Funke, Susanne A. (2023)
Lehrerfortbildung, Hochschule Coburg.
Gast, Martina; Nageswaran, Vanasa; Kuss, Andreas; Tzvetkova, Ana; Wang, Xiaomin; Mochmann, Liliana; Rad, Pegah; Weiss, Stefan; Simm, Stefan; Zeller, Tanja; Voelzke, Henry; Hoffmann, Wolfgang; Völker, Uwe; Felix, Stefan; Dörr, Marcus; Beling, Antje; Skurk, Carsten; Leistner, David-Manuel; Rauch, Bernhard; Hirose, Tetsuro; Heidecker, Bettina; Klingel, Karin; Nakagawa, Shinichi; Poller, Wolfram; Swirski, Filip; Haghikia, Arash; Poller, Wolfgang (2022)
Gast, Martina; Nageswaran, Vanasa; Kuss, Andreas; Tzvetkova, Ana; Wang, Xiaomin...
Cells 11 (24), 3970.
DOI: 10.3390/cells11243970
The evolutionary conserved NEAT1-MALAT1 gene cluster generates large noncoding transcripts remaining nuclear, while tRNA-like transcripts (mascRNA, menRNA) enzymatically generated from these precursors translocate to the cytosol. Whereas functions have been assigned to the nuclear transcripts, data on biological functions of the small cytosolic transcripts are sparse. We previously found NEAT1-/- and MALAT1-/- mice to display massive atherosclerosis and vascular inflammation. Here, employing selective targeted disruption of menRNA or mascRNA, we investigate the tRNA-like molecules as critical components of innate immunity. CRISPR-generated human ΔmascRNA and ΔmenRNA monocytes/macrophages display defective innate immune sensing, loss of cytokine control, imbalance of growth/angiogenic factor expression impacting upon angiogenesis, and altered cell-cell interaction systems. Antiviral response, foam cell formation/oxLDL uptake, and M1/M2 polarization are defective in ΔmascRNA/ΔmenRNA macrophages, defining first biological functions of menRNA and describing new functions of mascRNA. menRNA and mascRNA represent novel components of innate immunity arising from the noncoding genome. They appear as prototypes of a new class of noncoding RNAs distinct from others (miRNAs, siRNAs) by biosynthetic pathway and intracellular kinetics. Their NEAT1-MALAT1 region of origin appears as archetype of a functionally highly integrated RNA processing system.
Gather, Leonie; Nath, Neetika; Falckenhayn, Cassandra; Oterino-Sogo, Sergio; Bosch, Thomas; Wenck, Horst; Winnefeld, Marc; Grönniger, Elke; Simm, Stefan; Siracusa, Annette (2022)
Gather, Leonie; Nath, Neetika; Falckenhayn, Cassandra; Oterino-Sogo, Sergio...
The Journal of Investigative Dermatology 142 (12), 3136–3145.e11.
DOI: 10.1016/j.jid.2022.06.023
Aging of the skin is accompanied by cellular as well as tissue environmental changes, ultimately reducing the ability of the tissue to regenerate and adequately respond to external stressors. Macrophages are important gatekeepers of tissue homeostasis, and it has been reported that their number and phenotype change during aging in a site-specific manner. How aging affects human skin macrophages and what implications this has for the aging process in the tissue are still not fully understood. Using single-cell RNA-sequencing analysis, we show that there is at least a 50% increase of macrophages in human aged skin, which appear to have developed from monocytes and exhibit more proinflammatory M1-like characteristics. In contrast, the cell-intrinsic ability of aged monocytes to differentiate into M1 macrophages was reduced. Using coculture experiments with aged dermal fibroblasts, we show that it is the aged microenvironment that drives a more proinflammatory phenotype of macrophages in the skin. This proinflammatory M1-like phenotype in turn negatively influenced the expression of extracellular matrix proteins by fibroblasts, emphasizing the impact of the aged macrophages on the skin phenotype.
Meißner, Karin (2022)
Eingeladener Vortrag, Gründungsveranstaltung für das REGIOMED Zentrum für Wirbelsäulenmedizin, Regiomed Klinikum Lichtenfels .
Meißner, Karin (2022)
Vortrag auf der internationalen Tagung "The structure of creditions - methods, methodology, and assessment", Graz, Österreich.
Meißner, Karin (2022)
Oral presentation, 2022 Xing-lin International Week of Chengdu University of Traditional Chinese Medicine (CDUTCM).
Kenzel, Julia; Brüggemann, Dagmar Adeline; Funke, Susanne A. (2022)
Applied Microbiology 2022 (4), 2 | 921-933.
