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LTD-artige zentralmotorische Plastizität im Schubereignis bei Patienten mit Multipler Sklerose
(2019)
Die Multiple Sklerose ist eine chronisch entzündliche Erkrankung des zentralen Nervensystems. Durch ein komplexes Zusammenspiel von Genetik, Autoimmunvorgängen und proinflammatorischen Prozessen kommt es zur Demyelinisierung sowie zu axonalen Schäden und kortikalen Läsionen (Calabrese et al., 2010; Ciccarelli et al., 2014; International Multiple Sclerosis Genetics et al., 2011; Leray et al., 2015). In den Industrieländern ist diese Erkrankung eine der häufigsten Ursachen für langfristige Behinderung bereits im frühen Lebensalter (Flores-Alvarado, Gabriel-
46 Ortiz, Pacheco-Mois, & Bitzer-Quintero, 2015). Die Diskrepanz allerdings zwischen klinischer Symptomatik und den Befunden der Bildgebung (Barkhof, 2002) gibt Anlass dafür, Adaptionsmöglichkeiten detailliert zu erforschen. Vorgänge der Neuroplastizität mit LTP und LTD als Basismechanismen erscheinen dabei zunehmend Beachtung zu finden (Dayan & Cohen, 2011; Zeller et al., 2011). Welche Rolle diese Prozesse allerdings im akuten Schub, während der häufig stark ausgeprägten Symptomatik, insbesondere aber auch während ihrer Rückbildung spielen, bleibt bisher weitgehend ungeklärt. Eine Untersuchung zu stimulationsinduzierter LTP-artiger Plastizität im Schub deutete auf einen möglichen Zusammenhang zwischen Ausmaß der Symptomrückbildung und PAS25-induziertem LTP-Effekt hin (Mori et al., 2014).
In der vorliegenden Arbeit wurde komplementär hierzu die stimulationsinduzierte LTD-artige Plastizität bei 19 MS- bzw. CIS-Patienten während des steroidbehandelten akuten Schubes untersucht. Als Kontrollgruppe wurden alters- und geschlechtsgematchte gesunde Probanden untersucht. Die Messungen wurden mithilfe eines Protokolls der assoziativen Paarstimulation durchgeführt. Paarstimulation wird die Kombination aus der peripher elektrischen und transkraniell magnetischen Stimulation genannt. Das in unserer Studie verwendete Protokoll sieht ein Interstimulusintervall von 10ms vor (PAS10). Der Effekt der Paarstimulation wird durch Messungen der Exzitabilität des motorischen Kortex mittels motorisch evozierter Potenziale (MEP) jeweils vor und nach der Intervention gemessen. Bei den MS-Patienten wurden diese Daten zum Zeitpunkt des Schubes (t1) und 12 Wochen danach (t2) erhoben; die gesunden Kontrollen wurden nur einmal gemessen. Daneben wurde bei den Schubpatienten zur Quantifizierung der klinischen Symptomatik jeweils zum ersten und zum zweiten Zeitpunkt der MSFC erhoben.
Die MS-Patienten zeigten im akuten MS-Schub im Gegensatz zu der Kontrollgruppe aus Gesunden keinen LTD-artigen, sondern einen inversen, sprich einen signifikant LTP-artigen Effekt; dieser war zum Zeitpunkt t2 nicht mehr zu erkennen. Der Unterschied zwischen den PAS10-Effekten der MS- und der Kontrollgruppe war ebenfalls signifikant. Der Vergleich der MSFC-Werte der MS-Gruppe zwischen t1 und t2 erbrachte eine signifikante klinische Besserung. Eine signifikante Korrelation zwischen
47
den neurophysiologischen und klinischen Daten bzw. ihren Veränderungen zwischen t1 und t2 zeigte sich nicht.
