1. Prolonged survival in pancreatic cancer patients with increased regucalcin gene expression: Overexpression of regucalcin suppresses the proliferation in human pancreatic cancer MIA PaCa-2 cells in vitro
    MASAYOSHI YAMAGUCHI et al, 2016, International Journal of Oncology CrossRef
  2. Prolonged survival in hepatocarcinoma patients with increased regucalcin gene expression: HepG2 cell proliferation is suppressed by overexpression of regucalcin in vitro
    Masayoshi Yamaguchi et al, 2016, International Journal of Oncology CrossRef
  3. Suppressive effects of exogenous regucalcin on the proliferation of human pancreatic cancer MIA PaCa-2 cells in vitro
    MASAYOSHI YAMAGUCHI et al, 2015, International Journal of Molecular Medicine CrossRef
  4. Overexpression of Regucalcin Suppresses the Growth of Human Osteosarcoma Cells in Vitro: Repressive Effect of Extracellular Regucalcin
    Masayoshi Yamaguchi et al, 2020, Cancer Investigation CrossRef
  5. Regucalcin Is a Potential Regulator in Human Cancer: Aiming to Expand into Cancer Therapy
    Masayoshi Yamaguchi, 2023, Cancers CrossRef
  6. Involvement of regucalcin as a suppressor protein in human carcinogenesis: insight into the gene therapy
    Masayoshi Yamaguchi, 2015, Journal of Cancer Research and Clinical Oncology CrossRef
  7. Survival of lung cancer patients is prolonged with higher regucalcin gene expression: suppressed proliferation of lung adenocarcinoma A549 cells in vitro
    Masayoshi Yamaguchi et al, 2017, Molecular and Cellular Biochemistry CrossRef
  8. Detection and localization of regucalcin in spermatozoa of water buffalo (Bubalus bubalis): A calcium‐regulating multifunctional protein
    H Pillai et al, 2017, Reproduction in Domestic Animals CrossRef
  9. The potential role of regucalcin in kidney cell regulation: Involvement in renal failure (Review)
    MASAYOSHI YAMAGUCHI, 2015, International Journal of Molecular Medicine CrossRef
  10. Increased regucalcin gene expression extends survival in breast cancer patients: Overexpression of regucalcin suppresses the proliferation and metastatic bone activity in MDA-MB-231 human breast cancer cells in vitro
    Masayoshi Yamaguchi et al, 2016, International Journal of Oncology CrossRef
  11. Exogenous regucalcin suppresses the proliferation of human breast cancer MDA-MB-231 bone metastatic cells in vitro
    MASAYOSHI YAMAGUCHI et al, 2015, Molecular Medicine Reports CrossRef
  12. Regucalcin confers resistance to amyloid‐β toxicity in neuronally differentiated PC12 cells
    Tomiyasu Murata et al, 2018, FEBS Open Bio CrossRef
  13. Prolonged survival of renal cancer patients is concomitant with a higher regucalcin gene expression in tumor tissues: Overexpression of regucalcin suppresses the growth of human renal cell carcinoma cells in vitro
    Masayoshi Yamaguchi et al, 2018, International Journal of Oncology CrossRef
  14. Regucalcin is widely distributed in the male reproductive tract and exerts a suppressive effect on in vitro sperm capacitation in the water buffalo (Bubalus bubalis)
    Harikrishna Pillai et al, 2017, Molecular Reproduction and Development CrossRef
  15. Functional pleiotropy of calcium binding protein Regucalcin in signaling and diseases
    Mohd Danish et al, 2023, Cellular Signalling CrossRef
  16. Progression-free survival of prostate cancer patients is prolonged with a higher regucalcin expression in the tumor tissues: Overexpressed regucalcin suppresses the growth and bone activity in human prostate cancer cells
    Masayoshi Yamaguchi et al, 2021, Translational Oncology CrossRef
  17. Prolonged survival of patients with colorectal cancer is associated with a higher regucalcin gene expression: Overexpression of regucalcin suppresses the growth of human colorectal carcinoma cells in�vitro
    Masayoshi Yamaguchi et al, 2018, International Journal of Oncology CrossRef
  18. The overexpressed regucalcin represses the growth via regulating diverse pathways linked to EGF signaling in human ovarian cancer SK-OV-3 cells: Involvement of extracellular regucalcin
    Masayoshi Yamaguchi et al, 2023, Life Sciences CrossRef