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Biomedical subjects

Sabine Pankuweit

Publications and source records attributed to Sabine Pankuweit.

At least 19 recordsLinked to original sources

Co-infection with two Chlamydophila species in a case of fulminant myocarditis.

OBJECTIVE: The aim of this study is to describe a case of fulminant myocarditis caused by co-infection with Chlamydophila pneumoniae and Chlamydophila psittaci in order to facilitate diagnosis and clinical management of patients suffering from this rare but life-threatening condition. DESIGN: Case report. SETTING: Intensive care unit of Innsbruck Medical University. PATIENT: A 24-yr-old patient admitted with septicemia and cardiac failure. INTERVENTIONS: Cardiopulmonary resuscitation, extracorporal membrane oxygenation, implantation of an extracorporal cardiac assist device, and antibiotic treatment with erythromycin. MEASUREMENTS AND MAIN RESULTS: Cp. pneumoniae and Cp. psittaci were identified by means of polymerase chain reaction and electron microscopy in the patient's myocytes. Successful weaning off the ventricular assist device was performed within 2 wks after commencement of antibiotic therapy. CONCLUSIONS: This case report demonstrates co-infection with Cp. pneumoniae and Cp. psittaci to be a hitherto unknown cause of fulminant myocarditis. There is a particular risk of misdiagnosis of viral myocarditis, which must be avoided. Patients should be transferred to a center where extracorporal membrane oxygenation therapy and molecular diagnosis of all members of the family Chlamydiaceae are available.

Adult↗

Tako-Tsubo cardiomyopathy (apical ballooning) with parvovirus B19 genome in endomyocardial biopsy.

The phenomenon of transient apical ballooning is a rare underlying cause of severe left ventricular dysfunction and has been described as Tako-Tsubo-like cardiomyopathy. Acute myocarditis has been reported to masquerade as acute myocardial infarction or vice versa and is considered as differential diagnosis in this phenomenon. We present here a case of an adult female who was admitted to our cardiology department with chest pain, electrocardiographic and echocardiographic features, suggestive of an acute anterior myocardial infarction, preceded by physical and emotional stress. Coronary angiography demonstrated coronary arteries without relevant atherosclerotic lesions; left ventriculography showed a severe anteroapical dysfunction. Right ventricular endomyocardial biopsy showed normal cardiac tissue, but was positive for Parvovirus B19. Follow-up (2 months later) showed complete regression of regional wall motion abnormalities in transthoracic echocardiography.

Aged↗

Clinical and immunologic characteristics in peripartum cardiomyopathy.

Peripartum cardiomyopathy (PPCM) is a rare disorder of dilated cardiomyopathy and left ventricular dysfunction occurring in the last month of pregnancy or within 5 months postpartum. Outcome of PPCM is highly variable, comprising clinical improvement and rapid deterioration unresponsive to medical treatment requiring heart transplantation or even death. In this study, we report the clinicopathologic findings of 10 patients with PPCM who were retrospectively identified in our cardiomyopathy registry. During a follow-up of 69+/-27 months, no patient died or required orthotopic heart transplantation. Left ventricular ejection fraction was 38+/-7% at the time of diagnosis and 53+/-7% during follow-up. While all patients had sinus rhythm at the time of diagnosis, three patients presented with left bundle branch block. We found no evidence of viral infection in endomyocardial biopsy samples of seven patients by PCR. Histopathologic findings revealed the presence borderline myocarditis in two of seven patients (29%). Circulating autoantibodies to cardiac tissue of any kind were observed in all patients. In conclusion, in our retrospective observational study, no patient diagnosed with PPCM died or received orthotopic heart transplantation. Improvement of left ventricular ejection fraction was present in eight patients (80%), while LV dysfunction persisted in four patients. Our findings support the hypothesis of an underlying autoimmune pathomechanism in this rare disease.

Adult↗

Familial inflammatory dilated cardiomyopathy.

