Publications
Department of Medicine faculty members published more than 3,000 peer-reviewed articles in 2022.
2015
CONTEXT
Older oncology patients have unique needs associated with the many physical, psychological, and social changes associated with the aging process. The mechanisms underpinning and the impact of these changes are not well understood. Identification of clusters of symptoms is one approach that has been used to elicit hypotheses about the biological and/or psychological basis for variations in symptom experiences.
OBJECTIVES
The purposes of this study were to identify and compare symptom clusters in younger (<60 years) and older (≥60 years) patients undergoing cancer treatment.
METHODS
Symptom data from one Australian study and two U.S. studies were combined to conduct this analysis. A total of 593 patients receiving active treatment were dichotomized into younger (<60 years) and older (≥60 years) groups. Separate exploratory factor analyses (EFAs) were undertaken within each group to identify symptom clusters from occurrence ratings of the 32 symptoms assessed by the Memorial Symptom Assessment Scale.
RESULTS
In both groups, a seven-factor solution was selected. Four partially concordant symptom clusters emerged in both groups (i.e., mood/cognitive, malaise, body image, and genitourinary). In the older patients, the three unique clusters reflected physiological changes associated with aging, whereas in the younger group the three unique clusters reflected treatment-related effects.
CONCLUSION
The symptom clusters identified in older patients typically included a larger and more diverse range of physical and psychological symptoms. Differences also may be reflective of variations in treatment approaches between age groups. Findings highlight the need for better understanding of variation in treatment and symptom burden between younger and older adults with cancer.
View on PubMed2015
2015
2015
BACKGROUND
Immune monitoring (IM) has not been shown to be associated with cardiac allograft vasculopathy (CAV).
METHODS
Maximal intimal area, average percent stenosis, plaque volume, and maximal intimal thickness (MIT) were measured for matched baseline and one-yr IVUS segments in a blinded fashion. Patients were divided into quartiles by IM scores and outcomes compared. Optimal IM cutoff was determined.
RESULTS
IM assays were measured at 63.7 ± 16.4 d after transplantation in fifty patients. Progression of maximal intimal area (p = 0.005), average percent stenosis (p < 0.001), plaque volume (p = 0.005), and MIT (p = 0.001) were increased across the quartiles. An optimal IM assay cutoff of 406.0 ng ATP/mL demonstrated a sensitivity of 66.7% and specificity of 94.3% for predicting rapid progression of MIT ≥ 0.5 mm. Mean IM scores for Group 1 vs. Group 2 were 176.4 ± 102.2 and 616.3 ± 239.5 ngATP/mL, respectively. Rapid progression of MIT ≥ 0.5 mm occurred in 5/38 patients (13.2%) in Group 1 vs. 10/12 patients (83.3%) in Group 2 (p < 0.001). The risk ratio for rapid progression with elevated IM was 11.7 (p < 0.001).
CONCLUSION
Elevated early IM scores are associated with progression of CAV by IVUS. These findings suggest the potential of IM for tailoring of immunosuppressive regimens to minimize the progression of CAV in high-risk patients.
View on PubMed2015
2015
2015
2015
2015
OBJECTIVES
The goal of this study was to assess the relationship among extracellular volume (ECV), native T1, and systolic strain in hypertensive patients with left ventricular hypertrophy (HTN LVH), hypertensive patients without LVH (HTN non-LVH), and normotensive controls.
BACKGROUND
Diffuse myocardial fibrosis in HTN LVH patients, as reflected by increased ECV and native T1, may be an underlying mechanism contributing to increased cardiovascular risk compared with HTN non-LVH subjects and controls. Furthermore, increased diffuse fibrosis in HTN LVH subjects may be associated with reduced peak systolic and early diastolic strain rate compared with the other 2 groups.
METHODS
T1 mapping was performed in 20 HTN LVH (mean age, 55 ± 11 years), 23 HTN non-LVH (mean age, 61 ± 12 years), and 22 control subjects (mean age, 54 ± 7 years) on a Siemens 1.5-T Avanto (Siemens Healthcare, Erlangen, Germany) using a previously validated modified look-locker inversion-recovery pulse sequence. T1 was measured pre-contrast and 10, 15, and 20 min after injection of 0.15 mmol/kg gadopentetate dimeglumine, and the mean ECV and native T1 were determined for each subject. Measurement of circumferential strain parameters were performed using cine displacement encoding with stimulated echoes.
RESULTS
HTN LVH subjects had higher native T1 compared with controls (p < 0.05). HTN LVH subjects had higher ECV compared with HTN non-LVH subjects and controls (p < 0.05). Peak systolic circumferential strain and early diastolic strain rates were reduced in HTN LVH subjects compared with HTN non-LVH subjects and controls (p < 0.05). Increased levels of ECV and native T1 were associated with reduced peak systolic and early diastolic circumferential strain rate across all subjects.
CONCLUSIONS
HTN LVH patients had higher ECV, longer native T1 and associated reduction in peak systolic circumferential strain, and early diastolic strain rate compared with HTN non-LVH and control subjects. Measurement of ECV and native T1 provide a noninvasive assessment of diffuse fibrosis in hypertensive heart disease.
View on PubMed2015
BACKGROUND
Galectin-3 is a prognostic heart failure biomarker associated with aldosterone-induced myocardial fibrosis; mineralocorticoid receptor antagonists (MRAs) may reduce such fibrosis. We sought to examine outcomes of patients with heart failure with reduced ejection fraction (HFrEF) as a function of galectin-3 and MRA therapy.
METHODS
A total of 151 patients with chronic HFrEF were categorized by baseline galectin-3 and subsequent MRA therapy trends with regard to cardiovascular (CV) events, left ventricular remodeling, safety, and quality of life, over a mean of 10 months.
RESULTS
Although galectin-3 >20 ng/mL was associated with doubling in adjusted risk for CV events, regardless of MRA treatment, there was no difference in CV event rates with regard to MRA use patterns, independent of galectin-3 concentrations. Specifically, in patients with elevated galectin-3 treated with intensified MRA therapy, a significant difference was not detected in CV event rates (P = .79) or the cumulative number of such events (P = .76). Adjusted analysis revealed no difference in time to first CV event if MRA was added/intensified in those with elevated galectin-3 (hazard ratio 0.99, 95% CI 0.97-1.02, P = .74); similarly, cumulative MRA dose was not a specific predictor of benefit. In those with elevated galectin-3, MRA therapy did not affect left ventricular remodeling indices or quality of life at follow-up; these patients had the highest rates of treatment-related adverse events with intensified MRA use. Regardless of MRA use, elevated galectin-3 was associated with more significant renal dysfunction.
CONCLUSIONS
Among patients with chronic HFrEF and elevated galectin-3 concentrations, we found no specific benefit from addition or intensification of MRA therapy.
View on PubMed