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Whereas many writers across all times and cultures have written about the potential aesthetic effects of music experiences which could be labeled as absorption, only limited empirical research has been done on the state aspects of this fascinating aspect of human involvement. What is more, there are still few tested models which explain how people can be absorbed by a piece of music as well as continue to be third-person observers monitoring and even reflecting on that same musical experience (cf. Bryant & Veroff, 2007; Dewey, 2005; Wolf, 2013).
Adopting a dual process approach (Dietrich, 2004; Evans & Stanovich, 2013; Lewis, Tamborini & Weber, 2014; Mukhopadhyay, 2014; Schwarz, 2011; Smith & Neumann, 2005) – in which human thinking, emotion, and routes to appraisal are defined in terms of an interplay between two distinct systems of psychological processing – this thesis aimed to examine a) the cognitive mechanisms underlying the essential yet poorly understood paradox of losing oneself in the music on the one hand, and the act of meta-awareness (i.e., rational and controlled sense of self) on the other, b) its corresponding psycho-phenomenological profile(s) when listening intentionally to self-chosen music, and c) the different potential of state and trait aspects of absorption and meta-awareness in predicting three indicators of the aesthetic response to music: enjoyment (a purely pleasurable response), lasting impression (a meaningful response related to mixed emotion), and behavioral intention (future-planned seeking/ avoidance response). Moreover, a dynamically-conceived conceptualization of absorption was proposed in terms of a temporary phase taking place amidst a variety of other cognitive responses to music, including concentration, mind wandering, and mindfulness. Finally, a questionnaire commonly-used for assessing alterations in consciousness (Phenomenology of Consciousness Inventory; Pekala, 1991) was evaluated in the context of music listening, before using it in the development of a self-report questionnaire aimed at measuring absorptive states in or by music. To this end, a quantitative empirical research method (state and trait questionnaires) was employed in a series of online surveys, using self-selected music as well as pre-determined music by the researcher as stimulus, together approaching a naturalistic listening setting.
Situated within an overarching neurocognitive model for music engagement and consistent with several aesthetic theories converging (Benson, 1993; Dewey, 2005; Wolf, 2013), aesthetic absorption was conceptualized as, and later confirmed to be, structured by experiential and meta-consciousness or – in terms of dual process terminology – intuitive type I and reflective type II processing. Two forms of music absorption were empirically identified and labeled as zoning in and tuning in (cf. Schooler, 2007). These experience profiles distinguished themselves significantly in terms of the degree in which a music listener maintained his or her meta-awareness, assessed via volitional control, rationality, self-awareness, and memory of the previous event. The overall pattern of consciousness parameters of both types of absorbed listening are suggestive of a unique interchanging between brain networks for intuitive processing and areas related to self-reference, -awareness and -control. The distinction between zoning in and tuning in was further found to be strongly related to the quality of affective state (i.e., positive vs. mixed emotions). These emotions modulate the experiential intensity of absorption, suggesting this experience to be an affect-biased type of attention. Based on the feelings-as-information theory (Schwarz, 2011), postulating that positive emotions (e.g., happiness) are differently processed than negatively-tinted types of emotions (e.g., nostalgia), it was concluded that music-induced rumination (a negatively-valenced experience related to the self and represented by the feeling of sadness) ‘competes’ with higher-order functions relevant to meta-awareness. From this perspective, the two found absorption types match conceptually with the positively-tinged self-reflection and negatively-tinged self-rumination as two different types of self-focused introspection (Takano & Tanno, 2009; Trapnell & Campbell, 1999). Further examining the construct’s latent structure, it was shown that being absorbed by music is a continuous phenomenon; a matter of ‘more-or-less’ involvement rather than a ‘unique state of mind’. This finding cautions against subtyping absorption experiences as being qualitatively distinct, and assuming it to be guided by ‘special’ mechanisms. Consequently, determining ‘music absorbers’ is a matter of imprecise estimation rather than being marked by a clear observable onset. Finally, as expected, an absorbed state of mind – operationalized here as a multidimensional bifactor model – completely mediated the effect of trait absorption, and was a good predictor for enjoyment, lasting impression, and behavioral intention. Whereas absorption and enjoyment were found to have a mutual positive effect on each other, absorption and meta-awareness were found to be unrelated to each other. Also, meta-awareness contributed little to aesthetic appreciation. The results confirm the need for a dynamic approach to the relationship between state absorption and enjoyment; the one-directional approach common in many research reports does not seem to fully capture the relationship between them. Future research should examine whether the same applies for absorption and meta-awareness, preferably making use of more advanced measures for the latter.
