Publications
Department of Medicine faculty members published more than 3,000 peer-reviewed articles in 2022.
2010
2010
2010
2010
2010
BACKGROUND
Erythropoietin (EPO) and granulocyte colony stimulating factor (GCSF) are potential novel therapies after myocardial infarction (MI). We first established the optimal and clinically applicable dosages of these drugs in mobilizing hematopoietic stem cells (HSC), and then tested the efficacy of monotherapy and combination therapy post-MI.
METHODS AND RESULTS
Optimal doses were established in enhanced green fluorescent protein (eGFP) + chimeric mice (n = 30). Next, mice underwent MI and randomized into 4 groups (n = 18/group): 1) GCSF; 2) EPO; 3) EPO+GCSF; and 4) control. Left ventricular (LV) function was analyzed pre-MI, at 4 hours and at 28 days post-MI. Histological assessment of infarct size, blood vessels, apoptotic cardiomyocytes, and engraftment of eGFP+ mobilized cells were analyzed at day 28. LV function in the control group continued to deteriorate, whereas all treatments showed stabilization. The treatment groups resulted in less scarring, increased numbers of mobilized cells to the infarct border zone (BZ), and a reduction in the number of apoptotic cardiomyocytes. Both EPO groups had significantly more capillaries and arterioles at the BZ.
CONCLUSION
We have established the optimal doses for EPO and GCSF in mobilizing HSC from the bone marrow and demonstrated that therapy with these agents, either as monotherapy or combination therapy, led to improvement of cardiac function post-MI. Combination therapy does not seem to have additive benefit over monotherapy in this model.
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2010
2010
BACKGROUND
Individuals with exaggerated exercise blood pressure (BP) tend to develop future hypertension. It is controversial whether they have higher risk of death from cardiovascular disease (CVD).
METHODS AND RESULTS
A total of 6578 asymptomatic Lipid Research Clinics Prevalence Study participants (45% women; mean age, 46 years; 74% with untreated baseline BP <140/90 mm Hg [nonhypertensive]) performing submaximal Bruce treadmill tests were followed for 20 years (385 CVD deaths occurred). Systolic and diastolic BP at rest, Bruce stage 2, and maximal BP during exercise were significantly associated with CVD death. When we compared multivariate hazard ratios and 95% confidence intervals per 10/5-mm Hg BP increments, the association was strongest for rest BP (systolic, 1.21 [1.14 to 1.27]; diastolic, 1.20 [1.14 to 1.26]), then Bruce stage 2 BP (systolic, 1.09 [1.04 to 1.14]; diastolic, 1.09 [1.05 to 1.13]), then maximal exercise BP (systolic, 1.06 [1.01 to 1.10]; diastolic, 1.04 [1.01 to 1.08]). Overall, exercise BP was not significant after adjustment for rest BP. However, hypertension status modified the risk associated with exercise BP (P(interaction)=0.03). Among nonhypertensives, whether they had normal BP (<120/80 mm Hg) or prehypertension, Bruce stage 2 BP >180/90 versus < or =180/90 mm Hg carried increased risk independent of rest BP and risk factors (adjusted hazard ratio for systolic, 1.96 [1.40 to 2.74], P<0.001; diastolic, 1.48 [1.06 to 2.06], P=0.02) and added predictive value (net reclassification improvement, systolic, 12.0% [-0.1% to 24.2%]; diastolic, 9.9% [-0.3% to 20.0%]; relative integrated discrimination improvement, 14.3% and 12.0%, respectively).
CONCLUSIONS
In asymptomatic individuals, elevated exercise BP carried higher risk of CVD death but became nonsignificant after accounting for rest BP. However, Bruce stage 2 BP >180/90 mm Hg identified nonhypertensive individuals at higher risk of CVD death.
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