TY - THES A1 - Simon, Karoline T1 - Development and Evaluation of a Generic HPLC-Tandem MS Screening Method for the Detection of Potential Biomarkers for Reactive Intermediates T1 - Entwicklung und Evaluierung einer generischen HPLC-Tandem MS Methode zur Detektion potentieller Biomarker für Reaktive Intermediate N2 - Conjugation of reactive intermediates of drugs with proteins or DNA may result in toxic effects such as hepatotoxicity, agranulocytosis, allergies, tumors, etc. From 1975 to 1999, 2.9% of drugs were withdrawn from the market due to such severe adverse drug reactions. Thus, formation of chemically reactive intermediates is a widely discussed problem in drug development processes. Early detection of potentially toxic compounds is required for drug discovery and drug development. Conjugation of such electrophilic compounds with glutathione (GSH) is one of the most important detoxifying reactions in vivo. Processing of these GSH-conjugates ultimately leads to the formation of renally cleared mercapturic acids, which may also be oxidized to sulfoxides. Thus, mercapturic acids may be generated and detected in vitro and non-invasively in vivo in urine to assess the reactivity of a compound in early stages of drug development processes. Therefore, the aim of this work was to develop and evaluate a HPLC-MS/MS screening method for simple and rapid detection and characterization of known and unknown mercapturic acids and application of the method to several different matrices. Based on the common constant neutral loss (CNL) of 129 Da of all mercapturic acids tested (in negative ion mode), a CNL survey scan was performed using a linear ion trap instrument and was combined with two enhanced product ion (EPI) scans with different collision energies to characterize the detected signals. The CNL resulted from the cleavage between the sulfur and the carbon atom in the N-acetyl-L-cysteine moiety. After optimization of the experimental parameters, the detection limits of the reference substances in rat urine ranged from 0.3 to 15.5 pmol on column (i.e. 20 ng/ml to 800 ng/ml). For in vitro evaluation of the method, the model compounds acetaminophen, diclofenac, bifonazole, clozapine, troglitazone, carbamazepine, and bisphenol A were screened for formation of reactive intermediates and, hence, detection of the corresponding mercapturic acids. To determine possible species- and tissue-specific toxicities, the model compounds were incubated with stimulated neutrophils and with liver microsomes from rats and humans. Species-specific differences were observed in incubations of acetaminophen and diclofenac with rat and human hepatic microsomes. Tissue-specific differences in biotransformation of the model compounds in incubations with human neutrophils and human liver microsomes were observed for diclofenac, carbamazepine, clozapine, and bifonazole. The developed HPLC-MS/MS method was also evaluated in vivo by analysis of rat and human urine. Drug-related mercapturic acids were detected in urine of rats orally treated with acetaminophen (20 mg/kg and 640 mg/kg b.w.) or diclofenac (10 mg/kg and 20 mg/kg b.w.). Human urine samples were analyzed before and after oral administration of a clinically used dose of 500 mg and 50 mg of acetaminophen. Besides detection of the mercapturic acid of N-acetylbenzoquinoneimine (AAP-MA), a second mercapturic acid with m/z 327 occurred dose-dependently in rat and human urine samples after administration of acetaminophen. Further investigations on identification of this metabolite using authentic compounds and comparing their MS/MS mass spectra demonstrated oxidation of AAP-MA to stereoisomeric sulfoxides in vivo. For diclofenac, a novel mercapturic acid with m/z 441 was detected in rat urine samples that was identical to a metabolite obtained in incubations with human neutrophils before. The in vivo formation of this diclofenac metabolite is described here for the first time. In addition, three endogenously formed mercapturic acids were detected and identified. In conclusion, the results of the in vitro and in vivo evaluation demonstrate the advantages of the rapid and generic HPLC-MS/MS screening method for the detection of mercapturic acids, that can be obtained with a minimum of sample preparation and a high throughput in diverse matrices. N2 - Konjugation reaktiver Intermediate mit Proteinen oder DNA kann zu toxischen Effekten wie Hepatotoxizität, Neutropenie, Allergien, Tumoren u.a. führen. Zwischen 1975 und 1999 wurden 2.9% der zugelassenen Arzneistoffe wegen Auftretens solcher unerwünschten, toxischen Nebenwirkungen vom Markt genommen. Daher stellen Substanzen, die reaktive Intermediate bilden können, ein großes Problem in der Arzneistoffentwicklung dar. Aus diesem Grund ist die pharmazeutische Forschungsindustrie daran interessiert, solche potenziell toxischen Substanzen bereits in frühen Phasen der Arzneistoffentwicklung zu