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Biomedical subjects

J Srinivasan

Publications and source records attributed to J Srinivasan.

At least 19 recordsLinked to original sources

Thromboembolic prophylaxis in plastic surgery a 12-year follow up in the UK.

Potentially fatal thromboembolic events prevail post-operatively despite the widespread availability of proven methods of prophylaxis. In 1992 Dujon et al published an article which reviewed thromboembolic prophylaxis methods of Consultant Plastic Surgeons in the UK and Ireland. Our follow up study surveyed all current Consultant B.A.P.S members using a modified postal questionnaire to assess practice nationwide. Our conclusions were drawn from comparisons made between the two populations some twelve years apart. Our results show a dramatic change from the previous findings. Since 1992 86% of respondents have developed a set prophylaxis protocol (compared to 19%). The use of low molecular weight heparin has drastically increased by 24% to 76%, the use of flow-tron boots (or similar) has increased by 22% to 68%, the use of TED stockings has increased by 12% to 83%, the use of multi-modality prophylaxis has increased by 27% to 79% Our results demonstrate a definite shift towards multi-modal thromboembolic prophylaxis, possibly due to increased awareness of available technologies and subsequent reduction in costs.

Anticoagulants↗

Effect of losartan and enalapril on cognitive deficit caused by Goldblatt induced hypertension.

The present study was designed to evaluate the learning and memory, in an altered physiological state associated with increased blood pressure and activated renin angiotensin system in Wistar rats. The role of angiotensin in cognitive function was assessed by treatment with angiotensin converting enzyme (ACE) inhibitor enalapril (2 mg/kg), angiotensin 1 receptor (AT(1)) antagonist losartan (5 mg/kg) and their combination. The experimental renal hypertension was induced by the method of Goldblatt. Learning and memory was assessed using the radial arm maze test. Acetylcholine esterase (AChE) levels in the pons medulla, hippocampus, striatum and frontal cortex were measured as a cholinergic marker of learning and memory. Results indicate that in comparison to normotensive rats, renal hypertensive rats committed significantly higher number of errors and took more trials and days to learn the radial arm maze learning and exhibited memory deficit in the radial arm maze retrieval after two weeks of retention interval, indicating impaired acquisition and memory. Treatment with enalapril, losartan and their combination attenuated the observed memory deficits indicating a possible role of renin angiotensin system in cognitive function. AChE level was reduced in hippocampus and frontal cortex of renal hypertensive rats which could be attributed to the observed memory deficit in hypertensive rats. It can be concluded that, renal hypertensive rats had a poor acquisition, retrieval of the learned behavior, perhaps a possible disturbance in memory consolidation process and that this state was reversed with ACE inhibitor enalapril and AT 1 receptor antagonist losartan.

Acetylcholinesterase↗

Serotonergic influence on the potentiation of D-amphetamine and apomorphine-induced rotational behavior by the alpha2-adrenoceptor antagonist 2-methoxy idazoxan in hemiparkinsonian rats.

The alpha(2)-adrenoceptor antagonists potentiate both ipsilateral and contralateral rotations induced by amphetamine and apomorphine respectively in hemiparkinsonian rats. The present study investigated the role of serotonergic transmission in this potentiation in unilaterally 6-hydroxydopamine nigral lesioned rats. D-amphetamine (0.5 mg/kg, i.p.) produced ipsilateral rotations, which were decreased by the dopamine receptor antagonist haloperidol (0.2 mg/kg, i.p.) and the alpha(1)-receptor antagonist prazosin (1 mg/kg, i.p.). The selective alpha(2)-antagonist 2-methoxy idazoxan (0.2 mg/kg, i.p.) potentiated the amphetamine-induced ipsilateral rotations, that were attenuated by haloperidol and prazosin. The selective serotonin re-uptake inhibitor citalopram (10 mg/kg, i.p.) and selective serotonin synthesis inhibitor p-chlorophenylalanine (150 mg/kg, i.p., 3 days) decreased and increased the observed potentiation respectively. Apomorphine (0.2 mg/kg, s.c.) produced contralateral rotations, which were decreased by haloperidol but not by prazosin. 2-methoxy idazoxan potentiated these rotations which were attenuated by haloperidol but not by prazosin. Citalopram and p-chlorophenylalanine increased and decreased the observed potentiation respectively. Citalopram and p-chlorophenylalanine had no effect by per se on D-amphetamine and apomorphine-induced rotations. 2-methoxy idazoxan alone increased both ipsilateral and contralateral spontaneous rotations. Taken together, these findings indicate that an increase in noradrenergic tone by 2-methoxy idazoxan potentiates both D-amphetamine-induced ipsilateral and apomorphine induced contralateral rotations. alpha(1)-Antagonism attenuates D-amphetamine induced ipsilateral rotations and its potentiation by 2-methoxy idazoxan but not apomorphine rotations or its potentiation. Increasing and decreasing the serotonergic transmission decreases and increases D-amphetamine potentiation, whereas increases and decreases apomorphine potentiation respectively. The possible mechanisms for these findings are discussed.