Taken together, this dissertation shows the potential of including the interplay between the trait and state constructs of absorption and meta-awareness in order to better understand the mechanisms underlying aesthetic experiences with music. The present work demonstrated that these two constructs should not be conflated, but, in terms of dual processing, that they represent different levels of consciousness. Moreover, this thesis underlined the power of absorption not only to evoke short-lived pleasurable experiences, but also to stimulate long-lasting impressions. Knowing more about absorbed listening and its potential effects, learning to consciously recognize it as it happens, and perhaps regulate and maintain its positive consequences (i.e., savoring), could further improve the way we engage ourselves with music or other aesthetic objects. Only then could we engage in behavior that we’re sure would make us happy rather than seeking out experiences which we hope would make us happy.
Finally, dual process approach and measures provided by research on altered-states-of-consciousness (ASC) experiences offer new and fruitful perspectives to conceptualize aesthetic absorption and examine its mechanisms. Several major research questions lie ahead in understanding the phenomenological experience and aesthetic role of absorption, including the future comparison between subjective experiences of ASCs across varying music and non-music induction methods (e.g., hypnosis), listening conditions (e.g., live concert experience), and musical ‘cultures’ (human societies, musical styles, classes).
Das Ziel der vorliegenden Arbeit war es, MALDI-Massenspektrometrie als robuste Analysenmethode für die quantitative Analyse niedermolekularer Verbindungen aus komplexen biologischen Matrizes zu etablieren. Zu Beginn der Arbeit wurden drei typische Fragestellungen im Bereich der Lebensmittelanalytik, der medizinischen Forschung und der klinischen Chemie ausgewählt, um die Methodik anhand dieser Modellsysteme zielgerichtet zu entwickeln und zu bewerten. Für jede dieser Fragestellungen wird routinemäßig ein hoher Probendurchsatz verlangt und damit werden hohe Anforderungen an die Probenvorbereitung gestellt, da diese einfach, schnell, reproduzierbar, Matrix-tolerant und automatisierbar sein muss um die Weiterentwicklung zur Hochdurchsatzanalytik zu erlauben.
Der quantitative Nachweis von Melamin und seinen Derivaten wurde aufgrund des Aufkommens von Milchprodukten, die mit diesen Verbindungen kontaminiert waren, ein wichtiger Bestandteil der Analytik dieser Lebensmittel. Insbesondere an diesem Beispiel zeigte sich der Vorteil des Einsatzes von MALDI-Massenspektrometrie zur Analyse kleiner Moleküle. Aufgrund der höheren Toleranz gegenüber Puffern und Salzen konnte die Probenvorbereitungszeit der für die FDA entwickelten Methode zur Quantifizierung von Melamin in Milchpulver mittels LC-ESI von ca. 140 min auf 90 min reduziert werden, da auf die zeitaufwendige Flüssigchromatographie verzichtet werden konnte. So wurde Melamin mit einem LLOQ von 0,5 ppm quantifiziert, was unterhalb der Vorgaben der WHO (2,5 ppm in Milichpulver und 1 ppm in Babynahrung) lag. Cyanursäure, ein Derivat von Melamin welches für die Bildung schwerlöslicher Komplexe in der Niere mitverantwortlich gemacht wird, konnte ebenfalls mit der entwickelten MALDI-MS Methode quantifiziert werden. Allerdings war die ermittelte Bestimmungsgrenze mit 15 ppm um den Faktor 30 schlechter als bei Melamin. Die Nachweisgrenze bei MALDI-MS ist stark von der MALDI-Matrix abhängig und die Verwendung von Sinapinsäure war eine gute Kompromisslösung, um die Analyten in einem Spot im positiven und negativen Reflektormodus zu analysieren. Allerdings wurde diese Matrix zur Analyse von Analyten im positiven Reflektormodus entwickelt. Bislang wurden nur wenige Matrizes für MALDI-MS im negativen Reflektormodus beschrieben, um z.B. Säuren besser nachweisen zu können. Forschung in diesem Bereich wird neue Möglichkeiten zur Detektion negativ geladener kleiner Moleküle ergeben.
Des Weiteren wurden im Rahmen dieser Arbeit auch Lösungen für klinische Fragestellungen wie etwa den Nachweis von Methylphenidat im Plasma und Gehirn von Ratten oder der Dried Blood Spot Analytik entwickelt. Bei beiden Methoden wurde jeweils nur eine einfache Flüssig-Flüssig-Extraktion zur Probenvorbereitung angewendet und sie ließen sich sehr gut auf Realproben übertragen.