BACKGROUND: Systematic family screening has recently identified dilated cardiomyopathy as an inherited disorder in up to 30% of cases. Mutations in genes encoding proteins responsible for myocardial architecture have been identified, but additional pathophysiological mechanisms including inflammatory reactions have been proposed. AIMS: Identification and characterization of familial DCM, where at least one affected family member fulfils the criteria for inflammatory DCM may lead to a better understanding of the aetiology and pathogenesis of (inflammatory) DCM. METHODS AND RESULTS: Ten families were examined. In six families, clinical characteristics and mode of inheritance were compatible with pure fDCM, fDCM with conduction defect and autosomal recessive fDCM. In four families, (auto-)immune features were diagnosed in affected and non-affected family members. CONCLUSIONS: Familial DCM with an inflammatory component was identified as a specific subgroup of familial DCM. In most cases, the inflammatory process seems to modify, i.e. aggravate, the "classic, cytoskeletopathic" familial DCM, but in some, especially when taking clinical and genetic aspects into account, inflammatory (auto-)immune features can be addressed as the leading pathogenetic principle. Further elucidation of these families may provide a better insight into pathophysiologic processes and may aid in the development of specific therapeutic strategies.

Adult↗

Management strategies in pericardial emergencies.

BACKGROUND: The most frequent pericardial emergency is cardiac tamponade, but complications of an acute coronary syndrome and aortic dissection may also involve the pericardium. Acute pericarditis can also represent a medical emergency due to chest pain of upsetting intensity. Decompensations in chronic advanced constriction and in the clinical course of purulent pericarditis necessitate critical care as well. DIAGNOSIS AND MANAGEMENT: The diagnosis of cardiac tamponade is based on clinical presentation and physical findings, confirmed by echocardiography and cardiac catheterization. Tamponade is an absolute indication for urgent drainage, either by pericardiocentesis or surgical pericardiotomy. The approach for pericardiocentesis can be subxiphoid or intercostal using echocardiographic or fluoroscopic guidance. Urgent drainage, combined with intravenous antibiotics, is also mandatory in suspected purulent pericarditis. If confirmed, it should be combined with intrapericardial rinsing (best by a surgical drainage). Pericardiocentesis is contraindicated in cardiac tamponade complicating aortic dissection. This condition should immediately lead to cardiac surgery. Although pericardiectomy is the only treatment for permanent constriction, this procedure is contraindicated when extensive myocardial fibrosis and/or atrophy are demonstrated. CASE STUDY: Iatrogenic tamponade may occur during percutaneous mitral valvuloplasty, implantation of pacemakers, electrophysiology and radiofrequency ablation procedures, right ventricular endomyocardial biopsy, percutaneous coronary interventions, and rarely during Swan-Ganz catheterization. The authors report on a 79-year-old who suffered coronary perforation and cardiac tamponade during elective stent implantation. Tamponade was successfully treated with pericardiocentesis and implantation of a membrane-covered graft stent. Subsequent recurrent pericarditis/postpericardial injury syndrome with moderate pericardial effusion was initially treated with aspirin and then with aspirin and colchicine. At 6 months, the patient is in stable remission even after withdrawal of colchicine. CONCLUSION: Natural history of pericardial diseases can be complicated with pericardial emergencies requiring prompt diagnosis, intensive care with hemodynamic monitoring, and early aggressive management. Medical supportive measures, drainage of pericardial effusion, surgical pericardiotomy, and pericardiectomy should be applied when needed with no delay. This procedural approach also applies to iatrogenic interventions leading to tamponade.

Aged↗

Management of patients with suspected (peri-)myocarditis and inflammatory dilated cardiomyopathy.

Inflammatory cardiomyopathy and myocarditis are considered acquired forms of dilated cardiomyopathy. Whereas consensus documents on the diagnosis of myocarditis and perimyocarditis do exist, guidelines on the specific treatment have been established only for the management of pericardial diseases, which at least partly can be applied in analogy to myocarditis. Presently, feasible clinical pathways are available, which can lead to a correct diagnosis and specific treatment. This is illustrated with two cases of fulminant myocarditis, in one with successful diagnosis and treatment of a cardiac sarcoid and another one in which diagnostic nihilism led to a lethal outcome in giant cell myocarditis at necropsy. A case of active parvo B19-positive myocarditis demonstrates the role of immunoglobulin treatment under these conditions.

Adult↗

TNF-related apoptosis-inducing ligand and its decoy receptor osteoprotegerin in nonischemic dilated cardiomyopathy.

