Publications
Department of Medicine faculty members published more than 3,600 peer-reviewed articles in 2024.
2010
2010
Little is known about electrocardiographic (ECG) characteristics of menopausal women with or at increased risk of coronary heart disease (CHD). Data from 10,101 participants in the Raloxifene Use for The Heart (RUTH) trial were used to correlate baseline ECG abnormalities with clinical characteristics. Baseline characteristics that were statistically significantly associated (p ≤ 0.05) with ECG findings in univariate analyses were used to derive multivariate model selection. Of 59% normal electrocardiograms, 50% were from women with CHD and 69% from women at increased risk of CHD. In the women with CHD, 59% reported a previous myocardial infarction (MI); 43% had a normal electrocardiogram, and 49% had a definite ECG Q-wave MI. Women in the increased-risk group had not reported a previous MI, yet 11% had a definite ECG Q-wave MI. Of women reporting hypertension, 35% had ECG evidence of left ventricular hypertrophy, but 58% did not have an abnormal electrocardiogram. Significantly more women with diabetes in the increased-risk and documented CHD cohorts had abnormal electrocardiograms (p < 0.01 for the 2 cohorts). Percent abnormal electrocardiograms increased with increasing age (55 to 64, 65 to 74, and ≥ 75 years, p < 0.01) in all cohorts. Angina and coronary artery bypass graft surgery, but not percutaneous coronary intervention, predicted an abnormal electrocardiogram. In conclusion, there were high percentages of normal electrocardiograms in the increased-risk and documented CHD groups of RUTH participants, with substantial discrepancy between MI history and ECG MI documentation, and increasing age was the predominant correlate with an abnormal electrocardiogram in all 3 cohorts.
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BACKGROUND
Parkinson's disease is a chronic, neurodegenerative disease characterized by gait abnormalities. Freezing of gait (FOG), an episodic inability to generate effective stepping, is reported as one of the most disabling and distressing parkinsonian symptoms. While there are no specific therapies to treat FOG, some external physical cues may alleviate these types of motor disruptions. The purpose of this study was to examine the potential effect of continuous physical cueing using robot-assisted sensorimotor gait training on reducing FOG episodes and improving gait.
METHODS
Four individuals with Parkinson's disease and FOG symptoms received ten 30-minute sessions of robot-assisted gait training (Lokomat) to facilitate repetitive, rhythmic, and alternating bilateral lower extremity movements. Outcomes included the FOG-Questionnaire, a clinician-rated video FOG score, spatiotemporal measures of gait, and the Parkinson's Disease Questionnaire-39 quality of life measure.
RESULTS
All participants showed a reduction in FOG both by self-report and clinician-rated scoring upon completion of training. Improvements were also observed in gait velocity, stride length, rhythmicity, and coordination.
CONCLUSIONS
This pilot study suggests that robot-assisted gait training may be a feasible and effective method of reducing FOG and improving gait. Videotaped scoring of FOG has the potential advantage of providing additional data to complement FOG self-report.
View on PubMed2010
2010
2010
COX-2 has been implicated in Kaposi's sarcoma-associated herpesvirus (KSHV) latency and pathogenesis (A. George Paul, N. Sharma-Walia, N. Kerur, C. White, and B. Chandran, Cancer Res. 70:3697-3708, 2010; P. P. Naranatt, H. H. Krishnan, S. R. Svojanovsky, C. Bloomer, S. Mathur, and B. Chandran, Cancer Res. 64:72-84, 2004; N. Sharma-Walia, A. G. Paul, V. Bottero, S. Sadagopan, M. V. Veettil, N. Kerur, and B. Chandran, PLoS Pathog. 6:e1000777, 2010; N. Sharma-Walia, H. Raghu, S. Sadagopan, R. Sivakumar, M. V. Veettil, P. P. Naranatt, M. M. Smith, and B. Chandran, J. Virol. 80:6534-6552, 2006). However, the precise regulatory mechanisms involved in COX-2 induction during KSHV infection have never been explored. Here, we identified cis-acting elements involved in the transcriptional regulation of COX-2 upon KSHV de novo infection. Promoter analysis using human COX-2 promoter deletion and mutation reporter constructs revealed that nuclear factor of activated T cells (NFAT) and the cyclic AMP (cAMP) response element (CRE) modulate KSHV-mediated transcriptional regulation of COX-2. Along with multiple KSHV-induced signaling pathways, infection-induced prostaglandin E(2) (PGE(2)) also augmented COX-2 transcription. Infection of endothelial cells markedly induced COX-2 expression via a cyclosporine A-sensitive, calcineurin/NFAT-dependent pathway. KSHV infection increased intracellular cAMP levels and activated protein kinase A (PKA), which phosphorylated the CRE-binding protein (CREB) at serine 133, which probably led to interaction with CRE in the COX-2 promoter, thereby enhancing COX-2 transcription. PKA selective inhibitor H-89 pretreatment strongly inhibited CREB serine 133, indicating the involvement of a cAMP-PKA-CREB-CRE loop in COX-2 transcriptional regulation. In contrast to phosphatidylinositol 3-kinase and protein kinase C, inhibition of FAK and Src effectively reduced KSHV infection-induced COX-2 transcription and protein levels. Collectively, our study indicates that mediation of COX-2 transcription upon KSHV infection is a paradigm of a complex regulatory milieu involving the interplay of multiple signal cascades and transcription factors. Intervention at each step of COX-2/PGE(2) induction can be used as a potential therapeutic target to treat KSHV-associated neoplasm and control inflammatory sequels of KSHV infection.
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