erfassen. Elektrophile, reaktive Intermediate sind instabil und reagieren schnell mit nukleophilen Substraten. Die Konjugation reaktiver Intermediate mit Glutathion stellt hierbei einen der Hauptmechanismen der Detoxifizierung im Organismus dar. In vivo können enzymatisch geregelte Reaktionen das Glutathionaddukt abbauen und so zur Bildung renal ausscheidbarer Merkaptursäuren führen, die auch zu den entsprechenden Sulfoxiden oxidiert werden können. Man kann Merkaptursäuren aber auch direkt durch Konjugation mit N-Acetyl-L-cystein gewinnen. So können reaktive Intermediate in vitro generiert und als Merkaptursäuren detektiert und nicht-invasiv auch in vivo erfasst werden. Ziel dieser Arbeit war es, eine HPLC-MS/MS-Screening-Methode zur einfachen und schnellen Detektion und Charakterisierung von bekannten und unbekannten Merkaptursäuren als Biomarker für die Bildung reaktiver Metabolite in verschiedenen Matrices zu entwickeln und zu evaluieren. Für alle untersuchten Merkaptursäuren und deren Sulfoxide war ein Neutralverlust von 129 Da (im negativen Ionenmodus) charakteristisch. Dieser entstand durch Spaltung der Schwefel-Kohlenstoff-Bindung im Merkaptursäureanteil und diente als Basis für die Entwicklung der HPLC-MS/MS-Methode. Dafür wurde ein CNL-Scan auf 129 Da im negativen Ionenmodus durchgeführt. Der CNL-Scan konnte unter Verwendung der vorhandenen Ionenfalle mit zwei Produkt-ionen-Scans (EPI) mit unterschiedlichen Kollisionsenergien kombiniert und für eine Charakterisierung der detektierten Signale verwandt werden. Nach Optimierung der Instrument- und HPLC-Parameter wurden für die einzelnen Referenzsubstanzen Nachweisgrenzen im Bereich von 0.3 bis 15.5 pmol on column (entspricht einem Bereich von 20 ng/ml bis 800 ng/ml) in Rattenurin bestimmt. Für die In-vitro-Evaluierung der CNL-Screening-Methode wurden die Modellsubstanzen Paracetamol, Diclofenac, Troglitazon, Bifonazol, Clozapin, Carbamazepin und Bisphenol A auf die Bildung reaktiver Intermediate hin untersucht, die durch Zusatz von N-acetylcystein abgefangen wurden. Um eventuell Aufschluß über gewebe- oder speziesspezifische Toxizitäten von Arzneistoffen zu bekommen, wurden die Modellsubstanzen in stimulierten neutrophilen Granulozyten und in Ratten- und Humanlebermikrosomen inkubiert. Speziesspezifische Unterschiede in der Bildung von reaktiven Intermediaten zwischen Inkubationen mit Ratten- und Humanlebermikrosomen wurden bei Paracetamol und Diclofenac beobachtet. Organspezifische Unterschiede in der Bildung von reaktiven Intermediaten zwischen Inkubationen mit neutrophilen Granulozyten und humanen Lebermikrosomen wurden bei Diclofenac, Carbamazepin, Clozapin und Bifonazol gefunden. Die HPLC-MS/MS-Screening-Methode wurde durch Messungen von Ratten- und Humanurinproben auch in vivo evaluiert. Arzneistoffbezogene Merkaptursäuren wurden in Urinproben von Ratten gemessen, die über eine Schlundsonde Paracetamol (20 mg/kg und 640 mg/kg K.G.) bzw. Diclofenac (10 mg/kg und 20 mg/kg K.G.) zugeführt bekommen hatten. Humanurin wurde nach Gabe einer therapeutischen Dosis von 500 mg Paracetamol und einer subtherapeutischen Dosis von 50 mg analysiert. Neben der bekannten Merkaptursäure des N-acetylbenzochinonimins (NAPQI) wurde ein weiterer Metabolit (m/z 327) dosisabhängig in den Urinproben von Ratte und Mensch detektiert. Durch nähere Untersuchungen zur Identifizierung dieses Metaboliten anhand von Referenzsubstanzen und deren Massenspektren konnte nachgewiesen werden, dass das Merkapturat des NAPQI zu stereoisomeren Sulfoxiden oxidiert wurde. Bei den Diclofenac-Proben wurde zum ersten Mal ein Metabolit mit m/z 441 in Rattenurin detektiert und charakterisiert, der nur in Inkubationen mit stimulierten neutrophilen Granulozyten, jedoch nicht mit Lebermikrosomen gebildet wurde. Mit der entwickelten HPLC-MS/MS Screening Methode konnten weitere, vom Arzneistoff unabhängige Merkaptursäuren im Urin detektiert und charakterisiert werden. Schließlich zeigen die Ergebnisse zur In-vitro- und In-vivo-Evaluierung die Vorteile dieser schnellen und generischen HPLC-MS/MS-Screening-Methode zur Detektion von Merkaptursäuren, die mit minimaler Probenvorbereitung und hohem Probendurchsatz für verschiedene Matrices eingesetzt werden kann. KW - Acetylcysteinderivate KW - Reaktive Zwischenstufe KW - Biomarker KW - HPLC-MS KW - Merkaptursäuren KW - Biomarker KW - Massenspektrometrie KW - reaktive Metabolite KW - mercapturic acids KW - biomarker KW - mass spectrometry KW - reactive metabolites Y1 - 2006 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-21916 ER - TY - THES A1 - Adler, Melanie T1 - New approaches to improve prediction of drug-induced liver injury T1 - Neue Ansätze zur verbesserten Vorhersage arzneimittelinduzierter Leberschäden N2 - Das häufige Scheitern neuer Arzneistoffkandidaten aufgrund von Lebertoxizität in präklinischen und klinischen Studien stellt ein erhebliches Problem in der Entwicklung von neuen Arzneimitteln dar. Deshalb