Apoptosis has been attributed an essential role in dilated cardiomyopathy (DCM) recently. We assessed expression of TNF-related apoptosis-inducing ligand (TRAIL) and its decoy receptor osteoprotegerin (OPG) in men with nonischemic DCM, who underwent coronary angiography and endomyocardial biopsy (EMB) after exclusion of coronary artery disease compared to control patients. TRAIL plasma concentrations were elevated in DCM (p=0.02 vs. controls), and were positively correlated with left ventricular enddiastolic diameter (r=0.15, p=0.04), whereas OPG plasma levels did not differ between both groups (p=0.96). In EMB of DCM patients, TRAIL and OPG protein were detected by immunohistochemistry but not in controls. Furthermore, gene expression in EMB or peripheral blood leukocytes (PBL) of DCM patients assessed by real-time PCR showed an increase of TRAIL mRNA in PBL (p=0.01 vs. controls), whereas OPG mRNA was upregulated in endomyocardial specimens (p<0.001 vs. controls). In conclusion, myocardial overexpression of antiapoptotic OPG in DCM patients may represent a compensatory mechanism to limit systemic activation of TRAIL in patients with congestive heart disease.

Adult↗

Matrix metalloproteinases and their inhibitors in malignant and autoreactive pericardial effusion.

Matrix metalloproteinases (MMPs) are proteolytic enzymes essentially involved in tissue remodeling and tumor invasion, and their activity is counterbalanced by endogenous antagonists, the tissue inhibitors of matrix proteinases (TIMPs). Recent reports have suggested a potential role of MMPs in the evolution of pericardial effusion (PE). In this study, we determined the levels of MMP-2 and MMP-9 and their inhibitors TIMP-1 and TIMP-2 in 19 patients who had malignant PE that was confirmed by histology or cytology and 30 patients who had nonmalignant, autoreactive PE compared with pericardial fluid of 19 patients who had preserved left ventricular function and who underwent aortocoronary bypass surgery for control. Samples were assayed by zymography, immunoblotting, and quantitative enzyme-linked immunosorbent assay. We found significantly higher MMP-2 levels in malignant PE than in pericardial fluid (2,906 +/- 348 vs 1,493 +/- 114 ng/ml, p = 0.0005) or autoreactive PE (2,079 +/- 269 ng/ml, p = 0.01). No significant differences in MMP-9 levels were found between malignant PE and autoreactive PE (83 +/- 28.6 vs 106 +/- 30.4 ng/ml, p = 0.22), whereas MMP-9 was below the detection limit in pericardial fluid. No differences in TIMP-1 levels were found across the different study groups, whereas compared with pericardial fluid, TIMP-2 levels were significantly lower in autoreactive PE (113 +/- 18.9 vs 187 +/- 12.2 ng/ml, p = 0.002). In addition, there was a trend to lower TIMP-2 levels in malignant PE (137 +/- 27.1 ng/ml, p = 0.07). The present findings indicate that proteolytic enzymes and their inhibitors are involved in the pathogenesis of PE, with an expression pattern that depends on etiology. The involvement of MMP-2 in the pathogenesis of malignant PE may indicate a potential role of MMP inhibitors in the control of malignant PE.

Biopsy↗

Fatal course of parvovirus B19-associated myocarditis in a female liver transplant recipient.

Acute myocarditis may result in severe hemodynamic compromise with fatal outcome. Furthermore, recent studies suggest myocarditis as a major cause of sudden unexpected death. A variety of cardiotropic viral, rickettsial, and bacterial infectious agents have been identified to date. Parvovirus B19 (PVB19) is usually benign in childhood, but it may also cause death due to myocarditis. We present here the case of an adult female who presented with fatigue, dyspnea on exertion, and orthostatic dizziness 8 months after successful liver transplantation. Cardiologic work-up, including left ventricular endomyocardial biopsy, revealed acute myocarditis secondary to PVB19. Since no specific therapy for this virus is available, the patient was treated symptomatically with an angiotensin-converting enzyme inhibitor plus beta-blocker and diuretics. After a period of stabilization, new-onset rapid atrial fibrillation caused acute low-output syndrome within 14 days after hospital admission. The patient eventually died because of refractory cardiogenic shock. In conclusion, to our knowledge this is the first report of PVB19-induced myocarditis confirmed by detection of viral genome in myocardium in a liver transplant recipient.

Acute Disease↗

[Women and pericardial neoplastic manifestations of the heart and pericardium].