Methylphenidat konnte im Plasma im Konzentrationsbereich von 0,1-40 ng/mL und im Hirnhomogenat im Konzentrationsbereich von 0,4-40 ng/mL quantifiziert werden, was gut im Konzentrationsbereich der Realproben von mit Methylphenidat gefütterten Ratten lag. Dazu standen das Plasma und die Gehirne von fünf Ratten zur Verfügung. Es wurde eine lineare Korrelation zwischen der MPH-Konzentration im Gehirnhomogenat und im Plasma gefunden, was basierend auf den bis dato bekannten Literaturergebnissen ein zu erwartendes Ergebnis war, aber zukünftig mit einer größeren Anzahl von Versuchstieren verifiziert werden sollte. Während der Methodenentwicklung war auch bei diesem Projekt die Auswahl der MALDI-Matrix ausschlaggebend für den Erfolg der Messungen. Im MALDI-Massenspektrum interferierte das Signal des Natriumaddukts von CHCA mit dem Signal von MPH. Für dieses Problem kamen zwei mögliche Lösungen in Betracht. Erstens die Quantifizierung mit ClCCA als MALDI-Matrix, da hier keine Interferenzen auftraten. In ersten Vorversuchen konnte MPH so in einem Konzentrationsbereich von 1-48 ng/mL mit einer exzellenten Linearität von R2=0,9992 quantifiziert werden. Eine zweite mögliche Problemlösung war die Verwendung von Tandem-Massenspektrometrie. Hierzu wurden Fragmentionen-Massenspektren der überlagerten Signale aufgenommen. MPH und der verwendete interne Standard MPH-d9 zeigten dabei spezifische Fragmentionensignale, über die quantifiziert wurde. Da die Sensitivität um den Faktor 100 im Vergleich zu MS-Spektren von CHCA und ClCCA gesteigert werden konnte, wurde die weitere Methodenentwicklung basierend auf der Tandem-Massenspektrometrie mit der MALDI-Matrix CHCA durchgeführt. Überdies sind MS/MS-Versuche unter Verwendung von ClCCA als MALDI-Matrix für kleine Moleküle sehr erfolgsversprechend und sollten in weiteren Forschungsarbeiten durchgeführt werden.
Die Dried Blood Spot Technik als alternative Probenvorbereitung bietet eine Reihe von Vorteilen, wie etwa den einer einfacheren Lagerung und eines einfacheren Transports einer großen Menge von Proben. Darüber hinaus werden nur wenige Mikroliter Blut verwendet, was vorteilhaft ist bei z B. klinischen Studien oder dem Therapeutic Drug Monitoring. Diese Art der Probennahme ist somit eine perfekte Ergänzung für weitere quantitative Analysen von Methylphenidat in Rattenblut. Den Ratten würden nur wenige Mikroliter Blut entnommen werden, was ihr Überleben sichert und der Transport der Proben auf dem Postweg wäre wesentlich einfacher. Um eine allgemein verwendbare DBS-MALDI-MS-Methode zu entwickeln, wurden neben Methylphenidat auch bekannte Analyten aus dem Bereich des Dopings sowie Lamotrigin, Coffein und Theophyllin als Beispiele für das Therapeutic Drug Monitoring verwendet. Es wurden verschiedene Lösungsmittel zur Extraktion eingesetzt, wobei sich eine Kombination aus Methyl-tert-Butylether und Ethanol, sowie Aceton als am besten geeignet erwies. Einige Analyten wie Coffein, Theophyllin und Lamotrigin wurden bis zu einer Konzentration von 0,5 μg/mL quantifiziert. Diese Bestimmungsgrenze ist bei Analyten aus dem Bereich des Dopings wie z.B. Salbutamol, Methylphenidat oder Clenbuterol, deren therapeutisch wirksame Plasmakonzentration im Bereich von wenigen Nanogramm pro Milliliter Blut liegt, um den Faktor 15-500 zu hoch. Diese Analyten waren bis zu einer Konzentration von 5 μg/mL im Blut mittels MALDI-MS problemlos nachweisbar. Um die Sensitivität zu erhöhen, ist es allerdings sinnvoll, die Extraktion zukünftig für die einzelnen Analyten zu optimieren, sie mittels Festphasenextraktion oder LC anzureichern und MS/MS-Spektren aufzunehmen. Für die Analyten Coffein, Theophyllin und Lamotrigin, deren therapeutisch wirksame Plasmakonzentration im ein- bis zweistelligen Mikrogramm-pro-Milliliter Bereich liegt, eignete sich die entwickelte Methode sehr gut. Es wurde eine Methodenvalidierung durchgeführt, wobei die validierten Parameter den Vorgaben der FDA entsprachen.
