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Biomedical subjects

H Jain

Publications and source records attributed to H Jain.

At least 19 recordsLinked to original sources

Role of kappa- and delta-opioid receptors in the antinociceptive effect of oxytocin in formalin-induced pain response in mice.

Oxytocin has been implicated in the modulation of somatosensory transmission such as nociception and pain. The present study investigates the effect of oxytocin on formalin-induced pain response, a model of tonic continuous pain. The animals were injected with 0.1 ml of 1% formalin in the right hindpaw and the left hindpaw was injected with an equal volume of normal saline. The time spent by the animals licking or biting the injected paw during 0-5 min (early phase) and 20-25 min (late phase) was recorded separately. Oxytocin (25, 50, 100 microg/kg, i.p.) dose dependently decreased the licking/biting response, both in the early as well as the late phases. The antinociceptive effect of oxytocin (100 microg/kg, i.p.) was significantly attenuated in both the phases by a higher dose of the non-selective opioid receptor antagonist naloxone (5 mg/kg, i.p.), MR 2266 (0.1 mg/kg, i.p.), a selective kappa-opioid receptor antagonist and naltrindole (0.5 mg/kg, i.p.), a selective delta-opioid receptor antagonist but not by a lower dose of naloxone (1 mg/kg, i.p.) or beta-funaltrexamine (2.5 microg/mouse, i.c.v.), a selective mu-opioid receptor antagonist. Nimodipine, a calcium channel blocker (1 and 5 mg/kg, i.p.) produced a dose-dependent analgesic effect. The antinociceptive effect of oxytocin was significantly enhanced by the lower dose of nimodipine (1 mg/kg, i.p.) in both the phases. Chronic treatment with oxytocin (100 microg/kg/day, i.p. daily for 7 days) did not produce tolerance in both the phases of formalin-induced pain response. The results thus indicate that oxytocin displays an important analgesic response in formalin test; both kappa- and delta-opioid receptors as well as voltage-gated calcium channels seem to be involved in the oxytocin-induced antinociception.

Analgesics↗

Mid-IR biosensor: detection and fingerprinting of pathogens on gold island functionalized chalcogenide films.

Antibody (human IgG, anti-E. coli O157:H7, and anti-Salmonella) complexes on the surface of IR-transparent Ge-containing chalcogenide glass films were formed via thiol chemistry on 20-nm-thick gold islands. As a first step, the protocol was validated by monitoring fluorescently tagged targets to validate binding. FT-IR spectroscopy confirmed that the coating of the films with 20-nm gold did not have a significant effect on the propagation and penetration of IR evanescent waves through the film. The films functionalized with anti-E. coli O157:H7 and anti-Salmonella antibodies were used to detect E. coli O157:H7 and S. enteriditis through label-free IR fingerprinting. Highly selective detection of bacterial targets was achieved at both the species (E. coli vs. S. enteriditis) and strain level (E. coli O157:H7 vs E. coli K12). A mid-infrared approach could thus be used as a biosensor as well as a molecular fingerprinting tool.

Antibodies, Bacterial↗

Antidepressant-associated mania in late life.

BACKGROUND: Elderly patients can present with mania for the first time late in life, and some elders treated with antidepressants can present with mania. Clinical characteristics of antidepressant-associated mania (AAM) in late life have not been examined. OBJECTIVES: The aims of the study were to identify elders with AAM and to compare selected clinical characteristics to those of manic elders who had not been treated with an antidepressant. We hypothesized that AAM patients would have later age at presentation of bipolar disorder. METHODS: We retrospectively reviewed inpatients with manic disorder who were aged >or=60 years. The sample was selected from admissions prior to 1990. RESULTS: AAM patients (n = 11) were more often experiencing first manic episode, and they had later age at onset of first manic episode, compared to non-AAM patients (n = 46). Most of the AAM patients had been treated with tricyclic agents. CONCLUSIONS: These preliminary findings invite further investigation. Related studies may contribute to risk-benefit analyses for the use of particular antidepressants in the elderly. Also, first episode mania in late life may prove to be a useful model of vulnerability to AAM.

