The efficacy of monoclonal antibodies against T cell subsets in the therapy of experimental myocarditis caused by coxsackievirus B3 (CB3) was investigated. Two-week-old male C3H/He mice were inoculated with CB3 virus. Treatment was begun in the viremic stage (starting on the day of inoculation) in experiment 1 and in the later aviremic stage (starting on day 10) in experiment 2. Rat anti-mouse monoclonal antibodies, Lyt 1 (helper/inducer T) at 1 microgram/mouse (group 2 in experiment 1; group 6 in experiment 2), Lyt 2 (suppressor/cytotoxic T) at 1 microgram/mouse (group 3 in experiment 1; group 7 in experiment 2), and Lyt 1 at 1 microgram plus Lyt 2 at 1 microgram/mouse (group 4 in experiment 1; group 8 in experiment 2), were administered subcutaneously daily for 2 weeks. The treatment groups were compared with infected controls (group 1 in experiment 1; group 5 in experiment 2). In experiment 1, the survival rate in group 4 was higher (p less than 0.01) than in group 1. In experiment 2, mice treated with Lyt 1 plus Lyt 2 (group 8) survived significantly longer (p less than 0.05) than did controls (group 5). In experiment 1, myocardial virus titers on days 5 and 6 did not show any significant differences among the four groups. Serum-neutralizing antibody titers between group 1 and group 4 in experiment 1 or between group 5 and group 8 in experiment 2 did not differ significantly. Histologic examination showed extensive myocardial necrosis and cellular infiltration in untreated groups: there was less infiltration in group 4 and in group 8 and less severe necrosis in group 8.(ABSTRACT TRUNCATED AT 250 WORDS)
Myocardial fibrosis is a characteristic late feature in cases of viral myocarditis that progress to dilated cardiomyopathy. However, the pathogenesis of the myocardial fibrosis in such cases is unknown. Prior studies have shown that in healing wounds and tumor stroma generation, interstitial fibrin deposition precedes the development of fibrosis. Therefore, interstitial fibrin deposition in the myocardium was investigated in a murine model of myocarditis in which dilated cardiomyopathy develops. Inbred male C3H/He mice inoculated with coxsackievirus B3 were killed 0, 3, 7, 14, 21, 30, and 60 days after infection. Paraffin sections of hearts were stained with hematoxylin-eosin, Masson's trichrome stain, and antibodies to fibrinogen/fibrin by use of an immunoperoxidase technique. Pretreatment of all mice with anticoagulants and antifibrinolytics 5 minutes before death was used to prevent artifactual fibrin deposition and fibrinolysis during tissue manipulation. Tissue fixation in formalin supplemented with acetic acid served to extract non-cross-linked fibrin, fibrinogen, and fibrinogen and fibrin degradation products, thus ensuring that clotted and cross-linked fibrin was the major immunoreactant. Myocardial fibrin deposition and fibrosis were each quantitated by computer-assisted image analysis. Myocardial fibrin deposition first appeared on day 3, was maximal on day 14, and disappeared by day 30. Conversely, myocardial fibrosis was not detectable until day 14 and was maximal at day 60. Thus, as in healing wounds and developing tumor stroma, fibrin deposition preceded fibrosis in this murine model of myocarditis that progresses to dilated cardiomyopathy.
Currently, the treatment of viral myocarditis is symptomatic and supportive, no specific therapy having yet been found. Therefore, we investigated the effects of antiviral agents, ribavirin and recombinant alpha interferon (IFN-α) on viral myocarditis using animal models of encephalomyocarditis (EMC) virus and coxsackievirus B3 myocarditis in mice (Matsumori and Kawai 1982, a, b).
The effects of recombinant human leucocyte interferon alpha A/D on experimental myocarditis due to coxsackie virus B3 were investigated. Specific plaque reduction assays showed that 50% of in vitro plaque formation in VERO (kidney of African green monkey) cells was inhibited by interferon alpha A/D 48 U.ml-1 when administered 24 h before infection with coxsackie virus B3. Three week old male C3H/He mice were inoculated intraperitoneally with 3 x 10(2) plaque-forming units (pfu) of coxsackie virus B3. Controls (group 1) were injected with saline. Interferon alpha A/D 10(4) (group 2) or 10(3) (group 3) U.g-1.day-1, was administered subcutaneously daily, starting 1 d before the infection. Interferon alpha A/D 10(4) U.g-1.day-1 (group 4) was also given, starting the same day. Each group consisted of ten mice. Animals were sacrificed on d 5 for evaluation. Myocardial virus titres were significantly lower in groups 2, 3, and 4 (p less than 0.05) compared with controls. Histological examination showed extensive myocardial necrosis and cellular infiltration in all untreated mice but less severe necrosis and cellular infiltration in treated groups. Thymus and spleen weights in treated groups were greater than in the untreated group, and cellular depletion was less. Thus interferon alpha A/D effectively inhibited myocardial replication of coxsackie virus B3, reduced the myocardial inflammatory response, and prevented the disease associated lymphoid organ atrophy in this animal model.
