![]() ![]() | Raman, R., Antony, M., Nivelle, R., Lavergne, A., Zappia, J., Guerrero Limon, G., Caetano da Silva, C., Kumari, P., Sojan, J. M., Degueldre, C., Bahri, M. A., Ostertag, A., Collet, C., Cohen-Solal, M., Plenevaux, A., Henrotin, Y., Renn, J., & Muller, M. (23 January 2024). The Osteoblast Transcriptome in Developing Zebrafish Reveals Key Roles for Extracellular Matrix Proteins Col10a1a and Fbln1 in Skeletal Development and Homeostasis. Biomolecules, 14 (2), 139. doi:10.3390/biom14020139 ![]() |
![]() ![]() | Guerrero Limon, G., Zappia, J., & Muller, M. (2024). A realistic mixture of ubiquitous persistent organic pollutants affects bone and cartilage development in zebrafish by interaction with nuclear receptor signaling. PLoS ONE, 19 (3), 0298956. doi:10.1371/journal.pone.0298956 ![]() ![]() |
![]() ![]() | Tran, M. H., Nguyen, T. V. A., Do, H. G., Kieu, T. K., Nguyen, T. K. T., Le, H. D., Guerrero Limon, G., Massoz, L., Nivelle, R., Zappia, J., Pham, H. T., Nguyen, L. T., & Muller, M. (07 November 2023). Testing biological actions of medicinal plants from northern Vietnam on zebrafish embryos and larvae: Developmental, behavioral, and putative therapeutical effects. PLoS ONE, 18 (11), 0294048. doi:10.1371/journal.pone.0294048 ![]() |
![]() ![]() | Zappia, J., Tong, Q., Van der Cruyssen, R., Cornelis, F. M. F., Lambert, C., Pinto Coelho, T., Grisart, J., Kague, E., Lories, R. J., Muller, M., Elewaut, D., Hammond, C. L., Sanchez, C., & Henrotin, Y. (20 September 2023). Osteomodulin downregulation is associated with osteoarthritis development. Bone Research, 11 (1), 49. doi:10.1038/s41413-023-00286-5 ![]() |
![]() ![]() | Zappia, J. (2023). Lack of osteomodulin is associated with skeletal development abnormalities and osteoarthritis [Doctoral thesis, ULiège - Université de Liège]. ORBi-University of Liège. https://orbi.uliege.be/handle/2268/304691 |
![]() ![]() | Zappia, J., Tong, Q., Van der Cruyssen, R., Cornelis, F., Lambert, C., Pinto Coelho, T., Grisart, J., Kague, E., Lories, R., Muller, M., Elewaut, D., Hammond, C., Sanchez, C., & Henrotin, Y. (30 May 2023). Osteomodulin down-regulation is associated with osteoarthritis development. Annals of the Rheumatic Diseases, 82 (Suppl 1), 1194-1195. doi:10.1136/annrheumdis-2023-eular.1006 ![]() |
![]() ![]() | Henrotin, Y., Lambert, C., Florin, A., Zappia, J., Centonze, P., & Sanchez, C. (30 May 2023). Urolithin A and B accelerate myocyte fusion into myotubes. Annals of the Rheumatic Diseases, 82 (Suppl 1), 1926-1927. doi:10.1136/annrheumdis-2023-eular.3536 ![]() |
![]() ![]() | Henrotin, Y., Lambert, C., Florin, A., Zappia, J., Centonze, P., & Sanchez, C. (March 2023). Deciphering Urolithins A And B Activities On Muscle: Transcriptomic Modulation On Human Primary Myotubes. Osteoarthritis and Cartilage, 31, 303. doi:10.1016/j.joca.2023.01.316 ![]() |
![]() ![]() | Zappia, J., Tong, Q., Van der Cruyssen, R., Cornelis, F., Lambert, C., Pinto Coelho, T., Grisart, J., Muller, M., Elewaut, D., Hammond, C., Sanchez, C., & Henrotin, Y. (March 2023). Osteomodulin Is Involved In Bone And Cartilage Homeostasis And Osteoarthritis Development. Osteoarthritis and Cartilage, 31, 323-S324. doi:10.1016/j.joca.2023.01.350 ![]() |
![]() ![]() | Henrotin, Y., Lambert, C., Florin, A., Zappia, J., Centonze, P., & Sanchez, C. (December 2022). Évaluation de l’activité des urolithines A et B sur le muscle : modulation transcriptomique sur les myotubes primaires humains. Revue du Rhumatisme, 89, 49-A50. doi:10.1016/j.rhum.2022.10.061 ![]() |
