TY - THES A1 - Laqua, Caroline T1 - Association of myocardial tissue characteristics and functional outcome in biopsy-verified myocarditis assessed by cardiac magnetic resonance imaging T1 - Zusammenhänge zwischen geweblichen Eigenschaften des Myokards und funktionellem Outcome bei biopsie-verifizierter Myokarditis im Kardio-MRT N2 - The relation between LV function and cardiac MRI tissue characteristics in separate myocardial segments and their change over time has yet to be explored in myocarditis. Thus, our research aimed to investigate possible associations between global and regional myocardial T1 and T2 times and peak strain in patients with suspected myocarditis. From 2012 to 2015, 129 patients with clinically suspected myocarditis of the prospective, observational MyoRacer-Trial underwent systematic biventricular EMB at baseline and cardiac MRI at baseline and after three months as a follow-up. We divided the LV myocardium into 17 segments and estimated the segmental myocardial strain using FT. We registered T1 and T2 maps to the cine sequences and transferred the segmentations used for FT to ensure conformity of the myocardial segments. Multi-level multivariable linear mixed effects regression was applied to investigate the relation of segmental myocardial strain to relaxation times and their respective change from baseline to follow-up. We found a significant improvement in myocardial peak strain from baseline to follow-up (p < 0.001; all p-values given for likelihood ratio tests) and significant associations between higher T1 and T2 times and lower segmental myocardial peak strain (p ranging from < 0.001 to 0.049). E.g., regression coefficient (Reg. coef.) for segmental radial peak strain in short axis view (SRPS_SAX) and T1 time: -1.9, 95% CI (-2.6;-1.2) %/100 ms, p < 0.001. A decrease in T1 and T2 times from baseline to follow-up was also significantly related to a recovery of segmental peak strains (p ranging from < 0.001 to 0.050). E.g., Reg. coef. for SRPS_SAX per ΔT1: -1.8, 95% CI (-2.5;-1.0) %/100 ms, p < 0.001. Moreover, the higher the baseline T1 time, the more substantial the functional recovery from baseline to follow-up (p ranging from 0.004 to 0.042, e.g., for SRPS_SAX: Reg. coef. 1.3, 95% CI (0.4;2.1) %/100 ms, p 0.004). We did not find an effect modification by the presence of myocarditis in the EMB (p > 0.1). Our cross-sectional and longitudinal analyses provide evidence of dose-dependent correlations between T1 and T2 relaxation times and myocardial peak strain in patients with clinical presentation of myocarditis, regardless of the EMB result. Thus, assessing strain values and mapping relaxation times helps estimate the functional prognosis in patients with clinically suspected myocarditis. N2 - Die Zusammenhänge zwischen der kardialen linksventrikulären (LV) Funktion und magnetresonanztomographisch erhebbaren Parametern des Myokards sowie deren jeweiligen Entwicklungen im zeitlichen Verlauf einer Myokarditis sind bisher nicht umfassend untersucht. Daher beschäftigt sich die vorliegende Arbeit mit der Erforschung des Verhältnisses von globalen und regionalen peak strain-Werten und T1 und T2 Zeiten des LV Myokards in der Magnetresonanztomographie (MRT) bei Patienten mit Verdacht auf Myokarditis. Die MyoRacer-Studie ist eine prospektive Beobachtungsstudie, die von 2012 bis 2015 am Herzzentrum des Universitätsklinikums Leipzig durchgeführt wurde. Dabei wurden 129 Patienten mit klinischem Verdacht auf Myokarditis mittels biventrikulärer Myokardbiopsie sowie kardialer MRT untersucht. Drei Monate nach der Erstuntersuchung (EU) erfolgte eine MRT-Folgeuntersuchung (FU). Für unsere Analysen unterteilten wir das LV Myokard standardmäßig in 17 Segmente, um mithilfe der Technik des feature trackings den segmentalen peak strain zu evaluieren. Weiterhin registrierten wir T1 und T2 maps gegen cine-Sequenzen der MRT und übertrugen die Segmentierungen aus den cine-Sequenzen zwecks Übereinstimmung in die MRT maps. Anschließend analysierten wir die Zusammenhänge zwischen segmentalem strain und T1 und T2 Zeiten und deren jeweiligen Veränderungen im zeitlichen Verlauf mithilfe eines hierarchischen, multivariablen, gemischten linearen