Diese Ergebnisse untermauern und erweitern bereits bestehende Hinweise, dass während der akuten Inflammationsprozesse des MS-Schubes veränderte Voraussetzungen für die Induzierbarkeit von Plastizität gegeben sind. Nicht nur, wie bereits gezeigt, die LTP-artige, sondern offenbar auch die LTD-artige assoziative Plastizität zeigt sich stark von den humoralen Veränderungen im steroidbehandelten Schub beeinflusst. Weitere Studien in stärker vorselektierten Patientengruppen sollten der Frage nachgehen, inwieweit LTD-artige Plastizität sich in verschiedenen Subgruppen mit unterschiedlichen Schubsymptomen unterscheidet. Des Weiteren ist der Frage weiter nachzugehen, ob LTD-artige Plastizität funktional zur Adaption im Rahmen des Schubereignisses notwendig ist und inwieweit deren Unterdrückung bzw. Ersatz durch Langzeitpotenzierung potenziell einer Adaption im Wege steht. Sollten potenzielle Folgestudien bestätigen, dass LTD- und LTP-artige Plastizität im Schub möglicherweise häufig dysfunktional ausgeprägt ist und einer optimalen Regeneration entgegensteht, wären daraus praktische Implikationen zu ziehen. Die Entwicklung neuer Trainingsprogramme oder elektrophysiologischer Konzepte könnte ein nächstes Ziel dieses Forschungszweiges sein, um potenziell dysfunktionale Plastizität zu vermeiden und physiologische Prozesse bereits im Schub zu fördern.
In der vorliegenden Studie wurden der Effekt und die Haltbarkeit der Rekonstruktion der Trikuspidalklappe mittels Ringen und Bändern sowie die postoperative Lebensqualität der Patienten untersucht. Als Ausgangspunkt dieser Arbeit dienten die ausführlichen Krankenakten der 141 Patienten, welche vom 01.01.2009 bis zum 31.12.2011 operiert wurden sowie die von den Patienten ausgefüllten Fragebögen. Anhand der Fragebögen konnte die Lebensqualität der Patienten beurteilt werden. Beim gesamten Patientenkollektiv wurden überwiegend neue Ringmodelle, wie steife CE MC3 Ringe und flexible SJM Tailor Bänder verwendet. Bei postoperativen echokardiographischen Kontrollen sowie telefonischen Follow-ups wurden keine reoperationsnotwendigen TK-Pathologien festgestellt. Anhand der Kaplan-Meier-Analyse betrug das 5-Jahres-Überleben in dieser Studie 70%. Die Beurteilung der Lebensqualität anhand COOP-Wonca-Fragebogen zeigte eine statistisch relevante postoperative Besserung im Bereich der somatischen, psychologischen und sozialen Funktion. Diese Arbeit bestätigt, dass die Anwendung von modernen Bändern und Ringen zu einer dauerhaft kompetenten TK führt, und dass sich der Allgemeinzustand der Patienten gegenüber dem Zustand vor der Operation verbessert.
Hintergrund
In einer retrospektiven Studie in der Augenklinik Würzburg wurde die Ranibizumabtherapie bei Patienten mit altersabhängiger Makuladegeneration (AMD) im klinischen Alltag ausgewertet.
Methoden
Patientenakten von Patienten mit AMD, die im Jahr 2007 mit der Ranibizumabtherapie begannen, wurden untersucht. Daten wurden bis zum Ende der Behandlung und/oder Nachbeobachtung bis 2009 gesammelt. Der primäre Endpunkt war das Verhältnis der Patienten, die weniger als 15 Buchstaben (bzw. 0,3 logMAR Einheiten) an Visus verloren zwischen Beginn und nach 12 Monaten.
Ergebnisse
375 Patienten wurden einbezogen, nur 298 Patienten beendeten die Untersuchung nach einem Jahr. Nach 12 Monaten verloren 72% der Patienten weniger als 15 Buchstaben. Die Sehschärfe verbesserte sich bis 12 Wochen nach der ersten Injektion und verschlechterte sich danach wieder. Patienten mit mehr als 3 Injektionen profitierten mehr als Patienten mit weniger Injektionen. Durchschnittlich wurden 4,25 Injektionen innerhalb eines Jahres gegeben. Der durchschnittliche Rückgang der Netzhautdicke betrug 50 µm.
Schlussfolgerung
Intravitreale Injektionen von Ranibizumab in der Augenklinik Würzburg führten zu einer Visusverbesserung. Der Visusgewinn konnte nach 3 Monaten nicht gehalten werden. Bessere Reinjektionskriterien, mehr OCT Untersuchungen und besseres Nachsorgemanagement sollten entwickelt werden.