ist es wichtig, neue Ansätze zu entwickeln, mit deren Hilfe unerwünschte Wirkungen von Arzneimitteln früher und zuverlässiger erkannt werden können. Um die Vorhersage von Lebertoxizität in präklinischen Studien zu verbessern, wurden im Rahmen dieser Arbeit zwei wesentliche Ansätze gewählt: 1) die Evaluierung neuer Biomarker, durch die Lebertoxizität zuverlässiger und empfindlicher detektiert werden könnte und 2.) wirkmechanistische Untersuchungen mittels Toxcicogenomics für ein besseres Verständnis der zugrunde liegenden Mechanismen der Arzneimittel-induzierten Toxizität. Ein Ziel dieser Arbeit war, die Fähigkeit einiger neuer potenzieller Biomarker (NGAL, Thiostatin, Clusterin und PON1) zu bewerten, Arzmeimittel-induzierte Lebertoxizität in Ratten frühzeitig zu erkennen. Die Ergebnisse zeigen, dass PON1 und Clusterin infolge eines durch die verabreichten Arzneistoffkandidaten verursachten Leberschadens nicht konsistent verändert waren. Diese beiden Marker sind daher, verglichen mit bestehenden klinisch-chemischen Markern, nicht für eine sichere Vorhersage von Arzneistoff-induzierten Leberschäden geeignet. Bei Thiostatin und NGAL zeigte sich hingegen ein zeit- und dosisabhängiger Anstieg im Serum und Urin behandelter Tiere. Diese Veränderungen, die gut mit der mRNA Expression im Zielorgan übereinstimmten, korrelierten mit dem Schweregrad der Arzneistoff-induzierten Leberschäden. Die Analyse mittels ROC zeigte, Thiostatin im Serum, nicht aber NGAL, ein besserer Indikator für Arzneimittel-induzierte hepatobiliäre Schäden ist als die routinemäßig verwendeten klinische-chemischen Marker, wie z.B. die Leberenzyme ALP, ALT und AST. Thiostatin wird jedoch als Akute-Phase-Protein in einer Vielzahl von Geweben exprimiert und kann somit nicht spezifisch als Lebermarker betrachtet werden. Dennoch zeigen unsere Ergebnisse, dass Thiostatin als sensitiver, minimal-invasiver diagnostischer Marker für Entzündungsprozesse und Gewebeschäden eine sinnvolle Ergänzung in der präklinischen Testung auf Lebertoxizität darstellt. Im zweiten Teil dieser Arbeit wurde mittels RNA-Interferenz das pharmakologische Target des Arzneistoffkandidaten BAY16, der Glukagonrezeptor, auf mRNA-Ebene gehemmt und anhand von Genexpressionsanalysen untersucht, ob die pharmakologisch-bedingte Modulation des Glukagonrezeptors eine Rolle in der Toxizität von BAY16 spielt. Desweiteren sollten diese Arbeiten Aufschluss geben, welche molekularen Veränderungen auf die pharmakologische Wirkung des Arzneistoffs zurückzuführen sind, und daher für den Mechanismus der Toxizität möglicherweise wenig relevant sind. Während BAY16 in Konzentrationen von 75 µM starke zytotoxische Wirkungen aufwies, hatte die siRNA vermittelte Depletion des Glukagonrezeptors keinen Einfluss auf die Vitalität primärer Rattenhepatozyten. Daraus lässt sich ableiten, dass die Hepatotoxiziät von BAY16 in vitro und in vivo nicht mit der pharmakologischen Modulation des Glukagonrezeptors assoziiert ist. Diese Ergebnisse wurden durch die Tatsache gestützt, dass die meisten der durch BAY16 induzierten Genexpressionsveränderungen unabhängig von der pharmakologischen Modulation des Glucagonrezeptors auftraten. Diese beobachteten off-target-Effekte beinhalteten Veränderungen im Fremdstoffmetabolismus, oxidativer Stress, erhöhte Fettsäuresynthese und Veränderungen im Cholesterol- und Gallensäuremetabolismus. Obwohl Veränderungen in diesen molekularen Mechanismen zum Fortschreiten eines Leberschadens beitragen können, ist es anhand dieser Daten nicht möglich einen eindeutigen Mechanismus für die Toxizität von BAY16 abzuleiten. In dieser Arbeit konnte jedoch gezeigt werden, dass die Anwendung der siRNA-Technologie einen neuen methodischen Ansatz darstellt, um Mechanismen arzneimittelbedingter Toxizität besser verstehen zu können. N2 - The high failure rate of new drug candidates in preclinical or clinical studies due to hepatotoxicity represents a considerable problem in the drug development. Hence, there is an urgent need to develop new approaches for early and reliable prediction of drug-induced hepatotoxicity that enables a better identification of drug candidates with high potential for toxicity at early stages of drug development. Therefore, the aim of this work was to improve the prediction of drug-induced liver injury in preclinical studies through evaluation of more reliable and sensitive biomarkers of hepatotoxicity and a better understanding of the underlying mechanistic basis for drug-induced toxicity. First, the ability of a set of potential markers (NGAL, thiostatin, clusterin, PON1) to detect early signs of liver injury was assessed in rats treated with drug candidates that were dropped from further development, in part due to toxic adverse effects in the liver. In summary, PON1 and clusterin were not consistently altered in response to liver injury and thus provide no additive information to the traditional liver enzymes in detecting