Regressionsmodells. Unsere Ergebnisse zeigen eine signifikante Verbesserung der peak strain-Werte von der EU zur FU (p < 0.001; alle p-Werte für likelihood ratio tests angegeben) sowie eine signifikante Assoziation von erhöhten T1 und T2 Zeiten mit verminderten segmentalen peak strain-Werten (p zwischen < 0.001 und 0.049). Weiterhin war ein Abfall der T1 und T2 Zeiten von der EU zur FU signifikant mit einer Erholung der segmentalen peak strain-Werte verknüpft (p zwischen < 0.001 und 0.050). Je höher die T1 Zeiten bei der EU ausfielen, desto stärker erholte bzw. verbesserte sich der peak strain von der EU zur FU (p zwischen 0.004 und 0.042). Eine Effektmodifikation durch den bioptischen Nachweis einer Myokarditis war nicht zu beobachten (p > 0.1). Unsere Quer- und Längsschnittanalysen belegen dosisabhängige Zusammenhänge zwischen T1 und T2 Zeiten und myokardialen peak strain-Werten bei Patienten mit dem klinischen Bild einer Myokarditis, unabhängig vom Ergebnis der Myokardbiopsie. Daher ist die Bestimmung von T1 und T2 Zeiten und myokardialem strain mittels kardialer MRT zur Abschätzung der funktionellen Prognose bei Patienten mit klinischem Verdacht auf Myokarditis hilfreich. KW - Myokarditis KW - Kernspintomografie KW - T1-Zeit KW - T2-Zeit KW - strain KW - t1 time KW - t2 time KW - myocarditis KW - MRI Y1 - 2024 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-363903 ER - TY - THES A1 - Panjwani, Priyadarshini T1 - Induction, Imaging, Histo-morphological and Molecular Characterization of Myocarditis in the Rat to Explore Novel Diagnostic Strategies for the Detection of Myocardial Inflammation T1 - Induktion, Bildgebung und, Histo-morphologische sowie Molekulare Charakterisierung der Myokarditis im Rattenmodell zur Entwicklung neuer diagnostischer Strategien zum Nachweis von Herzmuskelentzündungen N2 - Fulminant myocarditis is rare but a potentially life-threatening disease. Acute or mild myocarditis following acute ischemia is generally associated with a profound activation of the host’s immune system. On one hand this is mandatory to protect the host’s heart by fighting the invading agents (i.e., bacteria, viruses or other microbial agents) and/or to induce healing and repair processes in the damaged myocardium. On other hand, uncontrolled activation of the immune system may result in the generation of auto-reactive (not always beneficial) immune cells. Myocarditis or inflammatory cardiomyopathy is characterized by focal or diffuse infiltrates, myocyte necrosis and/or apoptosis and subsequent fibrotic replacement of the heart muscle. In humans, about 30% of the myocarditis-patients develop dilated cardiomyopathy. As the clinical picture of myocarditis is multifaceted, it is difficult to diagnose the disease. Therefore, the main goal of the present work was to test and further develop novel non-invasive methods for the detection of myocardial inflammation by employing both contrast enhanced MRI techniques as well as novel nuclear tracers that are suitable for in vivo PET/ SPECT imaging. As a part of this thesis, a pre-clinical animal model was successfully established by immunizing female Lewis rats with whole-porcine cardiac myosin (CM). Induction of Experimental Autoimmune Myocarditis (EAM) is considered successful when anti-myosin antibody titers are increased more than 100-fold over control animals and pericardial effusion develops. In addition, cardiac tissues from EAM-rats versus controls were analyzed for the expression of various pro-inflammatory and fibrosis markers. To further exploit non-invasive MRI techniques for the detection of myocarditis, our EAM-rats were injected either with (1) ultra-small Paramagnetic iron oxide particles (USPIO’s; Feraheme®), allowing for in vivo imaging , (2) micron sized paramagnetic iron oxide particles (MPIO) for ex vivo inflammatory cell-tracking by cMRI, or (3) with different radioactive nuclear tracers (67gallium citrate, 68gallium-labeled somatostatin analogue, and 68gallium-labeled cyclic RGD-peptide) which in the present work have been employed for autoradiographic imaging, but in principle are also suitable for in vivo nuclear imaging (PET/SPECT). In order to compare imaging results