Adolescent↗

Synthesis and characterization of catalysts produced from paper mill sludge. I. Determination Of NOx removal capability.

Characteristics and catalytic properties of a series of carbon-based catalysts (CBCs) produced from paper mill sludge were evaluated. The major processes involved in the production of the catalysts were chemical activation, impregnation, pyrolysis, and post pyrolysis rinsing. The porous structure, catalytic activity and thermostability of the catalysts were tailored during the production stage by introducing hetero-atoms (zinc chloride, and ferric nitrate) in the carbon structure. Characterization of the produced CBCs included determination of the surface area, pore size, and pore size distribution (PSD) from standard N2-adsorption isotherm data. The extent of graphitization and the presence of metal crystals were identified from X-ray diffraction (XRD). The limit of the catalyst gasification was estimated from thermogravimetric analysis (TGA) conducted in an oxidized environment. The NOx reduction capability of the produced catalysts was evaluated in the presence of carbon monoxide using a fixed bed reactor. The reaction temperature ranged from 300 to 500 degrees C. It was shown that paper mill sludge is an excellent precursor for the production of CBCs with NOx removal capability of 66-94%. The catalytic capability of the produced CBCs varied according to the method of production, catalyst surface properties (surface area, pore structure, PSD), metal composition and reaction temperature. The highest NOx removal capacity was observed for the catalytic reactions carried out at 400 degrees C. The mesoporous catalyst produced with a Zn:Fe molar ratio of 1:0.5 exhibited the maximum NOx removal catalytic activity of 94%.

Carbon↗

The treatment of infantile hydrocephalus: "differential-pressure" or "flow-control" valves. A pilot study.

The choice of shunt valve in the treatment of hydrocephalus in children remains controversial. We embarked on a pilot study to determine the differences in outcome between differential-pressure and flow-regulating valves. Prospective data collected on 50 consecutive first-time shunt insertions, performed between June 1993 to June 1996, was analysed. Children with tumour-related hydrocephalus and Dandy-Walker malformations as well as children who had external ventricular drainage prior to definitive shunt insertion were excluded from the study. The defining event was the first complication necessitating surgery, including obstruction, over-drainage and infection. Of the 50 children (31 males), 23 had differential pressure (medium-pressure) and 27 had Delta (performance level 2) valves inserted. The mean age at shunt insertion was 26.4 months. The mean follow-up was 53.8 months. The overall cumulative shunt survival at 5 years was 58.6% for the differential pressure and 58.7% for the Delta valves. The mean shunt life was 37.1 months for the differential pressure group and 34.6 months for the Delta group. This difference was not statistically significant (P=0.72, t-test). Both valves had a similar outcome with respect to obstruction (including proximal, valve, distal). The main differences between the two valves were with respect to the incidence of over-drainage and infection. Amongst the differential pressure valves, there were 4 instances of overdrainage (3 slit-ventricle syndrome, 1 bilateral subdural collection)--all occurring within the first 36 months. The Delta valve group had only one instance of over-drainage (bilateral subdural collection). There were no infections in the differential pressure valve group, whereas 3 of the Delta valve shunts got infected, all within the first month. Whereas both shunt types seemed to have a similar overall survival, there was a relatively higher incidence of over-drainage amongst the differential pressure valves. The Delta valves, on the other hand, had higher rates of infection. Similar studies with larger numbers could suggest whether the choice of shunt type will ultimately have to be a compromise accepting one or the other complication.

Cerebrospinal Fluid Shunts↗

Brain computed tomography in geriatric manic disorder.

