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May 1, 1994Circulation142 citations

Mechanisms of immune-mediated myocyte injury.

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WBWilliam H. Barry

Key Result

Immune-mediated myocyte injury in allograft rejection, myocarditis, and dilated cardiomyopathy involves both cellular and humoral mechanisms, including CTLs, neutrophils, cytokines, and antibodies.

Key Points

  • This research aims to define the mechanisms of heart function impairment due to immune-mediated myocyte injury.
  • Analysis of immune system activation during allograft rejection and myocarditis
  • Evaluation of cellular and humoral mediators affecting myocyte function
  • Investigation of the role of inflammatory cells in myocyte injury
  • Immune activation can lead to altered ventricular compliance during allograft rejection.
  • Cytotoxic T cells can cause myocyte injury in vitro, with uncertain impact in vivo.
  • Neutrophils and cytokines from macrophages contribute to decreased myocyte contractility and responsiveness.

Structured PICO

P
Population
Patients with allograft rejection, myocarditis, and dilated cardiomyopathy

This review summarizes the complex cellular and humoral immune mechanisms contributing to myocyte injury and cardiac dysfunction in allograft rejection, myocarditis, and dilated cardiomyopathy.

Limitations

  • The importance of the injury process produced by cytotoxic T lymphocytes in vivo remains uncertain.

Abstract

Much progress has been made in defining the mechanisms by which altered systolic and diastolic function of the heart may be produced by components of the immune system activated during allograft rejection and myocarditis and in patients with dilated cardiomyopathy. It is clear that injury of the vascular bed can occur via both humoral and cellular mediators and probably accounts for the acute alterations in ventricular compliance that occur during allograft rejection, as well as the accelerated development of graft atherosclerosis. Altered myocyte function and lysis can be produced by CTL in vitro, but the importance of this injury process in vivo remains uncertain. Other cells present in the inflammatory infiltrate can also affect myocyte function and survival. Neutrophils may cause lysis of myocytes, and cytokines produced by infiltrating macrophages and HtL may reach a sufficient concentration in the interstitial microenvironment to decrease myocyte catecholamine responsiveness and/or directly depress myocyte contractility. Humoral antibodies to myocyte cell surface antigens may cause cell damage by an antibody-dependent cytotoxic cell mechanism or by directly binding to and altering sarcolemmal receptor and/or ion channel function. Further elucidation of the extent of involvement of these different mechanisms in specific clinical settings may provide a basis for improved therapy of immune-mediated cardiac injury and dysfunction.

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Cite This Study

William H. Barry (1994) conducted a review in Immune-mediated cardiac injury and dysfunction (allograft rejection, myocarditis, dilated cardiomyopathy). Immune-mediated myocyte injury in allograft rejection, myocarditis, and dilated cardiomyopathy involves both cellular and humoral mechanisms, including CTLs, neutrophils, cytokines, and antibodies.

synapsesocial.com/papers/6a6250e7cd947529a989c5fehttps://doi.org/10.1161/01.cir.89.5.2421
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