Da die Auswahl der MALDI-Matrix bei den verschiedenen Methodenentwicklungen jeweils ein kritischer Faktor war, wurden abschließend eine Auswahl von Analyten mit einer Molekülmasse bis ca. 600 Da mit verschiedenen MALDI-Matrizes präpariert. Ein Großteil der Analyten wurde am sensitivsten mit ClCCA nachgewiesen. Im Rahmen dieser Versuche wurde auch erstmals ein Strukturanalogon von ClCCA, und zwar ClCCA-Tetrazol, als alternative MALDI-Matrix eingesetzt, bei welchem die Carboxylgruppe durch einen Tetrazolring ausgetauscht wurde. Diese zeigte eine sehr homogene Kristallisation und für einige Analyten eine bis zu Faktor 3 höhere Signalintensität im Vergleich zu ClCCA. Außerdem war auffällig, dass einige Analyten unter bestimmten Präparationsbedingungen wie z B. der Graphite Supported Preparation sensitiver mittels MALDI-MS nachweisbar waren. Bei anderen Analyten verschlechterten sich die Analysenergebnisse. Graphit verändert stark die Kristallisation der MALDI-Matrix und es wird vermutet, dass sich dies auf den Einbau der Analyten in die Matrixkristalle auswirkt. Es konnte bislang aber noch nicht abschließend geklärt werden, wie genau die Präparation der Proben Einfluss auf den Einbau der Analyten in die Matrix nimmt. Eine Untersuchung dieser Phänomene sollte daher Gegenstand weiterer Forschungsprojekte sein.
Zusammenfassend stellt die MALDI-Massenspektrometrie eine schnelle und robuste Methode zur Quantifizierung einer Vielzahl kleiner Moleküle in komplexen biologischen Matrizes dar.
In order to elucidate the causes for the increased mortality of aged patients with bacterial central nervous system (CNS) infections, we compared the course of Streptococcus pneumoniae (S. pneumoniae) meningitis in aged and young mice. Aged (21.2 ± 3.1 months, n = 40) and young (3.2 ± 0.9 months, n = 42) C57BL/6N and B6/SJL mice were infected by intracerebral injection of 50–70 CFU S. pneumoniae serotype 3 and monitored for 15 days. Aged and young mice did not differ concerning mortality (35% versus 38%), weight loss, development of clinical symptoms, bacterial concentrations in cerebellum and spleen as well as the number of leukocytes infiltrating the CNS. In contrast to results from our geriatric mouse model of Escherichia coli (E. coli) meningitis, where aged mice showed a higher mortality and an impaired elimination of bacteria, we did not find any differences between aged and young mice after intracerebral infection with S. pneumoniae serotype 3. This indicates that the increased susceptibility of aged mice to bacterial CNS infections is pathogen-specific: It appears less prominent in infections caused by hardly phagocytable pathogens with thick capsules like S. pneumoniae serotype 3, where the age-related decline of the phagocytic capacity of microglia and macrophages has a minor influence on the disease course.
Cyclin-dependent kinase (CDK) 4/6 inhibitors have shown great results in numerous clinical trials and have improved the clinical outcome for patients with hormone-receptor-positive, human epidermal growth factor receptor 2-negative advanced breast cancer significantly. To date, three CDK4/6 inhibitors are approved by the US Food and Drug Administration (FDA): palbociclib, ribociclib and abemaciclib; the first two compounds are aproved by the European Medicines Agency (EMA) as well. In combination with endocrine therapy, all of them led to significantly improved progression-free survival compared with endocrine therapy alone. The aim of this article is to give an overview of the efficacy data and to describe the CDK4/6 inhibitor-based treatment-associated adverse events, including hematological and nonhematological adverse events. In addition, it describes the corrrect approach to patient monitoring and adverse event mangement and summarizes the current recommendations for dose reductions and dose interruptions regarding the key adverse events, such as neutropenia, diarrhea, QTc prolongation and hepatobiliary toxicity. Accurate patient monitoring and management of the side effects is crucial, as several clinical trials in early breast cancer are in progress and may lead to an additional approval in the neo-/adjuvant setting.
Aim: To evaluate protective immunosuppressive dose and time-dependent effects of ethanol in an in vitro model of acute inflammation in human Chang liver cells.
