TY - THES A1 - Martin, Corinna T1 - Oxidized phospholipids and their role in neuronal excitation of primary sensory neurons T1 - Oxidierte Phospholipide und ihre Funktion in neuronaler Erregbarkeit in primären sensorischen Neuronen N2 - Recently, our research group identified in a study novel proalgesic targets in acute and chronic inflammatory pain: oxidized phospholipids (OxPL). OxPL, endogenous chemical irritants, are generated in inflamed tissue and mediate their pain-inducing function by activating the transient receptor potential channels TRPA1 and TRPV1. Both channels are sensors for chemical stimuli on primary afferent nociceptors and are involved in nociception. Here, with the help of calcium imaging and whole cell patch clamp recording techniques, it was found that OxPL metabolites acutely activate TRPA1 and TRPV1 ion channels to excite DRG neurons. OxPL species act predominantly via TRPA1 ion channels and mediate long- lasting non-selective inward currents. Notably, one pure OxPL compound, PGPC, activated a TRPA1 mutant lacking the binding site for electrophilic agonists, suggesting that OxPL activate TRP ion channels by an indirect mechanical mechanism. Next, it was investigated how OxPL influence the excitability of primary sensory neurons. Acute stimulation and fast calcium imaging revealed that OxPL elicit repetitive, spike-like calcium transients in small- diameter DRG neurons, which were fully blocked by antagonists against TRPA1/V1 and N- type voltage-gated calcium channels. In search of a mechanism that drives repetitive spiking of DRG neurons, it was asked whether NaV1.9, a voltage-gated sodium channel involved in subthreshold excitability and nociception, is needed to trigger OxPL-induced calcium spikes and action potential firing. In electrophysiological recordings, both the combination of local application of OxPL and current injection were required to efficiently increase the action potential (AP) frequency of small-diameter sensory neurons. However, no difference was monitored in the resting membrane potential or OxPL-induced AP firing rate between wt and NaV1.9-deficient small diameter DRG neurons. To see whether NaV1.9 needs inflammatory conditions to be integrated in the OxPL-induced excitation cascade, sensory neurons were pretreated with a mixture of inflammatory mediators before OxPL application. Under inflammatory conditions both the AP and the calcium-spike frequency were drastically enhanced in response to an acute OxPL stimulus. Notably, this potentiation of OxPL stimuli was entirely lost in NaV1.9 deficient sensory neurons. Under inflammatory conditions, the resting membrane potential of NaV1.9-deficient neurons was more negative compared to wt neurons, suggesting that NaV1.9 shows resting activity only under inflammatory conditions. In conclusion, OxPL are endogenous irritants that induce excitability in small-diameter DRG neurons, a cellular model of nociceptors, via TRP activation. This effect is potentiated under inflammatory conditions. Under these conditions, NaV1.9 functions as essential mediator as it eases the initiation of excitability after OxPL stimulation. As mutants in the human NaV1.9 mediate an enhanced or painless perception, this study provides new insight into the mechanism on how NaV1.9 amplifies stimuli of endogenous irritants under inflammatory conditions. N2 - Im Zuge einer Studie über Entzündungsschmerz hat unsere Arbeitsgruppe oxidierte Phospholipide (OxPL) als neue endogene Entzündungsmediatoren entdeckt. Diese werden im entzündeten Gewebe produziert und vermitteln ihre schmerzinduzierende Funktion durch Aktivierung von sogenannten transienten Rezeptorpotentialkanälen TRPA1 und TRPV1. Beide Ionenkanäle werden von afferenten Nozizeptoren exprimiert und sind Sensoren für chemische Reize. In dieser Arbeit wurde mithilfe von Calcium Imaging und elektrophysiologischen Messungen