TY - THES A1 - Krampert, Laura T1 - Dynamics of cardiac neutrophil diversity in murine myocardial infarction T1 - Dynamik der Diversität kardialer neutrophiler Granulozyten im Mausmodell Herzinfarkt N2 - After myocardial infarction, an inflammatory response is induced characterized by a sterile inflammation, followed by a reparative phase in order to induce cardiac healing. Neutrophils are the first immune cells that enter the ischemic tissue. Neutrophils have various functions in the ischemic heart, such as phagocytosis, production of reactive oxygen species or release of granule components. These functions can not only directly damage cardiac tissue, but are also necessary for initiating reparative effects in post-ischemic healing, indicating a dual role of neutrophils in cardiac healing after infarction. In recent years, evidence has been growing that neutrophils show phenotypic and functional differences in distinct homeostatic and pathogenic settings. Preliminary data of my working group using single-cell RNA-sequencing revealed the time- dependent heterogeneity of neutrophils, with different populations showing distinct gene expression profiles in ischemic hearts of mice, including the time-dependent appearance of a SiglecFhigh neutrophil population. To better understand the dynamics of neutrophil heterogeneity in the ischemic heart, my work aimed to validate previous findings at the protein level, as well as to investigate whether the distinct neutrophil populations show functional differences. Furthermore, in vivo depletion experiments were performed in order to modulate circulating neutrophil levels. Hearts, blood, bone marrow and spleens were processed and analyzed from mice after 1 day and 3 days after the onset of cardiac ischemia and analyzed using flow cytometry. Results showed that the majority of cardiac neutrophils isolated at day 3 after myocardial infarction were SiglecFhigh, whereas nearly no SiglecFhigh neutrophils could be isolated from ischemic hearts at day 1 after myocardial infarction. No SiglecFhigh neutrophils could be found in the blood, spleen and bone marrow either after 1 day or 3 days after myocardial infarction, indicating that the SiglecFhigh state of neutrophils is unique to the ischemic cardiac tissue. When I compared SiglecFhigh and SiglecFlow neutrophils regarding their phagocytosis activity and ROS production, SiglecFhigh neutrophils showed a higher phagocytosis ability than their SiglecFlow counterparts, as well as higher ROS production capacity. In vivo depletion experiments could not achieve successful and efficient depletion of cardiac neutrophils either 1 day or 3 days after myocardial infarction, but led to a shift of a higher percentage of SiglecFhigh expressing neutrophils in the depletion group. Bone marrow neutrophil levels only showed partial depletion at day 3 after MI. Regarding blood neutrophils, depletion efficiently reduced circulating neutrophils at both time points, 1 and 3 days after MI. To summarize, this work showed the time-dependent presence of different neutrophil states in the ischemic heart. The main population of neutrophils isolated 3 days after MI showed a high expression of SiglecF, a unique state that could not be detected at different time points or other organs. These SiglecFhigh neutrophils showed functional differences regarding their phagocytosis ability and ROS production. Further investigation is needed to reveal what role these SiglecFhigh neutrophils could play within the ischemic heart. To better target neutrophil depletion in vivo, more efficient or different anti-neutrophil strategies are needed. N2 - Nach Myokardinfarkt kommt es zu einer Entzündungsantwort, die durch eine sterile Entzündung und nachfolgende reparative Phase gekennzeichnet ist, um eine kardiale Heilung zu initiieren. Neutrophile Granulozyten sind die ersten Immunzellen, die das ischämische Gewebe infiltrieren. Neutrophile Granulozyten haben verschiedene