BACKGROUND: In every year since 1984, cardiovascular disease has claimed the lives of more females than males. In the Western world more than 450,000 women succumb to heart disease annually. Despite the proportions, most women believe that heart disease is a man's disease and that they will die of breast cancer. Data on epidemiology and incidence are rare: there is only an estimated incidence of cardiac neoplasm at necropsy ranging from 0,001% to 0,3%. The majority of the primary tumors are benign. Females are affected more often than males. The most common tumor entity is benign cardiac myxoma. Malignant heart tumors are less common. Most often they are different types of sarcomas, which have a poor outcome and affect more males than females. Metastatic tumors of the heart are 100 times more common than the primary ones. They originate mainly from melanomas, leukemias, lymphomas, and cancer, especially of the lung or breast. Indeed in women breast cancer is the most common metastatic tumor associated with pericardial effusion. To prevent death from tamponade, pericardiocentesis, in addition to the systemic chemotherapy, is mandatory, best when instillation of chemotherapeutics (cisplatin or thiotepa) or radioisotopes is given into the pericardial sac to prevent recurrence of the effusion. However, more of the malignant tumors may be curable if exactly diagnosed at an earlier stage. METHODS: A retrospective study was conducted of all patients with cardiac and pericardial neoplasm exactly diagnosed by endomyocardial or epicardial biopsy and pericardiocentesis, using hospital medical records and a biopsy and pericardiocentesis registry from 2000-2005 with 297 patients. Pericardial effusion and biopsy analyses included biochemistry, cytology, serology, microbiology, histology, immunohistology, and polymerase chain reaction (PCR). All patients were investigated in relation to Herzmetasgender differences to histopathologic findings, clinical presentation and outcome. RESULTS: In 76 cases (25.6%) a neoplasm was the reason for a pericardial effusion. 36 women suffered from the breast carcinoma (47%) and 40 males lung cancer (42%) as the firstly metastatic tumor. There was no recurrence of a relevant pericardial effusion in patients who were treated by intrapericardial instillation of cisplatin (30 mg/m2 body surface in 100 ml 0.9% NaCl). CONCLUSION: Females are more often affected by primary cardiac tumors than males with an excellent outcome. By contrast, the preventive checkup and aftercare will gain more prognostic importance, especially in case of breast cancer, to earlier recognize a secondary cardiac neoplasm by biopsy and pericardiocentesis with intrapericardial treatment of neoplastic pericarditis.

Breast Neoplasms↗

[Women and autoimmune diseases with cardiovascular manifestations].

Women's greater susceptibility to autoimmune diseases has been recognized for more than 100 years. And although the basic immune response (including a more vigorous immune response and increased antibody production) has been known to differ between men and women, conclusive pathophysiological explanations for this phenomenon are still lacking. Experimental work done in animal models have revealed a profound influence of sex hormones on the susceptibility to autoimmune diseases and on clinical disease via direct and indirect signaling pathways. Apart from sex hormones additional factors seem to participate in the pathogenesis of autoimmune diseases, which remain to be elucidated ("so far, you cannot explain autoimmunity [only] with estrogen" [lockshin]).

Animals↗

Inflammatory dilated cardiomyopathy (DCMI).