Method: The study was performed in 2016 and 2017 in the research laboratory of the Department of Trauma, Hand and Reconstructive Surgery, the University Hospital of the Goethe-University Frankfurt. Chang liver cells were stimu - lated with either interleukin (IL)-1β or IL-6 and subsequent - ly treated with low-dose ethanol (85 mmol/L) or high-dose ethanol (170 mmol/L) for one hour (acute exposure) or 72 hours (subacute exposure). IL-6 and IL-1β release were de - termined by enzyme-linked immunosorbent assay. Neu - trophil adhesion to Chang liver monolayers, production of reactive oxygen species, and apoptosis or necrosis were analyzed.
Results: Contrary to high-dose ethanol, acute low-dose ethanol exposure significantly reduced IL-1β-induced IL-6 and IL-6-induced IL-1β release ( P <0.05). Subacute etha - nol exposure did not change proinflammatory cytokine release. Acute low-dose ethanol exposure significantly decreased inflammation-induced formation of reactive oxygen species ( P <0.05) and significantly improved cell survival ( P <0.05). Neither acute nor subacute high-dose ethanol exposure significantly changed inflammationinduced changes in reactive oxygen species or survival. Acute and subacute ethanol exposure, independently of the dose, significantly decreased neutrophil adhesion to inflamed Chang liver cells ( P <0.05).
Conclusion: Acute treatment of inflamed Chang liver cells with ethanol showed its immunosuppressive potential. However, the observed effects were limited to low-dose setting, indicating the relevance of ethanol dose in the modulation of inflammatory cell response.
Ribosome recycling orchestrated by ABCE1 is a fundamental process in protein translation and mRNA surveillance, connecting termination with initiation. Beyond the plenitude of well-studied translational GTPases, ABCE1 is the only essential factor energized by ATP, delivering the energy for ribosome splitting via two nucleotide-binding sites by a yet unknown mechanism. Here, we define how allosterically coupled ATP binding and hydrolysis events in ABCE1 empower ribosome recycling. ATP occlusion in the low-turnover control site II promotes formation of the pre-splitting complex and facilitates ATP engagement in the high-turnover site I, which in turn drives the structural reorganization required for ribosome splitting. ATP hydrolysis and ensuing release of ABCE1 from the small subunit terminate the post-splitting complex. Thus, ABCE1 runs through an allosterically coupled cycle of closure and opening at both sites, consistent with a processive clamp model. This study delineates the inner mechanics of ABCE1 and reveals why various ABCE1 mutants lead to defects in cell homeostasis, growth, and differentiation.
Background: No observational studies have evaluated the "real-world" effectiveness of dual bronchodilation comprising a long-acting β2-agonist plus a long-acting muscarinic antagonist vs that of triple therapy (long-acting β2-agonist plus long-acting muscarinic antagonist plus inhaled corticosteroid) in COPD.
Materials and methods: DACCORD is a non-interventional, observational clinical study that recruited patients following COPD maintenance therapy initiation or change in maintenance therapy between or within therapeutic class. Given the non-interventional nature of the study, the decision to initiate or change medication had to be made by the patients’ physicians prior to inclusion in DACCORD. We used a matched-pairs analysis to compare disease progression in two patient groups: those receiving dual bronchodilation vs those receiving triple therapy (each group n=1,046).
Results: In two subgroups of patients matched according to a broad range of demographic and disease characteristics, over 1 year, fewer patients receiving dual bronchodilation exacerbated than those receiving triple therapy (15.5% vs 26.6%; P<0.001), with a greater improvement from baseline in COPD Assessment Test total score at 1 year (mean±SD -2.9±5.8 vs -1.4±5.5; P<0.001). When analyzed according to prior therapy, the highest rate of exacerbations was in patients on triple therapy prior to the study who remained on triple therapy. Those changing from mono-bronchodilator to dual bronchodilation had the greatest COPD Assessment Test total score improvement.
Conclusion: In this "real-life" cohort of patients with COPD, most of whom had not exacerbated in the 6 months prior to entry, triple therapy did not seem to improve outcomes compared with dual bronchodilation in terms of either exacerbations or health status. Our analyses clearly demonstrate the potential impact of prior medication on study results, something that should be taken into account when interpreting the results even of controlled clinical trials.
