164 research outputs found
Neue Wirkprinzipien im Bereich Immunmodulation, Anti-Irritation an epidermalen Zellen : Untersuchungen zur IL-8-Suppression und Induktion antimikrobieller Peptide durch Oligodeoxynukleotide in humanen Keratinozyten
Der menschliche Körper ist permanent verschiedenen Mikroorganismen aus der Umwelt ausgesetzt. Dringen diese in den Körper ein, werden sie oder ihre Produkte vom Körper als „fremd“ erkannt und abgewehrt. Dies geschieht über zwei unterschiedliche immunologische Systeme, dem schnell und zuerst reagierenden angeborenen und einem langsamer reagierenden erworbenen Immunsystem. Vom angeborenen Immunsystem erkannt werden so genannte pathogen associated molecular pattern, zu denen auch die CpG-DNA zählt, welche als Ligand des TLR9 identifiziert wurde. CpG- und Non-CpG-ODN sind bislang hauptsächlich an Zellen des Immunsystems erforscht und bewirken dort eine Immunaktivierung und einen pro-inflammatorischen Effekt, der mit dem Ausschütten inflammatorischer Zytokine einhergeht. Es konnte jedoch gezeigt werden, dass sowohl CpG- als auch Non-CpGPTO-ODN an humanen Keratinozyten eine IL-8-Suppression bewirken. Diese IL-8-supprimierende Wirkung wird nicht über den beschriebenen Rezeptor für CpG-DNA TLR9 entfaltet, sondern vermutlich mittels direkter physikalischer Interaktion mit IL-8 selbst. Durch diese Maskierung des IL-8 kann das Chemokin im ELISA nicht mehr detektiert werden. Des Weiteren gelang im Rahmen der vorliegenden Promotionsarbeit der funktionelle Nachweis, dass auch in vivo (im Kontaktdermatitis-Mausmodell) bei topischer Applikation eine anti-inflammatorische Wirkung durch eine Non-CpG-ODN-haltige Salbe erzielt werden kann. Auf intakter Haut, welche permanent mit einer eigenen Mikroflora besiedelt und somit auch permanent mit bakterieller DNA konfrontiert ist, lösen CpG- und Non-CpG-ODN eine Immunsuppression aus, vermutlich als Schutz vor überschießenden Entzündungen der Haut. Außerdem konnte anhand konfokaler Laser-Scan Mikroskopie gezeigt werden, dass die verwendeten ODN längen- und sequenzspezifisch in Keratinozyten aufgenommen und innerhalb der Zellen transportiert werden. Hier zeigte sich, dass Sequenzen, welche bei der IL-8-Suppression nur geringe oder keine Effekte zeigen, direkt in den Nukleus oder die Nukleoli transportiert werden, wo sie vermutlich an nukleare Bestandteile gebunden oder abgebaut werden. Untersuchungen zum Penetrationsverhalten der ODN an Multilayern zeigten, dass die ODN auch hier längenabhängig in tiefere viable Schichten gelangen. Die Untersuchungen zum Penetrations- und Aufnahme-Verhalten der ODN ist für einen möglichen therapeutischen Einsatz der ODN von hohem Interesse. Im Rahmen dieser Promotionsarbeit gelang zudem erstmals der Nachweis, dass PTO-ODN in der Lage sind, die zum angeborenen Immunsystem zählenden anti-mikrobiell wirksamen Substanzen HbD2, HbD3 und Psoriasin zu induzieren. Diese werden in der Haut synthetisiert und schützen gegen eine ganze Reihe von Mikroorganismen. Anhand Promoter-Aktivitätsstudien konnte demonstriert werden, dass die verwendeten ODN eine Aktivierung von NF K B vermitteln, welche in direktem Zusammenhang mit einer HbD2-Induktion steht. Zusammenfassend lässt sich sagen, dass CpG- und Non-CpG-ODN zwar als "fremd" und potentiell gefährlich in intakter Haut erkannt werden, wodurch eine Induktion von anti-mikrobiell wirksamen Substanzen ausgelöst wird. Gleichzeitig findet jedoch eine IL-8-Suppression (in vitro), beziehungsweise eine anti-inflammatorische Wirkung (in vivo) statt, welche vermutlich vor überschießenden Immunreaktionen der Haut schützen sollen
Impact of three intense winter cyclones on the sea ice cover in the Barents Sea : A case study with a coupled regional climate model
