1. High stroma‐derived WNT5A is an indicator for low‐risk prostate cancer
    Wadim Kisel et al, 2021, FEBS Open Bio CrossRef
  2. WNT5A in tumor development and progression: A comprehensive review
    Maura Lima Pereira Bueno et al, 2022, Biomedicine & Pharmacotherapy CrossRef
  3. Wnt5a Signaling in Cancer
    Marwa Asem et al, 2016, Cancers CrossRef
  4. Cx43 Present at the Leading Edge Membrane Governs Promigratory Effects of Osteoblast-Conditioned Medium on Human Prostate Cancer Cells in the Context of Bone Metastasis
    Jonathan Boucher et al, 2020, Cancers CrossRef
  5. Umbilical cord–derived mesenchymal stromal cell–conditioned medium exerts in vitro antiaging effects in human fibroblasts
    Meirong Li et al, 2017, Cytotherapy CrossRef
  6. WNT5A and Its Receptors in the Bone-Cancer Dialogue
    Stefanie Thiele et al, 2016, Journal of Bone and Mineral Research CrossRef
  7. The interplay between adipose-derived stem cells and bladder cancer cells
    Malgorzata Maj et al, 2018, Scientific Reports CrossRef
  8. WNT-5A: signaling and functions in health and disease
    Kuldeep Kumawat et al, 2016, Cellular and Molecular Life Sciences CrossRef
  9. Mesenchymal stem cell-derived interleukin-28 drives the selection of apoptosis resistant bone metastatic prostate cancer
    Jeremy J. McGuire et al, 2021, Nature Communications CrossRef
  10. CAPE suppresses migration and invasion of prostate cancer cells via activation of non-canonical Wnt signaling
    Jen-Chih Tseng et al, 2016, Oncotarget CrossRef
  11. A novel non-canonical Wnt signature for prostate cancer aggressiveness
    Elise Sandsmark et al, 2017, Oncotarget CrossRef
  12. Wnt signaling in bone metastasis: mechanisms and therapeutic opportunities
    Xin Li et al, 2018, Life Sciences CrossRef
  13. WNT5A Has Anti-Prostate Cancer Effects In Vitro and Reduces Tumor Growth in the Skeleton In Vivo
    Stefanie Thiele et al, 2015, Journal of Bone and Mineral Research CrossRef
  14. Recent advances in conventional and unconventional vesicular secretion pathways in the tumor microenvironment
    I.-Ying Kuo et al, 2022, Journal of Biomedical Science CrossRef