Dr. rer. nat. Dirk Dannenberger

Forschungsinstitut für Nutztierbiologie (FBN)
Leiter der Servicegruppe Metabolomics und Lipidomics
Wilhelm-Stahl-Allee 2
18196 Dummerstorf

Forschungsinteressen

  • Regulierung des Lipidmetabolismus in Nutz- und Modelltieren (Rind, Schwein, Schaf, Maus)
  • Lipidomics, Metabolomics, Fleischqualität
  • Effekte von Fütterungs- (exogene PUFAs) und genetischen Faktoren auf den Lipidmetabolismus von Nutztieren
  • Mechanismen der de novo Synthese von Fettsäuren in Phospholipiden und Triglyzeriden,
  • Chemische Analytik (GC, GC-MS/MS, MALDI-TOF, Ag+-HPLC, TLC, biochemische Assays, Mikronährstoffe)

Lebenslauf

  • seit 2018: Arbeitsgruppenleiter AG Lipidmetabolismus und muskuläre Adaptation
  • 2001–2017: Wissenschaftler, Forschungsinstitut für Nutztierbiologie (FBN) Dummerstorf, Abteilung Funktion bioaktiver Lipide
  • 1992–1997: Postdoc, Institut für Ostseeforschung Warnemünde, Rostock
  • 1985–1989: Promotion zum Dr. rer. nat., Universität Rostock
  • 1985: Abschluss zum Dipl.-Chem. in Anorganischer Chemie, Universität Rostock

Lehre

  • Seit 2012: Fettqualität, Agrar- und Umweltwissenschaftliche Fakultät der Universität Rostock (M.Sc.)
  • Seit 2012: Fettqualität, Agrar- und Umweltwissenschaftliche Fakultät der Universität Rostock (B.Sc.)

