@phdthesis{Schott2021, author = {Schott, Lea Marie}, title = {In vitro Untersuchung zur Genotoxizit{\"a}t ausgew{\"a}hlter Pyrrolizidinalkaloide}, doi = {10.25972/OPUS-24171}, url = {http://nbn-resolving.de/urn:nbn:de:bvb:20-opus-241716}, school = {Universit{\"a}t W{\"u}rzburg}, year = {2021}, abstract = {Pyrrolizidinalkaloide (PA) sind sekund{\"a}re Pflanzenstoffe, welche {\"u}ber Nahrungsmittel in den menschlichen Organismus gelangen k{\"o}nnen. Zahlreiche Studien belegen, dass PA in der Leber verstoffwechselt und dabei in aktive genotoxische Metabolite umgewandelt werden. Diese verursachen vor allem in der Leber zellul{\"a}re Sch{\"a}den, was sich klinisch in Form einer hepatischen ven{\"o}sen okklusiven Leberkrankheit, aber auch in der Entstehung von Tumoren zeigt. Die vorliegende Arbeit testet das genotoxische Potential der drei PA Lasiocarpin, Senecionin und Seneciphyllin anhand der Leberzelllinie Huh6 mit Hilfe des Mikrokerntests. Dar{\"u}ber hinaus wird die Wirkung von Lasiocarpin auf den intrazellul{\"a}ren Glutathion-Gehalt, die Superoxidproduktion und das mitochondriale Membranpotential analysiert. Zudem werden sowohl der eventuell negative Einfluss einer Glutathion Depletion, als auch die m{\"o}glicherweise sch{\"u}tzenden Effekte des pflanzlichen Antioxidans Delphinidin in Bezug auf die Genotoxizit{\"a}t von Lasiocarpin untersucht. Es konnte gezeigt werden, dass alle drei ausgew{\"a}hlten PA einen signifikanten Anstieg der Mikrokernfrequenz bewirken.Unsere Messungen zeigten f{\"u}r Lasiocarpin eine dezente Reduktion des Glutathion Gehalts. Dagegen f{\"u}hrte eine Glutathion-Depletion in den Huh6 Zellen zu keiner Steigerung der Genotoxizit{\"a}t von Lasiocarpin. In Kombination mit dem Antioxidans Delphinidin zeigte sich f{\"u}r Lasiocarpin eine signifikante Reduktion der Mikrokernfrequenz. Abschließend ist anzumerken, dass in Zukunft vor allem die Wechselwirkung der PA untereinander und mit anderen (Pflanzen-)bestandteilen f{\"u}r eine verbesserte Risikoabsch{\"a}tzung der PA-Exposition untersucht werden sollte.}, subject = {Pyrrolizidinalkaloide}, language = {de} } @phdthesis{Glaser2012, author = {Glaser, Nina}, title = {Influence of natural food compounds on DNA stability}, url = {http://nbn-resolving.de/urn:nbn:de:bvb:20-opus-72872}, school = {Universit{\"a}t W{\"u}rzburg}, year = {2012}, abstract = {Cancer is one of the leading causes of death all over the world. Malnutrition and toxic contaminations of food with substances such as mycotoxins have been thought to account for a high percentage of cancers. However, human diet can deliver both mutagens and components that decrease the cancer risk. Genomic damage could be reduced by food components through different mechanisms such as scavenging of reactive oxygen species. In the first part of this study we tried to investigate the effects of patulin and resveratrol on DNA stability in V79 cells. Patulin is a mycotoxin, which is frequently found in spoiled apples and other fruits. The WHO has established a safety level of 50 µg/L, which is indeed not observed by all manufacturers. The acute toxicity of patulin in high concentrations is well known, however its potential carcinogenicity is still a matter of debate. Therefore we wanted to investigate further steps in the mechanism of patulin-induced genotoxicity. Patulin caused the formation of micronuclei and nucleoplasmic bridges in a dose-dependent manner. Further analysis revealed that patulin induced both kinetochore-negative and positive micronuclei. Time course of incubation indicate a new mechanism for patulin-induced nucleoplasmic bridge formation. We hypothized a mechanism via cross-linking of DNA, which was confirmed by a modified version of comet assay. Incubations of cells with patulin led to an increased number of multinucleated cells and multipolar mitoses. Cell cytometry revealed a G2 arrest by patulin, which might explain the amplification of centrosomes and patulin-induced aneuploidy. Patulin cause