with histology, consecutive heart sections were stained with hematoxylin & eosin (HE, for cell infiltrates) and Masson Goldner trichrome (MGT, for fibrosis); in addition, immuno-stainings were performed with anti-CD68 (macrophages), anti-SSRT2A (somatostatin receptor type 2A), anti-CD61 (β3-integrins) and anti-CD31 (platelet endothelial cell adhesion molecule 1). Sera from immunized rats strongly reacted with cardiac myosin. In immunized rats, echocardiography and subsequent MRI revealed huge amounts of pericardial effusion (days 18-21). Analysis of the kinetics of myocardial infiltrates revealed maximal macrophage invasion between days 14 and 28. Disappearance of macrophages resulted in replacement-fibrosis in formerly cell-infiltrated myocardial areas. This finding was confirmed by the time-dependent differential expression of corresponding cytokines in the myocardium. Immunized animals reacted either with an early or a late pattern of post-inflammation fibrosis. Areas with massive cellular infiltrates were easily detectible in autoradiograms showing a high focal uptake of 67gallium-citrate and 68gallium labeled somatostatin analogues (68Ga DOTA-TATE). Myocardium with a loss of cardiomyocytes presented a high uptake of 68gallium labeled cyclic RGD-peptide (68Ga NOTA-RGD). MRI cell tracking experiments with Feraheme® as the contrast-agent were inconclusive; however, strikingly better results were obtained when MPIOs were used as a contrast-agent: histological findings correlated well with in vivo and ex vivo MPIO-enhanced MRI images. Imaging of myocardial inflammatory processes including the kinetics of macrophage invasion after microbial or ischemic damage is still a major challenge in, both animal models and in human patients. By applying a broad panel of biochemical, histological, molecular and imaging methods, we show here that different patterns of reactivity may occur upon induction of myocarditis using one and the same rat strain. In particular, immunized Lewis rats may react either with an early or a late pattern of macrophage invasion and subsequent post-inflammation fibrosis. Imaging results achieved in the acute inflammatory phase of the myocarditis with MPIOs, 67gallium citrate and 68gallium linked to somatostatin will stimulate further development of contrast agents and radioactive-nuclear tracers for the non-invasive detection of acute myocarditis and in the near future perhaps even in human patients. N2 - Eine fulminant verlaufende Myokarditis ist eine seltene aber potentiell lebensbedrohliche Erkrankung. Akute oder chronische Myokarditis gehen generell mit einer starken Aktivierung des Immunsystems der Betroffenen einher. Zum einen ist dies notwendig, um das Herz durch Bekämpfung der Eindringlinge (z.B. Bakterien, Viren oder andere mikrobielle Erreger) zu schützen und/oder Heilungs- und Reparaturprozesse im geschädigten Myokard einzuleiten. Zum anderen kann eine unkontrollierte Aktivierung des Immunsystems aber auch zur Entstehung von (nicht immer vorteilhaften) auto-reaktiven Immunzellen führen. Eine Myokarditis oder entzündliche Kardiomyopathie ist charakterisiert durch fokale oder diffuse Infiltrate, Nekrose und/oder Apoptose der Myozyten und einen fortschreitenden fibrotischen Ersatz des Herzmuskelgewebes. Beim Menschen entwickeln etwa 30% der Myokarditis-Patienten eine dilatative Kardiomyopathie. Da das klinische Bild der Myokarditis sehr vielfältig sein kann, ist die Diagnosestellung dieser Erkrankung schwierig. Deshalb war es das Kernziel dieser Arbeit, nicht-invasive Methoden zum Nachweis myokardialer Entzündungen zu testen, und dabei neue Bildgebungsverfahren unter Einsatz von neuen MRT-Kontrastmitteln sowie neuen nuklearen Tracern, die auch für PET/SPECT geeignet wären, zu entwickeln. Diese Verfahren wurden von uns zunächst an einem human-analogen Ratten-Modell evaluiert, mit dem Ziel später evtl. auch einmal beim Menschen eingesetzt werden zu können. Für unser präklinisches Tiermodell wurden weibliche Lewis-Ratten mit kardialem Myosin aus Schweinen immunisiert. Die erfolgreiche Induktion einer „Experimentellen Autoimmunen Myokarditis (EAM)“ wurde durch einen signifikanten Anstieg der Anti-Myosin Antikörpertiter