gezeigt, dass oxidierte Phospholipide TRPA1 und TRPV1 aktivieren und eine erhöhte Erregbarkeit in sensorischen Neuronen der Hinterwurzelganglien (DRG Neuronen) auslösen. Hierbei aktivieren oxidierte Phospholipide TRPA1 stärker als TRPV1 und induzieren langanhaltende, nicht-selektive Einwärtsströme. Ein Bestandteil von OxPL, das Oxidationsprodukt PGPC, aktiviert zudem eine Mutante von TRPA1, die nicht die Bindungsstelle für elektrophile Agonisten trägt. Dies lässt vermuten, dass OxPL die TRP Kanäle über einen indirekten, mechanischen Mechanismus aktivieren. Als nächstes wurde der Einfluss von OxPL auf die Erregbarkeit von sensorischen Neuronen untersucht. Schnelles Calcium Imaging zeigte, dass eine akute Stimulation mit OxPL zu wiederholten spike-ähnlichen Signalen in DRG Neuronen führt. Diese waren nur in Neuronen mit kleinem Durchmessern zu finden und deren Aktivierung konnte sowohl durch Antagonisten gegen TRPA1/V1 als auch mit Inhibitoren spannungsgesteuerter N-Typ Kalziumkänale blockiert werden. Elektrophysiologische Untersuchungen zeigten, dass eine Strominjektion mit gleichzeitiger lokaler Applikation von OxPL zur Erhöhung der Aktionspotentialsrate in kleinen DRG Neuronen führt. Deshalb wurde untersucht, ob der spannungsgesteuerte Natriumkanal NaV1.9 für die durch OxPL induzierten Kalziumspikes und Aktionspotentiale verantwortlich ist, da er an der unterschwelligen Erregbarkeit von Neuronen beteiligt ist. Es konnte jedoch kein Unterschied beim Ruhemembranpotential oder der OxPL induzierten Aktionspotentialsrate zwischen den wt und NaV1.9-defizienten (NaV1.9 KO) Neuronen festgestellt werden. Um zu verstehen, ob NaV1.9 unter inflammatorischen Bedingungen in die OxPL induzierte Erregungskaskade integriert wird, wurden die sensorischen Neurone mit inflammatorischen Mediatoren vorbehandelt und anschließend mit OxPL stimuliert. Dies führte sowohl zu einer stark erhöhten Kalziumspike- als auch Aktionspotentialfrequenz im wt, während die NaV1.9 KO Neurone sich wie unter nicht inflammatorischen Bedingungen verhielten. Unter inflammatorischen Bedingungen konnte zudem eine Erniedrigung des Ruhemembranpotentials im Vergleich zwischen NaV1.9 KO und wt Neuronen beobachtet werden. Das lässt vermuten, dass NaV1.9 seine Ruheaktivität nur unter Entzündungsbedingungen zeigt. In dieser Arbeit wurde gezeigt, dass OxPL endogene Agonisten sind, die kleine DRG Neurone, ein zelluläres Model für Nozizeptoren, über TRPA1 und TRPV1 aktivieren. Dieser Effekt wird unter Entzündungsbedingungen verstärkt. Hierbei spielt der unterschwellig aktive Kanal NaV1.9 eine essentielle Vermittlerrolle, indem er die Auslösung von Aktionspotentialen nach einem OxPL Stimulus erleichtert. Da Mutationen im menschlichen Na1.9 Kanal zu einem erhöhten oder sogar fehlendem Schmerzempfinden führen können, gibt diese Studie einen neuen Einblick in den Mechanismus mit dem NaV1.9 Stimuli endogener, reizauslösender Substanzen unter Entzündungsbedingungen amplifiziert. KW - inflammatory pain KW - Entzündungsschmerz KW - NaV1.9. oxidized phospholipids KW - TRPA1 KW - TRPV1 KW - DRG KW - oxidierte Phospholipide KW - Entzündung KW - Schmerz KW - Phospholipide Y1 - 2018 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-160665 ER - TY - JOUR A1 - Böhnke, Julian A1 - Dellermann, Theresa A1 - Celik, Mehmet Ali A1 - Krummenacher, Ivo A1 - Dewhurst, Rian D. A1 - Demeshko, Serhiy A1 - Ewing, William C. A1 - Hammond, Kai A1 - Heß, Merlin A1 - Bill, Eckhard A1 - Welz, Eileen A1 - Röhr, Merle I. S. A1 - Mitric, Roland A1 - Engels, Bernd A1 - Meyer, Franc A1 - Braunschweig, Holger T1 - Isolation of diborenes and their 90°-twisted diradical congeners JF - Nature Communications N2 - Molecules containing multiple bonds between atoms—most often in the form of olefins—are ubiquitous in nature, commerce, and science, and as such have a huge impact on everyday life. Given their prominence, over the last few