Cardiomyopathies are heart muscle diseases, which have been defined by their central hemodynamics and macropathology and divided in five major forms: dilated (DCM), hypertrophic (HCM), restrictive (RCM), right ventricular (RVCM), and nonclassifiable cardiomyopathies (NCCM). Furthermore, the most recent WHO/WHF definition also comprises, among the specific cardiomyopathies, inflammatory cardiomyopathy as a distinct entity, defined as myocarditis in association with cardiac dysfunction. Idiopathic, autoimmune, and infectious forms of inflammatory cardiomyopathy were recognized. Viral cardiomyopathy has been defined as viral persistence in a dilated heart. It may be accompanied by myocardial inflammation and then termed inflammatory viral cardiomyopathy (or viral myocarditis with cardiomegaly). If no inflammation is observed in the biopsy of a dilated heart (< 14 lymphocytes and macrophages/mm(2)), the term viral cardiomyopathy or viral persistence in DCM should be applied according to the WHF Task Force recommendations. Within the German heart failure net it is the authors' working hypothesis, that DCM shares genetic risk factors with other diseases of presumed autoimmune etiology and, therefore, the same multiple genes in combination with environmental factors lead to numerous different autoimmune diseases including DCM. Therefore, the authors' primary goal is to acquire epidemiologic data of patients with DCM regarding an infectious and inflammatory etiology of the disease. Circumstantial evidence points to a major role of viral myocarditis in the etiology of DCM. The common presence of viral genetic material in the myocardium of patients with DCM provides the most compelling evidence, but proof of causality is still lacking. In addition, autoimmune reactions have been described in many studies, indicating them as an important etiologic factor. Nevertheless, data on the proportion of patients, in whom both mechanisms play a role are still missing.A pivotal role for autoimmunity in a substantial proportion of patients with DCM is supported by the presence of organ-specific autoantibodies, inflammatory infiltrates and pro-inflammatory cytotoxic cytokines. Furthermore, familial occurrence of DCM has been described in about 20-30% of cases, with the presence of autoantibodies and abnormal cytokine profiles in first-degree relatives with asymptomatic left ventricular enlargement. This suggests the involvement of a disrupted humoral and cellular immunity early in the development of the disease. A similar pattern of humoral and cellular immune dysregulation has been described in other autoimmune diseases. There is considerable evidence that genetic factors play an important role in the pathogenesis of DCM, either as contributors to the susceptibility to environmental factors or as determinants of functional and structural changes that characterize the phenotypic expression of the disease.Yet, it is not known whether the susceptibility to immunologically mediated myocardial damage reflects the presence of genetic risk factors shared by other autoimmune diseases. Preliminary investigations suggest, that this is the case, because the frequency of autoimmune disorders other than DCM was higher in first-degree relatives of the subjects with DCM including juvenile diabetes, rheumatoid arthritis, thyroiditis, psoriasis, and asthma. The nature of the genetic risk is undetermined and probably involves genes in the major histocompatibility (MHC) locus as well as other susceptibility loci. Therefore, the authors started their investigation with the search for MHC class 2 DQ polymorphisms in the peripheral blood of patients with DCM in parallel to the search for new interesting susceptibility loci by the use of the microarray analysis regarding genes responsible for inflammatory and autoimmune diseases. By this approach a new insight in the familial clustering of other autoimmune diseases in patients with DCM and in genetic predisposition can be expected.

Cardiomyopathy, Dilated↗

Bacterial pericarditis: diagnosis and management.

Bacterial pericarditis occurs by direct infection during trauma, thoracic surgery, or catheter drainage, by spread from an intrathoracic, myocardial, or subdiaphragmatic focus, and by hematogenous dissemination. The frequent causes are Staphylococcus and Streptococcus (rheumatic pancarditis), Haemophilus, and M. tuberculosis. In AIDS pericarditis, the incidence of bacterial infection is much higher than in the general population, with a high proportion of Mycobacterium avium-intracellulare infection. Purulent pericarditis is the most serious manifestation of bacterial pericarditis, characterized by gross pus in the pericardium or microscopically purulent effusion. It is an acute, fulminant illness with fever in virtually all patients. Chest pain is uncommon. Purulent pericarditis is always fatal if untreated. The mortality rate in treated patients is 40%, and death is mostly due to cardiac tamponade, systemic toxicity, cardiac decompensation, and constriction. Tuberculous infection may present as acute pericarditis, cardiac tamponade, silent (often large) relapsing pericardial effusion, effusive-constrictive pericarditis, toxic symptoms with persistent fever, and acute, subacute, or chronic constriction. The mortality in untreated patients approaches 85%. Urgent pericardial drainage, combined with intravenous antibacterial therapy (e.g. vancomycin 1g twice daily, ceftriaxone 1-2g twice daily, and ciprofloxacin 400 mg/day) is mandatory in purulent pericarditis. Irrigation with urokinase or streptokinase, using large catheters, may liquify the purulent exudate, but open surgical drainage is preferable. The initial treatment of tuberculous pericarditis should include isoniazid 300 mg/day, rifampin 600 mg/day, pyrazinamide 15-30 mg/kg/day, and ethambutol 15-25 mg/kg/day. Prednisone 1-2 mg/kg/day is given for 5-7 days and progressively reduced to discontinuation in 6-8 weeks. Drug sensitivity testing is essential. Pericardiectomy is reserved for recurrent effusions or continued elevation of central venous pressure after 4-6 weeks of antituberculous and corticosteroid therapy.

Anti-Bacterial Agents↗

Novel point mutations in the mitochondrial DNA detected in patients with dilated cardiomyopathy by screening the whole mitochondrial genome.