Knowledge gained from experimental models of dilated cardiomyopathy is reviewed, with emphasis upon models associated with congestive heart failure.
To explain the progression from infectious viral myocarditis to congestive cardiomyopathy an infection/immune hypothesis has been proposed stating that the primary viral process incites an excessive or disordered immunologic response against the myocardium. To test whether one form of immunosuppressive therapy might ameliorate this process, we used cyclosporine in a murine preparation of infectious myocarditis (encephalomyocarditis [EMC] virus), which has been shown to result in a congestive cardiomyopathy pathologically similar to that seen in man. Eight-week-old male DBA-2 mice were infected with EMC virus and randomized to a treatment or control group. Cyclosporine (25 mg/kg/day) was administered subcutaneously for 3 weeks, starting (1) at 1 week after infection during viral replication, and (2) at 3 weeks after infection, after the period of active viral replication. In mice treated during viral replication there was a significantly higher mortality rate compared with that of control mice (15/21 vs 9/29, p = .01). There was no evident reduction in myocardial pathology (inflammation, necrosis, or calcification) in the treated compared with the control groups. In mice treated after the period of viral replication, there was no improvement in mortality (8/22 vs 2/19, NS) compared with control. Treated mice showed no reduction in myocardial histopathologic lesions. Furthermore, treated mice had significantly greater heart weight/body weight ratios (1.3 +/- 0.4% vs 1.0 +/- 0.3%, p less than .005), lung weight/body weight ratios (1.1 +/- 0.5% vs 0.8 +/- 0.3%, p less than .05), and liver weight/body weight ratios (6.0 +/- 0.8% vs 5.4 +/- 0.6%, p less than .005) than control mice, suggesting more severe myocardial failure.(ABSTRACT TRUNCATED AT 250 WORDS)
The therapeutic effects of ribavirin, a broad-spectrum, antiviral agent, on experimental myocarditis caused by encephalomyocarditis (EMC) virus were investigated. Four-week-old DBA/2 mice were inoculated with 10 plaque-forming units (pfu) of EMC virus. Ribavirin in a dose of 100 (group 1, n = 20), 200 (group 2, n = 10), or 400 mg/kg/day (group 3, n = 10) was administered subcutaneously on days 0 to 12 after virus inoculation, and animals were observed for 12 days. Control animals were injected with saline (n = 20). Mice treated with ribavirin survived longer than controls (mean survival 6.7 days for group 1, 7.4 days for group 2, 7.7 days for group 3, and 5.2 days for control; p less than .005). Myocardial virus titers on days 6 to 8 were significantly lower in group 2 (3.24 +/- 0.49 log10pfu/mg; p less than .005) and in group 3 (1.70 +/- 0.65 log10 pfu/mg; p less than .001) compared with controls (4.09 +/- 0.57 log10 pfu/mg). The incidence of gross myocardial lesions was significantly lower in group 1 (13/20, 65%), group 2 (2/10, 20%), and group 3 (0/20, 0%) compared with controls (20/20, 100%) (p less than .05). Histologic examination showed extensive myocardial necrosis and cellular infiltration in untreated groups; there was less infiltration in groups 2 and 3 (p less than .01) and less severe necrosis in group 3 (p less than .01). Thus ribavirin effectively inhibited myocardial virus replication and reduced the inflammatory response and myocardial damage in an experimental preparation of viral myocarditis.
As advances in diagnostic and therapeutic modalities due to technology continue, there is increasing interest in identifying possible etiologies for the syndrome of dilated cardiomyopathy (heart muscle disease of unknown cause characterized by dilatation of one or both ventricles and poor systolic function) [1]. It has long been thought that one specific type of heart disease, viral myocarditis, might result in this syndrome. This speculation has been based on previous studies noting the persistence of symptoms and electrocardiographic and radiological abnormalities following acute viral myocarditis [2–5], as well as the demonstration of high viral antibody titers [6] and myocarditis by biopsy [7] in patients with the syndrome of dilated cardiomyopathy.