We utilize a nudged simulation with the coupled regional atmosphere-ocean-sea ice model HIRHAM-NAOSIM over the Arctic to conduct an in-depth analysis of the impact of a sequence of three intense cyclones on the sea ice cover in the Barents and Kara Seas in February 2020. To clarify the underlying mechanisms we decompose changes in sea ice concentration (SIC) and thickness (SIT) into their dynamic and thermodynamic contributions and analyze them in concert with simulated changes in the wind forcing and the surface energy budget. Our findings reveal that changes in SIT during and after the cyclone passages are mostly driven by dynamic processes such as increased ice drift and deformation. With respect to SIC, the relative importance of dynamics and thermodynamics depends on the considered time scale and on the general conditions of the cyclone passages. If cyclones follow on each other in rapid succession, dynamic mechanisms dominate the SIC response for time scales of more than 2 weeks and thermodynamic effects via advection of warm-moist/cold-dry air masses on the cyclone's front/back side only play a secondary role. However, if sufficiently long time elapses until the arrival of the next storm, thermodynamic SIC increase due to refreezing under the influence of cold and dry air at the backside of the cyclone becomes the dominating mechanism during the days following the cyclone passage.Peer reviewe
Clinical response to Auron Misheil Therapy in a man with advanced multifocal hepatocellular carcinoma: A case report
<p>Abstract</p> <p>Introduction</p> <p>Auron Misheil Therapy was developed based on similarities between carcinogenesis and inflammation. Auron Misheil Therapy is a combination of natural and synthetic compounds, including anti-inflammatory drugs and insulin, expected to exhibit synergistic effects.</p> <p>Case presentation</p> <p>Here, we report the case of a 78-year-old Caucasian male patient who presented with multifocal hepatocellular carcinoma and chronic hepatitis C virus infection. Over a four-year period our patient was treated with radiofrequency ablation and transarterial chemoembolization. After these treatments there was tumor progression, with new hyperperfused lesions without evidence of extrahepatic tumor involvement. Our patient refused sorafenib therapy. Therefore, he received twice daily intramuscular injections of Auron Misheil Therapy on an outpatient basis for two months. Partial remission of the hepatic lesions was observed eight weeks after the start of treatment, and confirmed four weeks later. Unfortunately, at that time our patient refused therapy due to dizziness. During follow-up two target lesions remained stable, but one lesion increased in size. At the latest follow-up, one year later, there was still tumor control.</p> <p>Conclusion</p> <p>While the mechanisms underlying the antitumor effects of Auron Misheil Therapy are not fully understood, stable disease and remissions have been observed in different types of tumors, including hepatocellular carcinoma.</p
Evaluation of Arctic land snow cover characteristics, surface albedo and temperature during the transition seasons from regional climate model simulations and satellite data
This paper evaluates the simulated Arctic land snow cover duration, snow water equivalent, snow cover fraction, surface albedo and land surface temperature in the regional climate model HIRHAM5 during 2008-2010, compared with various satellite and reanalysis data and one further regional climate model (COSMO-CLM). HIRHAM5 shows a general agreement in the spatial patterns and annual course of these variables, although distinct biases for specific regions and months are obvious. The most prominent biases occur for east Siberian deciduous forest albedo, which is overestimated in the simulation for snow covered conditions in spring. This may be caused by the simplified albedo parameterization (e.g. non-consideration of different forest types and neglecting the effect of fallen leaves and branches on snow for deciduous tree forest). The land surface temperature biases mirror the albedo biases in their spatial and temporal structures. The snow cover fraction and albedo biases can explain the simulated land surface temperature bias of ca. -3 °C over the Siberian forest area in spring
