Decay of 0(+) analogue state of 120Sb.
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Biomedical subjects
Publications and source records attributed to S Bose.
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In a randomised double-blind study, 34 elderly patients (ASA grades 1-2) underwent elective intra-ocular surgery. Patients were allocated randomly to two groups to receive oral clonidine 300 micrograms or oral diazepam 10 mg 2 h before surgery. Facial block and retrobulbar block were given at 2 h after premedication. Anaesthetic recovery was assessed using a clinical recovery score (at 0, 30, 60 and 120 min after arrival in the recovery room) and brain stem auditory evoked potential responses (BAER) (immediately after operation and at 120 min after operation). In both the groups the clinical recovery scores decreased significantly at 30 and 60 min following recovery (p < 0.01). At 120 min this score returned to the pre-operative value in the clonidine group, but in the diazepam group there was a significant difference between the 2h value and pre-operative value (p < 0.05). In the clonidine group there was no significant rise in the interpeak latencies and absolute peak latencies of brain stem auditory evoked responses recorded immediately after operation and 120 min after operation. In the diazepam group, there was a significant rise in the interpeak latencies immediately after operation and 120 min after operation and a rise in absolute peak latencies (p < 0.05) immediately after operation. In the clonidine group there was a reduction (p < 0.05) in amplitude of wave V at immediately after operation. We conclude that clonidine 300 micrograms orally before surgery does not delay recovery.
Effect of group IIB metals on the endogenous status of metallothionein (MT) and reduced glutathione (GSH) was studied in two vital detoxifying organs namely, liver and kidney of rat. The metals were administered at non lethal levels (1/10 LD50) which were found to cause no death. Zinc showed accumulation in both liver and kidney, cadmium preferentially in the liver while mercury in the kidney. Hepatic MT content was increased by 18-fold, 15-fold and 2-fold by cadmium, zinc and mercury respectively while renal MT was increased maximally by zinc. Among the metals, mercury caused highest depletion of hepatic GSH level (51%). The renal GSH showed differential response to the metal treatment, the level increasing slightly by cadmium and depleting significantly by zinc and mercury. A positive correlation was found between group IIB metal accumulation and the manifestation of toxic response.
The mechanism of action of cadmium in the inductive pathway of metallothionein (MT) synthesis was studied in the rat. Cadmium significantly elevated the MT level by 872% which was antagonised by coadministration of either verapamil (343.5%) or ionophore (570%). The Ca-dependent biomolecules such as cyclic AMP or calmodulin remained depressed in all treatment regimens except calmodulin in the ionophore treated rat. Total Ca2+ showed no increase in its profile except in the ionophore treatments either alone or with CdCl2. The Na+ profile is, however, significantly elevated in all cases except the ionophore treated rat. The present study clearly indicates that (a) Ca2+ has no first messenger role in the schematic events leading to MT synthesis and (b) Na+ may be regarded as a possible candidate in the molecular events of Cd-induced MT synthesis.
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We investigated the psychosocial adjustment of school-aged, human immunodeficiency virus-positive children and factors associated with level of adjustment. Participants were primarily transfusion-infected children living in middle-class families. We administered measures of depression, anxiety, and self-concept to children, and measures of behavior problems, social functioning, personality characteristics, and life events to parents. An index of disease stage was also collected. Children reported experiencing low levels of depressive and anxious affect and generally felt positively about themselves. By contrast, parents saw their children as more anxious and less socially active than respective standardization samples. A greater than expected proportion of these children, as reported by their parents, scored in the maladaptive range on measures of social functioning, anxiety, and conduct problems. Experience of adversive life events and progression of the disease were associated with more behavioral and social problems. Findings are discussed in terms of their generalizability and implications for future research.
The effect of chronic administration of variable low doses of Aspirin was studied on platelet adhesiveness, platelet count, bleeding time and clotting time to find out as to how low the dose of aspirin needs to be in order to have an effective antiplatelet effect in patients who require such therapy. A statistically significant reduction in the platelet adhesiveness was observed in all the groups, but the best effect was exhibited by 50 mgm of aspirin dose. Bleeding time was also increased in all the groups but statistically significant difference was observed with 50, 75 and 100 mgm doses. There was no change in platelet count and clotting time.
