Search
for

    Glossary Frizzled receptors

    transmit Wnt signals to regulate cell growth and differentiation

    Frizzled receptors, also known as FZD receptors, are a family of proteins that play a crucial role in cell signaling, particularly in the Wnt signaling pathway. This pathway is essential for various developmental processes, including cell growth, differentiation, and tissue regeneration. Frizzled receptors are involved in transmitting signals from outside the cell to the inside, influencing gene expression and cellular behavior.

    Related Terms

    Research 10 of 570

    1. Frizzled Receptors in Development and Disease 2016 · 114 citations
    2. Peptide CyRL-QN15 accelerates hair regeneration in diabetic mice through binding to the Frizzled-7 receptor 动物学研究 · 2024
    3. Suppression of Wnt/β-catenin signaling by EGF receptor is required for hair follicle development Molecular Biology of the Cell · 2018 · 25 citations
    4. <i>De Novo</i> design of a potent Wnt Surrogate specific for the frizzled7 subtype members bioRxiv (Cold Spring Harbor Laboratory) · 2025
    5. Overactive Wnt5a signaling disrupts hair follicle polarity during mouse skin development Development · 2022 · 7 citations
    6. 174 Dermis-hair follicle communication: Extracellular microvesicles signaling for hair regeneration Journal of Investigative Dermatology · 2020
    7. Ferulic acid promotes hair growth via estrogen receptor alpha activation in cultured human dermal papilla cells Scientific Reports · 2026
    8. Paracrine Secreted Frizzled-Related Protein 4 Inhibits Melanocytes Differentiation in Hair Follicle Stem Cells International · 2017 · 8 citations
    9. Double Knockdown of the Androgen Receptor Target Genes DKK1 and SFRP1 Does Not Potentiate the Hair Growth-Promoting Effect of SFRP1 Silencing in Healthy Human Hair Follicles Ex Vivo International Journal of Molecular Sciences · 2026
    10. NEDD4 and NEDD4L regulate Wnt signalling and intestinal stem cell priming by degrading LGR5 receptor The EMBO Journal · 2019 · 91 citations
    All research results →

    Learn

    — no results

    Try a deeper search in learn →

    Community

    — no results

    Try a deeper search in community →