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Biomedical subjects

Elizabeth Braunlin

Publications and source records attributed to Elizabeth Braunlin.

3 recordsLinked to original sources

Cardiac functional and histopathologic findings in humans and mice with mucopolysaccharidosis type I: implications for assessment of therapeutic interventions in hurler syndrome.

Hurler syndrome (mucopolysaccharidosis type I [MPS I]) is a uniformly lethal autosomal recessive storage disease caused by absence of the enzyme alpha-l-iduronidase (IDUA), which is involved in lysosomal degradation of sulfated glycosaminoglycans (GAGs). Cardiomyopathy and valvar insufficiency occur as GAGs accumulate in the myocardium, spongiosa of cardiac valves, and myointima of coronary arteries. Here we report the functional, biochemical, and morphologic cardiac findings in the MPS I mouse. We compare the cardiac functional and histopathological findings in the mouse to human MPS I. In MPS I mice, we have noted aortic insufficiency, increased left ventricular size, and decreased ventricular function. Aortic and mitral valves are thickened and the aortic root is dilated. However, murine MPS I is not identical to human MPS I. Myointimal proliferation of epicardial coronary arteries is unique to human MPS I, whereas dilation of aortic root appears unique to murine MPS I. Despite the differences between murine and human MPS I, the murine model provides reliable in vivo outcome parameters, such as thickened and insufficient aortic valves and depressed cardiac function that can be followed to assess the impact of therapeutic interventions in preclinical studies in Hurler syndrome.

Animals↗

Troponin I levels in a hemolytic uremic syndrome patient with severe cardiac failure.

Troponins are highly sensitive and specific biochemical markers of myocardial injury that are released into the circulation during myocardial ischemia. We describe changes in cardiac troponin I (cTnI) prior to and following clinical evidence of severe myocardial dysfunction in a child with hemolytic uremic syndrome (HUS). A previously healthy, 22-month-old girl presented with typical HUS and stool cultures positive for Escherichia coli O157:H7. She required dialysis, blood and platelet transfusions, and insulin for HUS-related diabetes mellitus. On the 6th hospital day she had sudden circulatory collapse with a blood pressure of 70/40 mmHg and an oxygen saturation of 88%. She responded rapidly to emergency resuscitation but had diminished left ventricular function (ejection fraction 18%). Four days after the acute event an echocardiogram showed normal ventricular size and contractility. She underwent hemodialysis for 22 days, and renal function was normal after 33 days. cTnI levels were measured with a microparticle enzyme immunoassay. cTnI was normal (>0.4 microg/l) 32 h prior to cardiac collapse, mildly increased (2.1 microg/l) 8 h before the cardiac collapse, severely elevated shortly after the cardiac event (43.1 microg/l), and peaked (140.6 microg/l) at 24 h. It then fell gradually and was normal at discharge. These results suggest that measurement of cTnI may be a useful predictor of cardiac involvement in severely affected children with HUS.

Biomarkers↗