Arachidonate 15-lipoxygenase (ALOX15) and arachidonate 15-lipoxygenase, type B (ALOX15B) catalyze the dioxygenation of polyunsaturated fatty acids and are upregulated in human alternatively activated macrophages (AAMs) induced by Th2 cytokine interleukin-4 (IL-4) and/or interleukin-13. Known primarily for roles in bioactive lipid mediator synthesis, 15-lipoxygenases (15-LOXs) have been implicated in various macrophage functions including efferocytosis and ferroptosis. Using a combination of inhibitors and siRNAs to suppress 15-LOX isoforms, we studied the role of 15-LOXs in cellular cholesterol homeostasis and immune function in naïve and AAMs. Silencing or inhibiting the 15-LOX isoforms impaired sterol regulatory element binding protein (SREBP)-2 signaling by inhibiting SREBP-2 processing into mature transcription factor and reduced SREBP-2 binding to sterol regulatory elements and subsequent target gene expression. Silencing ALOX15B reduced cellular cholesterol and the cholesterol intermediates desmosterol, lanosterol, 24,25-dihydrolanosterol, and lathosterol as well as oxysterols in IL-4-stimulated macrophages. In addition, attenuating both 15-LOX isoforms did not generally affect IL-4 gene expression but rather uniquely impacted IL-4-induced CCL17 production in an SREBP-2-dependent manner resulting in reduced T cell migration to macrophage conditioned media. In conclusion, we identified a novel role for ALOX15B, and to a lesser extent ALOX15, in cholesterol homeostasis and CCL17 production in human macrophages.
In contrast to several smaller studies, which demonstrate that remote ischemic preconditioning (RIPC) reduces myocardial injury in patients that undergo cardiovascular surgery, the RIPHeart study failed to demonstrate beneficial effects of troponin release and clinical outcome in propofol-anesthetized cardiac surgery patients. Therefore, we addressed the potential biochemical mechanisms triggered by RIPC. This is a predefined prospective sub-analysis of the randomized and controlled RIPHeart study in cardiac surgery patients (n = 40) that was recently published. Blood samples were drawn from patients prior to surgery, after RIPC of four cycles of 5 min arm ischemia/5 min reperfusion (n = 19) and the sham (n = 21) procedure, after connection to cardiopulmonary bypass (CPB), at the end of surgery, 24 h postoperatively, and 48 h postoperatively for the measurement of troponin T, macrophage migration inhibitory factor (MIF), stromal cell-derived factor 1 (CXCL12), IL-6, CXCL8, and IL-10. After RIPC, right atrial tissue samples were taken for the measurement of extracellular-signal regulated kinase (ERK1/2), protein kinase B (AKT), Glycogen synthase kinase 3 (GSK-3β), protein kinase C (PKCε), and MIF content. RIPC did not significantly reduce the troponin release when compared with the sham procedure. MIF serum levels intraoperatively increased, peaking at intensive care unit (ICU) admission (with an increase of 48.04%, p = 0.164 in RIPC; and 69.64%, p = 0.023 over the baseline in the sham procedure), and decreased back to the baseline 24 h after surgery, with no differences between the groups. In the right atrial tissue, MIF content decreased after RIPC (1.040 ± 1.032 Arbitrary units [au] in RIPC vs. 2.028 ± 1.631 [au] in the sham procedure, p < 0.05). CXCL12 serum levels increased significantly over the baseline at the end of surgery, with no differences between the groups. ERK1/2, AKT, GSK-3β, and PKCɛ phosphorylation in the right atrial samples were no different between the groups. No difference was found in IL-6, CXCL8, and IL10 serum levels between the groups. In this cohort of cardiac surgery patients that received propofol anesthesia, we could not show a release of potential mediators of signaling, nor an effect on the inflammatory response, nor an activation of well-established protein kinases after RIPC. Based on these data, we cannot exclude that confounding factors, such as propofol, may have interfered with RIPC.
Purpose: There is some controversy whether or not saccades change with age. This cross-sectional study aims to clarify the characteristics of reflexive saccades at various ages to establish a normative cohort in a standardized set-up. Second objective is to investigate the feasibility of saccadometry in daily ophthalmological practice.
Methods: One hundred healthy participants aged between 6 and 76 years underwent an ophthalmologic examination and saccadometry, using an infrared video-oculography device, sampling at 220 Hz. The reflexive saccades were evoked in four directions and three target displacements each (5°/15°/30° horizontally and of 5°/10°/20° vertically). Saccadic peak velocity, gain (amplitude/target displacement) and latency were measured.
