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Biomedical subjects

S Mehta

Publications and source records attributed to S Mehta.

At least 127 records · Page 7Linked to original sources

Heart failure between 1986 and 1994: temporal trends in drug-prescribing practices, hospital readmissions, and survival at an academic medical center.

Since 1987, publications in widely circulated medical journals have reported improved survival and lower hospital readmission rates when patients with heart failure and systolic dysfunction are treated with angiotensin-converting enzyme (ACE) inhibitors. We describe changes in ACE inhibitor use among patients hospitalized with heart failure between 1986 and 1993. Simultaneous trends in readmissions and survival rates are reported. Subjects were 612 consecutive patients hospitalized with a principal diagnosis of heart failure at an academic medical center during the period of Sept. 1, 1986, to Dec. 31, 1987 (interval I) or during the period Aug. 1, 1992, to Nov. 30, 1993 (interval II). Medical records were reviewed for 434 patients, consisting of all patients hospitalized with heart failure during interval II and a randomly selected 50% subset of patients hospitalized during interval I. Among 145 patients with systolic dysfunction whose medical records were reviewed, ACE inhibitor prescriptions significantly increased between interval I and interval II (43% vs 71%, p < 0.01, odds ratio 3.22, 95% confidence interval 1.62 to 6.42). Prescriptions of ACE inhibitors combined with digoxin and a diuretic also increased (37% vs 56%, p = 0.02, odds ratio 2.22, 95% confidence interval 1.14 to 4.32). Among all 612 patients, 6-month heart failure readmission rates increased from 13% to 21% (p = 0.02, odds ratio 1.79, 95% confidence interval 1.10 to 2.82). There was no significant change in survival rate between interval I and interval II, however, survival rate was marginally significantly improved among patients with systolic dysfunction. Our results suggest that drug-prescribing practices have significantly changed between 1986 and 1993. The absence of observed improvement in outcomes may result from changes in hospital admission criteria for heart failure.

Aged↗

Serum autoantibodies in childhood opsoclonus-myoclonus syndrome: an analysis of antigenic targets in neural tissues.

OBJECTIVE: Opsoclonus-myoclonus (OM) is a rare neurologic syndrome affecting children and adults. In children it occurs as a parainfectious process or a paraneoplastic syndrome in association with neuroblastoma. Evidence for an immune mechanism includes the presence of serum autoantibodies to several neural antigens and improvement of symptoms with immunosuppressive therapy. We studied the neural antigenic targets of serum IgM and IgG autoantibodies from nine children with OM. DESIGN: We studied sera from nine children with OM, three with associated neuroblastoma and six with a prodromal viral illness. Control subjects (n = 77) included four children with neuroblastoma but not OM, 32 children with other neurologic disorders, and 41 with nonneurologic illnesses. We studied the neural antigenic targets of serum IgM and IgG autoantibodies by the following methods: (1) immunostaining of human cerebellar sections and peripheral nerve, and (2) Western blot analysis with human brain fractions including white matter, gray matter, and cerebellar Purkinje cells and nuclei. RESULTS: Sera from all nine children with OM had IgM and IgG binding to the cytoplasm of cerebellar Purkinje cells and to some axons in white matter. In peripheral nerve, IgM and IgG from all nine OM sera bound to large and small axons. Western blot analysis showed a distinctive pattern of binding to several neural proteins, including a 210 kd antigen identified as the high molecular weight subunit of neurofilament. No control serum showed a similar pattern of reactivity. CONCLUSION: Opsoclonus-myoclonus syndrome in childhood is associated with a distinctive pattern of serum IgM and IgG binding to neural tissues and antigens.

Adolescent↗

Measurement of shear-wave velocity by ultrasound critical-angle reflectometry (UCR).

There exists a growing body of research that relates the measurement of pressure-wave velocity in bone to different physiological conditions and treatment modalities. The shear-wave velocity has been less studied, although it is necessary for a more complete understanding of the mechanical properties of bone. Ultrasound critical-angle reflectometry (UCR) is a noninvasive and nondestructive technique previously used to measure pressure-wave velocities both in vitro and in vivo. This note describes its application to the measurement of shear-wave velocity in bone, whether directly accessible or covered by soft tissue.

Animals↗

Atherosclerotic risk factors are less intensively treated in patients with peripheral arterial disease than in patients with coronary artery disease.