Platinbasierte Chemotherapie ist die effektivste Chemotherapie für das fortgeschrittene Nebennierenrindenkarzinom (ACC). Excision repair cross complementing group 1 (ERCC1) spielt eine entscheidende Rolle bei der Reparatur durch Platin entstandener DNA-Schäden. Zwei Studien die die Rolle von ERCC1 per Immunhistochemie als prädiktiver Marker für das Ansprechen auf platinbasierte Chemotherapie beim ACC untersuchten kamen zu sich widersprechenden Ergebnissen. Beide Studien nutzten den ERCC1-Antikörper Klon 8F1 der sich später als nicht spezifisch herausstellte. Das Ziel der Doktorarbeit war die Evaluation von ERCC1 mit einem neuen hoch spezifischen Antikörper in einer großen Kohorte von Patienten mit ACC.
Material und Methoden: 146 Patienten mit verfügbaren FFPE-Schnitten wurden eingeschlossen. Alle Patienten erhielten eine platinbasierte Chemotherapie im Median für 6 Zyklen, nämlich Cisplatin (n=131) oder Carboplatin (n=15), in den meisten Fällen in Kombination mit Etoposid (n=144 , Doxorubicin (n=131) und Mitotane (n=131). Die Immunhistochemische Färbung wurde mit dem neuen Antikörper Klon 4F9 durchgeführt. Der Zusammenhang zwischen ERCC1-Expression und klinischen Parametern, Therapieansprechen, progressionsfreiem Überleben und Gesamtüberleben wurde analysiert.
Ergebnisse: Eine hohe ERCC1-Expression wurde in 66% der Tumorproben beobachtet. Während der Chemotherapie zeigte sich bei 43 Pateinten ein Therapieansprechen (29,5%), bei 49 Patienten eine Stabilisierung der Erkrankung (33,6%), bei 8 Patienten ein gemischtes Ansprechen (5,5%) und bei 46 Pateinten ein Krankheitsprogress (31,5%), ohne Zusammenhang zur ERCC1-Expression. Auch zeigte sich kein signifikanter Zusammenhanf zwischen der ERCC1-Expression und dem progressionsfreien Überleben (Median 6.5 vs. 6 Monate, P=0.33, HR=1.23, 95%CI=0.82-2.0) oder dem Gesamtüberleben.
Zusammenfassung: Es besteht kein Zusammenhang zwischen der ERCC1-Expression und der Platinsensitivität beim Nebennierenrindenkarzinom. Somit werden andere Biomarker zur Therapieentscheidung benötigt.
Im Rahmen des BUKA-Projektes (Beratung und Unterstützung für Patienten mit Krebs und ihren Angehörigen) wurden im Universitätsklinikum Würzburg Krebspatienten auf Palliativbedarf gescreent. Ziel war es, bei einem positiven Screening die spezialisierte Palliativmedizin möglichst frühzeitig in onkologische Entscheidungsprozesse miteinzubeziehen.
Konzentriert wurde sich in diesem Projekt auf Patienten, die aufgrund eines metastasierten Primärfalles oder aufgrund eines Rezidives/ Progresses im Tumorboard der Universität Würzburg vorgestellt wurden. Als Tumordiagnose lag ein Bronchialkarzinom, ein gastrointestinaler Tumor oder ein malignes Melanom vor. Für die Auswertung unserer Studie wurden ausschließlich Patienten einbezogen, die innerhalb von 12 Monaten nach Vorstellung im Tumorboard verstorben sind.
Um die Wirkung des Screenings beurteilen zu können, wurden Patientendaten zweier Beobachtungszeiträume verglichen. Die erste Kohorte aus dem Jahr 2011 umfasste 143 Patienten mit einem mittleren Alter von 65,9 Jahren. 67,8% der Patienten waren Männer und 32,2% Frauen. Bei dieser Kohorte erfolgte kein Screening auf Palliativbedarf. Die zweite, palliativmedizinisch gescreente Kohorte aus dem Jahr 2014/15 bestand aus 263 Patienten mit einem mittleren Alter von 65,5 Jahren. Das Patientenkollektiv setzte sich zu 65,0% aus Männern und 35,0% Frauen zusammen.