The mechanism of growth factor protection against metabolic/excitotoxic insults was examined. The time course of changes in ATP levels, mitochondrial transmembrane potential, intracellular free calcium levels ([Ca2+]i), and cell survival resulting from glucose deprivation were assessed in cultured hippocampal neurons. ATP levels were significantly reduced within 1 h of the onset of glucose deprivation and reached less than 20% of control levels by 12 h. Mitochondrial transmembrane potential (assessed by rhodamine 123 accumulation in mitochondria) declined progressively between 4 and 20 h following the onset of glucose deprivation. The [Ca2+]i was reduced during the first 1 h of glucose deprivation, gradually rose through 12 h, and then rose rapidly and was elevated five- to sevenfold after 16 h. The [Ca2+]i did not increase, and mitochondrial dysfunction and cell damage were prevented, in hypoglycemic neurons incubated in Ca(2+)-deficient medium. Elevation of [Ca2+]i by exposure of neurons to glutamate caused loss of rhodamine 123 fluorescence and structural damage to mitochondria. Mitochondrial function could be restored and cell survival maintained by addition of glucose prior to the late elevation of [Ca2+]i. Nerve growth factor (NGF), basic fibroblast growth factor (bFGF), and insulin-like growth factor II (IGF-II) prevented loss of both [Ca2+]i homeostasis and mitochondrial transmembrane potential, and protected hippocampal neurons against hypoglycemic injury, but did not prevent the hypoglycemia-induced reduction in ATP levels. NaCN and 2,4-dinitrophenol (DNP) caused a large elevation of [Ca2+]i, mitochondrial dysfunction, and cell death. NGF, bFGF, and IGF-II each significantly reduced the adverse effects of NaCN and DNP on [Ca2+]i, mitochondrial function, and cell survival. Loss of [Ca2+]i homeostasis may be a critical event leading to mitochondrial damage and cell death resulting from energy failure. Preventing loss of [Ca2+]i homeostasis may be a general mechanism for the neuroprotective action of growth factors.
The present study tries to find out the kinetics of distribution of mercury in the different subcellular fractions of the liver in a freshwater perch Anabas testudineus over a period of 48 h after a single i.m. injection of [203Hg]mercuric nitrate at a dose of 4 mg/kg body weight. The fish were killed at 15 min, 2 h, 6 h and 48 h post injection. In addition the interaction of this metal with different biomolecules, viz., protein, DNA and RNA, was also investigated. Cytosol was found to be the major site of mercury accumulation. Moderate amounts of accumulation occurred in the nuclear, mitochondrial and microsomal fractions, although varying with time, while the lysosomal fraction did not reveal any spectacular retention of mercury. A significant increase in the protein content of nuclear, mitochondrial, lysosomal and cytosolic fractions was also noticed at different time periods of mercury injection. In the nuclear, microsomal and cytosolic proteins, mercury binding increased more significantly over time than the mitochondrial and lysosomal proteins. A biphasic binding pattern of mercury was seen in nuclear and mitochondrial DNA and mitochondrial and cytosolic RNA.
Cytotoxicity of inorganic mercury to the liver of two species, Anabas testudineus and Sprague Dawley male rat was evaluated. Distribution kinetics of this metal in the different hepatic subcellular fractions were followed for 48 h after a single injection of [203Hg] mercuric nitrate at a dose of 4mg/kg b.w. Interaction of this metal with protein, DNA and RNA was also studied. In rat, nuclear and lysosomal fractions showed a significant increase in the protein content, while in fish, the amount of protein increased in all fractions except microsome. Comparatively more mercury was bound to protein in fish during the later phase of treatment. Retention of mercury in nuclear DNA of rat gradually declined from 15 min to 48 h of treatment, while, mitochondrial DNA binding to mercury increased from 15 min to 2 h of post injection and then declined in the later phase of the experiment. Such a biphasic binding pattern of mercury was shown by both the nuclear and mitochondrial DNA of the fish. The nuclear RNA of rat and mitochondrial and cytosolic RNA of both test species also showed a biphasic pattern of mercury binding, however, with a higher rate of binding in fish at the later phase of the experiment. The present study thus highlights that (a) mercury follows a definite distribution pattern in the subcellular fractions of the liver in both animal species, (b) cytosol is the major site of mercury accumulation.
PURPOSE: Structural changes in the retina are known to occur with aging. This study was performed to investigate whether aging also affects the retinal macular microcirculation. METHODS: Healthy volunteers with ages ranging from 20 to 78 years (mean +/- SD, 49 +/- 19 years) were included in this study. The retinal macular microcirculation was assessed with the blue field simulation technique, based on the blue field entoptic phenomenon. Subjects were asked to match the velocity and density of computer-simulated particles displayed on a screen with those of their entoptically observed leukocytes. Ten matching trials were performed, and an average leukocyte velocity and density were calculated. RESULTS: Significant negative linear correlations were observed between velocity and age (P = 0.0001) and density and age (P = 0.009). Older subjects (50 to 78 years of age) had a significantly slower velocity (0.61 +/- 0.21 mm/s) and smaller density (90 +/- 43 particles per field of view) than younger subjects (0.92 +/- 0.12 mm/s and 135 +/- 65 particles, respectively; unpaired Student's t-test, P = 0.001 and P = 0.01, respectively). CONCLUSIONS: These results suggest that, in normal subjects, retinal macular blood flow decreases with age. The 20% decrease in average velocity with age is very similar to the age-related decrease in number of cells observed in the human foveal ganglion cell layer.
