3 resultados para neurologic damage

em ArchiMeD - Elektronische Publikationen der Universität Mainz - Alemanha


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Auswirkungen einer hypertonen / hyperonkotischen Therapie in Kombination mit chirurgischer Hämatomentfernung auf funktionelle und histologische Defizite nach akutem subduralem Hämatom der Ratte: Die Zeit bis zur Behandlung eines akuten subduralen Hämatoms stellt eine der wichtigsten prognosebestimmenden Faktoren für die Mortalität und Morbidität der Patienten dar. Ein unbehandeltes akutes subdurales Hämatom im Rahmen eines schweren Schädelhirntraumas geht mit einer Sterblichkeit von weit über 50% einher. Selbst bei zeitiger chirurgischer Entlastung versterben noch ca. 30% der Patienten als Folge der Hirnschädigung. Um Therapieoptionen zur Verbesserung der schlechten Prognose nach akutem subduralem Hämatom liefern zu können, wurde in dieser Studie die frühe Therapie mit hypertonen / hyperonkotischen Lösungen (HHT) sowie die Kombination mit chirurgischer Evakuation des Hämatoms untersucht. In dem genutzten Tiermodell wurde ein subdurales Hämatom über die Infusion von 400 µl autologen venösen Blutes erreicht. Je nach Gruppe erhielten die Ratten 30 Minuten nach ASDH eine HHT oder isotonische Kochsalzlösung und ggf. eine chirurgische Entfernung des Hämatoms eine Stunde nach Induktion. Die Studie war in zwei Teile getrennt. Die akute Studie welche den intraoperativen Verlauf von Blutwerten, intrakraniellem Druck zerebralem Perfusionsdruck und zerebralem Blutfluss untersuchte und die chronische Studie welche über Verhaltenstests (Neuroscore, Beamwalk, Open Field) die funktionellen und histologischen Ergebnisse im Verlauf von 12 Tage betrachtete. Im Ergebnis konnten durch eine HHT eine Reduktion der intrakraniellen Hypertension erreicht werden. Im Langzeit Verlauf schnitten alle Behandlungen besser ab als die unbehandelte Gruppe. In Bezug auf die neurologische Erholung und das histologische Defizit zeigten die mit einer HHT behandelten Tiere jedoch die besten Ergebnisse. rnEine frühe chirurgische Intervention ist eine protektive Maßnahme bezogen auf die funktionelle Defizite und den histologischen Schaden nach akutem subduralem Hämatom, aber frühe hypertone / hyperonkotische Behandlung ist in diesem Modell sogar noch effektiver. Eine frühe Behandlung mit hypertonen / hyperonkotischen Lösungen stellt somit eine vielversprechende, sichere und kausale Therapieoption zur Verbesserung der Prognose nach akutem subduralem Hämatom dar. rn

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The presence of damaged nucleobases in DNA can negatively influence transcription of genes. One of the mechanisms by which DNA damage interferes with reading of genetic information is a direct blockage of the elongating RNA polymerase complexes – an effect well described for bulky adducts induced by several chemical substances and UV-irradiation. However, other mechanisms must exist as well because many of the endogenously occurring non-bulky DNA base modifications have transcription-inhibitory properties in cells, whilstrnnot constituting a roadblock for RNA polymerases under cell free conditions. The inhibition of transcription by non-blocking DNA damage was investigated in this work by employing the reporter gene-based assays. Comparison between various types of DNA damage (UV-induced pyrimidine photoproducts, oxidative purine modifications induced by photosensitisation, defined synthetic modified bases such as 8-oxoguanine and uracil, and sequence-specific single-strand breaks) showed that distinct mechanisms of inhibition of transcription can be engaged, and that DNA repair can influence transcription of the affectedrngenes in several different ways.rnQuantitative expression analyses of reporter genes damaged either by the exposure of cells to UV or delivered into cells by transient transfection supported the earlier evidence that transcription arrest at the damage sites is the major mechanism for the inhibition of transcription by this kind of DNA lesions and that recovery of transcription requires a functional nucleotide excision repair gene Csb (ERCC6) in mouse cells. In contrast, oxidisedrnpurines generated by photosensitisation do not cause transcriptional blockage by a direct mechanism, but rather lead to transcriptional repression of the damaged gene which is associated with altered histone acetylation in the promoter region. The whole chain of events leading to transcriptional silencing in response to DNA damage remains to be uncovered. Yet, the data presented here identify repair-induced single-strand breaks – which arise from excision of damaged bases by the DNA repair glycosylases or endonucleases – as arnputative initiatory factor in this process. Such an indirect mechanism was supported by requirement of the 8-oxoguanine DNA glycosylase (OGG1) for the inhibition of transcription by synthetic 8-oxodG incorporated into a reporter gene and by the delays observed for the inhibition of transcription caused by structurally unrelated base modifications (8-oxoguanine and uracil). It is thereby hypothesized that excision of the modified bases could be a generalrnmechanism for inhibition of transcription by DNA damage which is processed by the base excision repair (BER) pathway. Further gene expression analyses of plasmids containing single-strand breaks or abasic sites in the transcribed sequences revealed strong transcription inhibitory potentials of these lesions, in agreement with the presumption that BER intermediates are largely responsible for the observed effects. Experiments with synthetic base modifications positioned within the defined DNA sequences showed thatrninhibition of transcription did not require the localisation of the lesion in the transcribed DNA strand; therefore the damage sensing mechanism has to be different from the direct encounters of transcribing RNA polymerase complexes with DNA damage.rnAltogether, this work provides new evidence that processing of various DNA basernmodifications by BER can perturb transcription of damaged genes by triggering a gene silencing mechanism. As gene expression can be influenced even by a single DNA damage event, this mechanism could have relevance for the endogenous DNA damage induced in cells under normal physiological conditions, with a possible link to gene silencing in general.

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6. Summary Despite the lack of direct evidence from large clinical trials for mutagenic and genotoxic effects of GTN therapy, the present study show s the induction of pre-mutagenic lesions, such as 8- oxo - G and O 6 - me - G by GTN t reatment as well as increased formation of DNA strand breaks. These results were obtained in an in vitro (EA.hy 926 – human endothelial cell line) and in vivo (Wistar rats and C57BL/6 mice) setting. However, GTN - induced DNA damage had no effect on the degr ee of nitrate tolerance but only on other pathological side effects such as oxidative stress, as confirmed by studies in MGMT knockout mice. Of clinical importance , this study establishes potent apoptotic properties of organic nitrates, which has been demo nstrated by the levels of the novel apoptotic marker and caspase - 3 substrate, fractin, as well as levels of cleaved caspase - 3 , the activated form of this pro - apoptotic enzyme . The p rotein analy tical data ha ve been confirmed by an independent assay for the apoptosis , Cell death detection assay (TUNEL) . First, these GTN - mediated apoptotic effects may account for the previously reported anti - cancer effects of GTN therapy (probably based on induction of apoptosis in tumor cells). Second, these GTN - mediated apop totic effects may account for the increased mortality rates observed in the group of organic nitrate - treated patients as reported by two independent meta - analysis (probably due to induction of apoptosis in highly beneficial endothelial progenitor cells as well as in cardiomyocytes during wound healing and cardiac remodeling) . Summary of the current investigations can be seen in Figure 18.