Anhand eines Datenvergleiches des Jahres 2011 mit 2014/15, sollte untersucht werden, ob die Versorgung von Tumorpatienten am Lebensende durch eine Screening gestützte palliativmedizinische Mitbetreuung verbessert werden konnte.
Im Folgenden werden die Ergebnisse zusammengefasst.
Im Jahr 2014/15 konnte eine Erhöhung des Anteils an Patienten mit Kontakt zur Palliativmedizin um knapp 20% erreicht werden. 72,2% des Kollektivs nahmen in unserer Studie palliativmedizinische Angebote in Anspruch, 2011 waren dies 56,6%.
Der Anteil an Patienten mit Erstkontakt ≤ 3 Tage vor dem Tod reduzierte sich um 15% (23,5% vs. 8,9%).
Eine signifikante Erhöhung an dokumentierten Patientenverfügungen wurde nicht verzeichnet (19,6% vs. 26,6%).
Ebenso fand kein Rückgang an tumorspezifischen Therapiemaßnahmen in den letzten 14 Lebenstagen statt. Hier kam es im Vergleich zum Jahr 2011 zu einer leichten Steigerung um 3% (24,5% vs. 27,8%). Die Ursache scheint in der Zunahme an Patienten mit einer zielgerichteten Therapie zu liegen.
Der Vergleich beider Studien ergab, dass eine Verbesserung der Versorgungsqualität von Tumorpatienten am Lebensende durch die Screening gestützte palliativmedizinische Mitbetreuung in Teilpunkten erreicht werden konnte.
Unsere Ergebnisse zeigen aber auch auf, dass es im Vergleich zur Kohorte des Jahres 2011 weiterhin zu einer Überversorgung am Lebensende bei Tumorpatienten kam. Deutlich wird dies im Hinblick auf die Konstanz bzw. leichte Zunahme an tumorspezifischer Therapie in den letzten 14 Lebenstagen. Vor allem neue Therapieansätze und Medikamente bei der zielgerichteten Therapie scheinen einen Rückgang zu verhindern.
Es ist daher entscheidend, die Palliativmedizin möglichst frühzeitig in die Behandlung von Krebspatienten miteinzubeziehen, um so überambitionierte Therapiemaßnahmen am Lebensende zu unterbinden und rückläufige Prozentzahlen bei dem QI „Durchführen einer tumorspezifischen Therapie in den letzten 14 Lebenstagen“ zu erhalten.
Ob die Screening-gestützte palliativmedizinische Mitbetreuung eine Möglichkeit dafür darstellen könnte, konnte mit unserer Studie nicht eindeutig geklärt werden. Es sind weitere Studien bezüglich dieser Thematik nötig.
Die EZM bildet ein Netzwerk quervernetzter Proteine, welches alle Zellen im Tumor umgibt. Sie übt direkte Effekte auf die Medikamenteneinbringung und -verteilung aus und somit auch auf die therapeutische Effizienz von Chemotherapeutika. Die LOX(L)-Proteinfamilie katalysiert die oxidative Desaminierung von Lysinresten in Elastin und Kollagenfasern und ermöglicht dadurch eine intra- und intermolekulare Quervernetzung. Diese wird für die Reifung und Stabilisierung der Kollagene in der EZM benötigt. Eine erhöhte LOX(L)-Expression steigert durch eine verstärkte EZM-Quervernetzung die Gewebesteifheit im Tumor und bildet so eine physikalische Diffusionsbarriere. Durch diese Barriere wird die Versorgung mit Sauerstoff und Nährstoffen reduziert. Die resultierende Hypoxie im Tumor kann eine fehlgeleitete Angiogenese triggern und zu einer Aktivierung maligner Signalkaskaden führen. In dieser Arbeit wurden durch eine LOX(L)-Inhibierung mittels βAPN einerseits und eine ektopische LOX-/LOXL2-Überexpression andererseits Auswirkungen solcher Eingriffe auf verschiedene Indikatoren wie Zellproliferation und apoptose, Versorgung mit Sauerstoff und Nährstoffen, Angiogenese, Hypoxie, Makrophageninfiltration und die Expression verschiedener Wachstumsfaktoren analysiert. Die Versuche wurden an fünf verschiedenen Tumoren (4T1-, E0771- und EMT6-Brustkarzinome, LLC-Lungenkarzinome und MT6-Fibrosarkome) durchgeführt. Die Ergebnisse dieser Arbeit demonstrieren eine direkte Verbindung zwischen der EZM und einer Therapieresistenz. Nach βAPN-Behandlung konnte eine verbesserte Versorgung mit Sauerstoff und Nährstoffen beobachtet werden, welches in einer Verringerung maligner Signalkaskaden und folglich auch in einer verbesserten Vaskularisierung resultierte. Als Konsequenz wurde die therapeutische Effizienz von Chemotherapeutika verbessert. Im Gegensatz dazu führte eine LOX-/LOXL2-Überexpression zu einer erhöhten Therapieresistenz. Die vorliegende Studie zeigt, dass die Modifizierung der EZM durch eine Hemmung von LOX(L) das Potenzial birgt, das Ansprechen von Chemotherapeutika in der Behandlung von Krebserkrankungen zu verbessern.