Adrenergic Agents↗

Treatment with alpha2-adrenoceptor antagonist, 2-methoxy idazoxan, protects 6-hydroxydopamine-induced Parkinsonian symptoms in rats: neurochemical and behavioral evidence.

Noradrenaline, not only functions as a synaptic transmitter, but also promotes neural differentiation and regenerative processes. In Parkinson's disease, besides the dopaminergic degeneration, noradrenergic neurons of locus coeruleus origin degenerate as well. Drugs enhancing noradrenergic transmission in the locus coeruleus (e.g. alpha2-adrenoceptor antagonists) have been shown to be neuroprotective against Huntington's and ischemic animal models. However, in Parkinsonian animal models, most of the studies evaluated the worsening of experimental nigral neurodegeneration after locus coeruleus lesions. Here, it has been tested, whether treatment with the selective alpha2-adrenoceptor antagonist, 2-methoxy idazoxan (2.5 mg/kg i.p., twice daily for 5 days), before an experimental lesion to nigra, protects dopaminergic neurodegeneration. Dopaminergic degeneration was produced by 6-hydroxydopamine lesion in the median forebrain bundle. The concentrations of dopamine, 5-hydroxytryptamine and its metabolites were analysed in the various regions of the basal ganglia. The concentrations of noradrenaline and dopamine were measured in the regions innervated by locus coeruleus neurons and in the basal ganglia respectively, after 2-methoxy idazoxan treatment. The Parkinsonian behavior was assessed by catalepsy and activity test. 2-Methoxy idazoxan specifically increased the concentration of noradrenaline in the brain regions, innervated by locus coeruleus neurons. 6-OHDA lesion strongly depleted the concentration of dopamine and its metabolites in the striatum and SN, producing catalepsy and hypoactivity. Multiple treatments with 2-methoxy idazoxan reduced some of the observed neurochemical and behavioral indices of 6-hydroxydopamine-induced Parkinsonism, indicating neuroprotection. Although the mechanism underlying the neuroprotective property remains elusive, the therapeutic usage of alpha2-antagonists might be helpful in slowing the neuronal death and progression of Parkinson's disease.

Adrenergic alpha-Antagonists↗

Behavioral and neurochemical effects of noradrenergic depletions with N-(2-chloroethyl)-N-ethyl-2-bromobenzylamine in 6-hydroxydopamine-induced rat model of Parkinson's disease.

In Parkinson's disease, besides the dopaminergic neurodegeneration, locus coeruleus noradrenergic neurons degenerate as well. Noradrenergic neurons have potential anti-parkinsonian, neuromodulatory and neuroprotective properties. Presently, an animal model with dopaminergic lesion has been used as a standard model of Parkinson's disease. The behavioral effects of dopaminergic agents in a Parkinson's animal model with additional noradrenergic lesions has not been studied so far. Here, the behavioral effects of dopaminergic agents L-DOPA (15 mg/kg) and D-amphetamine (4 mg/kg) in two different pathophysiological conditions have been explored; One group involving only dopaminergic deficiency with 6-hydroxydopamine (6-OHDA) and the other group with both dopaminergic and noradrenergic deficiency with N-(2-chloroethyl)-N-ethyl-2-bromobenzylamine (DSP-4). DSP-4 specifically depleted noradrenaline from locus coeruleus terminal fields. 6-OHDA lesion depleted dopamine and its metabolites DOPAC, HVA and 3-MT in the regions of basal ganglia and it was potentiated by additional locus coeruleus denervation. Dopaminergic lesion produced catalepsy and hypoactivity. Hypoactivity in openfield was potentiated by additional noradrenergic denervation of locus coeruleus neurons. L-DOPA produced effective anticataleptic activity in group with both dopaminergic and noradrenergic lesions and D-amphetamine was found to be more effective in group only with dopaminergic lesions, indicating increased dopaminergic neurodegeneration after noradrenergic lesions. L-DOPA produced hyperactivity in dual neurodegenerated group indicating its differential activity in an animal model with noradrenergic and dopaminergic lesions. These findings indicate the neuroprotective and symptomatic role of noradrenergic neurons. It implicates the importance of noradrenergic pathophysiology in Parkinson's disease and its treatment and need for a more relevant animal model.