Results: Mean peak velocity of saccades was 213°/s (± 29°/s), 352°/s (± 50°/s) and 455°/s (± 67°/s) to a target position 5°, 15°and 30° horizontally, respectively, and 208°/s (± 36°/s), 303°/s (± 50°/s) and 391°/s (± 71°/s) to a target position 5°, 10° and 20° vertically. The association between peak velocity and eccentricity proved to be present at any age in all four directions. We found no relevant effect of age on peak velocity, gain and latency in a fitted linear mixed model. However, latency becomes shorter during childhood and adolescence, while in adulthood it is relatively stable with a slight trend to increase in the elderly. Saccades are more precise when the target displacement is small. Isometric saccades are most common, followed by hypometric ones. All children and elderly were able to perform good quality saccadometry in a recording time of approximately 10 minutes.
Conclusion: The presented data may serve as normative control for further studies using such a video-oculography device for saccadometry. The means of peak velocity and the gain can be used independently from age respecting the target displacement. Latency is susceptible to age.
In den letzten Jahren findet die Wirkung von Polyphenolen auf den Alterungsprozess oder zur Behandlung von Krankheiten immer mehr Beachtung. Das Ziel dieser Arbeit war die Aufklärung der Wirkmechanismen der Polyphenole Gossypol, Curcumin und Quercetin, um Hinweise für neue oder verbesserte Therapieansätze zu erhalten. Die dazu durchgeführten Untersuchungen lieferten folgende Ergebnisse:
1. Der Ascomycet "P. anserina" eignet sich als Modellorganismus zur Untersuchung der Wirkmechanismen verschiedener Polyphenole, da die bereits aus der Literatur bekannten Effekte auf das Überleben höherer Organismen auch in "P. anserina" beobachtet wurden.
2. Die Mitochondrienfunktion spielt auf unterschiedliche Art eine Rolle in der Kompensation von Dysfunktionen oder Stressbedingungen in der Zelle und wirkt somit positiv auf die Regulation der Lebensspanne von "P. anserina". In der "PaSod3"-Deletionsmutante wurde eine Verschiebung der mitochondrialen Atmung von einer Komplex I-abhängigen hin zu einer vermehrt Komplex II-abhängigen Atmung festgestellt. Die damit verbundene Abnahme des mitochondrialen Membranpotentials dient neben der bereits bekannten hohen Superoxid-Menge als Signal zur Mitophagie-Induktion. Auch die Anpassung der Mitochondrienfunktion durch die erhöhte Bildung von mtRSCs, wie im Falle von Gossypol oder Quercetin, kann zur Kompensation von Dysfunktionen beitragen bzw. sie abschwächen.
3. Es gibt keinen grundlegenden gemeinsamen Wirkmechanimus der drei untersuchten Polyphenole. Zwar spielt Wasserstoffperoxid bei verschiedenen Stoffen eine Rolle, aber nicht bei allen. Zusätzlich wurde gezeigt, dass Wasserstoffperoxid abhängig von der vorherrschenden Konzentration wirkt und daher auch keine Allgemeingültigkeit des Effektes vorherzusagen ist. In niedrigen Konzentrationen sorgt Wasserstoffperoxid z. B. für eine Induktion der Autophagie und damit einhergehende eine Lebensverlängerung. Im Gegensatz dazu wirken hohe Wasserstoffperoxid-Konzentrationen lebensverkürzend und lösen verschiedene Formen von Zelltod aus.
4. Die Curcumin-vermittelte Langlebigkeit wurde das erste Mal in Verbindung mit einer funktionellen Autophagie gebracht. Im Detail führt die Behandlung mit Curcumin durch eine PaSOD1-abhängige leichte Erhöhung der Wasserstoffperoxid-Menge zu einer Induktion von nicht-selektiver Autophagie. Die induzierte Autophagie ist Ursache der Lebensverlängerung durch Curcumin.
5. Gossypol wirkt in Abhängigkeit der mitochondrialen Permeabilitäts-Transitionspore bzw. von ihrem Regulator Cyclophilin D. Hierbei verstärkt die deutlich erhöhte Wasserstoffperoxid-Menge wahrscheinlich die Induktion von programmiertem Zelltod. Gleichzeitig wird eine cytoprotektive Form von Autophagie und ein scheinbar ATG-unabhängiger Abbau von Mitochondrien induziert.
6. Quercetin wirkt in "P. anserina" abhängig vom Methylierungs-Status. Untersuchungen mit Mutanten der "O"-Methyltransferase PaMTH1 ergaben die Notwendigkeit der Anwesenheit von PaMTH1 für den lebensverlängernden Effekt von Quercetin. Analysen mit dem methylierten Derivat Isorhamnetin verdeutlichten diese Abhängigkeit und zeigten zudem, dass Quercetin sowohl in der methylierten als auch unmethylierten Form Effekte hervorruft. Jedoch sind nur die Effekte des unmethylierten Quercetin unabhängig von der Lebensverlängerung und eher schädlich für die Zelle.