iROLL - 3D-bildnavigierte, radioaktivitätsgestützte Resektion des nicht-palpablen Mammakarzinoms
(2019)
In dieser prospektiven Studie wurde die Durchführbarkeit der 3D-bildnavigierten, radioaktivitätsgestützten Resektion des nicht-palpablen Mammakarzinoms (iROLL) unter Verwendung der freehand SPECT (fhSPECT)-Technologie untersucht. Das Verfahren wurde mit der als Goldstandard etablierten, drahtgestützten Lokalisation (WGL) verglichen. Sekundäre Endpunkte der Studie waren die erfolgreiche Sentinellymphknotenbiopsie (SLNB) mittels fhSPECT, der Patientenkomfort beider Verfahren, die mögliche Vorhersage tumorpositiver Resektatränder mittels fhSPECT, inklusive notwendiger Nachresektionen und der Einfluss von iROLL auf die OP-Dauer.
Die fhSPECT-gestützte iROLL ist ein schmerzarmes, patientenfreundliches, zeiteffizientes und v.a. gut durchführbares brusterhaltendes Therapieverfahren (BET) ist. Gegenüber der WGL wird eine einzeitige Markierung zur Primarius- und SLN-Markierung möglich, ohne dabei auf eine visuell fassbare, intraoperative Navigationshilfe verzichten zu müssen.
The multistate metadynamics for automatic exploration of conical intersection seams and systematic location of minimum energy crossing points in molecular systems and its implementation into the software package metaFALCON is presented. Based on a locally modified energy gap between two Born–Oppenheimer electronic states as a collective variable, multistate metadynamics trajectories are driven toward an intersection point starting from an arbitrary ground state geometry and are subsequently forced to explore the conical intersection seam landscape. For this purpose, an additional collective variable capable of distinguishing structures within the seam needs to be defined and an additional bias is introduced into the off-diagonal elements of an extended (multistate) electronic Hamiltonian. We demonstrate the performance of the algorithm on the examples of the 1,3-butadiene, benzene, and 9H-adenine molecules, where multiple minimum energy crossing points could be systematically located using the Wiener number or Cremer–Pople parameters as collective variables. Finally, with the example of 9H-adenine, we show that the multistate metadynamics potential can be used to obtain a global picture of a conical intersection seam. Our method can be straightforwardly connected with any ab initio or semiempirical electronic structure theory that provides energies and gradients of the respective electronic states and can serve for systematic elucidation of the role of conical intersections in the photophysics and photochemistry of complex molecular systems, thus complementing nonadiabatic dynamics simulations.
Aims
The aim of this study was to determine whether the Joint European Societies guidelines on secondary cardiovascular prevention are followed in everyday practice.
Design
A cross-sectional ESC-EORP survey (EUROASPIRE V) at 131 centres in 81 regions in 27 countries.
Methods
Patients (<80 years old) with verified coronary artery events or interventions were interviewed and examined ≥6 months later.