DOI: 10.3390/applmicrobiol2040070
Meißner, Karin (2022)
Vortrag im Rahmen der Vorlesungsreihe "Hot Topics in Psychology", TUM Fakultät für Sport- und Gesundheitswissenschaften.
Huber, Jana; Lotz-Schmidt, Katharina; Bobinger, Alina; Weber, Annemarie; Olliges, Elisabeth; Kraft, Jana; Popovici, R. M.; Meißner, Karin (2022)
Huber, Jana; Lotz-Schmidt, Katharina; Bobinger, Alina; Weber, Annemarie...
Frauenarzt - Offizielles Organ des Berufsverbands der Frauenärzte e.V. (BVF) sowie der Deutschen Gesellschaft für Gynäkologie und Geburtshilfe e.V. (DGGG) 63 (11), 722 – 726.
Meißner, Karin (2022)
Chinesische Medizin 37 (3), 127–137.
DOI: 10.1007/s00052-022-00069-x
Weiß, Katharina; Kohls, Niko (2022)
Prävention und Gesundheitsförderung.
DOI: 10.1007/s11553-022-00983-9
Effective pain management with long-lasting effects for patients with chronic pain is still a challenge.
Investigation of the effects of a health-promoting intervention with “eye movement desensitization and reprocessing” (EMDR) in patients with chronic pain and a possible improvement of their quality of life.
Using a paper–pencil survey, 30 patients with chronic pain were interviewed at two timepoints using subscales of the German Pain Questionnaire (DSF), the Pain Disability Index (PDI), and the WHO Quality of Life—Short Version (WHOQOL-BREF). Between the two timepoints, the patients in the intervention group were treated with EMDR.
Some significant results indicate that quality of life is improved by using EMDR to treat chronic pain. In the intervention group, quality of life improved significantly in the domains of physical, psychological, and global quality of life compared to both timepoints.
Due to the explorative character of this study, however, findings can only be cautiously interpreted, and long-term studies with larger samples and follow-up surveys should be conducted to clarify statements about the efficacy and long-term effects of EMDR treatment for chronic pain. This treatment method appears to be of great potential, and use of EMDR an integral part of a multimodal, interdisciplinary pain therapy seems promising.
Waibl, Paula; Rothenhäusler, Lena; Nöfer, Eberhard; Meißner, Karin (2022)
Vortrag, "Gesundheitsförderung in der post-pandemischen Phase", Jahrestagung des D|A|CH - Netzwerks für Gesundheitsförderung 2022, 16.-18. September in Hall in Tirol, Österreich.
Schröder, Maike; Schnabel, Monika; Hassel, Holger; Babitsch , Birgit (2022)
37 (4), 1-10.
DOI: 10.1093/heapro/daac120
Aillaud, Isabelle; Funke, Susanne A. (2022)
Cellular and Molecular Neurobiology 2022.
DOI: 10.1007/s10571-022-01230-7
Meyer, Marleen; Falk, Simon; Römer, Sarah; Prinzinger, Clarissa; Tacke, Sabine; Geyer, Joachim; Simm, Stefan; Tzvetkov, Mladen (2022)
Meyer, Marleen; Falk, Simon; Römer, Sarah; Prinzinger, Clarissa; Tacke, Sabine...
International Journal of Molecular Sciences 23 (9), 5100.
DOI: 10.3390/ijms23095100
OCT1 and OCT2 are polyspecific membrane transporters that are involved in hepatic and renal drug clearance in humans and mice. In this study, we cloned dog OCT1 and OCT2 and compared their function to the human and mouse orthologs. We used liver and kidney RNA to clone dog OCT1 and OCT2. The cloned and the publicly available RNA-Seq sequences differed from the annotated exon-intron structure of OCT1 in the dog genome CanFam3.1. An additional exon between exons 2 and 3 was identified and confirmed by sequencing in six additional dog breeds. Next, dog OCT1 and OCT2 were stably overexpressed in HEK293 cells and the transport kinetics of five drugs were analyzed. We observed strong differences in the transport kinetics between dog and human orthologs. Dog OCT1 transported fenoterol with 12.9-fold higher capacity but 14.3-fold lower affinity (higher KM) than human OCT1. Human OCT1 transported ipratropium with 5.2-fold higher capacity but 8.4-fold lower affinity than dog OCT1. Compared to human OCT2, dog OCT2 showed 10-fold lower transport of fenoterol and butylscopolamine. In conclusion, the functional characterization of dog OCT1 and OCT2 reported here may have implications when using dogs as pre-clinical models as well as for drug therapy in dogs.
Meißner, Karin; Olliges, Elisabeth; Weimer, K.; Beissner, F. (2022)
Complementary Medicine Research 29 (2), 23-29.