OBJECTIVE: To compare rates of therapy for atherosclerotic risk factors between patients with lower extremity peripheral arterial disease (PAD) and patients with coronary artery disease (CAD). DESIGN: Cross-sectional. SETTING: Academic medical center. PATIENTS/PARTICIPANTS: Three hundred forty-nine consecutive patients diagnosed with PAD or CAD identified from the blood flow and cardiac catheterization laboratories, respectively. MEASUREMENTS AND MAIN RESULTS: Participants were interviewed by telephone for medical history as well as therapies prescribed and recommended by their physicians. Among patients with hypercholesterolemia, more CAD patients were taking cholesterol-lowering drugs (58% vs 46%, p = .08) and more CAD patients recalled a physician's instruction to follow a low-fat, low-cholesterol diet (94% vs 83%, p = .01). CAD patients were more likely to exercise regularly (71% vs 50%, p < .01). Among patients not exercising, more CAD patients recalled a physician's advice to exercise (74% vs 47%, p < .01). In logistic regression analysis, hypercholesterolemic patients with exclusive CAD were more likely to be treated with drug therapy (odds ratio [OR] 2.3, p = .05). CAD patients were more likely to recall advice to exercise (OR 4.0, p < .001), and more likely to be taking aspirin or warfarin (OR 4.8, p = .01). CONCLUSIONS: Atherosclerotic risk factors are less intensively treated among PAD patients than CAD patients. A number of possible explanations could account for these disparities in therapeutic intensity.

Aged↗

Ultrasound critical-angle reflectometry (UCR): a new modality for functional elastometric imaging.

This paper discusses the measurement of velocity in a solid based on the analysis of the amplitude and phase of ultrasound waves reflected by a solid, a technique called ultrasound critical-angle reflectometry (UCR). To this end, the complete formulation of ultrasound wave reflection and refraction from a liquid-solid interface is described. Differences between this formulation and previously published ones are briefly discussed. Based on this analysis it is in particular possible to measure by this technique not only pressure but also, for the first time in such studies, shear wave velocities, an experimentally confirmed result. The measurement of the complete stiffness matrix of a transversely isotropic solid, specifically cortical bone, by applying UCR elastometry to any point on the solid's surface is demonstrated. Finally this method is extended to functional elastometric imaging. The techniques presented in this paper offer new opportunities for applications of UCR imaging to the assessment of bone metabolism, formation and disease and also the analysis of composite materials in general.

Anisotropy↗

Randomized, prospective trial of bilevel versus continuous positive airway pressure in acute pulmonary edema.

OBJECTIVE: To evaluate whether bilevel positive airway pressure, by actively assisting inhalation, more rapidly improves ventilation, acidemia, and dyspnea than continuous positive airway pressure (CPAP) in patients with acute pulmonary edema. DESIGN: Randomized, controlled, double-blind trial. SETTING: Emergency department in a university hospital. PATIENTS: Twenty-seven patients, presenting with acute pulmonary edema, characterized by dyspnea, tachypnea, tachycardia, accessory muscle use, bilateral rales, and typical findings of congestion on a chest radiograph. INTERVENTIONS: In addition to standard therapy, 13 patients were randomized to receive nasal CPAP (10 cm H2O), and 14 patients were randomized to receive nasal bilevel positive airway pressure (inspiratory and expiratory positive airway pressures of 15 and 5 cm H2O, respectively) in the spontaneous/timed mode that combines patient flow-triggering and backup time-triggering. MEASUREMENTS AND MAIN RESULTS: After 30 mins, significant reductions in breathing frequency (32 +/- 4 to 26 +/- 5 breaths/min), heart rate (110 +/- 21 to 97 +/- 20 beats/min), blood pressure (mean 117 +/- 28 to 92 +/- 18 mm Hg), and Paco2 (56 +/- 15 to 43 +/- 9 torr [7.5 +/- 2 to 5.7 +/- 1.2 kPa]) were observed in the bilevel positive airway pressure group, as were significant improvements in arterial pH and dyspnea scores (p < .05 for all of these parameters). Only breathing frequency improved significantly in the CPAP group (32 +/- 4 to 28 +/- 5 breaths/min, p < .05). At 30 mins; the bilevel positive airway pressure group had greater reductions in Paco2 (p = .057), systolic blood pressure (p = .005), and mean arterial pressure (p = .03) than the CPAP group. The myocardial infarction rate was higher in the bilevel positive airway pressure group (71%) compared with both the CPAP group (31%) and historically matched controls (38%) (p = .05). Duration of ventilator use, intensive care unit and hospital stays, and intubation and mortality rates were similar between the two groups. CONCLUSIONS: Bilevel positive airway pressure improves ventilation and vital signs more rapidly than CPAP in patients with acute pulmonary edema. The higher rate of myocardial infarctions associated with the use of bilevel positive airway pressure highlights the need for further studies to clarify its effects on hemodynamics and infarction rates, and to determine optimal pressure settings.