decades, frequent attempts have been made to perturb the structure and reactivity of multiply-bound species through bending and twisting. However, only modest success has been achieved in the quest to completely twist double bonds in order to homolytically cleave the associated π bond. Here, we present the isolation of double-bond-containing species based on boron, as well as their fully twisted diradical congeners, by the incorporation of attached groups with different electronic properties. The compounds comprise a structurally authenticated set of diamagnetic multiply-bound and diradical singly-bound congeners of the same class of compound. KW - chemical bonding KW - diradicals KW - organometallic chemistry KW - diborenes KW - carbenes KW - boron Y1 - 2018 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-160431 VL - 9 IS - Article number: 1197 ER - TY - INPR A1 - Böhnke, Julian A1 - Dellermann, Theresa A1 - Celik, Mehmet Ali A1 - Krummenacher, Ivo A1 - Dewhurst, Rian D. A1 - Demeshko, Serhiy A1 - Ewing, William C. A1 - Hammond, Kai A1 - Heß, Merlin A1 - Bill, Eckhard A1 - Welz, Eileen A1 - Röhr, Merle I. S. A1 - Mitric, Roland A1 - Engels, Bernd A1 - Meyer, Franc A1 - Braunschweig, Holger T1 - Isolation of diradical products of twisted double bonds T2 - Nature Communications N2 - Molecules containing multiple bonds between atoms—most often in the form of olefins—are ubiquitous in nature, commerce, and science, and as such have a huge impact on everyday life. Given their prominence, over the last few decades, frequent attempts have been made to perturb the structure and reactivity of multiply-bound species through bending and twisting. However, only modest success has been achieved in the quest to completely twist double bonds in order to homolytically cleave the associated π bond. Here, we present the isolation of double-bond-containing species based on boron, as well as their fully twisted diradical congeners, by the incorporation of attached groups with different electronic properties. The compounds comprise a structurally authenticated set of diamagnetic multiply-bound and diradical singly-bound congeners of the same class of compound. KW - diradicals KW - diborenes KW - carbenes KW - boron Y1 - 2018 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-160248 N1 - Submitted version of Julian Böhnke, Theresa Dellermann, Mehmet Ali Celik, Ivo Krummenacher, Rian D. Dewhurst, Serhiy Demeshko, William C. Ewing, Kai Hammond, Merlin Heß, Eckhard Bill, Eileen Welz, Merle I. S. Röhr, Roland Mitrić, Bernd Engels, Franc Meyer & Holger Braunschweig: Isolation of diborenes and their 90°-twisted diradical congeners. Nature Communications. Volume 9, Article number: 1197 (2018) doi:10.1038/s41467-018-02998-3 ER - TY - INPR A1 - Stennett, Tom A1 - Mattock, James A1 - Vollert, Ivonne A1 - Vargas, Alfredo A1 - Braunschweig, Holger T1 - Unsymmetrical, Cyclic Diborenes and Thermal Rearrangement to a Borylborylene T2 - Angewandte Chemie, International Edition N2 - Cyclic diboranes(4) based on a chelating monoanionic, benzylphosphine linker were prepared by boron-silicon exchange between arylsilanes and B\(_2\)Br\(_4\). Coordination of Lewis bases to the remaining sp\(^2\) boron atom yielded unsymmetrical sp\(^3\)-sp\(^3\) diboranes, which were reduced with KC\(_8\) to their corresponding trans-diborenes. These compounds were studied by a combination of spectroscopic methods, X-ray diffraction and DFT calculations. PMe\(_3\)-stabilized diborene 6 was found to undergo thermal rearrangement to gem- diborene 8. DFT calculations on 8 reveal a polar boron-boron bond, and indicate that the compound is best described as a borylborylene. KW - boron KW - borylene KW - multiple bonds KW - rearrangement KW - DFT calculations Y1 - 2018 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-160258 N1 - This is the pre-peer reviewed version of the following