Vágó Judit
DE >
ÁOKTudományos segédmunkatárs 2020-
Publication list
2022
Vágó, J.,
Katona, É.,
Takács, R.,
Dócs, K.,
Hajdú, T.,
Kovács, P.,
Zákány, R.,
Veen, D.,
Matta, C.:
Cyclic uniaxial mechanical load enhances chondrogenesis through entraining the molecular circadian clock.
J. Pineal Res. 73 (4), e12827, 2022.
2021
Vágó, J.,
Kiss, K.,
Karanyicz, E.,
Takács, R.,
Matta, C.,
Ducza, L.,
Rauch, T.,
Zákány, R.:
Analysis of Gene Expression Patterns of Epigenetic Enzymes Dnmt3a, Tet1 and Ogt in Murine Chondrogenic Models.
Cells. 10 (10), 2678, 2021.
Journal metrics:
Q1 Biochemistry, Genetics and Molecular Biology (miscellaneous)
Alagha, M.,
Vágó, J.,
Katona, É.,
Takács, R.,
Veen, D.,
Zákány, R.,
Matta, C.:
A Synchronized Circadian Clock Enhances Early Chondrogenesis.
Cartilage. 13 (2_Suppl), 53S-67S, 2021.
Journal metrics:
Q2 Biomedical Engineering
Q3 Immunology and Allergy
Q2 Physical Therapy, Sports Therapy and Rehabilitation
Hajdú, T.,
Kovács, P.,
Zsigrai, E.,
Takács, R.,
Vágó, J.,
Cho, S.,
Sasi Szabó, L.,
Becsky, D.,
Keller-Pintér, A.,
Emri, G.,
Rácz, K.,
Reglődi, D.,
Zákány, R.,
Juhász, T.:
Pituitary Adenylate Cyclase Activating Polypeptide Has Inhibitory Effects on Melanoma Cell Proliferation and Migration In Vitro.
Front Oncol. 11 681603, 2021.
Journal metrics:
Q2 Cancer Research
Q1 Oncology
2020
Zákány, R.,
Juhász, T.,
Fodor, J.,
Takács, R.,
Vágó, J.,
Csernoch, L.,
Matta, C.:
Influencing chondrogenesis via the n-methyl-d-aspartate (NMDA) receptor pathway.
Osteoarthritis Cartilage. 28 (Supplement), S104-S105, 2020.
2019
Szegeczki, V.,
Bauer, B.,
Jüngling, A.,
Fülöp, B.,
Vágó, J.,
Perényi, H.,
Tarantini, S.,
Tamás, A.,
Zákány, R.,
Reglődi, D.,
Juhász, T.:
Age-related alterations of articular cartilage in pituitary adenylate cyclase-activating polypeptide (PACAP) gene-deficient mice.
GeroScience. 41 (6), 775-793, 2019.
Journal metrics:
Q2 Aging
Q1 Cardiology and Cardiovascular Medicine
D1 Complementary and Alternative Medicine
D1 Geriatrics and Gerontology
D1 Veterinary (miscellaneous)
Matta, C.,
Juhász, T.,
Fodor, J.,
Hajdú, T.,
Katona, É.,
Somogyi, C.,
Takács, R.,
Vágó, J.,
Oláh, T.,
Bartók, Á.,
Varga, Z.,
Panyi, G.,
Csernoch, L.,
Zákány, R.:
N-methyl-D-aspartate (NMDA) receptor expression and function is required for early chondrogenesis.
Cell Commun Signal. 17 (1), 166, 2019.
Journal metrics:
Q1 Biochemistry
Q2 Cell Biology
Q2 Molecular Biology
updated: 2023-03-19, 01:51