Acute Disease↗

Acute and chronic effects of allergic airway inflammation on pulmonary nitric oxide production.

Nitric oxide (NO) is thought to be an important modulator of airway function in normal and inflamed airways. We investigated the acute and chronic effects of induced allergic airway inflammation on NO levels in mixed expired gas and NO synthase (NOS) expression in guinea pigs and the relationship between airway responses and NO production. Airway inflammation was induced by repeated aerosolized antigen exposure, and its presence was confirmed by bronchoalveolar lavage. Acute antigen exposure in sensitized animals produced a fivefold increase in respiratory resistance over baseline that was associated with a cotemporal increase in expired NO (17 +/- 1 to 56 +/- 8 parts per billion, P < 0.01). A continuous subcutaneous infusion of nitro-L-arginine methyl ester (L-NAME), a competitive inhibitor of NOS, markedly decreased expired NO (P < 0.01) and resulted in a significantly greater rise in resistance following antigen challenge (660 +/- 60 vs. 497 +/- 42% of baseline in non-L-NAME-treated animals, P < 0.05). These data support the hypothesis that endogenous pulmonary NO production, as reflected by expired NO, has an important homeostatic role in acute allergic bronchoconstriction.

Acute Disease↗

Endogenous nitric oxide and allergic bronchial hyperresponsiveness in guinea pigs.

To address the role of endogenous pulmonary nitric oxide (NO) in the modulation of airway tone, we investigated changes in expired NO levels, measured by chemiluminescence, and the effect of inhibition of NO synthase on inflammation-associated bronchial hyperresponsiveness in guinea pigs. Mixed expired gas NO levels were similar at baseline in antigen-exposed and unexposed animals and increased transiently to a similar degree during histamine-induced bronchoconstriction in both groups of animals [155 +/- 12% (15 +/- 1 to 23 +/- 4 ppb, P < 0.01) and 162 +/- 19% (16 +/- 2 to 25 +/- 3 ppb, P < 0.01) of baseline, respectively, after administration of 30 nmol/kg histamine]. Although inhibition of NO synthase with intravenous NG-nitro-L-arginine methyl ester (L-NAME, 10 mg/kg) enhanced bronchial responsiveness to histamine by 30 +/- 8% in unexposed animals (P < 0.05), L-NAME did not enhance histamine responsiveness in antigen-exposed animals exhibiting bronchial hyperresponsiveness 24 h after antigen exposure. Thus bronchial hyperresponsiveness induced by repeated pulmonary antigen exposure may be associated with a transient defect in NO-related homeostatic bronchodilator activity.

Animals↗

Contribution of type I NOS to expired gas NO and bronchial responsiveness in mice.

Nitric oxide (NO) can be measured in the expired gas of humans and animals, but the source of expired NO (F(E)NO) and the functional contribution of the various known isoforms of NO synthase (NOS) to the NO measured in the expired air is not known. F(E)NO was measured in the expired air of mice during mechanical ventilation via a tracheal cannula. F(E)NO was significantly higher in wild-type B6SV129J +/+ mice than in mice with a targeted deletion of type I (neural) NOS (nNOS, -/-) (6.3 +/- 0.9 vs. 3.9 +/- 0.4 parts/billion, P = 0.0345, for +/+ and -/- mice, respectively), indicating that approximately 40% of the NO in expired air in B6SV129 mice is derived from nNOS. Airway responsiveness to methacholine (MCh), assessed by the log of the effective dose of MCh for a doubling of pulmonary resistance from baseline (ED(200)R(L)), was significantly lower in the -/- nNOS mice than in the wild-type mice (logED(200)R(L), 2.24 +/- 0.07 vs. 2.51 +/- 0.06 microg/kg, respectively; P = 0.003). These findings indicate that nNOS significantly contributes to baseline F(E)NO and promotes airway hyperresponsiveness in the mouse.

Animals↗

Study of oxidative-stress in rifampicin-induced hepatic injury in growing rats with and without protein-energy malnutrition.