Funktionen im ischämischen Herz, wie beispielsweise Phagozytose, Produktion reaktiver Oxigenspezies oder Entleerung von Granulae. Diese Funktionen können nicht nur das kardiale Gewebe direkt schädigen, sondern sind auch notwendig, um die reparative Phase zu initiieren, was auf eine duale Rolle der neutrophilen Granulozyten hinsichtlich kardialer Heilung hinweist. Evidenz der letzten Jahre zeigt, dass neutrophile Granulzyten phänotypische und funktionelle Unterschiede zeigen, sowohl in Homöostase als auch in verschiedenen pathologischen Umgebungen. Vorangehende Ergebnisse meiner Arbeitsgruppe von Einzelzellsequenzierungen zeigten die zeitabhängige Heterogenität neutrophiler Granulozyten, die in verschiedenen Populationen und mit unterschiedlichen Expressions-Mustern in ischämischen Mäuseherzen auftauchten. Unter anderem zeigte sich das zeitabhängige Auftauchen einer SiglecFhigh NeutrophilenPopulation. Um die Dynamik der Neutrophilen-Heterogenität im ischämischen Herz besser zu verstehen, war es das Ziel meiner Arbeit, vorangehende Ergebnisse auf Proteinbasis zu bestätigen, und die verschiedenen Neutrophilen-Populationen hinsichtlich möglicher funktioneller Unterschiede zu untersuchen. Zusätzlich wurden in-vivo Depletionsversuche durchgeführt, um das Vorkommen zirkulierender neutrophiler Granulozyten zu modulieren und mögliche Änderungen hinsichtlich des Vorkommens neutrophiler Granulozyten im Herzen zu untersuchen. Herz, Blut, Knochenmark und Milz von Mäusen, die einen 1 oder 3 Tage alten Myokardinfarkt hatten, wurden prozessiert und mittels Durchflusszytometrie analysiert. Es zeigte sich, dass der überwiegende Anteil kardialer neutrophiler Granulozyten die an Tag 3 nach Myokardinfarkt isoliert wurden SiglecFhigh waren, wohingegen quasi keine SiglecFhigh neutrophile Granulozyten an Tag 1 nach Myokardinfarkt gefunden werden konnten. Es konnten keine SiglecFhigh neutrophile Granulozyten in Blut, Knochenmark oder Milz gefunden werden, weder 1 noch 3 Tage nach Myokardinfarkt, was darauf hinweist, dass der SiglecFhigh Status neutrophiler Granulozyten spezifisch für ischämisches Herzgewebe ist. Im Vergleich von SiglecFhigh und SiglecFlow neutrophilen Granulozyten hinsichtlich der Phagozytose und Produktion reaktiver Oxigenspezies, zeigten SiglecFhigh neutrophile Granulozyten sowohl eine höhere Phagozytose als auch eine höhere Produktion reaktiver Oxigenspezies. In vivo Depletionsversuche konnten keine komplette und effiziente Depletion kardialer neutrophiler Granulozyten sowohl an Tag 1 als auch an Tag 3 nach Myokardinfarkt erzielen, führten jedoch zu einem höheren Prozentsatz an SiglecFhigh neutrophilen Granulozyten in der Depletionsgruppe. Neutrophile Granulozyten im Knochenmark konnten nur an Tag 3 teilweise depletiert werden. Mit Blick auf neutrophile Granulozyten im Blut führte die Depletion zu einer effizienten Reduktion zirkulierender neutrophiler Granulozyten sowohl an Tag 1 als auch an Tag 3 nach Myokardinfarkt. Zusammenfassend zeigt diese Arbeit die zeitabhängige Präsenz verschiedener neutrophiler Granulozyten im ischämischen Herzen. Der größte Anteil neutrophiler Granulozyten, die an Tag 3 isoliert wurden, zeigten eine hohe Expression von SiglecF, einem spezifischen und einzigartigem Phänotypus, der weder zu anderen Zeitpunkten noch in anderen Organen gefunden wurde. Diese SiglecFhigh neutrophilen Granulozyten zeigten funktionelle Unterschiede hinsichtlich ihrer Phagozytose und Produktion reaktiver Oxigenspezies. Weitere Untersuchungen sind notwendig um aufzuzeigen, welche Rolle diese SiglecFhigh neutrophilen Granulozyten im ischämischen Herzen spielen könnten.Um eine effizientere Depletion neutrophiler Granulozyten in vivo zu erzielen, sind andere oder effizientere Anti-Neutrophilen Strategien notwendig. KW - Neutrophiler Granulozyt KW - neutrophils KW - Entzündung KW - Herzinfarkt KW - inflammation KW - myocardial infarction Y1 - 2024 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-349576 ER - TY - JOUR A1 - Traub, Jan A1 - Frey, Anna A1 - Störk, Stefan T1 - Chronic neuroinflammation and cognitive decline in patients with cardiac disease: evidence, relevance, and therapeutic implications JF - Life N2 - Acute and chronic cardiac disorders predispose to alterations in cognitive performance, ranging from mild cognitive impairment to overt dementia. Although this association is well-established, the factors inducing and accelerating cognitive decline beyond ageing and the intricate causal pathways and multilateral interdependencies involved remain poorly understood. Dysregulated and persistent inflammatory processes have been implicated as potentially causal mediators of the adverse consequences on brain function in patients with cardiac disease. Recent advances in positron emission tomography disclosed an enhanced level of neuroinflammation of cortical and subcortical brain regions as an important correlate of altered cognition in these patients. In preclinical and clinical investigations, the thereby involved domains and cell types of the brain are gradually better characterized. Microglia, resident myeloid cells of the central nervous system, appear to be of particular importance, as they are extremely sensitive to even subtle pathological alterations affecting their complex interplay with neighboring astrocytes, oligodendrocytes, infiltrating myeloid cells, and lymphocytes. Here, we review the current evidence linking cognitive impairment and chronic neuroinflammation in patients with various selected cardiac disorders including the aspect of chronic neuroinflammation as a potentially druggable target. KW - neuroinflammation KW - cognitive impairment KW - dementia KW - myocardial infarction KW - heart failure KW - hypertension KW - coronary artery disease KW - atrial fibrillation KW - cardiac arrest KW - aortic valve stenosis Y1 - 2023 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-304869 SN - 2075-1729 VL - 13 IS - 2 ER - TY - JOUR A1 - Traub, Jan A1 - Grondey, Katja A1 - Gassenmaier, Tobias A1 - Schmitt, Dominik A1 - Fette, Georg A1 - Frantz, Stefan A1 - Boivin-Jahns, Valérie A1 - Jahns, Roland A1 - Störk, Stefan A1 - Stoll, Guido A1 - Reiter, Theresa A1 - Hofmann, Ulrich A1 - Weber, Martin S. A1 - Frey, Anna T1 - Sustained increase in serum glial fibrillary acidic protein after first ST-elevation myocardial infarction JF - International Journal of Molecular Sciences N2 - Acute ischemic cardiac injury predisposes one to cognitive impairment, dementia, and depression. Pathophysiologically, recent positron emission tomography data suggest astroglial activation after experimental myocardial infarction (MI). We analyzed peripheral surrogate markers of glial (and neuronal) damage serially within 12 months after the first ST-elevation MI (STEMI). Serum levels of glial fibrillary acidic protein (GFAP) and neurofilament light chain (NfL) were quantified using ultra-sensitive molecular immunoassays. Sufficient biomaterial was available from 45 STEMI patients (aged 28 to 78 years, median 56 years, 11% female). The median (quartiles) of GFAP was 63.8 (47.0, 89.9) pg/mL and of NfL 10.6 (7.2, 14.8) pg/mL at study entry 0–4 days after STEMI. GFAP after STEMI increased in the first 3 months, with a median change of +7.8 (0.4, 19.4) pg/mL (p = 0.007). It remained elevated without further relevant increases after 6 months (+11.7 (0.6, 23.5) pg/mL; p = 0.015), and 12 months (+10.3 (1.5, 22.7) pg/mL; p = 0.010) compared to the baseline. Larger relative infarction size was associated with a higher increase in GFAP (ρ = 0.41; p = 0.009). In contrast, NfL remained unaltered in the course of one year. Our findings support the idea of central nervous system involvement after MI, with GFAP as a potential peripheral biomarker of chronic glial damage as one pathophysiologic pathway. KW - myocardial infarction KW - STEMI KW - glial fibrillary acidic protein KW - GFAP KW - neurofilament light chain KW - NfL KW - glial damage KW - cardiac magnetic resonance imaging KW - MRI KW - infarction size Y1 - 2022 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-288261 SN - 1422-0067 VL - 23 IS - 18 ER - TY - JOUR A1 - Weiß, Emil A1 - Ramos, Gustavo Campos A1 - Delgobo, Murilo T1 - Myocardial-Treg crosstalk: How to tame a wolf JF - Frontiers in Immunology N2 - The immune system plays a vital role in maintaining tissue integrity and organismal homeostasis. The sudden stress caused by myocardial infarction (MI) poses a significant challenge for the immune system: it must quickly substitute dead myocardial with fibrotic tissue while controlling overt inflammatory responses. In this review, we will discuss the central role of myocardial regulatory T-cells (Tregs) in orchestrating tissue repair processes and controlling local inflammation in the context of MI. We herein compile recent advances enabled by the use of transgenic mouse models with defined cardiac antigen specificity, explore whole-heart imaging techniques, outline clinical studies and summarize deep-phenotyping conducted by independent labs using single-cell transcriptomics and T-cell repertoire analysis. Furthermore, we point to multiple mechanisms and cell types targeted by Tregs in the infarcted heart, ranging from pro-fibrotic responses in mesenchymal cells to local immune modulation in myeloid and lymphoid lineages. We also discuss how both cardiac-specific and polyclonal Tregs participate in MI repair. In addition, we consider intriguing novel evidence on how the myocardial milieu takes control of potentially auto-aggressive local immune reactions by shaping myosin-specific T-cell development towards a regulatory phenotype. Finally, we examine the potential use of Treg manipulating drugs in the clinic after MI. KW - Tregs (regulatory T cells) KW - Foxp3 KW - myocardial infarction KW - heart KW - fibrosis KW - T-cells Y1 - 2022 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-275591 SN - 1664-3224 VL - 13 ER - TY - THES A1 - Chen, Mengjia T1 - Right Ventricular Dysfunction contributes to Left Ventricular Thrombus Formation in Patients post Anterior Myocardial Infarction T1 - Rechtsventrikuläre Dysfunktion trägt zur linksventrikulären Thrombusbildung bei Patienten nach dem akuten Vorderwandinfarkt bei N2 - Our current data demonstrate that besides the known risk factors, including apical aneurysm, reduced left ventricular longitudinal systolic function (MAPSE) and advanced diastolic dysfunction, Right ventricular dysfunction as determined by reduced tricuspid annular plane systolic excursion (TAPSE) or right ventricular fractional area change (RV_FAC) is independently associated with left ventricular thrombus formation in acute anterior myocardial infarction patients, especially in the setting of anterior myocardial infarction without the formation of an apical aneurysm. This study suggests that besides left ventricular abnormalities, right ventricular dysfunction likewise contributes LVT formation in patients with acute anterior myocardial infarction. N2 - Unsere aktuellen Daten zeigen, dass neben den bekannten Risikofaktoren, einschließlich des apikalen Aneurysmas, der verminderten linksventrikulären longitudinalen systolischen Funktion (MAPSE) und der fortgeschrittenen diastolischen Dysfunktion, die durch reduzierte TAPSE oder RV_FAC bestimmte rechtsventrikuläre Dysfunktion unabhängig mit der Thrombusbildung in linkem Ventrikel bei Patienten nach dem akuten Vorderwandinfarkt, insbesondere bei denen ohne apikales Aneurysma assoziert ist. Diese Studie legt nahe, dass neben linksventrikulärer Dysfunktion die rechtsventrikuläre Dysfunktion ebenfalls zur linksventrikulären Thombusbildung bei Patienten mit akutem anteriorem Myokardinfarkt beiträgt. KW - Thrombus KW - Workshop Neue Aspekte zur Linksventrikulären Dysfunktion (1992 : Erbach, Rheingau) KW - Herzinfarkt KW - Vorderwandinfarkt KW - left ventricular thrombus KW - linksventrikulärer Thrombus KW - myocardial infarction KW - Myokardinfarkt KW - Rechtsventrikuläre Thrombusbildung KW - Right ventricular dysfunction Y1 - 2022 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-204149 ER - TY - JOUR A1 - Chen, Menjia A1 - Liu, Dan A1 - Weidemann, Frank A1 - Lengenfelder, Björn Daniel A1 - Ertl, Georg A1 - Hu, Kai A1 - Frantz, Stefan A1 - Nordbeck, Peter T1 - Echocardiographic risk factors of left ventricular thrombus in patients with acute anterior myocardial infarction JF - ESC Heart Failure N2 - Aims This study aimed to identify echocardiographic determinants of left ventricular thrombus (LVT) formation after acute anterior myocardial infarction (MI). Methods and results This case–control study comprised 55 acute anterior MI patients with LVT as cases and 55 acute anterior MI patients without LVT as controls, who were selected from a cohort of consecutive patients with ischemic heart failure in our hospital. The cases and controls were matched for age, sex, and left ventricular ejection fraction. LVT was detected by routine/contrast echocardiography or cardiac magnetic resonance imaging during the first 3 months following MI. Formation of apical aneurysm after MI was independently associated with LVT formation [72.0% vs. 43.5%, odds ratio (OR) = 5.06, 95% confidence interval (CI) 1.65–15.48, P = 0.005]. Echocardiographic risk factors associated with LVT formation included reduced mitral annular plane systolic excursion (<7 mm, OR = 4.69, 95% CI 1.84–11.95, P = 0.001), moderate–severe diastolic dysfunction (OR = 2.71, 95% CI 1.11–6.57, P = 0.028), and right ventricular (RV) dysfunction [reduced tricuspid annular plane systolic excursion < 17 mm (OR = 5.48, 95% CI 2.12–14.13, P < 0.001), reduced RV fractional area change < 0.35 (OR = 3.32, 95% CI 1.20–9.18, P = 0.021), and enlarged RV mid diameter (per 5 mm increase OR = 1.62, 95% CI 1.12–2.34, P = 0.010)]. Reduced tricuspid annular plane systolic excursion (<17 mm) significantly associated with increased risk of LVT in anterior MI patients (OR = 3.84, 95% CI 1.37–10.75, P = 0.010), especially in those patients without apical aneurysm (OR = 5.12, 95% CI 1.45–18.08, P = 0.011), independent of body mass index, hypertension, anaemia, mitral annular plane systolic excursion, and moderate–severe diastolic dysfunction. Conclusions Right ventricular dysfunction as determined by reduced TAPSE or RV fractional area change is independently associated with LVT formation in acute anterior MI patients, especially in the setting of MI patients without the formation of an apical aneurysm. This study suggests that besides assessment of left ventricular abnormalities, assessment of concomitant RV dysfunction is of importance on risk stratification of LVT formation in patients with acute anterior MI. KW - myocardial infarction KW - aneurysm KW - left ventricular thrombusv KW - right ventricular dysfunction KW - echocardiography KW - cardiovascular magnetic resonance Y1 - 2021 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-261067 VL - 8 IS - 6 ER - TY - JOUR A1 - Beyhoff, Niklas A1 - Lohr, David A1 - Thiele, Arne A1 - Foryst-Ludwig, Anna A1 - Klopfleisch, Robert A1 - Schreiber, Laura M. A1 - Kintscher, Ulrich T1 - Myocardial Infarction After High-Dose Catecholamine Application—A Case Report From an Experimental Imaging Study JF - Frontiers in Cardiovascular Medicine N2 - Although heart failure following myocardial infarction (MI) represents a major health burden, underlying microstructural and functional changes remain incompletely understood. Here, we report on a case of unexpected MI after treatment with the catecholamine isoproterenol in an experimental imaging study in mice using different state-of-the-art imaging modalities. The decline in cardiac function was documented by ultrahigh-frequency echocardiography and speckle-tracking analyses. Myocardial microstructure was studied ex vivo at a spatial resolution of 100 × 100 × 100 μm\(^{3}\) using diffusion