Results
A total of 8261 patients (females 26%) were interviewed. Nineteen per cent smoked and 55% of them were persistent smokers, 38% were obese (body mass index ≥30 kg/m2), 59% were centrally obese (waist circumference: men ≥102 cm; women ≥88 cm) while 66% were physically active <30 min 5 times/week. Forty-two per cent had a blood pressure ≥140/90 mmHg (≥140/85 if diabetic), 71% had low-density lipoprotein cholesterol ≥1.8 mmol/L (≥70 mg/dL) and 29% reported having diabetes. Cardioprotective medication was: anti-platelets 93%, beta-blockers 81%, angiotensin-converting enzyme inhibitors/angiotensin receptor blockers 75% and statins 80%.
Conclusion
A large majority of coronary patients have unhealthy lifestyles in terms of smoking, diet and sedentary behaviour, which adversely impacts major cardiovascular risk factors. A majority did not achieve their blood pressure, low-density lipoprotein cholesterol and glucose targets. Cardiovascular prevention requires modern preventive cardiology programmes delivered by interdisciplinary teams of healthcare professionals addressing all aspects of lifestyle and risk factor management, in order to reduce the risk of recurrent cardiovascular events.
Understanding extinction debts: spatio-temporal scales, mechanisms and a roadmap for future research
(2019)
Extinction debt refers to delayed species extinctions expected as a consequence of ecosystem perturbation. Quantifying such extinctions and investigating long‐term consequences of perturbations has proven challenging, because perturbations are not isolated and occur across various spatial and temporal scales, from local habitat losses to global warming. Additionally, the relative importance of eco‐evolutionary processes varies across scales, because levels of ecological organization, i.e. individuals, (meta)populations and (meta)communities, respond hierarchically to perturbations. To summarize our current knowledge of the scales and mechanisms influencing extinction debts, we reviewed recent empirical, theoretical and methodological studies addressing either the spatio–temporal scales of extinction debts or the eco‐evolutionary mechanisms delaying extinctions. Extinction debts were detected across a range of ecosystems and taxonomic groups, with estimates ranging from 9 to 90% of current species richness. The duration over which debts have been sustained varies from 5 to 570 yr, and projections of the total period required to settle a debt can extend to 1000 yr. Reported causes of delayed extinctions are 1) life‐history traits that prolong individual survival, and 2) population and metapopulation dynamics that maintain populations under deteriorated conditions. Other potential factors that may extend survival time such as microevolutionary dynamics, or delayed extinctions of interaction partners, have rarely been analyzed. Therefore, we propose a roadmap for future research with three key avenues: 1) the microevolutionary dynamics of extinction processes, 2) the disjunctive loss of interacting species and 3) the impact of multiple regimes of perturbation on the payment of debts. For their ability to integrate processes occurring at different levels of ecological organization, we highlight mechanistic simulation models as tools to address these knowledge gaps and to deepen our understanding of extinction dynamics.
Via providing various ecosystem services, the old-growth Hyrcanian forests play a crucial role in the environment and anthropogenic aspects of Iran and beyond. The amount of growing stock volume (GSV) is a forest biophysical parameter with great importance in issues like economy, environmental protection, and adaptation to climate change. Thus, accurate and unbiased estimation of GSV is also crucial to be pursued across the Hyrcanian. Our goal was to investigate the potential of ALOS-2 and Sentinel-1's polarimetric features in combination with Sentinel-2 multi-spectral features for the GSV estimation in a portion of heterogeneously-structured and mountainous Hyrcanian forests. We used five different kernels by the support vector regression (nu-SVR) for the GSV estimation. Because each kernel differently models the parameters, we separately selected features for each kernel by a binary genetic algorithm (GA). We simultaneously optimized R\(^2\) and RMSE in a suggested GA fitness function. We calculated R\(^2\), RMSE to evaluate the models. We additionally calculated the standard deviation of validation metrics to estimate the model's stability. Also for models over-fitting or under-fitting analysis, we used mean difference (MD) index. The results suggested the use of polynomial kernel as the final model. Despite multiple methodical challenges raised from the composition and structure of the study site, we conclude that the combined use of polarimetric features (both dual and full) with spectral bands and indices can improve the GSV estimation over mixed broadleaf forests. This was partially supported by the use of proposed evaluation criterion within the GA, which helped to avoid the curse of dimensionality for the applied SVR and lowest over estimation or under estimation.