1. Rifampicin (RMP) induced hepatic injury was investigated in growing rats. The interaction of moderate and severe protein-energy malnutrition (PEM) was also investigated. 2. Status of oxidative/antioxidative profile was studied by the mechanistic approach, to enumerate the nature of injury. 3. Successful hepatic injury in rats was produced by giving intraperitoneal injection of RMP (50 mg/kg/day). 4. Hepatic lipid peroxidation was significantly increased in all the RMP treated rats. 5. Superoxide dismutase, catalase and glutathione peroxidase activities in the hepatic tissue decreased with RMP treatment. 6. Hepatic thiols represented as total and protein-bound thiols, showed significant elevation, whereas the non protein thiols remain unchanged with RMP treatment. 7. Glutathione-S-transferases also showed significant elevation against 1,2-dichloro-4 nitrobenzene (DCNB) and ethacrynic acid (EA) as substrates. 8. The oxidative/antioxidative profile was observed to be more severely affected with coexistence of malnutrition. 9. Histopathological correlation showed an additional fatty infiltration of hepatocytes with coexistence of malnutrition. 10. Thus, in conclusion, it can be speculated that an altered oxidative/antioxidative profile is the closely associated with production of RMP induced hepatic injury.

Alanine Transaminase↗

Serum IgM monoclonal autoantibody binding to the 301 to 314 amino acid epitope of beta-tubulin: clinical association with slowly progressive demyelinating polyneuropathy.

We identified five patients with IgM monoclonal autoantibodies that bound to human brain tubulin. In a companion study, we found that IgM in these sera selectively recognized one of three epitopes on tubulin. IgM from three patients bound selectively to a small epitope on human beta-tubulin comprising amino acids 301 to 314. The other two sera recognized tubulin amino acids 215 to 235 and 315 to 336. In this study, we compared the clinical syndromes in these patients with the tubulin epitope recognized by their serum IgM. The three patients with IgM binding to tubulin amino acids 301 to 314 all had chronic inflammatory demyelinating polyneuropathy (CIDP) syndromes with slowly progressive weakness, hyporeflexia, and electrophysiologic studies consistent with demyelination. Two of these patients had significant asymmetry to their weakness. The two other patients had diagnoses of polyradiculopathy and amyotrophic lateral sclerosis with no evidence of peripheral nerve demyelination. We conclude that IgM monoclonal anti-tubulin antibodies have some association with demyelinating polyneuropathy syndromes, but may occur in patients with other clinical syndromes as well. A stronger association with demyelinating polyneuropathies may occur if the anti-tubulin antibodies recognize the 301 to 314 amino acid epitope on tubulin. This tubulin epitope, or a similar one on another molecule, could play an important antigenic role in the development of demyelinating polyneuropathies with features of CIDP.

Aged↗

Reflection ultrasound velocities and histomorphometric and connectivity analyses: correlations and effect of slow-release sodium fluoride.

To better understand how structural and functional bone properties contribute to the changes in bone biomechanical properties revealed by ultrasound critical angle reflectometry (UCR) analysis, we measured both UCR velocities and histomorphometric properties in bone biopsy specimens from 33 osteoporotic patients before and following intermittent slow-release sodium fluoride (SRNaF) and continuous calcium citrate administration. Mean skeletal fluoride exposure was 17 months, and mean skeletal fluoride content was 0.203 +/- 0.088 SD% bone ash. Intermittent SRNaF and continuous calcium citrate promoted significant increases in trabecular thickness (122 +/- 18 SD microm to 131 +/- 20, p = 0.020), mineral apposition rate (0.79 +/- 0.26 to 1.05 +/- 0.40 microm/day, p = 0.014), and a significant decline in eroded surface (3.9 +/- 1.6 to 2.8 +/- 1.4%, p = 0.002). There were also significant increases in node number (0.193 +/- 0.100 to 0.368 +/- 0.245, p < 0.01) and node-to-node strut length (0.076 +/- 0.087 to 0.191 +/- 0.173, p < 0.01) relative to total cancellous area. Cortical UCR velocity did not change but cancellous velocity significantly increased by 97 m/s following therapy (p = 0.0005). When compared against the significant changes in bone histomorphometry and connectivity, the sum of both cancellous and cortical ultrasound velocities was significantly correlated with node number/area (R2 = 0.305, p < 0.0001) and node-to-node strut length/area (R2 = 0.372, p < 0.0001) and to a lesser extent with mineral apposition rate (R2 = 0.106, p = 0.032). Multiple regression analysis demonstrated that 40% of the variance in the sum of the UCR velocities can be accounted for by the variability in these histomorphometric and connectivity parameters. There were no significant correlations between the sum of cortical and cancellous ultrasound velocities and cancellous bone volume (R2 = 0.014, p = 0533), trabecular thickness (R2 = 0.012, p = 0.47), or bone mineral density (R2 = 0.003, p = 0.80). These observations indicate that velocity measurements with the UCR methodology show an improvement in bone elasticity associated, in part, with an improvement in the rate of bone mineralization and an improvement in bone quality at the structural level as shown by microarchitecture.