in immunisierten Tieren und die Ausbildung eines Perikardergusses (Echokardiographie) bestätigt. Zusätzlich wurde aus apikalem kardialem Gewebe RNA isoliert und die Expression verschiedener pro-inflammatorischer und pro-fibrotischer molekularer Marker untersucht. Um die Bildgebung mittels kontrast-verstärktem cMRT zu optimieren, wurden den Tieren entweder kleine Eisenoxid-Nanopartikel (Ultra small paramagnetic iron oxide particles, USPIO; Feraheme®), oder sog. ,,Micronsized paramagnetic iron oxide particles (MPIO)‘‘ für das Tracking inflammatorischer Zellen injiziert. Im daraufolgenden Schritt wurden radioaktive nukleare Tracer (67Gallium-Citrat, 68Gallium-markierte Somatostatin-Analoga und 68Gallium-markierte zyklische RGD-Peptide) injiziert, um dann Autoradiogramme von Herzschnitten zu gewinnen. KW - Ratte KW - inflammation KW - Myokarditis KW - Kernspintomografie KW - myocarditis KW - MRI KW - cardiovascular KW - Entzündung Y1 - 2015 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-122469 ER - TY - JOUR A1 - Werner, Rudolf A1 - Wakabayashi, Hiroshi A1 - Bauer, Jochen A1 - Schütz, Claudia A1 - Zechmeister, Christina A1 - Hayakawa, Nobuyuki A1 - Javadi, Mehrbod S. A1 - Lapa, Constantin A1 - Jahns, Roland A1 - Ergün, Süleyman A1 - Jahns, Valerie A1 - Higuchi, Takahiro T1 - Longitudinal \(^{18}\)F-FDG PET imaging in a Rat Model of Autoimmune Myocarditis JF - European Heart Journal Cardiovascular Imaging N2 - Aims: Although mortality rate is very high, diagnosis of acute myocarditis remains challenging with conventional tests. We aimed to elucidate the potential role of longitudinal 2-Deoxy-2-\(^{18}\)F-fluoro-D-glucose (\(^{18}\)F-FDG) positron emission tomography (PET) inflammation monitoring in a rat model of experimental autoimmune myocarditis. Methods and results: Autoimmune myocarditis was induced in Lewis rats by immunizing with porcine cardiac myosin emulsified in complete Freund’s adjuvant. Time course of disease was assessed by longitudinal \(^{18}\)F-FDG PET imaging. A correlative analysis between in- and ex vivo \(^{18}\)F-FDG signalling and macrophage infiltration using CD68 staining was conducted. Finally, immunohistochemistry analysis of the cell-adhesion markers CD34 and CD44 was performed at different disease stages determined by longitudinal \(^{18}\)F-FDG PET imaging. After immunization, myocarditis rats revealed a temporal increase in 18F-FDG uptake (peaked at week 3), which was followed by a rapid decline thereafter. Localization of CD68 positive cells was well correlated with in vivo \(^{18}\)F-FDG PET signalling (R\(^2\) = 0.92) as well as with ex vivo 18F-FDG autoradiography (R\(^2\) = 0.9, P < 0.001, respectively). CD44 positivity was primarily observed at tissue samples obtained at acute phase (i.e. at peak 18F-FDG uptake), while CD34-positive staining areas were predominantly identified in samples harvested at both sub-acute and chronic phases (i.e. at \(^{18}\)F-FDG decrease). Conclusion: \(^{18}\)F-FDG PET imaging can provide non-invasive serial monitoring of cardiac inflammation in a rat model of acute myocarditis. KW - positron emission tomography KW - Myokarditis KW - myocarditis KW - inflammation KW - 18F-FDG KW - PET KW - personalized treatment Y1 - 2018 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-165601 SN - 2047-2404 ER - TY - CHAP A1 - Werner, Rudolf A1 - Wakabayashi, Hiroshi A1 - Jahns, Roland A1 - Ergün, Süleyman A1 - Jahns, Valerie A1 - Higuchi, Takahiro T1 - PET-Guided Histological Characterization of Myocardial Infiltrating Cells in a Rat Model of Myocarditis T2 - European Heart Journal - Cardiovascular Imaging N2 - No abstract available. KW - Myokarditis KW - positron emission tomography KW - myocarditis KW - PET KW - 18F-FDG Y1 - 2017 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-161127 SN - 2047-2404 N1 - This is a pre-copyedited, author-produced version of an article accepted for publication in European Heart Journal Cardiovascular Imaging following peer review. The version of record . Eur Heart J Cardiovasc Imaging. ISSN: 2047-2404. Supplement, vol. 18, i1-i3, May 2017 is available online at: 10.1093/ehjci/jex071. VL - 18 IS - Supplement PB - Oxford University Press ER -