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Cells|March 27, 2024
Hypoxic Conditions Modulate Chondrogenesis through the Circadian Clock: The Role of Hypoxia-Inducible Factor-1αKrisztián Zoltán Juhász, Tibor Hajdú, Patrik Kovács, et al.Frontiers in Bioengineering and Biotechnology|July 17, 2023
Combining biomechanical stimulation and chronobiology: a novel approach for augmented chondrogenesis?Judit Vágó, Roland Takács, Patrik Kovács, et al.Current Protocols|March 11, 2024
Isolation and Culturing of Primary Murine Chondroprogenitor Cells: A Mammalian Model of ChondrogenesisJudit Vágó, Csilla Somogyi, Roland Takács, et al.Cartilage|February 16, 2020
A Synchronized Circadian Clock Enhances Early ChondrogenesisM Abdulhadi Alagha, Judit Vágó, Éva Katona, et al.Cells|October 23, 2021
Analysis of Gene Expression Patterns of Epigenetic Enzymes <i>Dnmt3a</i>, <i>Tet1</i> and <i>Ogt</i> in Murine Chondrogenic ModelsJudit Vágó, Katalin Kiss, Edina Karanyicz, et al.Journal of Pineal Research|August 28, 2022
Cyclic uniaxial mechanical load enhances chondrogenesis through entraining the molecular circadian clockJudit Vágó, Éva Katona, Roland Takács, et al.Current Protocols|July 10, 2023
Isolation and Micromass Culturing of Primary Chicken Chondroprogenitor Cells for Cartilage RegenerationRoland Takács, Tamás Juhász, Éva Katona, et al.Geroscience|October 28, 2019
Age-related alterations of articular cartilage in pituitary adenylate cyclase-activating polypeptide (PACAP) gene-deficient miceVince Szegeczki, Balázs Bauer, Adél Jüngling, et al.Journal of Cell Communication and Signaling|June 8, 2026
Species-specific roles of cellular communication network proteins in cartilage development: A comparative study using in vitro chondrogenic modelsZhangzheng Wang, Judit Vágó, Roland Takács, et al.International Journal of Molecular Sciences|December 30, 2025
Exploring the Link Between PACAP Signalling and Hyaluronic Acid Production in Melanoma ProgressionTibor Hajdú, Patrik Kovács, Éva Katona, et al.Pageof 2