drug-induced hepatotoxicity. In contrast, thiostatin and NGAL were increased in serum and urine of treated animals in a time- and dose-dependent manner. These changes correlated well with mRNA expression in the target organ and generally reflected the onset and degree of drug-induced liver injury. Receiver-operating characteristics analyses supported serum thiostatin, but not NGAL, as a better indicator of drug-induced hepatobiliary injury than conventional clinical chemistry parameters, such as ALP, ALT and AST. Although thiostatin, an acute phase protein expressed in a range of tissues, may not be specific for liver injury, our results indicate that thiostatin may serve as a sensitive, minimally-invasive diagnostic marker of inflammation and tissue damage in preclinical safety assessment. In the second part of this work, combined application of genomics profiling technology and RNAi to inhibit the pharmacological target of a drug candidate BAY16, a glucagon receptor (GCGR) antagonist, was used to determine if interference with the pharmacological target plays a role in the toxic response to BAY16, and to narrow down those molecular changes that are associated with toxicity, and not the pharmacological action of BAY16. In contrast to Bay 16, which was found to be cytotoxic at concentrations of 75 µM, silencing of the glucagon receptor did not affect cell viability in primary rat hepatocytes. Thus, it can be concluded that hepatotoxicity of Bay 16 was not related to the drugs inhibitory effect on the glucagon receptor in vitro and in vivo. These findings were supported by the fact that most of BAY16-induced changes in gene expression occurred independently of the pharmacological modulation of GCGR. These off-target effects include altered xenobiotic metabolism, oxidative stress, increased fatty acid synthesis, and alterations in cholesterol and bile acid metabolic processes. Although it was not possible to draw a final conclusion about the mechanism of BAY16 hepatotoxicity, changes in these molecular mechanisms appear contribute to progression of hepatic injury. With regard to drug safety assessment in preclinical studies, the utilization of siRNA technology in vitro represents a new approach to improve mechanistic understanding of the nature of drug’s toxicity, being either chemically mediated or due to primary or secondary pharmacological mode of action. KW - Biomarker KW - Leber KW - Hepatotoxizität KW - Lebertoxizität KW - biomarker KW - liver KW - hepatotoxicity Y1 - 2012 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-69512 ER - TY - JOUR A1 - Kress, Michaela A1 - Hüttenhofer, Alexander A1 - Landry, Marc A1 - Kuner, Rohini A1 - Favereaux, Alexandre A1 - Greenberg, David A1 - Bednarik, Josef A1 - Heppenstall, Paul A1 - Kronenberg, Florian A1 - Malcangio, Marzia A1 - Rittner, Heike A1 - Üçeyler, Nurcan A1 - Trajanoski, Zlatko A1 - Mouritzen, Peter A1 - Birklein, Frank A1 - Sommer, Claudia A1 - Soreq, Hermona T1 - microRNAs in nociceptive circuits as predictors of future clinical applications JF - Frontiers in Molecular Neuroscience N2 - Neuro-immune alterations in the peripheral and central nervous system play a role in the pathophysiology of chronic pain, and non-coding RNAs – and microRNAs (miRNAs) in particular – regulate both immune and neuronal processes. Specifically, miRNAs control macromolecular complexes in neurons, glia and immune cells and regulate signals used for neuro-immune communication in the pain pathway. Therefore, miRNAs may be hypothesized as critically important master switches modulating chronic pain. In particular, understanding the concerted function of miRNA in the regulation of nociception and endogenous analgesia and defining the importance of miRNAs in the circuitries and cognitive, emotional and behavioral components involved in pain is expected to shed new light on the enigmatic pathophysiology of neuropathic pain, migraine and complex regional pain syndrome. Specific miRNAs may evolve as new druggable molecular targets for pain prevention and relief. Furthermore, predisposing miRNA expression patterns and inter-individual variations and polymorphisms in miRNAs and/or their binding sites may serve as biomarkers for pain and help to predict individual risks for certain types of pain and responsiveness to analgesic drugs. miRNA-based diagnostics are expected to develop into hands-on tools that allow better patient stratification, improved mechanism-based treatment, and targeted prevention strategies for high risk individuals. KW - chronic pain KW - biomarker KW - polymorphism KW - miRNA-based diagnostics KW - miRNA expression patterns KW - miRNA polymorphisms KW - antagomir KW - miRNA-based analgesic Y1 - 2013 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-154597 VL - 6 IS - 33 ER - TY - JOUR A1 - Kneitz, Burkhard A1 - Kalogirou, Charis A1 - Spahn, Martin A1 - Krebs, Markus A1 - Joniau, Steven A1 - Lerut, Evelyne A1 - Burger, Maximilian A1 - Scholz, Claus-Jürgen A1 - Kneitz, Susanne A1 - Riedmiller, Hubertus T1 - MiR-205 Is Progressively Down-Regulated in Lymph Node Metastasis but Fails as a Prognostic Biomarker in High-Risk Prostate Cancer JF - International Journal of Molecular Sciences N2 - The treatment of high-risk prostate cancer (HRPCa) is a tremendous challenge for uro-oncologists. The identification of predictive moleculobiological markers allowing risk assessment of lymph node metastasis and systemic progression is essential in establishing effective treatment. In the current study, we investigate the prognostic potential of miR-205 in HRPCa study and validation cohorts, setting defined clinical endpoints for both. We demonstrate miR-205 to be significantly down-regulated in over 70% of the HRPCa samples analysed and that reconstitution of miR-205 causes inhibition of proliferation and invasiveness in prostate cancer (PCa) cell lines. Additionally, miR-205 is increasingly down-regulated in lymph node metastases compared to the primary tumour indicating that miR-205 plays a role in migration of PCa cells from the original location into extraprostatic tissue. Nevertheless, down-regulation of miR-205 in primary PCa was not correlated to the synchronous presence of metastasis and failed to predict the outcome for HRPCa patients. Moreover, we found a tendency for miR-205 up-regulation to correlate with an adverse outcome of PCa patients suggesting a pivotal role of miR-205 in tumourigenesis. Overall, we showed that miR-205 is involved in the development and metastasis of PCa, but failed to work as a useful clinical biomarker in HRPCa. These findings might have implications for the use of miR-205 as a prognostic or therapeutic target in HRPCa. KW - high-risk prostate cancer KW - microRNA KW - miR-205 KW - prognosis KW - biomarker Y1 - 2013 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-97321 ER - TY - THES A1 - Heß, Michael T1 - Vaccinia virus-encoded bacterial beta-glucuronidase as a diagnostic biomarker for oncolytic virotherapy T1 - Vaccinia Virus-codierte bakterielle Beta-Glucuronidase als diagnostischer Biomarker in der onkolytischen Virotherapie N2 - Oncolytic virotherapy represents a promising approach to revolutionize cancer therapy. Several preclinical and clinical trials display the safety of oncolytic viruses as wells as their efficiency against solid tumors. The development of complementary diagnosis and monitoring concepts as well as the optimization of anti-tumor activity are key points of current virotherapy research. Within the framework of this thesis, the diagnostic and therapeutic prospects of beta-glucuronidase expressed by the oncolytic vaccinia virus strain GLV-1h68 were evaluated. In this regard, a beta-glucuronidase-based, therapy-accompanying biomarker test was established which is currently under clinical validation. By using fluorescent substrates, the activity of virally expressed beta-glucuronidase could be detected and quantified. Thereby conclusions about the replication kinetics of oncolytic viruses in animal models and virus-induced cancer cell lysis could be drawn. These findings finally led to the elaboration and establishment of a versatile biomarker assay which allows statements regarding the replication of oncolytic viruses in mice based on serum samples. Besides the analysis of retrospective conditions, this test is able to serve as therapy-accompanying monitoring tool for virotherapy approaches with beta-glucuronidase-expressing viruses. The newly developed assay also served as complement to routinely used plaque assays as well as reference for virally expressed anti-angiogenic antibodies in additional preclinical studies. Further validation of this biomarker test is currently taking place in the context of clinical trials with GL-ONC1 (clinical grade GLV-1h68) and has already shown promising preliminary results. It was furthermore demonstrated that fluorogenic substrates in combination with beta-glucuronidase expressed by oncolytic viruses facilitated the optical detection of solid tumors in preclinical models. In addition to diagnostic purposes, virus-encoded enzymes could also be combined with prodrugs resulting in an improved therapeutic outcome of oncolytic virotherapy. In further studies, the visualization of virus-induced immune reactions as well as the establishment of innovative concepts to improve the therapeutic outcome of oncolytic virotherapy could be accomplished. In conclusion, the results of this thesis provide crucial findings about the influence of virally expressed beta-glucuronidase on various diagnostic concepts in the context of oncolytic virotherapy. In addition, innovative monitoring and therapeutic strategies could be established. Our preclinical findings have important clinical influence, particularly by the development of a therapy-associated biomarker assay which is currently used in different clinical