tensor magnetic resonance imaging (DT-MRI) and histopathologic analyses. Two weeks after ISO treatment, the animal showed an apical aneurysm accompanied by reduced radial strain in corresponding segments and impaired global systolic function. DT-MRI revealed a loss of contractile fiber tracts together with a disarray of remaining fibers as corresponding microstructural correlates. This preclinical case report provides valuable insights into pathophysiology and morphologic–functional relations of heart failure following MI using emerging imaging technologies. KW - myocardial infarction KW - catecholamines KW - speckle tracking KW - diffusion tensor imaging KW - magnetic resonance imaging KW - case report KW - heart failure KW - echocardiography Y1 - 2020 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-217959 VL - 7 ER - TY - JOUR A1 - Schlecht, Anja A1 - Vallon, Mario A1 - Wagner, Nicole A1 - Ergün, Süleyman A1 - Braunger, Barbara M. T1 - TGFβ-Neurotrophin Interactions in Heart, Retina, and Brain JF - Biomolecules N2 - Ischemic insults to the heart and brain, i.e., myocardial and cerebral infarction, respectively, are amongst the leading causes of death worldwide. While there are therapeutic options to allow reperfusion of ischemic myocardial and brain tissue by reopening obstructed vessels, mitigating primary tissue damage, post-infarction inflammation and tissue remodeling can lead to secondary tissue damage. Similarly, ischemia in retinal tissue is the driving force in the progression of neovascular eye diseases such as diabetic retinopathy (DR) and age-related macular degeneration (AMD), which eventually lead to functional blindness, if left untreated. Intriguingly, the easily observable retinal blood vessels can be used as a window to the heart and brain to allow judgement of microvascular damages in diseases such as diabetes or hypertension. The complex neuronal and endocrine interactions between heart, retina and brain have also been appreciated in myocardial infarction, ischemic stroke, and retinal diseases. To describe the intimate relationship between the individual tissues, we use the terms heart-brain and brain-retina axis in this review and focus on the role of transforming growth factor β (TGFβ) and neurotrophins in regulation of these axes under physiologic and pathologic conditions. Moreover, we particularly discuss their roles in inflammation and repair following ischemic/neovascular insults. As there is evidence that TGFβ signaling has the potential to regulate expression of neurotrophins, it is tempting to speculate, and is discussed here, that cross-talk between TGFβ and neurotrophin signaling protects cells from harmful and/or damaging events in the heart, retina, and brain. KW - heart-brain axis KW - brain-retina axis KW - neurotrophins KW - TGFβ signaling KW - myocardial infarction KW - diabetic retinopathy KW - age-related macular degeneration KW - ischemic stroke Y1 - 2021 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-246159 SN - 2218-273X VL - 11 IS - 9 ER - TY - JOUR A1 - Popp, Sandy A1 - Schmitt-Böhrer, Angelika A1 - Langer, Simon A1 - Hofmann, Ulrich A1 - Hommers, Leif A1 - Schuh, Kai A1 - Frantz, Stefan A1 - Lesch, Klaus-Peter A1 - Frey, Anna T1 - 5-HTT Deficiency in Male Mice Affects Healing and Behavior after Myocardial Infarction JF - Journal of Clinical Medicine N2 - Anxiety disorders and depression are common comorbidities in cardiac patients. Mice lacking the serotonin transporter (5-HTT) exhibit increased anxiety-like behavior. However, the role of 5-HTT deficiency on cardiac aging, and on healing and remodeling processes after myocardial infarction (MI), remains unclear. Cardiological evaluation of experimentally naïve male mice revealed a mild cardiac dysfunction in ≥4-month-old 5-HTT knockout (−/−) animals. Following induction of chronic cardiac dysfunction (CCD) by MI vs. sham operation 5-HTT−/− mice with infarct sizes >30% experienced 100% mortality, while 