Collective Response in DNA-Stabilized Silver Cluster Assemblies from First-Principles Simulations
(2019)
We investigate fluorescence resonant energy transfer and concurrent electron dynamics in a pair of DNA-stabilized silver clusters. For this purpose we introduce a methodology for the simulation of collective optoelectronic properties of coupled molecular aggregates starting from first-principles quantum chemistry, which can be further applied to a broad range of coupled molecular systems to study their electro-optical response. Our simulations reveal the existence of low-energy coupled excitonic states, which enable ultrafast energy transport between subunits, and give insight into the origin of the fluorescence signal in coupled DNA-stabilized silver clusters, which have been recently experimentally detected. Hence, we demonstrate the possibility of constructing ultrasmall energy transmission lines and optical converters based on these hybrid molecular systems.
Reactive hydrocarbon molecules like radicals, biradicals and carbenes are not only key players in combustion processes and interstellar and atmospheric chemistry, but some of them are also important intermediates in organic synthesis. These systems typically possess many low-lying, strongly coupled electronic states. After light absorption, this leads to rich photodynamics characterized by a complex interplay of nuclear and electronic motion, which is still not comprehensively understood and not easy to investigate both experimentally and theoretically. In order to elucidate trends and contribute to a more general understanding, we here review our recent work on excited-state dynamics of open-shell hydrocarbon species using time-resolved photoelectron spectroscopy and field-induced surface hopping simulations, and report new results on the excited-state dynamics of the tropyl and the 1-methylallyl radical. The different dynamics are compared, and the difficulties and future directions of time-resolved photoelectron spectroscopy and excited state dynamics simulations of open-shell hydrocarbon molecules are discussed.
The photophysics of a molecular triad consisting of a BODIPY dye and two pyrene chromophores attached in 2-position are investigated by steady state and fs-time resolved transient absorption spectroscopy as well as by field induced surface hopping (FISH) simulations. While the steady state measurements indicate moderate chromophore interactions within the triad, the time resolved measurements show upon pyrene excitation a delocalised excited state which localises onto the BODIPY chromophore with a time constant of 0.12 ps. This could either be interpreted as an internal conversion process within the excitonically coupled chromophores or as an energy transfer from the pyrenes to the BODIPY dye. The analysis of FISH-trajectories reveals an oscillatory behaviour where the excitation hops between the pyrene units and the BODIPY dye several times until finally they become localised on the BODIPY chromophore within 100 fs. This is accompanied by an ultrafast nonradiative relaxation within the excitonic manifold mediated by the nonadiabatic coupling. Averaging over an ensemble of trajectories allowed us to simulate the electronic state population dynamics and determine the time constants for the nonradiative transitions that mediate the ultrafast energy transfer and exciton localisation on BODIPY.
Kinesins play an important role in many physiological functions including intracellular vesicle transport and mitosis. The emerging role of kinesins in different cancers led us to investigate the expression and functional role of kinesins in meningioma. Therefore, we re-analyzed our previous microarray dataset of benign, atypical, and anaplastic meningiomas (n = 62) and got evidence for differential expression of five kinesins (KIFC1, KIF4A, KIF11, KIF14 and KIF20A). Further validation in an extended study sample (n = 208) revealed a significant upregulation of these genes in WHO°I to °III meningiomas (WHO°I n = 61, WHO°II n = 88, and WHO°III n = 59), which was most pronounced in clinically more aggressive tumors of the same WHO grade. Immunohistochemical staining confirmed a WHO grade-associated upregulated protein expression in meningioma tissues. Furthermore, high mRNA expression levels of KIFC1, KIF11, KIF14 and KIF20A were associated with shorter progression-free survival. On a functional level, knockdown of kinesins in Ben-Men-1 cells and in the newly established anaplastic meningioma cell line NCH93 resulted in a significantly inhibited tumor cell proliferation upon siRNA-mediated downregulation of KIF11 in both cell lines by up to 95% and 71%, respectively. Taken together, in this study we were able to identify the prognostic and functional role of several kinesin family members of which KIF11 exhibits the most promising properties as a novel prognostic marker and therapeutic target, which may offer new treatment options for aggressive meningiomas.