trials. N2 - Onkolytische Viren stellen einen vielversprechenden Therapieansatz dar, der die Behandlung von Krebserkrankungen revolutionieren könnte. Intensive präklinische und klinische Studien zeigen sowohl die körperliche Verträglichkeit von onkolytischen Viren, als auch deren Wirksamkeit gegenüber soliden Tumoren. Die Entwicklung von therapiebegleitenden Diagnose- und Monitoringkonzepten sowie eine Optimierung der Antitumorwirkung onkolytischer Viren stellen Eckpunkte der aktuellen Forschung auf dem Gebiet der Virotherapie dar. Im Rahmen dieser Arbeit wurde untersucht, welche diagnostischen und therapeutischen Möglichkeiten die virale Expression von beta-Glucuronidase durch den onkolytischen Vaccinia-Virus-Stamm GLV-1h68 eröffnet. In diesem Zusammenhang wurde ein, auf beta-Glucuronidase basierender, therapiebegleitender Biomarkertest entwickelt, dessen klinische Validierung derzeit stattfindet. Mit Hilfe von fluorogenen Substraten konnte die Aktivität viral exprimierter beta-Glucuronidase detektiert und quantifiziert werden. Dies lies direkte Rückschlüsse auf das Replikationsverhalten von onkolytischen Viren im Tiermodell zu und ermöglichte zudem Aussagen über die Zelllyse Virus-infizierter Krebszellen. Diese Erkenntnisse führten letztendlich zur Ausarbeitung und Etablierung eines vielseitig anwendbaren Biomarker-Assays, der es ermöglicht anhand von Blutproben Aussagen über das Replikationsverhalten onkolytischer Viren in Mäusen zu machen. Neben retrospektiven Analysen erlaubt dieser Test auch ein therapiebegleitendes Monitoring der onkolytischen Virotherapie mit beta-Glucuronidase-exprimierenden Viren. In weiteren präklinischen Untersuchungen diente der entwickelte Assay zudem als Ergänzung zum viralen Plaque Assays sowie als Referenz für Virus-exprimierte anti-angiogene Antikörper. Eine fortführende Validierung dieses neuartigen Biomarkertests findet derzeit im Rahmen humaner Studien mit der klinischen Formulierung von GLV-1h68, GL-ONC1, statt und zeigte bereits erste positive Resultate. Weiterhin konnte im Rahmen dieser Arbeit gezeigt werden, dass die Expression von beta-Glucuronidase durch onkolytische Viren in Verbindung mit fluoreszierenden Substraten eine optische Detektion von Karzinomen im präklinischen Tiermodell ermöglicht. Neben diagnostischen Zwecken, konnten Virus-kodierte Enzyme in Kombination mit Prodrugs genutzt werden, um den Therapieerfolg der onkolytischen Virotherapie zu verbessern. In zusätzlichen Studien konnten zudem Methoden zur Visualisierung der Virus-induzierten Immunantwort sowie neuartige Konzepte zur Therapieverbesserung etabliert werden. Zusammenfassend liefern die Ergebnisse der vorliegenden Arbeit wichtige Erkenntnisse über den Einfluss Virus-exprimierter beta-Glucuronidase auf unterschiedliche Diagnosekonzepte im Rahmen der onkolytischen Virotherapie. Daneben konnten entscheidende Erkenntnisse über den möglichen Einsatz neuer Monitoring- und Therapieansätze erzielt werden. Insbesondere durch die Entwicklung eines therapiebegleitenden Biomarkertests haben diese Resultate erheblichen Einfluss auf die weitere klinische Anwendung von onkolytischen Vaccinia-Viren. KW - Vaccinia-Virus KW - Glucuronidase KW - Krebs KW - cancer KW - oncolytic virus KW - biomarker KW - beta-glucuronidase Y1 - 2013 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-86789 ER - TY - JOUR A1 - Kraft, Peter A1 - Drechsler, Christiane A1 - Gunreben, Ignaz A1 - Heuschmann, Peter Ulrich A1 - Kleinschnitz, Christoph T1 - Regulation of Blood Coagulation Factors XI and XII in Patients with Acute and Chronic Cerebrovascular Disease: A Case-Control Study JF - Cerebrovascular Diseases N2 - Background: Animal models have implicated an integral role for coagulation factors XI (FXI) and XII (FXII) in thrombus formation and propagation of ischemic stroke (IS). However, it is unknown if these molecules contribute to IS pathophysiology in humans, and might be of use as biomarkers for IS risk and severity. This study aimed to identify predictors of altered FXI and FXII levels and to determine whether there are differences in the levels of these coagulation factors between acute cerebrovascular events and chronic cerebrovascular disease (CCD). Methods: In this case-control study, 116 patients with acute ischemic stroke (AIS) or transitory ischemic attack (TIA), 117 patients with CCD, and 104 healthy volunteers (HVs) were enrolled between 2010 and 2013 at our University hospital. Blood sampling was undertaken once in the CCD and HV groups and on days 0, 1, and 3 after stroke onset in patients with AIS or TIA. Correlations between serum FXI and FXII levels and demographic and clinical parameters were tested by linear regression and analysis of variance. Results: The mean age of AIS/TIA patients was 70 ± 12. Baseline clinical severity measured with NIHSS and Barthel Index was 4.8 ± 6.0 and 74 ± 30, respectively. More than half of the patients had an AIS (58%). FXI levels