Background: Intracerebral haemorrhage growth is associated with poor clinical outcome and is a therapeutic target for improving outcome. We aimed to determine the absolute risk and predictors of intracerebral haemorrhage growth, develop and validate prediction models, and evaluate the added value of CT angiography.
Methods: In a systematic review of OVID MEDLINE—with additional hand-searching of relevant studies' bibliographies— from Jan 1, 1970, to Dec 31, 2015, we identified observational cohorts and randomised trials with repeat scanning protocols that included at least ten patients with acute intracerebral haemorrhage. We sought individual patient-level data from corresponding authors for patients aged 18 years or older with data available from brain imaging initially done 0·5–24 h and repeated fewer than 6 days after symptom onset, who had baseline intracerebral haemorrhage volume of less than 150 mL, and did not undergo acute treatment that might reduce intracerebral haemorrhage volume. We estimated the absolute risk and predictors of the primary outcome of intracerebral haemorrhage growth (defined as >6 mL increase in intracerebral haemorrhage volume on repeat imaging) using multivariable logistic regression models in development and validation cohorts in four subgroups of patients, using a hierarchical approach: patients not taking anticoagulant therapy at intracerebral haemorrhage onset (who constituted the largest subgroup), patients taking anticoagulant therapy at intracerebral haemorrhage onset, patients from cohorts that included at least some patients taking anticoagulant therapy at intracerebral haemorrhage onset, and patients for whom both information about anticoagulant therapy at intracerebral haemorrhage onset and spot sign on acute CT angiography were known.
Findings: Of 4191 studies identified, 77 were eligible for inclusion. Overall, 36 (47%) cohorts provided data on 5435 eligible patients. 5076 of these patients were not taking anticoagulant therapy at symptom onset (median age 67 years, IQR 56–76), of whom 1009 (20%) had intracerebral haemorrhage growth. Multivariable models of patients with data on antiplatelet therapy use, data on anticoagulant therapy use, and assessment of CT angiography spot sign at symptom onset showed that time from symptom onset to baseline imaging (odds ratio 0·50, 95% CI 0·36–0·70; p<0·0001), intracerebral haemorrhage volume on baseline imaging (7·18, 4·46–11·60; p<0·0001), antiplatelet use (1·68, 1·06–2·66; p=0·026), and anticoagulant use (3·48, 1·96–6·16; p<0·0001) were independent predictors of intracerebral haemorrhage growth (C-index 0·78, 95% CI 0·75–0·82). Addition of CT angiography spot sign (odds ratio 4·46, 95% CI 2·95–6·75; p<0·0001) to the model increased the C-index by 0·05 (95% CI 0·03–0·07).
Interpretation: In this large patient-level meta-analysis, models using four or five predictors had acceptable to good discrimination. These models could inform the location and frequency of observations on patients in clinical practice, explain treatment effects in prior randomised trials, and guide the design of future trials.
Funding: UK Medical Research Council and British Heart Foundation.
A lot of software systems today need to make real-time decisions to optimize an objective of interest. This could be maximizing the click-through rate of an ad displayed on a web page or profit for an online trading software. The performance of these systems is crucial for the parties involved. Although great progress has been made over the years in understanding such online systems and devising efficient algorithms, a fine-grained analysis and problem specific solutions are often missing. This dissertation focuses on two such specific problems: bandit learning and pricing in gross-substitutes markets.
Bandit learning problems are a prominent class of sequential learning problems with several real-world applications. The classical algorithms proposed for these problems, although optimal in a theoretical sense often tend to overlook model-specific proper- ties. With this as our motivation, we explore several sequential learning models and give efficient algorithms for them. Our approaches, inspired by several classical works, incorporate the model-specific properties to derive better performance bounds.
The second part of the thesis investigates an important class of price update strategies in static markets. Specifically, we investigate the effectiveness of these strategies in terms of the total revenue generated by the sellers and the convergence of the resulting dynamics to market equilibrium. We further extend this study to a class of dynamic markets. Interestingly, in contrast to most prior works on this topic, we demonstrate that these price update dynamics may be interpreted as resulting from revenue optimizing actions of the sellers. No such interpretation was known previously. As a part of this investigation, we also study some specialized forms of no-regret dynamics and prediction techniques for supply estimation. These approaches based on learning algorithms are shown to be particularly effective in dynamic markets.