Publikationen

Tönißen, K.; Pfuhl, R.; Franz, G. P.; Dannenberger, D.; Bochert, R.; Grunow, B. (2022):
Impact of spawning season on fillet quality of wild pikeperch (Sander lucioperca)
European Food Research and Technology 248: 1277-1285
https://doi.org/10.1007/s00217-022-03963-7
Abu Risha, M.; Ali, A.; Siengdee, P.; Trakooljul, N.; Dannenberger, D.; Wimmers, K.; Ponsuksili, S. (2022):
Insights into molecular pathways and fatty acid membrane composition during the temperature stress response in the murine C2C12 cell model
Science of The Total Environment 807 (3): 151019, 1-13
https://doi.org/10.1016/j.scitotenv.2021.151019
vanAckern, I.; Wulf, A.; Dannenberger, D.; Tuchscherer, A.; Kuhla, B. (2021):
Effects of endocannabinoids on feed intake, stress response and whole‑body energy metabolism in dairy cows
Scientific Reports 11: 23657, 1-12
https://doi.org/10.1038/s41598-021-02970-0
Abu Risha, M.; Ali, A.; Siengdee, P.; Trakooljul, N.; Haack, F.; Dannenberger, D.; Wimmers, K.; Ponsuksili, S. (2021):
Wnt signaling related transcripts and their relationship to energy metabolism in C2C12 myoblasts under temperature stress
PeerJ 9: e11625, 1-20
https://doi.org/10.7717/peerj.11625
Abu Risha, M.; Siengdee, P.; Dannenberger, D.; Wimmers, K.; Ponsuksili, S. (2021):
PUFA Treatment Affects C2C12 Myocyte Differentiation, Myogenesis Related Genes and Energy Metabolism
Genes 12 (2): 192, 1-18
https://doi.org/10.3390/genes12020192
Metzger, K.; Dannenberger, D.; Tuchscherer, A.; Ponsuksili, S.; Kalbe, C. (2021):
Effects of temperature on proliferation of myoblasts from donor piglets with different thermoregulatory maturities
BMC Molecular and Cell Biology 22: 36, 1-15
https://doi.org/10.1186/s12860-021-00376-4
Le Duc, D.; Lin, C.-C.; Popkova, Y.; Yang, Z.; Akhil, V.; Cakir, M. V.; Grunewald, S.; Simon, J. C.; Dietz, A.; Dannenberger, D.; Garten, A.; Lemke, J. R.; Schiller, J.; Blüher, M.; Nono Nankam, P. A.; Rolle-Kampczyk, U.; von Bergen, M.; Kelso, J.; Schöneberg, T. (2021):
Reduced lipolysis in lipoma phenocopies lipid accumulation in obesity
International Journal of Obesity 45: 565-576
https://doi.org/10.1038/s41366-020-00716-y
Uken, K. L.; Schäff, C. T.; Vogel, L.; Gnott, M.; Dannenberger, D.; Görs, S.; Tuchscherer, A.; Tröscher, A.; Liermann, W.; Hammon, H. M. (2021):
Modulation of colostrum composition and fatty acid status in neonatal calves by maternal supplementation with essential fatty acids and conjugated linoleic acid starting in late lactation
Journal of Dairy Science 104 (4): 4950-4969
https://doi.org//10.3168/jds.2020-19627
Gnott, M.; Vogel, L.; Kröger-Koch, C.; Dannenberger, D.; Tuchscherer, A.; Tröscher, A.; Trevisi, E.; Stefaniak, T.; Jawor, P.; Starke, S.; Mielenz, M.; Bachmann, L.; Hammon, H. M. (2020):
Changes in fatty acids in plasma and association with the inflammatory response in dairy cows abomasally infused with essential fatty acids and conjugated linoleic acid during late and early lactation
Journal of Dairy Science 103 (12): 11889-11910
https://doi.org/10.3168/jds.2020-18735
Vogel, L.; Gnott, M.; Kröger-Koch, C.; Dannenberger, D.; Tuchscherer, A.; Tröscher, A.; Kienberger, H.; Rychlik, M.; Starke, S.; Bachmann, L.; Hammon, H. M. (2020):
Effects of abomasal infusion of essential fatty acids together with conjugated linoleic acid in late and early lactation on performance, milk and body composition, and plasma metabolites in dairy cows
Journal of Dairy Science 103 (8): 7431-7450
https://doi.org/10.3168/jds.2019-18065
Liermann, W.; Viergutz, T.; Uken, K. L.; Vogel, L.; Gnott, M.; Dannenberger, D.; Tuchscherer, A.; Kienberger, H.; Rychlik, M.; Tröscher, A.; Hammon, H. M. (2020):
Influences of maternal conjugated linoleic acid and essential fatty acid supply during late pregnancy and early lactation on T and B cell subsets in mesenteric lymph nodes and the small intestine of neonatal calves
Frontiers in Veterinary Science 7: 604452, 1-8
https://doi.org/10.3389/fvets.2020.604452
Kruse, M.; Kemper, M.; Gancheva, S.; Osterhoff, M.; Dannenberger, D.; Markgraf, D.F.; Machmann, J.; Hierholzer, J.; Roden, M.; Pfeiffer, H. (2020):
Dietary rapeseed oil supplementation reduces hepatic steatosis in obese men - A randomized controlled trial
Molecular Nutrition Food Research 64 (21): 2000419, 1-13
https://doi.org/10.1002/mnfr.202000419
Schindler, M.; Dannenberger, D.; Nuernberg, G.; Pendzialek, S.; Grybel, K.; Seeling, T.; Santos, A. (2020):
Embryonic fatty acid metabolism in diabetic pregnancy: the difference between embryoblasts and trophoblasts
Molecular Human Reproduction 26 (11): 837-849
https://doi.org/10.1093/molehr/gaaa063
Dahl, N.; Albrecht, E.; Dannenberger, D.; Uken, K. L.; Hammon, H. M.; Maak, S. (2020):
Consequences of maternal essential fatty acid and conjugated linoleic acid supplementation on the development of calf muscle and adipose tissue
Animals 10 (9): 1598, 1-18
https://doi.org/10.3390/ani10091598
Dannenberger, D.; Möller, R.; Westphal, L.; Moritz, T.; Dähne, M.; Grunow, B. (2020):
Fatty acid composition in blubber, liver, and muscle of marine mammals in the southern Baltic Sea
Animals 10 (9): 1509, 1-12
https://doi.org/10.3390/ani10091509
Suchý, T.; Zieschang, C.; Popkova, Y.; Kaczmarek, I.; Weiner, J.; Liebing, A. D.; Çakir, M. V.; Landgraf, K.; Gericke, M.; Pospisilik, J. A.; Körner, A.; Heiker, J. K.; Dannenberger, D.; Schiller, J.; Schöneberg, T.; Liebscher, V.; Thor, D. (2020):
The repertoire of Adhesion G protein-coupled receptors in adipocytes and their functional relevance
International Journal of Obesity 44: 2124-2136
https://doi.org/10.1038/s41366-020-0570-2
Engel, K. M.; Dzyuba, B.; Ninhaus-Silveira, A.; Verissomo-Silveira, R.; Dannenberger, D.; Schiller, J.; Steinbach, C.; Dzyuba, B. (2020):
Sperm lipid composition in early diverged fish species: Internal vs. external mode of fertilization
Biomolecules 10 (2): 172, 1-25
https://doi.org/10.3390/biom10020172
Sharma, A.; Baddela, V. S.; Roettgen, V.; Vernunft, A.; Viergutz, T.; Dannenberger, D.; Hammon, H. M.; Schoen, J.; Vanselow, J. (2020):
Effects of dietary fatty acids on bovine oocyte competence and granulosa cells
Frontiers in Endocrinology 11: 87, 1-12
https://doi.org/10.3389/fendo.2020.00087
Popkova, Y.; Dannenberger, D.; Schiller, J.; Engel, K. M. (2019):
Differences in the lipid pattern during maturation of 3T3-L1 adipocytes investiged by thin-layer chromatography, gas chromatography, and mass spectrometric approaches
Analytical and Bioanalytical Chemistry 412: 2273-2249
https://doi.org/10.1007/s00216-019-02243-w
Stehr, M.; Grashorn, M.; Dannenberger, D.; Tuchscherer, A.; Gauly, M.; Metges, C. C.; Daş, G. (2019):
Resistance and tolerance to mixed nematode infections in relation to performance level in laying hens
Veterinary Parasitology 275: 108925, 1-12
https://doi.org/10.1016/j.vetpar.2019.108925