article: T. E. Stennett, J. D. Mattock, I. Vollert, A. Vargas, H. Braunschweig, Angew. Chem. Int. Ed. 2018, 57, 4098., which has been published in final form at DOI: 10.1002/anie.201800671. This article may be used for non-commercial purposes in accordance with Wiley Terms and Conditions for Self-Archiving. VL - 57 ER - TY - THES A1 - Godbole, Amod Anand T1 - A new paradigm in GPCR signaling at the trans-Golgi network of thyroid cells T1 - Ein neues Model der GPCR Signaltransduktion am trans-Golgi-Netzwerk von Schilddrüsenzellen N2 - Whereas G-protein coupled receptors (GPCRs) have been long believed to signal through cyclic AMP exclusively at cell surface, our group has previously shown that GPCRs not only signal at the cell surface but can also continue doing so once internalized together with their ligands, leading to persistent cAMP production. This phenomenon, which we originally described for the thyroid stimulating hormone receptor (TSHR) in thyroid cells, has been observed also for other GPCRs. However, the intracellular compartment(s) responsible for such persistent signaling and its consequences on downstream effectors were insufficiently characterized. The aim of this study was to follow by live-cell imaging the trafficking of internalized TSHRs and other involved signaling proteins as well as to understand the consequences of signaling by internalized TSHRs on the downstream activation of protein kinase A (PKA). cAMP and PKA activity was measured in real-time in living thyroid cells using FRET-based sensors Epac1-camp and AKAR2 respectively. The results suggest that TSH co-internalizes with its receptor and that the internalized TSH/TSHR complexes traffic retrogradely to the trans-Golgi network (TGN). This study also provides evidence that these internalized TSH/TSHR complexes meet an intracellular pool of Gs proteins in sorting endosomes and in TGN and activate it there, as visualized in real-time using a conformational biosensor nanobody, Nb37. Acute Brefeldin A-induced Golgi collapse hinders the retrograde trafficking of TSH/TSHR complexes, leading to reduced cAMP production and PKA signaling. BFA pretreatment was also able to attenuate CREB phosphorylation suggesting that an intact Golgi/TGN organisation is essential for an efficient cAMP/PKA signaling by internalized TSH/TSHR complexes. Taken together this data provides evidence that internalized TSH/TSHR complexes meet and activate Gs proteins in sorting endosomes and at the TGN, leading to a local activation of PKA and consequently increased CREB activation. These findings suggest unexpected functions for receptor internalization, with major pathophysiological and pharmacological implications. N2 - G-Protein-gekoppelte Rezeptoren sind nur in Eukaryonten vorhandeln und bilden die größte und diverseste Familie von Zellmembranrezeptoren. Sie reagieren auf eine vielfältige Gruppe von Stimuli die verschiedene Effektoren aktivieren und damit nachgelagerte Signalkaskaden auslösen, die letztlich entscheidend für die Zellphysiologie sind. Die Regelung der Ligand-vermittelten Signaltransduktion wird hauptsächlich durch die Desensibilisierung des GPCR mittels Dephosphorylierung (katalysiert durch GRK) und zusätzlich durch Internalisierung des GPCR gesteuert. Die Annahme, dass GPCRs für cAMP nur an der Zellmembran signalisieren und nicht mehr sobald sie in die Zelle internalisiert wurden, konnte durch wegweisende unabhängige Forschung an GPCRs im Besonderen an TSHR und PTHR geändert werden. So konnte gezeigt werden, dass sie für cAMP nicht nur an der Zellmembran signalisieren, sondern auch, wenn sie in intrazelluläre Zellkompartimente internalisiert wurde. Dieses Phänomen („sustained signaling“ hier „anhaltende Signalisierung“) wurde seitdem für andere GPCRs (z.B. 2-AR, V2R und LHR) beschrieben. Aber die Zellkompartimente wurden für nachhaltige intrazelluläre Signale nicht ausreichend