aggressive Pituitary Tumors: A Review of the Literature—“Are We There Yet?”
    Lydia S. Lamb et al, 2020, Cancers CrossRef
  6. The Stem Cell Connection of Pituitary Tumors
    Hugo Vankelecom et al, 2017, Frontiers in Endocrinology CrossRef
  7. Non-coding RNAs and exosomal non-coding RNAs in pituitary adenoma
    Neda Rahimian et al, 2023, Pathology - Research and Practice CrossRef
  8. Low levels of PRB3 mRNA are associated with dopamine-agonist resistance and tumor recurrence in prolactinomas
    Fei Wang et al, 2014, Journal of Neuro-Oncology CrossRef
  9. Differential expression of the Notch1 receptor, and its ligands Dll1, Dll3 and Dll4 in distinct human pituitary adenoma subtypes
    Jianfu Zhang et al, 2017, Oncology Letters CrossRef
  10. Pituitary stem cell regulation: who is pulling the strings?
    Benoit Cox et al, 2017, Journal of Endocrinology CrossRef
  11. Inhibition of Notch signaling attenuates pituitary adenoma growth in Nude mice
    Lautaro Zubeldía-Brenner et al, 2019, Endocrine-Related Cancer CrossRef
  12. Myeloid DLL4 Does Not Contribute to the Pathogenesis of Non-Alcoholic Steatohepatitis in Ldlr-/- Mice
    Mike L. J. Jeurissen et al, 2016, PLOS ONE CrossRef
  13. Experimental Evidence and Clinical Implications of Pituitary Adenoma Stem Cells
    Roberto Würth et al, 2020, Frontiers in Endocrinology CrossRef
  14. Identification of Important Invasion-Related Genes in Non-functional Pituitary Adenomas
    Harish Joshi et al, 2019, Journal of Molecular Neuroscience CrossRef
  15. Whole-exome sequencing identifies variants in invasive pituitary adenomas
    Xiaolei Lan et al, 2016, Oncology Letters CrossRef
  16. Decreased TAp63 and ΔNp63 mRNA Levels in Most Human Pituitary Adenomas Are Correlated with Notch3/Jagged1 Relative Expression
    Lisiane Cervieri Mezzomo et al, 2017, Endocrine Pathology CrossRef
  17. DAPT, a γ-Secretase Inhibitor, Suppresses Tumorigenesis, and Progression of Growth Hormone-Producing Adenomas by Targeting Notch Signaling
    Jie Feng et al, 2019, Frontiers in Oncology CrossRef
  18. Retracted: microRNA‐137 promotes endothelial progenitor cell proliferation and angiogenesis in cerebral ischemic stroke mice by targeting NR4A2 through the Notch pathway
    Xing‐Li Liu et al, 2018, Journal of Cellular Physiology CrossRef
  19. Expression pattern of the Hedgehog signaling pathway in pituitary adenomas
    Maria P. Yavropoulou et al, 2016, Neuroscience Letters CrossRef
  20. Pathogenesis of non-functioning pituitary adenomas
    Maria Chiara Zatelli, 2018, Pituitary CrossRef
  21. The role of Notch and Hedgehog signaling pathways in pituitary development and pathogenesis of pituitary adenomas
    Maria P. Yavropoulou et al, 2015, Hormones CrossRef
  22. Developmental and Functional Effects of Steroid Hormones on the Neuroendocrine Axis and Spinal Cord
    L. Zubeldia‐Brenner et al, 2016, Journal of Neuroendocrinology CrossRef
  23. Update on Current Evidence for the Diagnosis and Management of Nonfunctioning Pituitary Neuroendocrine Tumors
    Elizabeth Whyte et al, 2023, Endocrinology and Metabolism CrossRef