Dilated cardiomyopathy (DCM) is widely accepted as a pluricausal or multifactorial disease. Because of the linkage between energy metabolism in the mitochondria and cardiac muscle contraction, it is reasonable to assume that mitochondrial abnormalities may be responsible for some forms of DCM. We analysed the whole mitochondrial genome in a series of 45 patients with DCM for alterations and compared the findings with those of 62 control subjects. A total of 458 sequence changes could be identified. These sequence changes were distributed among the whole mitochondrial DNA (mtDNA). An increased number of novel missense mutations could be detected nearly in all genes encoding for protein subunits in DCM patients. In genes coding for NADH dehydrogenase subunits the number of mtDNA mutations detected in patients with DCM was significantly increased (p < 0.05) compared with control subjects. Eight mutations were found to occur in conserved amino acids in the above species. The c.5973G > A (Ala-Trp) and the c.7042T > G (Val-Asp) mutations were located in highly conserved domains of the gene coding for cytochrome c oxidase subunit. Two tRNA mutations could be detected in the mtDNA of DCM patients alone. The T-C transition at nt 15,924 is connected with respiratory enzyme deficiency, mitochondrial myopathy, and cardiomyopathy. The c.16189T > C mutation in the D-loop region that is associated with susceptibility to DCM could be detected in 15.6% of patients as well as in 9.7% of controls. Thus, mutations altering the function of the enzyme subunits of the respiratory chain can be relevant for the pathogenesis of dilated cardiomyopathy.

Adult↗

Inflammation in dilated cardiomyopathy.

Inflammation is an important component in the pathogenesis of many common cardiovascular diseases. In most cases, the role of inflammation is a natural response to injury, and an important mechanism for healing and tissue repair. However, the inflammatory response can be either inadequate or overwhelming, leading to direct injury or severe host disease. Accumulating data has revealed an important inflammatory component in the pathogenesis of dilated cardiomyopathy (DCM), and there is growing evidence, that myocarditis and DCM are closely related. Many faces of DCM coexist, while different phases of the disease progress simultaneously: phase 1 is dominated by viral infection itself, phase 2 by the onset of (probably) multiple autoimmune reactions, and phase 3 by the progression to cardiac dilatation without an infectious agent and cardiac inflammation. Separation between the phases is not always distinct, they may overlap one another and phase 1 and 2 may recur after progression of DCM. Appropriate treatment during phase 1 includes eradication of virus and amelioration of injury caused by the virus. During phase 2, which is characterized by autoimmune processes, immunosuppression is the most appropriate therapy and warrants sophisticated diagnostic strategies including molecular biological and immunohistochemical techniques. Phase 3, DCM, although a result of viral and autoimmune injury, may then progress independently. The more attention given to serologic, molecular and immunologic factors to characterize and diagnose DCM lead to several changes in the terminology. The term cardiomyopathy is no longer reserved for the idiopathic forms but can be used interchangeably with the term heart muscle diseases including specific, secondary forms. Right ventricular cardiomyopathy (RVCM), valvular, hypertensive, ischemic, and inflammatory cardiomyopathy have been introduced. Idiopathic, autoimmune, and infectious forms of inflammatory cardiomyopathy were recognized. Viral cardiomyopathy is defined as viral persistence in a dilated heart. It may be accompanied by myocardial inflammation and is then termed inflammatory viral cardiomyopathy. Because of the overlap of pathophysiological stages in DCM, design of the appropriate therapy is important. It requires the immunohistochemical and molecular biological investigation of endomyocardial biopsies in parallel. In the modern molecular era the infective agent-immune system-host interaction has to be clarified leading to a better knowledge of the etiology of DCM. This may change the management of the disease in the future. One of the hopes is to discern the underlying dominant mechanism in a given patient to make a decision for the most promising therapy.

Animals↗

Treatment of inflammatory dilated cardiomyopathy and (peri)myocarditis with immunosuppression and i.v. immunoglobulins.