charakterisiert. Das Ziel dieser Arbeit war es die Bewegung und die dynamische Natur der möglichen signalisierenden Kompartimente mittels „real-time TIRF“-Mikroskopie und die Signalisierung unter Verwendung von „real-time FRET“ in primären Maus Schilddrüsenzellen zu untersuchen. Die vorliegende Arbeit berichtet, dass TSH/TSHR Komplexe internalisieren und ein signifikanter Teil, welcher vom Retromer Komplex angeführt wird, gelangt über den retrograden (rückwärts gerichteten) Transport in das trans-Golgi-Netzwerk (TGN). Diese TSH/TSHR-Komplexe treffen nicht in den frühen Endosomen auf die Gs-Proteine, sondern in den „Sortierer Endosomen“ und in dem TGN. Ein direkter Beweis für Gs Protein Aktivierung und Signaltransduktion am TGN und in Sortierer Endosomen konnte mittels des nanobody Nb37, einem spezifischen Biosensor für das aktive Gs Protein, erbracht werden. Es konnte gezeigt werden, dass die Sequestrierung von Nb37 an diesen Kompartimenten ein szintillierendes Verhalten in Zeit und Raum zeigt. Die vorliegende Arbeit zeigt, dass die katalytische Untereinheit der PKA am Golgi/TGN angereichert ist. Die Behandlung mit Brefeldin A führt zum Verlust dieser PKA Lokalisation am Golgi. Die Beschädigung und Reorganisation des TGN durch Brefeldin A führt zu a) einer abgeschwächten cAMP Reaktion b) einer dreiphasigen PKA Reaktion charakterisiert durch eine schnelle erste Phase, eine langsame (deutlich abgeschwächte) zweite Phase und eine verzögerte dritte Phase und schließlich c) einer abgeschwächte CREB Phosphorylierung. Es gibt Anzeichen dafür, dass die Reorganisation des TGN Kompartimente betrifft, die verantwortlich für intrazelluläre cAMP- und PKA-Signalisierung sind. Zusammenfassend lässt sich sagen, dass das TGN eines der Kompartimente ist, das für die anhaltende TSHR-Signalisierung verantwortlich ist. KW - G-Protein gekoppelte Rezeptoren KW - GPCR KW - thyroid stimulating hormone receptor KW - trans-Golgi network KW - Signaltransduktion KW - Golgi-Apparat KW - Schilddrüse Y1 - 2018 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-147159 ER - TY - THES A1 - Barsukow, Wasilij T1 - Low Mach number finite volume methods for the acoustic and Euler equations T1 - Finite Volumen Methoden für den Grenzwert niedriger Machzahlen der akustischen und der Euler-Gleichungen N2 - Finite volume methods for compressible Euler equations suffer from an excessive diffusion in the limit of low Mach numbers. This PhD thesis explores new approaches to overcome this. The analysis of a simpler set of equations that also possess a low Mach number limit is found to give valuable insights. These equations are the acoustic equations obtained as a linearization of the Euler equations. For both systems the limit is characterized by a divergencefree velocity. This constraint is nontrivial only in multiple spatial dimensions. As the Jacobians of the acoustic system do not commute, acoustics cannot be reduced to some kind of multi-dimensional advection. Therefore first an exact solution in multiple spatial dimensions is obtained. It is shown that the low Mach number limit can be interpreted as a limit of long times. It is found that the origin of the inability of a scheme to resolve the low Mach number limit is the lack a discrete counterpart to the limit of long times. Numerical schemes whose discrete stationary states discretize all the analytic stationary states of the PDE are called stationarity preserving. It is shown that for the acoustic equations, stationarity preserving schemes are vorticity preserving and are those that are able to resolve the low Mach limit (low Mach compliant). This establishes a new link between these three concepts. Stationarity preservation is studied in detail for both dimensionally split and multi-dimensional schemes for linear acoustics. In particular it is explained why the same multi-dimensional stencils appear in literature in