50% of 5-HTT+/− and 37% of 5-HTT+/+ animals with large MI survived the 8-week observation period. Surviving (sham and MI < 30%) 5-HTT−/− mutants displayed reduced exploratory activity and increased anxiety-like behavior in different approach-avoidance tasks. However, CCD failed to provoke a depressive-like behavioral response in either 5-Htt genotype. Mechanistic analyses were performed on mice 3 days post-MI. Electrocardiography, histology and FACS of inflammatory cells revealed no abnormalities. However, gene expression of inflammation-related cytokines (TGF-β, TNF-α, IL-6) and MMP-2, a protein involved in the breakdown of extracellular matrix, was significantly increased in 5-HTT−/− mice after MI. This study shows that 5-HTT deficiency leads to age-dependent cardiac dysfunction and disrupted early healing after MI probably due to alterations of inflammatory processes in mice. KW - chronic heart failure KW - myocardial infarction KW - serotonin transporter deficient mice KW - anxiety KW - depression KW - behavior KW - inflammation Y1 - 2021 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-242739 SN - 2077-0383 VL - 10 IS - 14 ER - TY - JOUR A1 - Howangyin, Kiave-Yune A1 - Zlatanova, Ivana A1 - Pinto, Cristina A1 - Ngkelo, Anta A1 - Cochain, Clément A1 - Rouanet, Marie A1 - Vilar, José A1 - Lemitre, Mathilde A1 - Stockmann, Christian A1 - Fleischmann, Bernd K. A1 - Mallat, Ziad A1 - Silvestre, Jean-Sébastien T1 - Myeloid-epithelial-reproductive receptor tyrosine kinase and milk fat globule epidermal growth factor 8 coordinately improve remodeling after myocardial infarction via local delivery of vascular endothelial growth factor JF - Circulation N2 - Background: In infarcted heart, improper clearance of dying cells by activated neighboring phagocytes may precipitate the transition to heart failure. We analyzed the coordinated role of 2 major mediators of efferocytosis, the myeloid-epithelial-reproductive protein tyrosine kinase (Mertk) and the milk fat globule epidermal growth factor (Mfge8), in directing cardiac remodeling by skewing the inflammatory response after myocardial infarction. Methods and Results: We generated double-deficient mice for Mertk and Mfge8 (Mertk\(^{-/-}\)/Mfge8\(^{-/-}\)) and challenged them with acute coronary ligature. Compared with wild-type, Mertk-deficient (Mertk\(^{-/-}\)), or Mfge8-deficient (Mfge8\(^{-/-}\)) animals, Mertk\(^{-/-}\)/Mfge8\(^{-/-}\) mice displayed greater alteration in cardiac function and remodeling. Mertk and Mfge8 were expressed mainly by cardiac Ly6C\(^{High and Low}\) monocytes and macrophages. In parallel, Mertk\(^{-/-}\)/Mfge8\(^{-/-}\) bone marrow chimeras manifested increased accumulation of apoptotic cells, enhanced fibrotic area, and larger infarct size, as well as reduced angiogenesis. We found that the abrogation of efferocytosis affected neither the ability of circulating monocytes to infiltrate cardiac tissue nor the number of resident Ly6C\(^{High}\) and Ly6C\(^{Low}\) monocytes/macrophages populating the infarcted milieu. In contrast, combined Mertk and Mfge8 deficiency in Ly6C\(^{High}\)/Ly6C\(^{Low}\) monocytes/macrophages either obtained from in vitro differentiation of bone marrow cells or isolated from infarcted hearts altered their capacity of efferocytosis and subsequently blunted vascular endothelial growth factor A (VEGFA) release. Using LysMCre\(^+\)/VEGFA\(^{fl/fl}\) mice, we further identified an important role for myeloid-derived VEGFA in improving cardiac function and angiogenesis. Conclusions: After myocardial infarction, Mertk- and Mfge8-expressing monocyte/macrophages synergistically engage the clearance of injured cardiomyocytes, favoring the secretion of VEGFA to locally repair the dysfunctional heart. KW - inflammation KW - macrophages KW - myocardial infarction KW - myocarditis KW - neovascularization, physiologic Y1 - 2016 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-190755 VL - 133 IS - 9 ER -