DOI: 10.1159/000524073
Hamberger, Jens; Loew, T.; Meißner, Karin; Beschoner, Petra; Roder, Eva; Jarczok, Marc N.; Weimer, K. (2022)
Hamberger, Jens; Loew, T.; Meißner, Karin; Beschoner, Petra; Roder, Eva...
Poster presentation A1634, 79th Annual Scientific Meeting of the American Psychosomatic Society (APS), March 23-26, 2022, Long Beach, California, US 84 (5), A1-A153.
DOI: 10.1097/PSY.0000000000001095
Fester, Niclas; Zielonka, Elisabeth; Goldmann, Jakob; Frombach, Ann-Sophie; Müller-Kuller, Uta; Gutfreund, Niklas; Riegel, Kristina; Smits, Jos; Schleiff, Enrico; Rajalingam, Krishnaraj; Zhou, Huiqing; Simm, Stefan; Dötsch, Volker (2022)
Fester, Niclas; Zielonka, Elisabeth; Goldmann, Jakob; Frombach, Ann-Sophie...
Cell Death & Disease 13 (3), 204.
DOI: 10.1038/s41419-022-04659-2
Specialized surveillance mechanisms are essential to maintain the genetic integrity of germ cells, which are not only the source of all somatic cells but also of the germ cells of the next generation. DNA damage and chromosomal aberrations are, therefore, not only detrimental for the individual but affect the entire species. In oocytes, the surveillance of the structural integrity of the DNA is maintained by the p53 family member TAp63α. The TAp63α protein is highly expressed in a closed and inactive state and gets activated to the open conformation upon the detection of DNA damage, in particular DNA double-strand breaks. To understand the cellular response to DNA damage that leads to the TAp63α triggered oocyte death we have investigated the RNA transcriptome of oocytes following irradiation at different time points. The analysis shows enhanced expression of pro-apoptotic and typical p53 target genes such as CDKn1a or Mdm2, concomitant with the activation of TAp63α. While DNA repair genes are not upregulated, inflammation-related genes become transcribed when apoptosis is initiated by activation of STAT transcription factors. Furthermore, comparison with the transcriptional profile of the ΔNp63α isoform from other studies shows only a minimal overlap, suggesting distinct regulatory programs of different p63 isoforms.
Aillaud, Isabelle; Kaniyappan, S.; Chandupatla, R.R.; Ramirez, L.-M.; Alkhashrom, Sewar ; Eichler, Jutta; Horn, A. H. C.; Zweckstetter , M.; Mandelkow, E.; Sticht, H.; Funke, Susanne A. (2022)
Aillaud, Isabelle; Kaniyappan, S.; Chandupatla, R.R.; Ramirez, L.-M....
Alzheimer's Research & Therapy 14, 15.
DOI: 10.1186/s13195-022-00959-z
Forkel, Hannes; Grabarczyk, Piotr; Depke, Maren; Troschke-Meurer, Sascha; Simm, Stefan; Hammer, Elke; Michalik, Stephan; Hentschker, Christian; Corleis, Björn; Loyal, Lucie; Zumpe, Maxi; Siebert, Nikolai; Dorhoi, Anca; Thiel, Andreas; Lode, Holger; Völker, Uwe; Schmidt, Christian (2022)
Forkel, Hannes; Grabarczyk, Piotr; Depke, Maren; Troschke-Meurer, Sascha; Simm, Stefan...
Oncoimmunology 11 (1), 2148850.
DOI: 10.1080/2162402X.2022.2148850
BCL11B, an essential transcription factor for thymopoiesis, regulates also vital processes in post-thymic lymphocytes. Increased expression of BCL11B was recently correlated with the maturation of NK cells, whereas reduced BCL11B levels were observed in native and induced T cell subsets displaying NK cell features. We show that BCL11B-depleted CD8+ T cells stimulated with IL-15 acquired remarkable innate characteristics. These induced innate CD8+ (iiT8) cells expressed multiple innate receptors like NKp30, CD161, and CD16 as well as factors regulating migration and tissue homing while maintaining their T cell phenotype. The iiT8 cells effectively killed leukemic cells spontaneously and neuroblastoma spheroids in the presence of a tumor-specific monoclonal antibody mediated by CD16 receptor activation. These iiT8 cells integrate the innate natural killer cell activity with adaptive T cell longevity, promising an interesting therapeutic potential. Our study demonstrates that innate T cells, albeit of limited clinical applicability given their low frequency, can be efficiently generated from peripheral blood and applied for adoptive transfer, CAR therapy, or combined with therapeutic antibodies.
Hochschule Coburg
Friedrich-Streib-Str. 2
96450 Coburg