Large-area remote sensing time-series offer unique features for the extensive investigation of our environment. Since various error sources in the acquisition chain of datasets exist, only properly validated results can be of value for research and downstream decision processes. This review presents an overview of validation approaches concerning temporally dense time-series of land surface geo-information products that cover the continental to global scale. Categorization according to utilized validation data revealed that product intercomparisons and comparison to reference data are the conventional validation methods. The reviewed studies are mainly based on optical sensors and orientated towards global coverage, with vegetation-related variables as the focus. Trends indicate an increase in remote sensing-based studies that feature long-term datasets of land surface variables. The hereby corresponding validation efforts show only minor methodological diversification in the past two decades. To sustain comprehensive and standardized validation efforts, the provision of spatiotemporally dense validation data in order to estimate actual differences between measurement and the true state has to be maintained. The promotion of novel approaches can, on the other hand, prove beneficial for various downstream applications, although typically only theoretical uncertainties are provided.
C60 fullerene as an effective nanoplatform of alkaloid Berberine delivery into leukemic cells
(2019)
A herbal alkaloid Berberine (Ber), used for centuries in Ayurvedic, Chinese, Middle-Eastern, and native American folk medicines, is nowadays proved to function as a safe anticancer agent. Yet, its poor water solubility, stability, and bioavailability hinder clinical application. In this study, we have explored a nanosized carbon nanoparticle—C60 fullerene (C60)—for optimized Ber delivery into leukemic cells. Water dispersions of noncovalent C60-Ber nanocomplexes in the 1:2, 1:1, and 2:1 molar ratios were prepared. UV–Vis spectroscopy, dynamic light scattering (DLS), and atomic force microscopy (AFM) evidenced a complexation of the Ber cation with the negatively charged C60 molecule. The computer simulation showed that π-stacking dominates in Ber and C\(_{60}\) binding in an aqueous solution. Complexation with C\(_{60}\) was found to promote Ber intracellular uptake. By increasing C\(_{60}\) concentration, the C\(_{60}\)-Ber nanocomplexes exhibited higher antiproliferative potential towards CCRF-CEM cells, in accordance with the following order: free Ber < 1:2 < 1:1 < 2:1 (the most toxic). The activation of caspase 3/7 and accumulation in the sub-G1 phase of CCRF-CEM cells treated with C\(_{60}\)-Ber nanocomplexes evidenced apoptosis induction. Thus, this study indicates that the fast and easy noncovalent complexation of alkaloid Ber with C\(_{60}\) improved its in vitro efficiency against cancer cells.
Studying how cambial age and axial height affects wood anatomical traits may improve our understanding of xylem hydraulics, heartwood formation and axial growth. Radial strips were collected from six different heights (0–11.3 m) along the main trunk of three Manchurian catalpa (Catalpa bungei) trees, yielding 88 samples. In total, thirteen wood anatomical vessel and fiber traits were observed usinglight microscopy (LM) and scanning electron microscopy (SEM), and linear models were used to analyse the combined effect of axial height, cambial age and their interaction. Vessel diameter differed by about one order of magnitude between early- and latewood, and increased significantly with both cambial age and axial height in latewood, while it was positively affected by cambial age and independent of height in earlywood. Vertical position further had a positive effect on earlywood vessel density, and negative effects on fibre wall thickness, wall thickness to diameter ratio and length. Cambial age had positive effects on the pit membrane diameter and vessel element length, while the annual diameter growth decreased with both cambial age and axial position. In contrast, early- and latewood fiber diameter were unaffected by both cambial age and axial height. We further observed an increasing amount of tyloses from sapwood to heartwood, accompanied by an increase of warty layers and amorphous deposits on cell walls, bordered pit membranes and pit apertures. This study highlights the significant effects of cambial age and vertical position on xylem anatomical traits, and confirms earlier work that cautions to take into account xylem spatial position when interpreting wood anatomical structures, and thus, xylem hydraulic functioning.