very different contexts: These stencils are unique discretizations of the divergence that allow for stabilizing stationarity preserving diffusion. Stationarity preservation can also be generalized to nonlinear systems such as the Euler equations. Several ways how such numerical schemes can be constructed for the Euler equations are presented. In particular a low Mach compliant numerical scheme is derived that uses a novel construction idea. Its diffusion is chosen such that it depends on the velocity divergence rather than just derivatives of the different velocity components. This is demonstrated to overcome the low Mach number problem. The scheme shows satisfactory results in numerical simulations and has been found to be stable under explicit time integration. N2 - Finite Volumen Methoden für die kompressiblen Euler-Gleichungen zeigen übermäßige Diffusion im Grenzwert kleiner Machzahlen. Diese Dissertation beschäftigt sich mit neuen Ansätzen, um dieses Problem zu beheben. Die Analyse eines Systems einfacherer Gleichungen, die ebenso einen Grenzwert niedriger Machzahlen haben, liefert wichtige Einsichten. Diese Gleichungen sind die als Linearisierung der Euler-Gleichungen erhaltenen akustischen Gleichungen. Für beide Gleichungssysteme ist der Grenzwert durch ein divergenzfreies Geschwindigkeitsfeld charakterisiert, was nur in mehreren Raumdimensionen nichttrivial ist. Da die Jacobi-Matrizen des akustischen Systems nicht vertauschen, kann Akustik nicht auf irgendeine Art mehrdimensionaler Advektion zurückgeführt werden. Deswegen wird zunächst eine exakte Lösung in mehreren Raumdimensionen gefunden. Es wird gezeigt, dass sich der Grenzwert kleiner Machzahlen als Grenzwert langer Zeiten interpretieren lässt. Als der Ursprung des Versagens eines Schemas im Grenzwert kleiner Machzahlen wird das Fehlen einer diskreten Entsprechung zum Grenzwert langer Zeiten identifiziert. Numerische Schemata, deren diskrete stationäre Zustände alle analytischen stationären Zustände diskretisieren, werden stationaritätserhaltend genannt. Es zeigt sich, dass für die akustischen Gleichungen stationaritätserhaltende Schemata vortizitätserhaltend sind, und gerade diejenigen sind, die auch den Grenzwert kleiner Machzahlen aufzulösen vermögen. Das zeigt eine neue Verbindung zwischen diesen drei Konzepten auf. Erhaltung der Stationarität wird für lineare Akustik im Detail für Schemata studiert, die nach Raumdimensionen aufgeteilt sind, und auch für multi-dimensionale Schemata. Insbesondere wird ein Grund geliefert, warum die gleichen multi-dimensionalen diskreten Operatoren in der Literatur in sehr unterschiedlichen Kontexten auftauchen: Sie sind Diskretisierungen der Divergenz, für die eine stabilisierende, stationaritätserhaltende Diffusion gefunden werden kann. Auch für nichtlineare Gleichungen, wie die Euler-Gleichungen, kann die Erhaltung der Stationarität verallgemeinert werden. Es werden dazu mehrere Wege der Konstruktion numerischer Schemata gezeigt. Insbesondere im Hinblick auf den Grenzwert kleiner Machzahlen wird ein neuartiges Schema hergeleitet, dessen Diffusion so gewählt ist, dass es von der Divergenz der Geschwindigkeit, und nicht bloß von irgendswelchen Ableitungen der Geschwindigkeitskomponenten abhängt. Es wird gezeigt, dass dieses Schema in der Lage ist, den Grenzwert kleiner Machzahlen aufzulösen. Das Schema zeigt zufriedenstellende Resultate in Simulationen und ist stabil unter Verwendung eines expliziten Zeitintegrators. KW - Finite-Volumen-Methode KW - Machzahl KW - finite volume method KW - Euler equations KW - Acoustic equations KW - low Mach number KW - vorticity preserving Y1 - 2018 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-159965 ER - TY - RPRT A1 - Fuchs, Florian T1 - “Disney Dreams!