were significantly correlated with different leukocyte subsets (p < 0.05). In contrast, FXII serum levels showed no significant correlation (p > 0.1). Neither FXI nor FXII levels correlated with CRP (p > 0.2). FXII levels were significantly higher in patients with CCD compared with those with AIS/TIA (mean ± SD 106 ± 26% vs. 97 ± 24%; univariate analysis: p < 0.05); these differences did not reach significance in multivariate analysis adjusted for sex and age. FXI levels did not differ significantly between study groups. Sex and age were significantly associated with FXI and/or FXII levels in patients with AIS/TIA (p < 0.05). In contrast, no statistical significant influence was found for treatment modality (thrombolysis or not), pre-treatment with platelet inhibitors, and severity of stroke. Conclusions: In this study, there was no differential regulation of FXI and FXII levels between disease subtypes but biomarker levels were associated with patient and clinical characteristics. FXI and FXII levels might be no valid biomarker for predicting stroke risk. KW - biomarker KW - factor XI KW - factor XII KW - ischemic stroke KW - chronic cerebrovascular disease Y1 - 2014 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-199076 SN - 1015-9770 SN - 1421-9786 N1 - This publication is with permission of the rights owner freely accessible due to an Alliance licence and a national licence (funded by the DFG, German Research Foundation) respectively. VL - 38 IS - 5 ER - TY - JOUR A1 - Keller, Andreas A1 - Leidinger, Petra A1 - Vogel, Britta A1 - Backes, Christina A1 - ElSharawy, Abdou A1 - Galata, Valentina A1 - Mueller, Sabine C. A1 - Marquart, Sabine A1 - Schrauder, Michael G. A1 - Strick, Reiner A1 - Bauer, Andrea A1 - Wischhusen, Jörg A1 - Beier, Markus A1 - Kohlhaas, Jochen A1 - Katus, Hugo A. A1 - Hoheisel, Jörg A1 - Franke, Andre A1 - Meder, Benjamin A1 - Meese, Eckart T1 - miRNAs can be generally associated with human pathologies as exemplified for miR-144* JF - BMC MEDICINE N2 - Background: miRNA profiles are promising biomarker candidates for a manifold of human pathologies, opening new avenues for diagnosis and prognosis. Beyond studies that describe miRNAs frequently as markers for specific traits, we asked whether a general pattern for miRNAs across many diseases exists. Methods: We evaluated genome-wide circulating profiles of 1,049 patients suffering from 19 different cancer and non-cancer diseases as well as unaffected controls. The results were validated on 319 individuals using qRT-PCR. Results: We discovered 34 miRNAs with strong disease association. Among those, we found substantially decreased levels of hsa-miR-144* and hsa-miR-20b with AUC of 0.751 ( 95% CI: 0.703-0.799), respectively. We also discovered a set of miRNAs, including hsa-miR-155*, as rather stable markers, offering reasonable control miRNAs for future studies. The strong downregulation of hsa-miR-144* and the less variable pattern of hsa-miR-155* has been validated in a cohort of 319 samples in three different centers. Here, breast cancer as an additional disease phenotype not included in the screening phase has been included as the 20th trait. Conclusions: Our study on 1,368 patients including 1,049 genome-wide miRNA profiles and 319 qRT-PCR validations further underscores the high potential of specific blood-borne miRNA patterns as molecular biomarkers. Importantly, we highlight 34 miRNAs that are generally dysregulated in human pathologies. Although these markers are not specific to certain diseases they may add to the diagnosis in combination with other markers, building a specific signature. Besides these dysregulated miRNAs, we propose a set of constant miRNAs that may be used as control markers. KW - peripheral blood KW - microna profiles KW - disease KW - signature KW - expression KW - miRNA KW - microarray KW - biomarker KW - bioinformatics KW - lung-cancer KW - multiple sclerosis KW - gene KW - serum Y1 - 2014 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-114349 SN - 1741-7015 VL - 12 ER - TY - JOUR A1 - Orth, Martin F. A1 - Cazes, Alex A1 - Butt, Elke A1 - Grunewald, Thomas G. P. T1 - An update on the LIM and SH3 domain protein 1 (LASP1): a versatile structural, signaling, and biomarker protein JF - Oncotarget N2 - The gene encoding the LIM and SH3 domain protein (LASP1) was cloned two decades ago from a cDNA library of breast cancer metastases. As the first protein of a class comprising one N-terminal LIM and one C-terminal SH3 domain, LASP1 founded a new LIM-protein subfamily of the nebulin group. Since its discovery LASP1 proved to be an extremely versatile protein because of its exceptional structure allowing interaction with various binding partners, its ubiquitous expression in normal tissues, albeit with distinct expression patterns, and its ability to transmit signals from the cytoplasm into the nucleus. As a result, LASP1 plays key roles in cell