BACKGROUND: Excess brain changes in geriatric manic patients have been hypothesized. Few neuroimaging studies are available. METHODS: Brain computed tomography scans in geriatric patients with manic disorder (n = 30) were compared to those in same-age control subjects (n = 18). Ratings of cortical sulcal widening (CSW), lateral ventricle-brain ratio (VBR), and related linear measures were determined. RESULTS: Patients had greater CSW scores (Exact p = .002) and VBR (t = 2.51, df = 46, p < .02) compared to control subjects. CSW was positively associated with age at illness onset (rs = .46, p < .01) and age at first manic episode (rs = .53, p < .005). VBR was poorly correlated with CSW and was not associated with these indices of illness course. CONCLUSIONS: These findings support the need for further investigation of relationships between brain structure and clinical features in geriatric mania.

Aged↗

Effect of electrode size on impedance images of two- and three-dimensional objects.

The sensitivity of an impedance imaging system to small cylindrical inhomogeneities in two-dimensional (2-D) and three-dimensional (3-D) saline tanks was studied for different height electrodes and different height targets. Experimental results were compared with analytical models. Inhomogeneities in the 3-D tank having limited vertical extent were detected by electrodes of vertical size comparable to that of the inhomogeneity. Taller electrodes had increased sensitivity to short targets to only a limited extent. When the electrode height was more than twice that of the target, sensitivity decreased or remained the same with further increases in electrode height. The system was less sensitive to inhomogeneities in the 3-D tank than to those in the 2-D tank. The distinguishability of conductors was greater than that of insulators in the 3-D tank, and the opposite was true in the 2-D tank, consistent with an analytical result.

Agar↗

An iterative Newton-Raphson method to solve the inverse admittivity problem.

By applying electrical currents to the exterior of a body using electrodes and measuring the voltages developed on these electrodes, it is possible to reconstruct the electrical properties inside the body. This technique is known as electrical impedance tomography. The problem is nonlinear and ill conditioned meaning that a large perturbation in the electrical properties far away from the electrodes produces a small voltage change on the boundary of the body. This paper describes an iterative reconstruction algorithm that yields approximate solutions of the inverse admittivity problem in two dimensions. By performing multiple iterations, errors in the conductivity and permittivity reconstructions that result from a linearized solution to the problem are decreased. A finite-element forward-solver, which predicts voltages on the boundary of the body given knowledge of the applied current on the boundary and the electrical properties within the body, is required at each step of the reconstruction algorithm. Reconstructions generated from numerical data are presented that demonstrate the capabilities of this algorithm.

Algorithms↗

Electrical impedance tomography of complex conductivity distributions with noncircular boundary.

Electrical impedance tomography (EIT) uses low-frequency current and voltage measurements made on the boundary of a body to compute the conductivity distribution within the body. Since the permittivity distribution inside the body also contributes significantly to the measured voltages, the present reconstruction algorithm images complex conductivity distributions. A finite element model (FEM) is used to solve the forward problem, using a 6017-node mesh for a piecewise-linear potential distribution. The finite element solution using this mesh is compared with the analytical solution for a homogeneous field and a maximum error of 0.05% is observed in the voltage distribution. The boundary element method (BEM) is also used to generate the voltage data for inhomogeneous conductivity distributions inside regions with noncircular boundaries. An iterative reconstruction algorithm is described for approximating both the conductivity and permittivity distributions from this data. The results for an off-centered inhomogeneity showed a 35% improvement in contrast from that seen with only one iteration, for both the conductivity and the permittivity values. It is also shown that a significant improvement in images results from accurately modeling a noncircular boundary. Both static and difference images are distorted by assuming a circular boundary and the amount of distortion increases significantly as the boundary shape becomes more elliptical. For a homogeneous field in an elliptical body with axis ratio of 0.73, an image reconstructed assuming the boundary to be circular has an artifact at the center of the image with an error of 20%. This error increased to 37% when the axis ratio was 0.64. A reconstruction algorithm which used a mesh with the same axis ratio as the elliptical boundary reduced the error in the conductivity values to within 0.5% of the actual values.

Algorithms↗