Evaluation of the Sea-Ice Simulation in the Upgraded Version of the Coupled Regional Atmosphere-Ocean-Sea Ice Model HIRHAM–NAOSIM 2.0
The sea-ice climatology and sea-ice trends and variability are evaluated in simulations with the new version of the coupled Arctic atmosphere-ocean-sea ice model HIRHAM–NAOSIM 2.0. This version utilizes upgraded model components for the coupled subsystems, which include physical and numerical improvements and higher horizontal and vertical resolution, and a revised coupling procedure with the aid of the coupling software YAC (Yet Another Coupler). The model performance is evaluated against observationally based data sets and compared with the previous version. Ensemble simulations for the period 1979–2016 reveal that Arctic sea ice is thicker in
all seasons and closer to observations than in the previous version. Wintertime biases in sea-ice extent, upper ocean temperatures, and near-surface air temperatures are reduced, while summertime biases are of similar magnitude as in the previous version. Problematic issues of the current model configuration and potential corrective measures and further developments are discussed
Oligonucleotides suppress PKB/Akt and act as superinductors of apoptosis in human keratinocytes
DNA oligonucleotides (ODN) applied to an organism are known to modulate the innate and adaptive immune system. Previous studies showed that a CpG-containing ODN (CpG-1-PTO) and interestingly, also a non-CpG-containing ODN (nCpG-5-PTO) suppress inflammatory markers in skin. In the present study it was investigated whether these molecules also influence cell apoptosis. Here we show that CpG-1-PTO, nCpG-5-PTO, and also natural DNA suppress the phosphorylation of PKB/Akt in a cell-type-specific manner. Interestingly, only epithelial cells of the skin (normal human keratinocytes, HaCaT and A-431) show a suppression of PKB/Akt. This suppressive effect depends from ODN lengths, sequence and backbone. Moreover, it was found that TGFα-induced levels of PKB/Akt and EGFR were suppressed by the ODN tested. We hypothesize that this suppression might facilitate programmed cell death. By testing this hypothesis we found an increase of apoptosis markers (caspase 3/7, 8, 9, cytosolic cytochrome c, histone associated DNA fragments, apoptotic bodies) when cells were treated with ODN in combination with low doses of staurosporin, a well-known pro-apoptotic stimulus. In summary the present data demonstrate DNA as a modulator of apoptosis which specifically targets skin epithelial cells
Mitofusin 2 is essential for IP3-mediated SR/Mitochondria metabolic feedback in ventricular myocytes
Aim: Endothelin-1 (ET-1) and angiotensin II (Ang II) are multifunctional peptide hormones that regulate the function of the cardiovascular and renal systems. Both hormones increase the intracellular production of inositol-1,4,5-trisphosphate (IP) by activating their membrane-bound receptors. We have previously demonstrated that IP-mediated sarcoplasmic reticulum (SR) Ca release results in mitochondrial Ca uptake and activation of ATP production. In this study, we tested the hypothesis that intact SR/mitochondria microdomains are required for metabolic IP-mediated SR/mitochondrial feedback in ventricular myocytes.
Methods: As a model for disrupted mitochondrial/SR microdomains, cardio-specific tamoxifen-inducible mitofusin 2 (Mfn2) knock out (KO) mice were used. Mitochondrial Ca uptake, membrane potential, redox state, and ATP generation were monitored in freshly isolated ventricular myocytes from Mfn2 KO mice and their control wild-type (WT) littermates.
