Dr Athina Mylona


NameDr Athina Mylona
Job titleSenior Lecturer
Research instituteSchool of Psychology and Life Sciences

Research outputs

Utilising DOE to optimise hydrogel composition for tissue engineering

UPTON, A., Tirnoveanu, A., Thapa, G., Zimbitas, G., Mylona, A. and Webb, R. 2022. Utilising DOE to optimise hydrogel composition for tissue engineering.

Proteomic analysis of the extracellular vesicles derived from human hip joints affected by osteoarthritis

Tirnoveanu, A., Ahmed, S., Webb, R., Howland, K., Hurt, A., Wilson, C. and Mylona, A. 2022. Proteomic analysis of the extracellular vesicles derived from human hip joints affected by osteoarthritis.

Rheological properties of bioinks for printing optimisation

Upton, A., Thapa, G., Zimbitas, G., Mylona, A. and Webb, R. 2022. Rheological properties of bioinks for printing optimisation.

Enhanced bone marrow derived mesenchymal stem cell differentiation when isolated and expanded with human platelet rich plasma and differentiation media is supplemented with vitamin D

Thapa, G., Tirnoveanu, A., Mylona, A. and Webb, R. 2020. Enhanced bone marrow derived mesenchymal stem cell differentiation when isolated and expanded with human platelet rich plasma and differentiation media is supplemented with vitamin D. eCM Periodicals & Conferences.

Mesenchymal inflammation drives genotoxic stress in hematopoietic stem cells and predicts disease evolution in human pre-leukemia

Zambetti, N., Ping, Z., Chen, S., Kenswill, K., Mylona, A., Sanders, M., Hoogenboezem, R., Bindels, E., Adisty, N., Van Strien, P., van der Leije, C., Westers, T., Cremers, E., Milanese, C., Mastroberardino, P., van Leeuwen, J., van der Eerden, B., Touw, I., Kuijpers, T., Kanaar, R., van der Loosdrecht, A., Vogl, T. and Raaijmakers, M. 2016. Mesenchymal inflammation drives genotoxic stress in hematopoietic stem cells and predicts disease evolution in human pre-leukemia. Cell Stem Cell. 19 (5), pp. 613-627. https://doi.org/10.1016/j.stem.2016.08.021

Massive parallel RNA sequencing of highly purified mesenchymal elements in low-risk MDS reveals tissue-context dependent activation of inflammatory programs

Chen, S., Zambetti, N., Bindels, E., Kenswill, K., Mylona, A., Adisty, N., Hoogenboezem, R., Sanders, M., Cremers, E., Jansen, J., van de Loosdrecht, A. and Raaijmakers, M. 2016. Massive parallel RNA sequencing of highly purified mesenchymal elements in low-risk MDS reveals tissue-context dependent activation of inflammatory programs. Leukemia. https://doi.org/10.1038/leu.2016.91

The Isl1/Ldb1 complex orchestrates heart-specific chromatin organization and transcriptional regulation

Caputo, L., Witzel, H., Kolovos, P., Cheedipudi, S., Looso, M., Mylona, A., van Ijcken, W., Evans, S., Braun, T., Soler, E., Grosveld, F. and Dobreva, G. 2015. The Isl1/Ldb1 complex orchestrates heart-specific chromatin organization and transcriptional regulation. Cell Stem Cell. 17 (3), pp. 287-299. https://doi.org/10.1016/j.stem.2015.08.007

Genomic structure and cloning of two transcript isoforms of human Sp8.

Mylona, A., Gough, J. and Edgar, A. 2004. Genomic structure and cloning of two transcript isoforms of human Sp8. BMC Genomics. 5 (86). https://doi.org/10.1186/1471-2164-5-86

Genome-wide analysis shows that Ldb1 controls essential hematopoietic genes/pathways in mouse early development and reveals novel players in hematopoiesis.

Mylona, A., Andrieu-Soler, C., Thongjuea, S., Martella, A., Soler, E., Jorna, R., Hou, J., Kockx, C., van Ijcken, W., Lenhard, B. and Grosveld, F. 2013. Genome-wide analysis shows that Ldb1 controls essential hematopoietic genes/pathways in mouse early development and reveals novel players in hematopoiesis. Blood. 121 (15). https://doi.org/10.1182/blood-2012-11-467654
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