![]() ![]() | Zappia, J., Van Der Cruyssen, R., Cornelis, F., Lambert, C., Pinto Coelho, T., Lories, R., Elewaut, D., Sanchez, C., & Henrotin, Y. (December 2022). L’ostéomoduline joue un rôle majeur dans l’homéostasie de l’os et du cartilage. Revue du Rhumatisme, 89, 176. doi:10.1016/j.rhum.2022.10.261 ![]() |
![]() ![]() | Raman, R., Zappia, J., Nivelle, R., Bahri, M. A., Lavergne, A., Caetano da Silva Caroline, Degueldre Christian, Ostertag Agnes, Renn, J., Collet Corrine, Plenevaux, A., Solal Cohen Martine, Henrotin, Y., & Muller, M. (07 September 2022). Zebrafish Osteoblast Transcriptome reveals genes that encode bone extra cellular matrix proteins which on mutating affect bone development [Poster presentation]. Deutsche Gesellschaft for Martrixbiologie e.V. 2022 (DGMB 2022), Frankfurt am Main, Germany. ![]() |
![]() ![]() | Raman, R., Salomao D’Cruz Alison, Dikoum Cyrille, Zappia, J., Anthony Mishal, Caetano da Silva Caroline, Nivelle, R., Lavergne, A., Degueldre Christian, Ostertag Agnes, Bahri, M. A., Renn, J., Collet Corrine, Plenevaux, A., Solal Cohen Martine, Henrotin, Y., & Muller, M. (2022). Osteoblast Transcriptome in 4 days old zebrafish larvae and the role of Fbln1 and Col10a1a bone extracellular matrix proteins during skeletal development [Paper presentation]. German Society for Matrix biology (Deutsche Gesellschaft fuer Matrixbiologie e.V.) DGMB 2022, Frankfurt am Main, Germany. |
![]() ![]() | Sanchez, C., Zappia, J., Lambert, C., FOGUENNE, J., Dierckxsens, Y., Dubuc, J.-E., Delcour, J.-P., Gothot, A., & Henrotin, Y. (11 August 2022). Curcuma longa and Boswellia serrata Extracts Modulate Different and Complementary Pathways on Human Chondrocytes In Vitro: Deciphering of a Transcriptomic Study. Frontiers in Pharmacology, 13. doi:10.3389/fphar.2022.931914 ![]() |
![]() ![]() | Sanchez, C., Zappia, J., Lambert, C., Dierckxsens, Y., Dubuc, J.-E., Delcour, J.-P., & Henrotin, Y. (April 2022). CURCUMA LONGA AND BOSWELLIA SERRATA EXTRACTS MODULATE DIFFERENT AND COMPLEMENTARY PATHWAYS TO EXERT ANTI-INFLAMMATORY, ANTI-OXIDATIVE AND ANTI-CATABOLIC ACTIVITIES ON CHONDROCYTES: DECIPHERING OF A TRANSCRIPTOMIC STUDY. Osteoarthritis and Cartilage, 30 (Suppl 1), 435. doi:10.1016/j.joca.2022.02.589 ![]() |
![]() ![]() | Sanchez, C., Lambert, C., Zappia, J., Dubuc, J.-E., Delcour, J.-P., Dierckxsens, Y., & Henrotin, Y. (December 2021). Les extraits de Curcuma longa et de Boswellia serrata agissent par des mécanismes différents et complémentaires pour exercer une action anti-inflammatoire, anti-oxidante et anti-catabolique sur les chondrocytes : déchiffrage d’une étude transcriptomique. Revue du Rhumatisme, 88 (S1), 154. doi:10.1016/j.rhum.2021.10.242 ![]() |
![]() ![]() | Raman, R., Zappia, J., Nivelle, R., Lavergne, A., Renn, J., Henrotin, Y., & Muller, M. (11 October 2021). Osteoblast populations and bone extracellular matrix proteins during skeletal development in zebrafish [Poster presentation]. 14th Zebrafish Disease Models Conference (ZDMS'14) Virtual Conference, Durham, United States - North Carolina. ![]() |
![]() ![]() | Zappia, J., Van der Cruyssen, R., Sanchez, C., Lausberg, C., Lambert, C., Florin, A., Elewaut, D., & Henrotin, Y. (April 2021). Osteomodulin Impacts Positively The Bone Remodeling Process In Osteoarthritis. Bone Reports, 14 (Suppl 1), 2352-1872. doi:10.1016/j.bonr.2021.100904 ![]() |