3,4-Dihydroxyphenylacetic Acid↗

The effect of the alpha2-adrenoreceptor antagonist idazoxan against 6-hydroxydopamine-induced Parkinsonism in rats: multiple facets of action?

The alpha2-adrenoreceptor antagonist idazoxan counteracts catalepsy induced by neuroleptic agents and improves Parkinsonian signs in 1-methyl-4-phenyl 1,2,3,6,tetrahydropyridine-treated monkeys and in patients. The present study addressed the question of whether systemic administration of idazoxan (1.5 mg/kg i.p.) improves Parkinsonian symptoms in a rat model of permanent dopaminergic neurodegeneration. Dopaminergic degeneration was induced by injection of 6-hydroxydopamine (6-OHDA) into the medial forebrain bundle (MFB). Parkinsonian behaviour was assessed by catalepsy and open-field exploratory behaviour tests. Since dopaminergic and serotonergic mechanisms are thought to account for the anti-cataleptic/anti-Parkinsonian property of idazoxan, dopamine, 5-hydroxytryptamine (5-HT) and its metabolites in the regions of the basal ganglia and prefrontal cortex were analysed by HPLC. 6-OHDA lesions in the MFB produced catalepsy and hypoactivity in the open field and depleted dopamine and its metabolites in the basal ganglia and prefrontal cortex, but did not affect 5-HT. Treatment with idazoxan counteracted the observed Parkinsonian behaviour in 6-OHDA-lesioned rats and increased the spontaneous open-field activity in control rats. In both 6-OHDA and control animals, idazoxan increased DA level in the prefrontal cortex, but not in any other structures including the striatum. Idazoxan also increased the levels of 5-HT in the anterior striatum, prefrontal cortex and the ventral tegmental area of both 6-OHDA and control animals. These findings indicate that systemic administration of idazoxan counteracts 6-OHDA-induced Parkinsonian symptoms in rats and that both dopaminergic and serotonergic mechanisms could contribute to its anti-Parkinsonian effect.

Adrenergic alpha-Antagonists↗

Intensification of cataleptic response in 6-hydroxydopamine-induced neurodegeneration of substantia nigra is not dependent on the degree of dopamine depletion.

An intensification of catalepsy has been observed upon repeated testing in rats with permanent neurodegeneration of substantia nigra. Here, the question is addressed whether the rate of development of intensification of catalepsy upon repeated testing in the same context is dependent on dopamine level in the basal ganglia. Rats were lesioned with 2 microg or 6 microg of 6-hydroxydopamine in the median forebrain bundle to produce dopamine depletion in substantia nigra in two different proportions. Both groups were exposed to catalepsy tests for 7 successive days in the same context, and the context was changed on day 8. On day 9 the catalepsy test was repeated with the old context. After the completion of the behavioral experiments, various regions of basal ganglia were analyzed for dopamine and its metabolites 3,4-dihydroxyphenylacetic acid, 3-methyl tyronine, and homovanillic acid. Lesions with 6 microg of 6-hydroxydopamine produced strong dopamine depletion (78%) and akinetic response in the catalepsy test on day 1. Repeated exposure of this group to the catalepsy tests in the same context produced intensification of cataleptic response. Changing the context on day 8 reduced catalepsy. Performing the experiments again with the old context on day 9 produced an intensified response. Lesions with 2 microg of 6-hydroxydopamine produced partial dopamine depletion (46%) without any motor disturbances. However, repeated exposure and context changes produced a similar pattern of catalepsy as in the 6 microg lesioned animals. These results indicate that the rate of building up of intensification of catalepsy is not dependent on the degree of dopamine depletion. It signifies the importance of context in the expression and augmentation of parkinsonian symptoms during the course of the disease to subjects with subthreshold dopaminergic neurodegeneration that could not produce motor disturbances alone. Prevention of context-dependent intensification of catalepsy could be beneficial in the treatment of Parkinson's disease.

Analysis of Variance↗

Functional recovery of locus coeruleus noradrenergic neurons after DSP-4 lesion: effects on dopamine levels and neuroleptic induced-parkinsonian symptoms in rats.