a dose-dependent DNA damage in comet assay which was influenced by the cellular GSH content. However, an induction of oxidative stress was just seen with higher concentrations of patulin. Levels of cellular glutathione were increased after 24 h incubation indicating an adaptive response to patulin-induced stress. There is growing interest in polyphenols such as resveratrol which have shown many positive effects on human health. The beneficial properties are partially attributed to their ability to scavenge reactive oxygen species. Co-incubation of V79 cells with patulin and 10 µM of the antioxidant resveratrol led to a slight reduction of micronucleus frequency compared to cells which were just treated with patulin. However, in higher concentrations resveratrol themselves caused the formation of micronuclei in V79 cells. Kinetochore analysis indicated only clastogenic properties for resveratrol but no disturbance of mitosis. The antioxidant properties of resveratrol were shown in ferric reducing antioxidant power (FRAP) assay. However, in cellular system resveratrol in higher concentrations revealed also prooxidative properties, as shown in 2,7-dichlordihydrofluorescein (DCF) assay. The increased level of glutathione after resveratrol treatment might reflect an adaptive response to resveratrol-induced oxidative stress. For the second part of this thesis we investigated the effects of an anthocyanin-rich grape extract on hypertensive Ren-2 rats. Ren-2 rats are an accepted genetically modified rat model for the investigation of hypertension and increased oxidative stress. We divided 23 female Ren-2 rats into three groups. One group was fed with an anthocyanin-rich Dacapo grape extract, one group was treated with the angiotensin converting enzyme (ACE) inhibitor ramipril and the third group was kept without medication during the experiment. After one week untreated group showed a clear increase in systolic and diastolic blood pressure compared to the ramipril treated rats. This was in part attenuated in the animals fed with anthocyanin-rich Dacapo grape extract. Effects on blood pressure were also reflected in an increased thirst of untreated and extract fed animals. Comet assay with cells of kidney and liver revealed a slight protective impact of Dacapo extract on DNA damage compared to the other groups. Similar results were obtained after evaluation of ɣ-H2AX-staining of kidney and heart sections. However, in the small intestine oppositional effects were seen, indicating an increased number of double strand breaks probably due to the high local concentration of polyphenols after oral ingestion. Antioxidative properties of the extract were shown in FRAP assay. However, this effect was not reflected in an increased antioxidative capacity in serum or a protective impact in the dihydroethidium (DHE) assay. The extract showed protective effects on DNA damage in comet assay and ɣ-H2AX-staining, but was not able to reduce hypertension back to the control level of ramipril treated animals. High local concentrations could also result in an increased damage of the affected tissue. Therefore, the administration of such concentrated compounds should be handled with care.}, subject = {Patulin}, language = {en} } @phdthesis{Hintzsche2011, author = {Hintzsche, Henning}, title = {Gentoxizit{\"a}t nichtionisierender Strahlung - Auswirkungen von Mobilfunk- und Terahertzstrahlung auf das Genom}, url = {http://nbn-resolving.de/urn:nbn:de:bvb:20-opus-57684}, school = {Universit{\"a}t W{\"u}rzburg}, year = {2011}, abstract = {Ziel der vorliegenden Arbeit war es, zu untersuchen, ob nichtionisierende elektromagnetische Strahlung verschiedener Frequenzbereiche Genomschaden hervorrufen kann. Im Rahmen der vorliegenden Arbeit wurde eine Biomonitoring-Studie zu dieser Thematik konzipiert und durchgef{\"u}hrt. Es wurden 131 Probanden detailliert zu ihrer Mobilfunknutzung befragt. Anschließend wurden Mundschleimhautzellen entnommen und f{\"u}r eine