Adult↗

The effects of changes in ventilation and cardiac output on expired nitric oxide.

The measurement of nitric oxide (NO) in expired gas is being increasingly reported in disease states such as sepsis, heart failure, and asthma. However, the effects of changes in ventilatory and cardiac parameters on expired NO are not known. Therefore, we assessed the effects of changes in minute ventilation (VE), ventilatory pattern, and cardiac output on expired gas NO levels in five anesthetized, intubated pigs. The animals were mechanically ventilated at three settings for each of respiratory rate (12 to 14, 16 to 18, and 22 to 24/min) and tidal volume (10, 15, and 20 mL/kg) applied in random sequence, yielding nine ventilatory patterns and a range of VE (3.7+/-0.1 to 13.2+/-0.8 L/min). When VE was increased, expired NO concentration declined slightly (r=-0.40, p<0.01), but the rate of excretion of NO in expired gas increased significantly (r=0.60, p<0.01). In contrast, when cardiac output was increased progressively from 3.6+/-0.1 to 4.7+/-0.3 and 5.8+/-0.4 L/min (p<0.01) by volume loading during constant eucapneic ventilation, there was no change in expired NO. Changes in VE over a physiologic range significantly affect the measurement of NO in expired gas, whereas short-term changes in cardiac output do not. To facilitate comparison between studies, we suggest that the measurement of expired NO should be reported in conjunction with data on VE.

Animals↗

Study of oxidative-stress in isoniazid-rifampicin induced hepatic injury in young rats.

The role of oxidative-stress as a mechanism of hepatotoxicity caused by combination of isoniazid (INH) and Rifampicin (RMP) was investigated in young growing rats. A successful model of hepatotoxicity was produced by giving 50 mg/kg/day each of INH and RMP in two weeks. Liver showed type II hepatocellular changes (microvesicular fat deposition) with mild portal triaditis. The glutathione and related thiols were significantly decreased in both blood and liver tissues with combination of INH and RMP treatment. Superoxide dismutase, glutathione peroxidase, catalase and glutathione-S-transferases with CDNB and DCNB as substrates were decreased in the combination treated group. Glutathione reductase, glutathione-S-transferase with ethacrynic acid as substrate and lipid peroxidation exhibited a significant increase with treatment. The altered profile of antioxidant enzymes with increased lipid peroxidation indicated the enhanced oxidative-stress in combination of INH and RMP treatment. All the findings are faithfully reflected in the blood tissue except superoxide dismutase which showed significant enhancement in this tissue. INH and RMP hepatotoxicity is thus appeared to be mediated through oxidative-stress.

Animals↗

Taxol pretreatment of tumor targets amplifies natural killer cell mediated lysis.

Taxol is known to polymerize and stabilize microtubules and thereby alter many cellular functions. Our studies examined the effects of taxol pretreatment of tumor targets and cytotoxic effector cells in an effort to determine whether such treatment would result in increased tumor cell lysis without affecting cytotoxic cell function. Our studies demonstrated that taxol concentrations of 6-30 ng/ml which induced approximately 50% growth inhibition and > or = 50% block in the G2/M phase of the K562 cell targets did not have any significant effect on the functional ability of NK cells to lyse K562 cells. Pretreatment of K562 cells with taxol (6 and 30 ng/ml) resulted in an increase in K562 cell lysis by NK cells (or NK cells stimulated with 100 units/ml of rIL-2) in 7 out of 9 donors. The amplification of NK cell-mediated lysis of tumor targets due to taxol pretreatment may provide a combination therapeutic approach which includes taxol treatment followed by rIL-2 stimulation of the immune killer cell function.

Antineoplastic Agents, Phytogenic↗