Results: Stimulation of ET-1 receptors in healthy control myocytes increases mitochondrial Ca uptake, maintains mitochondrial membrane potential and redox balance leading to the enhanced ATP generation. Mitochondrial Ca uptake upon ET-1 stimulation was significantly higher in interfibrillar (IFM) and perinuclear (PNM) mitochondria compared to subsarcolemmal mitochondria (SSM) in WT myocytes. Mfn2 KO completely abolished mitochondrial Ca uptake in IFM and PNM mitochondria but not in SSM. However, mitochondrial Ca2+ uptake induced by beta-adrenergic receptors activation with isoproterenol (ISO) was highest in SSM, intermediate in IFM, and smallest in PNM regions. Furthermore, Mfn2 KO did not affect ISO-induced mitochondrial Ca uptake in SSM and IFM mitochondria; however, enhanced mitochondrial Ca uptake in PNM. In contrast to ET-1, ISO induced a decrease in ATP levels in WT myocytes. Mfn2 KO abolished ATP generation upon ET-1 stimulation but increased ATP levels upon ISO application with highest levels observed in PNM regions.
Conclusion: When the physical link between SR and mitochondria by Mfn2 was disrupted, the SR/mitochondrial metabolic feedback mechanism was impaired resulting in the inability of the IP-mediated SR Ca release to induce ATP production in ventricular myocytes from Mfn2 KO mice. Furthermore, we revealed the difference in Mfn2-mediated SR-mitochondrial communication depending on mitochondrial location and type of communication (IPR-mRyR1 vs. ryanodine receptor type 2-mitochondrial calcium uniporter)
Mitofusin 2 is essential for IP3-mediated SR/mitochondria metabolic feedback in ventricular myocytes
Aim: Endothelin-1 (ET-1) and angiotensin II (Ang II) are multifunctional peptide hormones that regulate the function of the cardiovascular and renal systems. Both hormones increase the intracellular production of inositol-1,4,5-trisphosphate (IP) by activating their membrane-bound receptors. We have previously demonstrated that IP-mediated sarcoplasmic reticulum (SR) Ca release results in mitochondrial Ca uptake and activation of ATP production. In this study, we tested the hypothesis that intact SR/mitochondria microdomains are required for metabolic IP-mediated SR/mitochondrial feedback in ventricular myocytes.
Methods: As a model for disrupted mitochondrial/SR microdomains, cardio-specific tamoxifen-inducible mitofusin 2 (Mfn2) knock out (KO) mice were used. Mitochondrial Ca uptake, membrane potential, redox state, and ATP generation were monitored in freshly isolated ventricular myocytes from Mfn2 KO mice and their control wild-type (WT) littermates.
Results: Stimulation of ET-1 receptors in healthy control myocytes increases mitochondrial Ca uptake, maintains mitochondrial membrane potential and redox balance leading to the enhanced ATP generation. Mitochondrial Ca uptake upon ET-1 stimulation was significantly higher in interfibrillar (IFM) and perinuclear (PNM) mitochondria compared to subsarcolemmal mitochondria (SSM) in WT myocytes. Mfn2 KO completely abolished mitochondrial Ca uptake in IFM and PNM mitochondria but not in SSM. However, mitochondrial Ca2+ uptake induced by beta-adrenergic receptors activation with isoproterenol (ISO) was highest in SSM, intermediate in IFM, and smallest in PNM regions. Furthermore, Mfn2 KO did not affect ISO-induced mitochondrial Ca uptake in SSM and IFM mitochondria; however, enhanced mitochondrial Ca uptake in PNM. In contrast to ET-1, ISO induced a decrease in ATP levels in WT myocytes. Mfn2 KO abolished ATP generation upon ET-1 stimulation but increased ATP levels upon ISO application with highest levels observed in PNM regions.
Conclusion: When the physical link between SR and mitochondria by Mfn2 was disrupted, the SR/mitochondrial metabolic feedback mechanism was impaired resulting in the inability of the IP-mediated SR Ca release to induce ATP production in ventricular myocytes from Mfn2 KO mice. Furthermore, we revealed the difference in Mfn2-mediated SR-mitochondrial communication depending on mitochondrial location and type of communication (IPR-mRyR1 vs. ryanodine receptor type 2-mitochondrial calcium uniporter)
- …