Aarhus Universitets segl

Publications by Molecular and Cellular Biotechnology

Are you looking for publications by Molecular and Cellular Biotechnology? On this page you can find all the publications made by the Molecular and Cellular Biotechnology - Department of Biological & Chemical Engineering, Aarhus University.

Below you can find a list of all the publications, their publishing date, their author(s), and titles. The list can be sorted by date, author, and title:

List of Publications

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Huertas-Díaz, L., Kyhnau, R., Ingribelli, E., Neuzil-Bunesova, V., Li, Q., Sasaki, M., Lauener, R. P., Roduit, C., Frei, R., CK-CARE study group, Sundekilde, U. & Schwab, C. (2023). Breastfeeding and the major fermentation metabolite lactate determine occurrence of Peptostreptococcaceae in infant feces. Gut Microbes, 15(1), Artikel 2241209. https://doi.org/10.1080/19490976.2023.2241209
Molitor, B., Marcellin, E. & Angenent, L. (2017). Overcoming the energetic limitations of syngas fermentation. Current Opinion in Chemical Biology, 41, 84-92. https://doi.org/10.1016/j.cbpa.2017.10.003
M. Spirito , C., E. Daly, S., J. Werner, J. & Angenent, L. (2018). Redundancy of anaerobic digestion microbiomes during disturbances by the antibiotic monensin. Applied and Environmental Microbiology, 84(9). https://doi.org/10.1128/AEM.02692-17
De Santis, P., Wegstein, D., O. Burek, B., Patzsch, J., Alcalde, M., Kroutil, W., Z. Bloh, J. & Kara, S. (2023). Robust Light Driven Enzymatic Oxyfunctionalization Via Immobilization of Unspecific Peroxygenase. ChemSusChem, 16(23), Artikel e202300613. https://doi.org/10.1002/cssc.202300613
Jopp, S., Fleischhammer, T., Lavrentieva, A., Kara, S. & Meyer, J. (2023). Synthesis, biocompatibility, and antimicrobial properties of glucose-based ionic liquids. RSC Sustainability, 1(7), 1751-1764. https://doi.org/10.1039/d3su00191a
Marcellin, E., Angenent, L., K. Nielsen, L. & Molitor, B. (2022). Recycling carbon for sustainable protein production using gas fermentation. Current Opinion in Biotechnology, 76, Artikel 102723. https://doi.org/10.1016/j.copbio.2022.102723
Palomo-Briones, R., Xu, J., M. Spirito , C., G. Usack, J., H. Trondsen, L., Guzman, J. J. L. & Angenent, L. (2022). Near-neutral pH increased n-caprylate production in a microbiome with product inhibition of methanogenesis. Chemical Engineering Journal, 446(Part 3), Artikel 137170. https://doi.org/10.1016/j.cej.2022.137170
P. Shaffer, J., Nothias, L.-F., R. Thompson, L., G. Sanders, J., A. Salido, R., P. Couvillion, S., Brejnrod, A. D., Lejzerowicz, F., Haiminen, N., Huang, S., L. Lutz, H., Zhu, Q., Martino, C., T. Morton, J., Karthikeyan, S., Nothias-Esposito, M., Dührkop, K., Böcker, S., Kim, H. W. ... The Earth Microbiome Project 500 (EMP500) Consortium (2022). Standardized multi-omics of Earth’s microbiomes reveals microbial and metabolite diversity. Nature Microbiology, 7(12), 2128–2150. https://doi.org/10.1038/s41564-022-01266-x
A. Labatut, R., Angenent, L. & Scott, N. R. (2022). Characterizing the influence of wastewater composition and lignin content on anaerobic biodegradability. Environmental Science: Water Research & Technology, 8(7), 1507-1520. https://doi.org/10.1039/D2EW00077F
P. B. T. B. Strik, D., Ganigue, R. & Angenent, L. (2022). Editorial: Microbial chain elongation-close the carbon loop by connecting communities. Frontiers in Bioengineering and Biotechnology, 10, Artikel 894490. https://doi.org/10.3389/fbioe.2022.894490
Molitor, B., Casini, I., Fink, C., Hafenbradl, D. & Angenent, L. (2023). Power-to-Gas: neuer Rückenwind für ein altes Modellsystem. BioSpektrum, 29(1), 94–96. https://doi.org/10.1007/s12268-023-1880-4
Fink, C., Martinez-Cano, G., Shuster, J., Panzera, A., E. Rennhack, K., Rohbohm, N., Angenent, L. & Molitor, B. (2023). The Targeted Deletion of Genes Responsible for Expression of the Mth60 Fimbriae Leads to Loss of Cell-Cell Connections in Methanothermobacter thermautotrophicus ΔH. Applied and Environmental Microbiology, 89(7), Artikel e0057523. https://doi.org/10.1128/aem.00575-23
E. Ortiz-Ardila, A., D. Restrepo, J., Angenent, L., G. Usac, J. & A. Labatut, R. (2024). Protecting human health and the environment against siloxanes: the role and effectiveness of wastewater treatment technologies. Critical Reviews in Environmental Science and Technology, 54(1), 68-94. https://doi.org/10.1080/10643389.2023.2221156
Zhang, Y., Plesner, T. J., Ouyang, Y., Zheng, Y.-C., Bouhier, E., Ingemann Berentzen, E., Zhang, M., Zhou, P., Zimmermann , W., Andersen, G. R. & Guo, Z. (2023). Computer-aided discovery of a novel thermophilic laccase for low-density polyethylene degradation. Journal of Hazardous Materials, 458, Artikel 131986. https://doi.org/10.1016/j.jhazmat.2023.131986
Ambye-Jensen, M., (2022). Arealanvendelse og bioøkonomi. Synergier og systemgevinster ved ændret arealanvendelse og bioraffinering, Nr. 2022-0340167 / 2020-0114173, 34 s., feb. 11, 2022. Rådgivningsnotat fra DCA - Nationalt Center for Fødevarer og Jordbrug
Gaffey, J., Rajauria, G., McMahon, H., Ravindran, R., Dominguez, C., Ambye-Jensen, M., Souza, M. F., Meers, E., Aragonés, M. M., Skunca, D. & Sanders, J. P. M. (2023). Green Biorefinery systems for the production of climate-smart sustainable products from grasses, legumes and green crop residues. Biotechnology Advances, 66, Artikel 108168. https://doi.org/10.1016/j.biotechadv.2023.108168
Klein, V. J., Brito, L. F., Perez-Garcia, F., Brautaset, T. & Irla, M. (2023). Metabolic engineering of thermophilic Bacillus methanolicus for riboflavin overproduction from methanol. Microbial Biotechnology, 16(5), 1011-1026. https://doi.org/10.1111/1751-7915.14239
Alphand, V., van Berkel, W. J. H., Jurkas, V., Kara, S., Kourist, R., Kroutil, W., Mascia, F., M. Nowaczyk, M., Paul, C. E., Schmidt, S., Spasic, J., Tamagnini, P. & Winkler, C. K. (2023). Exciting Enzymes: Current State and Future Perspective of Photobiocatalysis. ChemPhotoChem, 7(7), Artikel e202200325. https://doi.org/10.1002/cptc.202200325
Semproli, R., Chanquia, S. N., Bittner, J. P., Müller, S., Domínguez de María, P., Kara, S. & Ubiali, D. (2023). Deep Eutectic Solvents for the Enzymatic Synthesis of Sugar Esters: A Generalizable Strategy? ACS Sustainable Chemistry & Engineering, 11(15), 5926-5936. https://doi.org/10.1021/acssuschemeng.2c07607