structure, physiological processes, and cell signaling. Furthermore, LASP1 overexpression contributes to cancer aggressiveness hinting to a potential value of LASP1 as a cancer biomarker. In this review we summarize published data on structure, regulation, function, and expression pattern of LASP1, with a focus on its role in human cancer and as a biomarker protein. In addition, we provide a comprehensive transcriptome analysis of published microarrays (n=2,780) that illustrates the expression profile of LASP1 in normal tissues and its overexpression in a broad range of human cancer entities. KW - LASP1 KW - cancer KW - biomarker KW - microRNA KW - nucleo-cytoplasmic Y1 - 2015 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-144546 VL - 6 IS - 1 ER - TY - JOUR A1 - Kraft, Peter A1 - Drechsler, Christiane A1 - Schuhmann, Michael K. A1 - Gunreben, Ignaz A1 - Kleinschnitz, Christoph T1 - Characterization of Peripheral Immune Cell Subsets in Patients with Acute and Chronic Cerebrovascular Disease: A Case-Control Study JF - International Journal of Molecular Science N2 - Immune cells (IC) play a crucial role in murine stroke pathophysiology. However, data are limited on the role of these cells in ischemic stroke in humans. We therefore aimed to characterize and compare peripheral IC subsets in patients with acute ischemic stroke/transient ischemic attack (AIS/TIA), chronic cerebrovascular disease (CCD) and healthy volunteers (HV). We conducted a case-control study of patients with AIS/TIA (n = 116) or CCD (n = 117), and HV (n = 104) who were enrolled at the University Hospital Würzburg from 2010 to 2013. We determined the expression and quantity of IC subsets in the three study groups and performed correlation analyses with demographic and clinical parameters. The quantity of several IC subsets differed between the AIS/TIA, CCD, and HV groups. Several clinical and demographic variables independently predicted the quantity of IC subsets in patients with AIS/TIA. No significant changes in the quantity of IC subsets occurred within the first three days after AIS/TIA. Overall, these findings strengthen the evidence for a pathophysiologic role of IC in human ischemic stroke and the potential use of IC-based biomarkers for the prediction of stroke risk. A comprehensive description of IC kinetics is crucial to enable the design of targeted treatment strategies. KW - chronic cerebrovascular disease KW - lymphocytes KW - leukocytes KW - immune cells KW - biomarker KW - monocytes KW - regulatory T cells KW - ischemic stroke KW - thromboinflammation Y1 - 2015 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-126319 VL - 16 IS - 10 ER - TY - JOUR A1 - Seydelmann, Nora A1 - Liu, Dan A1 - Krämer, Johannes A1 - Drechsler, Christiane A1 - Hu, Kai A1 - Nordbeck, Peter A1 - Schneider, Andreas A1 - Störk, Stefan A1 - Bijnens, Bart A1 - Ertl, Georg A1 - Wanner, Christoph A1 - Weidemann, Frank T1 - High-Sensitivity Troponin: A Clinical Blood Biomarker for Staging Cardiomyopathy in Fabry Disease JF - Journal of the American Heart Association N2 - Background High‐sensitivity troponin (hs‐TNT), a biomarker of myocardial damage, might be useful for assessing fibrosis in Fabry cardiomyopathy. We performed a prospective analysis of hs‐TNT as a biomarker for myocardial changes in Fabry patients and a retrospective longitudinal follow‐up study to assess longitudinal hs‐TNT changes relative to fibrosis and cardiomyopathy progression. Methods and Results For the prospective analysis, hs‐TNT from 75 consecutive patients with genetically confirmed Fabry disease was analyzed relative to typical Fabry‐associated echocardiographic findings and total myocardial fibrosis as measured by late gadolinium enhancement (LE) on magnetic resonance imaging. Longitudinal data (3.9±2.0 years), including hs‐TNT, LE, and echocardiographic findings from 58 Fabry patients, were retrospectively collected. Hs‐TNT level positively correlated with LE (linear correlation coefficient, 0.72; odds ratio, 32.81 [95% CI, 3.56–302.59]; P=0.002); patients with elevated baseline hs‐TNT (>14 ng/L) showed significantly increased LE (median: baseline, 1.9 [1.1–3.3] %; follow‐up, 3.2 [2.3–4.9] %; P<0.001) and slightly elevated hs‐TNT (baseline, 44.7 [30.1–65.3] ng/L; follow‐up, 49.1 [27.6–69.5] ng/L; P=0.116) during follow‐up. Left ventricular wall thickness and EF of patients with elevated hs‐TNT were decreased during follow‐up, indicating potential cardiomyopathy progression. Conclusions hs‐TNT is an accurate, easily accessible clinical blood biomarker for detecting replacement fibrosis in patients with Fabry disease and a qualified predictor of cardiomyopathy progression. Thus, hs‐TNT could be helpful for staging and follow‐up of Fabry patients. KW - biomarker KW - cardiomyopathy KW - fabry disease KW - myocardial fibrosis KW - troponin T Y1 - 2016 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-165682 VL - 5 IS - e002839 ER -