Labes, A., Koopmann, I. K., Möller, S., Elle, C., Hindersin, S., Kramer, A., & Labes, A. (2022). Optimization of Astaxanthin Recovery in the Downstream Process of Haematococcus pluvialis. Foods. http://doi.org/10.3390/foods11091352
Utermann, C., Tasdemir, D., & Labes, A. (2021). Ciona intestinalis in the spotlight of metabolomics and microbiomics : New insights into its invasiveness and the biotechnological potential of its associated microbiota (S. Online-Ressource). Kiel: Universitätsbibliothek Kiel.
Zhang, J., Zeng, R., & Labes, A. (2021). Marine microbial-derived molecules and their potential medical and cosmetic applications ). Frontiers In Microbiology, 12, 1965. http://doi.org/10.3389/FMICB.2021.706152
Kramer, A., & Labes, A. (2020). 16 Biotechnology of Marine Fungi: New Workhorses and Applications. The Mycota Iii. http://doi.org/10.1007/978-3-030-49924-2_16
Fan, B., Tasdemir, D., & Labes, A. (2020). Inducing the Chemodiversity of Fucus vesiculosus-Derived Fungi by OSMAC Strategy for Discovery of New Anticancer Leads (S. Online-Ressource). Kiel: Universitätsbibliothek Kiel.
Petersen, L. -E., Marner, M., Labes, A., & Tasdemir, D. (2020). Rapid Metabolome and Bioactivity Profiling of Fungi Associated with the Leaf and Rhizosphere of the Baltic Seagrass Zostera marina, Online-Ressource. http://doi.org/10.3390/md17070419
Fan, B., Parrot, D., Blümel, M., Labes, A., & Tasdemir, D. (2019). Influence of OSMAC-Based Cultivation in Metabolome and Anticancer Activity of Fungi Associated with the Brown Alga Fucus vesiculosus, Online-Ressource. http://doi.org/10.3390/md17010067
E., O. -D., Parrot, D., Blümel, M., Labes, A., & Tasdemir, D. (2018). Molecular Networking-Based Metabolome and Bioactivity Analyses of Marine-Adapted Fungi Co-cultivated With Phytopathogens. Frontiers In Microbiology, 9, 2072.
Utermann, C., Parrot, D., Breusing, C., Stuckas, H., Staufenberger, T., Blümel, M., u. a. (2018). Combined genotyping, microbial diversity and metabolite profiling studies on farmed Mytilus spp. from Kiel Fjord. Scientific Reports, 8, 1-13. http://doi.org/10.1038/s41598-018-26177-y
Reich, M., & Labes, A. (2017). How to boost marine fungal research: A first step towards a multidisciplinary approach by combining molecular fungal ecology and natural products chemistry. Marine Genomics, 36, 57-75. http://doi.org/10.1016/j.margen.2017.09.007 (Original work published dec)