OBJECTIVES: Treatment objectives in inflammatory dilated cardiomyopathy (DCMi), myocarditis (M) and peri(myo)carditis are 1) the elimination of inflammatory cells from the myocardium and pericardium, 2) the elimination or (second best) mitigation of B-cell products such as antibodies and immuncomplexes directed against cardiac epitopes such as sarcolemmal, fibrillary and mitochondrial epitopes, and 3) the eradication of the causative viral or microbial agent, if present. ANTIPHLOGISTIC TREATMENT: A "non-specific" anti-inflammatory treatment in peri(myo)carditis can be carried out with antiphlogistics (NSAIDs preferably colchicine 1-3 mg/d) independent from the presence of the infective agent. In larger virus and bacteria negative effusions we recommend intrapericardial instillation of cristalloid triamcinolon (Volon A) at a dose of 500 mg/m(2), which should be left in place to have a sustained effect over at least 4 weeks. This will effectively prevent recurrences particularly when colchicine is added over a period of at least 3-6 months. Taking into account the 2004 ESC task force recommendations on the management of pericardial diseases the treatment recommendation for NSAIDs and colchicine can be classified as level of evidence A, indication class I, for intrapericardial triamcinolon instillation as level of evidence B, indication class IIa. IMMUNOSUPPRESSION: In (immuno)histologically validated autoreactive (virus negative) myocarditis and DCMi double-blind randomized trials are lacking to demonstrate the superiority of immunosuppression over conventional heart failure management. The only published randomized and double-blind immunosuppression treatment trial (American Myocarditis Treatment Trial) was underpowered and did not distinguish viral from non-viral disease. It showed neither benefit nor harm of a combination of cyclosporin and prednisone. A number of retrospective analyses of immunosuppression in myocarditis showed some benefit of surrogate parameters (ejection fraction, exercise tolerance) but improvement under conventional heart failure treatment cannot be ruled out completely as the main cause for amelioration. ESETCID (European Study on the Epidemiology and Treatment of Cardiac Inflammatory Disease) is a double-blind, randomized, placebo-controled three-armed trial with prednisolone and azathioprine for autoreactive (virus negative) DCMi, interferon alpha for enterovirus positive DCMi, high-dose immunoglobulin for cytomegalovirus and intermediate dose for adeno- and Parvo B19 DCMi. It has now randomized more than 120 patients to the different treatment arms. Its final result has still to be awaited.-Patients not willing to randomize in the trial were included in a registry follow-up, which shows improvement of hemodynamic parameters and elimination of the inflammation in the majority of patients. This is in concordance with several non-randomized trials. Since evidence is conflicting (level of evidence C, indication class IIb; if negative viral etiology is taken into consideration class IIa) treatment with immunosuppression cannot be generally recommended but should be further evaluated in doubleblind randomized clinical trials or at least in controlled trials and registries. This also applies to treatment with interferon for enteroviral or other viral infections in the heart. IMMUNOADSORPTION: : The elimination of anticardiac antibodies, which have been associated with DCMi, is a currently discussed concept, which is supported by published registry data and a few very small controlled investigations but not by a randomized double-blind trial with clinical endpoints of relevance. In some studies immunoglobulins have been substituted, so that an additional immunomodulatory effect has to be taken into account. The current proof of concept can be ranked level of evidence C, indication class IIa only. An even more challenging and still more attractive hypothesis is that cardiac inflammation caused by specific circulating beta-adrenoceptor antibodies can be eradicated with the elimination of the beta-receptor antibody thus healing dilated cardiomyopathy. Application of this approach can be ranked level of evidence C, indication class IIb at present only. Therefore these two pathophysiologically attractive concepts have to await further validation by a double-blind, randomized clinical endpoint trial. IMMUNOGLOBULIN TREATMENT: It has been shown that immunoglobulins have both an antiviral and an anti-inflammatory effect. They may suppress proinflammatory cytokines and reduce oxidative stress. HIGH-DOSE I.V. IMMUNOGLOBULINS (IVIG): In biopsy proven CMVmyocarditis a controlled trial demonstrated eradication of inflammation and of the virus (level of evidence B, indication class IIa), which is in accordance with registry data and case reports. In suspected myocarditis (not biopsy proven, no viral etiology established or excluded) conflicting data exist with respect to the improvement of surrogate markers such as the ejection fraction under high-dose immunoglobulins. More evidence can be weighted in favour of a positive treatment effect (level of evidence B, indication class IIb). Importantly there were no detrimental effects of the ivIG reported in these trials. One has to consider the high costs of this treatment, however. A trial taking into account the different etiologies (different viruses assessed separately vs. non-viral/autoreactive vs. placebo) is still lacking. MODERATE-DOSE I.V. IMMUNOGLOBULINS: Registry data support a positive effect of 20 g i.v. pentaglobin (IgG and IgM) in adenovirus positive myocarditis for clinical improvement, eradication of both the inflammation and the virus. In Parvo B19 myocarditis our own registry data indicate that clinical improvement can be noted, but only inflammation is successfully eliminated, whereas Parvo B19 persistence remains a problem in the majority of patients. In Parvo B19 associated DCMi therefore dose finding studies and randomized trials are needed.

Cardiomyopathy, Dilated↗