mikroskopische Untersuchung aufbereitet und angef{\"a}rbt. In den Zellen wurden Mikrokerne und andere Kernanomalien quantifiziert. Es zeigte sich keine Erh{\"o}hung der Mikrokernfrequenz in Abh{\"a}ngigkeit von der Dauer der Mobiltelefonnutzung. Auch die anderen abgefragten Parameter hatten keinen Einfluss auf die H{\"o}he des Genomschadens. Als Positivkontrollen wurden vier Patienten, die eine lokale Strahlentherapie (ionisierende Strahlung) erhielten, eingeschlossen. Hier zeigte sich eine deutliche Erh{\"o}hung der Mikrokernfrequenz. Um festzustellen, ob die Mikrokerninduktion erst bei h{\"o}heren Leistungsflussdichten als denen, die beim Mobilfunk verwendet werden, auftritt, wurden in-vitro-Versuche durchgef{\"u}hrt, bei denen verschiedene Zelllinien einer Strahlung von 900 MHz ausgesetzt wurden. Nach Exposition und einer Postinkubationsperiode wurden die Zellen fixiert und die Mikrokernfrequenz bestimmt. Neben den Leistungen wurden hier auch die Expositionszeiten und die Postinkubationsperioden variiert. In keinem Fall konnte eine Erh{\"o}hung der Mikrokernfrequenz festgestellt werden. Insgesamt konnte ein Einfluss elektromagnetischer Strahlung auf das Genom weder am Menschen im Rahmen einer Biomonitoring-Studie noch an verschiedenen Zelllinien im Rahmen von in-vitro-Versuchen festgestellt werden. Terahertzstrahlung ist elektromagnetische Strahlung im Bereich von 0,1 bis 10 THz, d. h. sie liegt zwischen Mikrowellen und Infrarotlicht. Derzeit wird sie haupts{\"a}chlich f{\"u}r spektroskopische Untersuchungen und zur Qualit{\"a}tskontrolle im Herstellungs-prozess verschiedener Produkte verwendet. Anwendungen in der Sicherheitstechnik (z. B. Ganzk{\"o}rperscanner) und in der Medizintechnik (z. B. Bildgebung) stehen kurz vor der Markteinf{\"u}hrung bzw. sind bereits etabliert. Diese Anwendungen bringen eine Exposition der betroffenen Menschen mit sich. Außerdem wird an weiteren Techniken wie etwa der Daten{\"u}bertragung gearbeitet. Die Wirkungen auf biologische Systeme sind im Gegensatz zum Mobilfunkbereich bisher nur unzureichend untersucht. Da bisher keine vollst{\"a}ndigen Literatur{\"u}bersichten vorlagen, wurde eine umfassende Literaturrecherche durchgef{\"u}hrt. Ziel war es, alle bisher durchgef{\"u}hrten Studien zu diesem Thema aufzulisten. Um diese Datenbasis zu verbreitern wurden in-vitro-Versuche bei verschiedenen Frequenzen durchgef{\"u}hrt. Als Strahlungsquellen wurden eine Frequenzvervielfacherkaskade (0,106 THz), ein R{\"u}ckw{\"a}rtswellen-Oszillator (0,380 THz) und ein Ferninfrarot-Laser (2,520 THz) eingesetzt. Die Strahlung wurde in einen modifizierten Inkubator gef{\"u}hrt, so dass die Expositionen bei definierter Temperatur und konstantem CO2-Gehalt durchgef{\"u}hrt werden konnten. Da Terahertzstrahlung durch Wasser sehr stark absorbiert wird, sind bei einer Exposition des Menschen prim{\"a}r die obersten Hautschichten betroffen. Aus diesem Grund wurden prim{\"a}re Hautfibroblasten und HaCaT-Zellen, eine Keratinozyten-Zelllinie, als biologische Systeme verwendet. Die Zellen wurden f{\"u}r unterschiedliche Zeitperioden mit verschiedenen Leistungsflussdichten exponiert. Anschließend wurden die Zellen f{\"u}r den Comet Assay aufbereitet und analysiert. Der Comet Assay ist eine Methode zur Quantifizierung von Einzel- und Doppelstrangbr{\"u}chen der DNA. Weiterhin wurden die Zellen nach einer Postinkubationsperiode f{\"u}r den Mikrokerntest aufbereitet. Neben unbehandelten Kontrollen und Sham-Expositionen wurden auch Positivkontrollen durchgef{\"u}hrt. Es konnte keine Erh{\"o}hung der Anzahl der DNA-Strangbr{\"u}che bzw. der Mikrokernfrequenz festgestellt werden. Da bekannt war, dass im Mobilfunkbereich unter bestimmten Bedingungen St{\"o}rungen der Mitose, nicht aber Erh{\"o}hungen der Mikrokernfrequenz, auftreten, wurden Mitosest{\"o}rungen nach Exposition bei 0,106 THz untersucht. Hierzu wurden AL-Zellen f{\"u}r 30 Minuten exponiert und anschließend ohne Postinkubation direkt fixiert. Analysiert wurden St{\"o}rungen