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April 14, 2007AJP Heart and Circulatory Physiology61 citations

Antiviral and myocyte protective effects of murine interferon-β and -α2in coxsackievirus B3-induced myocarditis and epicarditis in Balb/c mice

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YWYixin WangVCValdeci da CunhaJVJon Vincelette

Key Result

Treatment with murine interferon-beta and -alpha2 protected mice from coxsackievirus B3-induced myocarditis, preventing the 100% mortality observed by day 8 in untreated infected mice.

Structured PICO

Does murine interferon-beta or -alpha2 reduce cardiac viral load and protect cardiomyocytes from injury in mice infected with coxsackievirus B3?

P
Population
Male Balb/c mice inoculated with coxsackievirus B3 to induce myocarditis and epicarditis.
I
Intervention
Murine interferon-beta (mIFN-beta) [2.5 to 10 million international units (MIU)/kg] or murine interferon-alpha2 (mIFN-alpha2) [10 MIU/kg]
C
Comparator
Untreated CVB3-inoculated mice
O
Outcome
Cardiac viral load and cardiomyocyte injurysurrogate

Both murine interferon-beta and -alpha2 demonstrate antiviral and myocyte-protective effects in a mouse model of coxsackievirus B3-induced myocarditis.

Limitations

  • The potential mechanisms leading to a differential host response for the two isoforms of mIFN remain to be elucidated.

Abstract

The present study tested the hypothesis that murine (m)IFN-beta or mIFN-alpha(2) can eliminate cardiac viral load and protect cardiomyocytes from injury in animals infected with coxsackievirus B3 (CVB3). CVB3-inoculated male Balb/c mice exhibited signs of illness, including lethargy, progressive weight loss, and death (10% on day 3 and 100% on day 8). Cardiac viral load was high 4,277 +/- 1,009 plaque-forming units and 25 +/- 5 copies CVB3/hypoxanthine guanine phosphoribosyl transferase 1 mRNA on day 4. The cardiac tissue exhibited severe inflammatory infiltration and myocyte damage with an average myocarditis integrated pathology score of 2.1 +/- 0.2 on day 7. Most of the mice infected with CVB3 also developed epicarditis, and 55% had intraventricular thrombi present. Treatment with mIFN-beta 2.5 to 10 million international units (MIU)/kg dose-dependently improved the general health status in CVB3-inoculated mice, as evidenced by reduction in weight loss, prevention of death, elimination of cardiac viral load, protection of myocytes from injury, decrease in inflammatory cell infiltration, and attenuation of intraventricular thrombus formation. Treatment with 10 MIU/kg mIFN-alpha(2) resulted in a similar level of efficacy as that induced by 5 MIU/kg mIFN-beta, with the exception that mIFN-alpha(2) did not reduce cardiac CVB3 mRNA. However, mIFN-alpha(2) , but not any dose group of mIFN-beta, significantly attenuated CVB3-induced epicarditis. These data demonstrate antiviral effects for both mIFN-beta and mIFN-alpha(2), which lead to protection of the mice from CVB3-induced myocarditis. However, the potential mechanisms leading to a differential host response for the two isoforms of mIFN remain to be elucidated.

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Cite This Study

Wang et al. (2007) studied Coxsackievirus B3-induced myocarditis and epicarditis. Murine interferon-beta and -alpha2 vs. Untreated CVB3-inoculated mice was evaluated on Cardiac viral load and myocyte injury. Treatment with murine interferon-beta and -alpha2 protected mice from coxsackievirus B3-induced myocarditis, preventing the 100% mortality observed by day 8 in untreated infected mice.

synapsesocial.com/papers/6a22aaf6b277bb7f4c14a6fbhttps://doi.org/10.1152/ajpheart.00154.2007
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