Measurements of relative quantum yields of Photosystem II and Photosystem I partial reactions and room-temperature chlorophyll a fluorescence of thylakoids in high- and low-salt media showed that the cation-induced changes in the excitation energy distribution were inhibited in the thylakoids isolated from pea plants grown in the presence of sublethal concentration of the pyridazinone herbicide BASF 13.338. Simultaneous measurement of Photosystem II and Photosystem I fluorescence emission kinetics at 77 K showed that the ability of cations to regulate excitation energy spillover from Photosystem II to Photosystem I was inhibited in thylakoids of the BASF-grown plants. Cation regulation of the absorption cross-section of the photosystems was not affected. Electron microscope data revealed that the proportion of stroma membranes relative to grana membranes was markedly less in the thylakoids of the BASF-grown plants. Furthermore, when the thylakoids were resuspended in low-salt medium, no unstacking of the grana was detected. The observed inhibition of cation-induced spillover change was presumably due to loss of ability of these photosynthetic membranes to undergo unstacking in low-salt medium.
The cytomorphological features of 38 cases of medullary carcinoma of the thyroid on FNAC were studied. These cases were retrieved from the files of the cytopathology laboratory. In addition, staining for calcitonin (19 cases), thyroglobulin (5 cases), neurone specific enolase (7 cases), and carcinoembryonic antigen (8 cases) was done. Electron microscopy was done in two cases. On morphology, the presence of amyloid together with cytoplasmic granules was found to be diagnostic. The plasmacytoid cell type and the mixed cell populations were most commonly observed. Pseudononuclear inclusions were seen in 58% of cases. Calcitonin was present in 74% of cases. NSE was noncontributory, whereas CEA was positive in one of the calcitonin negative cases.
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In a randomized double-blind study, the effects of clonidine premedication as a sedative, anxiolytic, analgesic and oculohypotensive agent were studied in 100 elderly patients (62 to 65 +/- 10 years, ASA grade I-II) undergoing elective intraocular surgery under local anaesthesia. The control group (Group A, n = 50) received oral diazepam 0.15 mg/kg 120 min before surgery and Group B (n = 50) received oral clonidine 300 micrograms 120 min before surgery. Two hours after the premedication, there was significantly more sedation (P less than 0.05) and less subjective anxiety (P less than 0.05) in the clonidine group than in the control group. There was a significant fall in intraocular pressure (IOP) from 20 +/- 0.5 to 13 +/- 0.5 mmHg (P less than 0.05) and significant reduction in systolic and diastolic blood pressure (BP) and heart rate (HR) (P less than 0.05) in the clonidine group as compared to the control group. Perioperatively, significantly more supplementation with i.v. diazepam was given in the control group than in the clonidine group (P less than 0.01). The incidence of intra-operative hypertension (P less than 0.01) and tachycardia (P less than 0.05) was significantly greater in the control group than in the clonidine group. A significantly larger number of patients in the clonidine group scored a Post-Anaesthesia Recovery (PAR) score of 10 as compared to the control group (P less than 0.01). There was no statistical difference in the postoperative Visual Analogue Scale (VAS) scores for pain, number of analgesic requests and emesis.(ABSTRACT TRUNCATED AT 250 WORDS)
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The distribution of mercury, an environmentally important toxicant, has been evaluated in a time dependent manner in different tissues of white rat and a freshwater teleost, Anabas testudineus. Sampling was performed at 15 min, 2, 6 and 48 h post injection (im) of 203Hg mercuric nitrate. Radioactivity of the 5% tissue homogenate, serum and bile was measured in a Gamma Counter. The rate of 203Hg accumulation is higher in fish immediately after administration which, however, is more or less of equal rate in the later period of observation in both the experimental animals. Partitioning of 203Hg occurs in a species specific manner with higher levels recorded in the brain and gonad of white rat. Spleen, liver and kidney, however, are the major tissues to accumulate mercury in both the species. The present study highlights that kidney is the target site of mercury retention with a higher kidney/liver ratio of mercury.
The common anthelmintics, oxantel, mebendazole, albendazole and pyrantel were assessed for their comparative activity against Trichuris muris in mice. Mice were infected with T. muris and the infection was maintained by a brief cortisone administration during the second week of infection. Mice carrying the infection with different life cycle stages, viz. fourth stage larvae (L4), pre-adult and adult stages were dosed with anthelminitics. The worm burdens in control infection groups varied although infection dose and other conditions were uniformly followed. With various dose regimens tested, oxantel was highly potent; it eliminated completely pre-adult and adult stages, respectively at 25 and 12.5 mg kg-1 dose levels with significant activity also against adult worms at a 1.56 mg kg-1 dose level and against pre-adults at a 6.25 mg kg-1 level. Pre-adults required twice the dose given to that of adults for complete (100%) activity. Mebendazole was the next most active; a dosage of 37.5 mg kg-1 was completely active against pre-adults whereas a dosage of 2 x 50 mg kg-1 was required for complete elimination of adult worms. In addition, about 90% of the worms were eliminated with a single dose of 150 mg kg-1. However, a significant activity was seen against adults at a 25 mg kg-1 level and pre-adults at 37.5 mg kg-1, the lowest level tested. In comparison, albendazole did not induce complete clearance of pre-adult and adult stages even when tested at dose levels as high as 150 and 2 x 75 mg kg-1, respectively.(ABSTRACT TRUNCATED AT 250 WORDS)