“ – A Nighttime Spectacular in the Tension Field of Crowds, Communion, Emotion, and Religion N2 - The text deals with the nighttime spectacular of Disneyland Paris´ "Disney Dreams!" from the perspectives of mass, community, religion and emotions. It tries to open up this pop cultural show sociologically and theologically. N2 - Der Text beschäftigt sich mit der Abendshow des Disneyland Paris "Disney Dreams!" aus den Perspektiven Masse, Gemeinschaft, Religion und Emotionen. Es wird versucht, diese popkulturelle Show soziologisch und theologisch zu erschließen. KW - Soziologie KW - Phänomenologische Soziologie KW - Theologie KW - Disney KW - mass KW - emotion KW - theme park KW - event KW - Praktische Theologie KW - Ritual KW - Disney KW - Emotion KW - Event KW - Masse KW - Themenpark Y1 - 2018 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-159949 N1 - Die englische Fassung dieses Working Papers ist unter folgendem Link verfügbar: nbn-resolving.org/urn:nbn:de:bvb:20-opus-159931 ER - TY - JOUR A1 - Lapa, Constantin A1 - Kircher, Malte A1 - Hänscheid, Heribert A1 - Schirbel, Andreas A1 - Grigoleit, Götz Ulrich A1 - Klinker, Erdwine A1 - Böck, Markus A1 - Samnick, Samuel A1 - Pelzer, Theo A1 - Buck, Andreas K T1 - Peptide receptor radionuclide therapy as a new tool in treatment-refractory sarcoidosis - initial experience in two patients JF - Theranostics N2 - Sarcoidosis is a multisystem granulomatous disorder of unknown etiology that can involve virtually all organ systems. Whereas most patients present without symptoms, progressive and disabling organ failure can occur in up to 10% of subjects. Somatostatin receptor (SSTR)-directed peptide receptor radionuclide therapy (PRRT) has recently received market authorization for treatment of SSTR-positive neuroendocrine tumors. Methods: We describe the first case series comprising two patients with refractory multi-organ involvement of sarcoidosis who received 4 cycles of PRRT. Results: PRRT was well-tolerated without any acute adverse effects. No relevant toxicities could be recorded during follow-up. Therapy resulted in partial response accompanied by a pronounced reduction in pain (patient #1) and stable disease regarding morphology as well as disease activity (patient #2), respectively. Conclusion: Peptide receptor radionuclide therapy in sarcoidosis is feasible and might be a new valuable tool in patients with otherwise treatment-refractory disease. Given the long experience with and good tolerability of PRRT, further evaluation of this new treatment option for otherwise treatment-refractory sarcoidosis in larger patient cohorts is warranted. KW - peptide receptor KW - PRRT KW - sarcoidosis KW - somatostatin receptors KW - radionuclide therapy Y1 - 2018 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-158983 VL - 8 IS - 3 ER - TY - JOUR A1 - Arnholdt, Jörg A1 - Kamawal, Yama A1 - Holzapfel, Boris Michael A1 - Ripp, Axel A1 - Rudert, Maximilian A1 - Steinert, Andre Friedrich T1 - Evaluation of implant fit and frontal plane alignment after bi-compartmental knee arthroplasty using patient-specific instruments and implants JF - Archives of Medical Science N2 - Introduction The goals of successful bi-compartmental knee arthroplasty are to achieve correct fit and positioning of the implant, while appropriately correcting the mechanical alignment of the leg after surgery. As these requirements are not always reliably fulfilled using off-the-shelf implant systems, newer approaches for bi-compartmental resurfacing have been explored. Material and methods In this article we report the radiographic results of 30 patients with anteromedial osteoarthritis (OA) who were treated with a novel patient-specific fixed-bearing bi-compartmental knee resurfacing system using custom-made implants and instruments. Utilizing standardized pre- and postoperative radiographic analyses (based on anterior-posterior and lateral, anterior-posterior weight-bearing full-length radiographs, patella skyline views and preoperative computed tomography (CT) scanning) implant fit and positioning as well as correction of the mechanical axis (hip-knee-ankle angle, HKA) were determined. Results On average, HKA was corrected from 173.4 ±3.47° preoperatively to 179.4 ±2.85° postoperatively. The coronal femoro-tibial angle was corrected on average 5.61°. The preoperative tibial slope measured on lateral views was 6.38 ±2.4°, while the average slope in the CT-based planning protocol (iView) was 6.14 ±2.40°. Postoperative lateral tibial slope was determined to be 5.77 ±1.97°. The thickness of the posterior femoral cuts was measured intraoperatively and, in all cases, corresponded well to the targeted thickness of the cuts provided by the iView. The joint line was preserved in all cases and the average Insall-Salvati index was 1.078 ±0.11 pre- and 1.072 ±0.11 postoperatively. The fit of the implant components measured by over- or underhang was excellent throughout (< 1.01 mm). Conclusions Custom-made bicompartmental knee arthroplasty can ensure optimized fitting and positioning of the implant with restoration of the leg axis. These implants could be considered as an alternative primary solution for knee surgeons treating bi-compartmental disease. KW - implant fit KW - bi-compartmental knee arthoplasty KW - bi-compartmental KW - implant positioning KW - knee osteoarthritis KW - knee arthroplasty KW - patient-specific KW - knee alignment Y1 - 2018 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-159668 VL - 14 IS - 6 ER - TY - JOUR A1 - Langenhorst, Daniela A1 - Tabares, Paula A1 - Gulde, Tobias A1 - Becklund, Bryan R. A1 - Berr, Susanne A1 - Surh, Charles D. A1 - Beyersdorf, Niklas A1 - Hünig, Thomas T1 - Self-recognition sensitizes mouse and human regulatory T cells to low-dose CD28 superagonist stimulation JF - Frontiers in Immunology N2 - In rodents, low doses of CD28-specific superagonistic monoclonal antibodies (CD28 superagonists, CD28SA) selectively activate regulatory T cells (Treg). This observation has recently been extended to humans, suggesting an option for the treatment of autoimmune and inflammatory diseases. However, a mechanistic explanation for this phenomenon is still lacking. Given that CD28SA amplify T cell receptor (TCR) signals, we tested the hypothesis that the weak tonic TCR signals received by conventional CD4\(^{+}\) T cells (Tconv) in the absence of cognate antigen require more CD28 signaling input for full activation than the stronger TCR signals received by self-reactive Treg. We report that in vitro, the response of mouse Treg and Tconv to CD28SA strongly depends on MHC class II expression by antigen-presenting cells. To separate the effect of tonic TCR signals from self-peptide recognition, we compared the response of wild-type Treg and Tconv to low and high CD28SA doses upon transfer into wild-type or H-2M knockout mice, which lack a self-peptide repertoire. We found that the superior response of Treg to low CD28SA doses was lost in the absence of self-peptide presentation. We also tested if potentially pathogenic autoreactive Tconv would benefit from self-recognition-induced sensitivity to CD28SA stimulation by transferring TCR transgenic OVA-specific Tconv into OVA-expressing mice and found that low-dose CD28SA application inhibited, rather than supported, their expansion, presumably due to the massive concomitant activation of Treg. Finally, we report that also in the in vitro response of human peripheral blood mononuclear cells to CD28SA, HLA II blockade interferes with the expansion of Treg by low-dose CD28SA stimulation. These results provide a rational basis for the further development of low-dose CD28SA therapy for the improvement of Treg activity. KW - D665 KW - regulatory T cells KW - self-reactivity KW - autoimmunity KW - CD28 superagonists KW - TGN1412 KW - TAB08 Y1 - 2018 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-159387 VL - 8 IS - 1985 ER -