in allen Phasen der Mitose. Es zeigte sich, dass die Frequenz der St{\"o}rungen in der Pro- und Metaphase unver{\"a}ndert blieb. Die St{\"o}rungen in der Ana- und Telophase nahmen dagegen mit steigender Leistungsflussdichte zu. Insgesamt konnte im Terahertzbereich unter den gew{\"a}hlten Expositionsbedingungen kein DNA-Schaden beobachtet werden. Bei 0,106 THz konnten Mitosest{\"o}rungen als Folge der Exposition gezeigt werden. Der Zusammenhang zwischen diesen Mitosest{\"o}rungen und DNA-Sch{\"a}den, insbesondere der Mikrokerninduktion, konnte bisher nicht abschließend gekl{\"a}rt werden und bleibt Gegenstand weiterer Untersuchungen.}, subject = {Mutagenit{\"a}t}, language = {de} } @phdthesis{Fazeli2010, author = {Fazeli, Gholamreza}, title = {Signaling in the induction of genomic damage by endogenous compounds}, url = {http://nbn-resolving.de/urn:nbn:de:bvb:20-opus-55634}, school = {Universit{\"a}t W{\"u}rzburg}, year = {2010}, abstract = {Reactive oxygen species (ROS) are continuously generated in cells and are involved in physiological processes including signal transduction but also their damaging effects on biological molecules have been well described. A number of reports in the literature implicate excessive oxidative stress and/or inadequate antioxidant defense in the pathogenesis of cancer, atherosclerosis, chronic and age related disorders. Several studies have indicated that activation of the renin-angiotensin-aldosterone-system can lead to the formation of ROS. Epidemiological studies have revealed higher renal cell cancer incidences and also higher cancer mortalities in hypertensive individuals. Recently, our group has shown that perfusion of the isolated mouse kidney with Ang II or treatment of several cell lines with Ang II leads to formation of DNA damage and oxidative base modifications. Here, we tried to scrutinize the pathway involved in genotoxicity of Ang II. We confirmed the genotoxicity of Ang II in two kidney cell lines of human origin. Ang II treatment led to the production of superoxide anions which we could hinder when we used the membrane permeable superoxide dismutase (SOD) mimetic TEMPOL. One of the enzymes which is activated in the cells after Ang II treatment and is able to produce ROS is NADPH oxidase. We demonstrated the activation of NADPH oxidase in response to Ang II by upregulation of its p47 subunit using RT-PCR. Also, pPhosphorylation of p47 subunit of NADPH oxidase after Ang II treatment was enhanced. Using two inhibitors we showed that NADPH oxidase inhibition completely prevents DNA damage by Ang II treatment. To differentiate between Nox2 and Nox4 isoforms of NADPH oxidase subunits in the genotoxicity of Ang II, we performed siRNA inhibition and found a role only for Nox4, while Nox2 was not involved. Next, we investigated PKC as a potential activator of NADPH oxidase. We showed that PKC becomes phosphorylated after Ang II treatment and also that inhibition of PKC hinders Ang II from damaging the cells. Our results from using several inhibitors of different parts of the pathway revealed that PKC activation in this pathway is dependent on the action of PLC on membrane phospholipids and production of IP3. IP3 binds to its receptor at endoplasmic reticulum (ER), opening a channel which allows calcium efflux into the cytoplasm. In this manner, both ER calcium stores and extracellular calcium cooperate so that Ang II can exert its genotoxic effect. PLC is activated by AT1R stimulation. We could also show that the genotoxicity of Ang II is mediated via AT1R signaling using the AT1R antagonist candesartan. In conclusion, here we have shown that Ang II is able to damage genomic damage in cell lines of kidney origin. The observed damage is associated with production of ROS. A decrease in Ang II-induced DNA damage was observed after inhibition of G-proteins, PLC, PKC and NADPH oxidase and interfering with intra- as well as extracellular calcium signaling. This leads to the following