![]() ![]() | Florin, A., Lambert, C., Sanchez, C., Zappia, J., & Henrotin, Y. (April 2021). Development of a primary skeletal muscle cell culture model from human muscle biopsies. Osteoarthritis and Cartilage, 29 (Suppl), 108. ![]() |
![]() ![]() | Zappia, J., Van der Cruyssen, R., Sanchez, C., Lausberg, C., Lambert, C., Florin, A., Elewaut, D., & Henrotin, Y. (April 2021). Osteomodulin impacts positively the bone remodeling process in osteoarthritis. Osteoarthritis and Cartilage, 29 (Suppl 1), 111. doi:10.1016/j.joca.2021.02.155 ![]() |
![]() ![]() | Lambert, C., Zappia, J., Sanchez, C., Florin, A., Dubuc, J.-E., & Henrotin, Y. (2021). The Damage-Associated Molecular Patterns (DAMPs) as Potential Targets to Treat Osteoarthritis: Perspectives From a Review of the Literature. Frontiers in Medicine, 7, 607186. doi:10.3389/fmed.2020.607186 ![]() |
![]() ![]() | Florin, A., Lambert, C., Sanchez, C., Zappia, J., & Henrotin, Y. (December 2020). Mise au point d’un modèle de culture original de cellules musculaires squelettiques à partir de biopsies musculaires humaines. Revue du Rhumatisme, Volume 87 (Supplément 1). doi:10.1016/j.rhum.2020.10.433 ![]() |
![]() ![]() | Sanchez, C., Zappia, J., Dierckxsens, Y., Delcour, J.-P., & Henrotin, Y. (June 2020). Boswellia serrata extract and curcumin increase GDF15 production by human primary osteoarthritis chondrocytes: a new mechanism of action. Annals of the Rheumatic Diseases, 79 (Suppl 1), 1336-1337. ![]() |
![]() ![]() | Sanchez, C., Zappia, J., Dierckxsens, Y., Delcour, J.-P., & Henrotin, Y. (April 2020). Boswellia serrata extract and curcumin increase GDF15 production by human primary osteoarthritis chondrocytes: a new mechanism of action. Osteoarthritis and Cartilage, 28 (Suppl 1), 120. ![]() |
![]() ![]() | Florin, A., Lambert, C., Sanchez, C., Zappia, J., Durieux, N., Tieppo, A. M., Mobasheri, A., & Henrotin, Y. (2020). The secretome of skeletal muscle cells: A systematic review. Osteoarthritis and Cartilage Open. doi:10.1016/j.ocarto.2019.100019 ![]() |
![]() ![]() | Zappia, J., Joiret, M., Sanchez, C., Lambert, C., Geris, L., Muller, M., & Henrotin, Y. (2020). From translation to protein degradation as mechanisms for regulating biological functions: A review on the SLRP family in skeletal tissues. Biomolecules, 10, 80. doi:10.3390/biom10010080 ![]() |
![]() ![]() | Florin, A., Lambert, C., Sanchez, C., Zappia, J., & Henrotin, Y. (02 October 2019). Development of a muscle cell culture model from human muscle biopsies [Poster presentation]. EORS 2019, Maastricht, Netherlands. |
![]() ![]() | Raman, R., Zappia, J., Dinh Duy Thanh, Henrotin, Y., & Muller, M. (2019). Isolation of Osteoblast RNA from Danio rerio larvae – presenting a novel method or an update to the existing one ! [Poster presentation]. 2nd EDT PhD Student Day, Brussels, Belgium. |
![]() ![]() | Zappia, J. (12 May 2017). Basic Helix loop Helix transcription factor twist1a and twist1b and their involvement in the skeletal development of zebrafish [Paper presentation]. Fishbone, Austria. |
Zappia, J., Windhausen, T. (Other coll.), Renn, J. (Other coll.), & Muller, M. (Other coll.). (May 2017). Basic Helix loop Helix transcription factor twist1a and twist1b and their involvement in the skeletal development of zebrafish [Poster presentation]. ECTS2017 44th European Calcified Tissue Society Congress, Salzburg, Austria. |