preliminary model of signaling in Ang II-induced DNA damage: binding of Ang II to the AT1 receptor activates PLC via stimulation of G-proteins, resulting in the activation of PKC in a calcium dependent manner which in turn, activates NADPH oxidase. NADPH oxidase with involvement of its Nox4 subunit then produces reactive oxygen species which cause DNA damage. Dopamine content and metabolism in the peripheral lymphocytes of PD patients are influenced by L-Dopa administration. The PD patients receiving a high dose of L-Dopa show a significantly higher content of dopamine in their lymphocytes compared to PD patients who received a low dose of L-Dopa or the healthy control. Central to many of the processes involved in oxidative stress and oxidative damage in PD are the actions of monoamine oxidase (MAO), the enzyme which is responsible for the enzymatic oxidation of dopamine which leadsing to production of H2O2 as a by-product. We investigated whether dopamine oxidation can cause genotoxicity in lymphocytes of PD patents who were under high dose L-Dopa therapy and afterward questioned the occurrence of DNA damage after dopamine treatment in vitro and tried to reveal the mechanism by which dopamine exerts its genotoxic effect. The frequency of micronuclei in peripheral blood lymphocytes of the PD patients was not elevated compared to healthy age-matched individuals, although the formation of micronuclei revealed a positive correlation with the daily dose of L-Dopa administration in patients who received L-Dopa therapy together with dopamine receptor agonists. In vitro, we describe an induction of genomic damage detected as micronucleus formation by low micromolar concentrations in cell lines with of different tissue origins. The genotoxic effect of dopamine was reduced by addition of the antioxidants TEMPOL and dimethylthiourea which proved the involvement of ROS production in dopamine-induced DNA damage. To determine whether oxidation of dopamine by MAO is relevant in its genotoxicity, we inhibited MAO with two inhibitors, trans-2-phenylcyclopropylamine hydrochloride (PCPA) and Ro 16-6491 which both reduced the formation of micronuclei in PC-12 cells. We also studied the role of the dopamine transporter (DAT) and dopamine type 2 receptor (D2R) signaling in the genotoxicity of dopamine. Inhibitors of the DAT, GBR-12909 and nomifensine, hindered dopamine-induced genotoxicity. These results were confirmed by treatment of MDCK and MDCK-DAT cells, the latter containing the human DAT gene, with dopamine. Only MDCK-DAT cells showed elevated chromosomal damage and dopamine uptake. Although stimulation of D2R with quinpirole in the absence of dopamine did not induce genotoxicity in PC-12 cells, interference with D2R signaling using D2R antagonist and inhibition of G-proteins, phosphoinositide 3 kinase and extracellular signal-regulated kinases reduced dopamine-induced genotoxicity and affected the ability of DAT to take up dopamine. Furthermore, the D2R antagonist sulpiride inhibited the dopamine-induced migration of DAT from cytosol to cell membrane. Overall, the neurotransmitter dopamine causes DNA damage and oxidative stress in vitro. There are also indications that high dose L-Dopa therapy might lead to oxidative stress. Dopamine exerts its genotoxicity in vitro upon transport into the cells and oxidization oxidation by MAO. Transport of dopamine by DAT has the central role in this process. D2R signaling is involved in the genotoxicity of dopamine by affecting activation and cell surface expression of DAT and hence modulating dopamine uptake. We provided evidences for receptor-mediated genotoxicity of two compounds with different mechanism of actions. The involvement of these receptors in many human complications urges more investigations to reveal whether abnormalities in the endogenous compounds-mediated signaling can play a role in the initiation of new conditions like carcinogenesis.}, subject = {Angiotensin II}, language = {en} }