Noradrenaline has been shown to control dopamine turnover and release in rat brain. Noradrenergic lesion with N-(2-chloroethyl)-N-ethyl-2-bromobenzylamine (DSP-4) decreases dopamine release in the striatum and enhances catalepsy in experimental models of Parkinson's disease. However, in due course, sprouting of remaining noradrenergic axons, to compensate for the decreased noradrenaline is said to occur in specific brain regions. Though this is to some extent understood, the longstanding effects of noradrenergic lesion on dopaminergic neurons of the basal ganglia and in Parkinsonian behavior is not known. Here the question is addressed, whether locus coeruleus lesion with DSP-4 in rats alters dopamine concentration of the basal ganglia and influences Parkinsonian behavior in a long term (6 months). Parkinsonian behavior was assessed by catalepsy and activity cage after challenging with subthreshold dose of haloperidol (0.2 mg/kg), on 7, 30, 90, 120 and 180 days after DSP-4 lesion. The concentrations of noradrenaline and dopamine and its metabolites were estimated by HPLC. 6 months after DSP-4 lesion, increased concentration of noradrenaline was found in prefrontal cortex and hippocampus. Other regions remain unaffected. The concentration of dopamine remained unchanged. However, dopamine turnover appeared to be increased in prefrontal cortex and reduced in striatum and nucleus accumbens. Catalepsy and hypoactivity were observed in DSP-4 lesioned animals after haloperidol challenge on 7th, 30th and 60th day. Though dopamine turnover was reduced after 6 months in the striatum, haloperidol-induced catalepsy was not observed after 60 days. These results indicate a gradual functional recovery, perhaps hyperinnervation of noradrenergic neurons after DSP-4 treatment and the reversal of its effects on dopaminergic neurons and on Parkinsonian symptoms.

Animals↗

An integrated physical and genetic map of the nematode Pristionchus pacificus.

The free-living nematode Pristionchus pacificus is one of several species that have recently been developed as a satellite system for comparative functional studies in evolutionary developmental biology. Comparisons of developmental processes between P. pacificus and the well established model organism Caenorhabditis elegans at the cellular and genetic levels provide detailed insight into the molecular changes that shape evolutionary transitions. To facilitate genetic analysis and cloning of mutations in P. pacificus, we previously generated a BAC-based genetic linkage map for this organism. Here, we describe the construction of a physical map of the P. pacificus genome based on AFLP fingerprint analysis of 7747 BAC clones. Most of the SSCP markers used to generate the genetic linkage map were derived from BAC ends, so that the physical genome map and the genetic map can be integrated. The contigs that make up the physical map are evenly distributed over the genetic linkage map and no clustering is observed, indicating that the physical map provides a valid representation of the P. pacificus genome. The integrated genome map thus provides a framework for positional cloning and the study of genome evolution in nematodes.

Animals↗

Differential anxiolytic effect of enalapril and losartan in normotensive and renal hypertensive rats.

The effect of angiotensin-converting enzyme (ACE) inhibitor enalapril (EPL) (2 and 4 mg/kg), angiotensin (AT) II receptor antagonist losartan (LRN) (5 and 10 mg/kg), and anxiolytic drug diazepam (DZP) (0.5 mg/kg) on anxiety parameters were evaluated in experimentally induced renal hypertensive rats (RHR). Renal hypertension was induced in Wistar strain male albino rats weighing 200-250 g by following the method of Goldblatt. The animals having systolic blood pressure more than 180-210 mm Hg were subjected to open-field exploratory behaviour, elevated plus maze behaviour, and social interaction tests of anxiety. The RHR showed hyperactivity in open-field behaviour and anxiogenicity in elevated plus maze and social interaction tests. Losartan (5 and 10 mg/kg) and DZP (0.5 mg/kg) significantly attenuated the hyperactivity and anxiogenic behaviour in experimentally induced hypertensive rats and induced anxiolysis in normotensive rats (NTR). Enalapril reversed the hypertension-induced alteration only at higher dose (4 mg/kg) and failed to show any effect in NTR. It can be concluded that renin angiotensin aldosterone system (RAAS) has a significant role on behaviour, and LRN has shown better effect in reversing the hyperactivity and anxiogenicity in the experimentally induced hypertensive rats, indicating a possible role of AT receptor in the mediation of anxiolysis.

Angiotensin II Type 1 Receptor Blockers↗

Potentiation of parkinsonian symptoms by depletion of locus coeruleus noradrenaline in 6-hydroxydopamine-induced partial degeneration of substantia nigra in rats.

Parkinson's disease is characterized not only by a progressive loss of dopaminergic neurons in the substantia nigra but also by a degeneration of locus coeruleus noradrenergic neurons. The present study addresses the question of whether a partial neurodegeneration of dopaminergic neurons using 6-hydroxydopamine in rat, not sufficient to produce motor disturbances, is potentiated by prior selective denervation of locus coeruleus noradrenergic terminal fields using N-ethyl-2-bromobenzylamine. Two types of denervations, one causing dopamine deficiency alone and the other causing noradrenaline and dopamine deficiency, were performed. Noradrenaline, 5-hydroxytryptamine, 5-hydroxyindole acetic acid, dopamine and its metabolites were analysed in various brain regions. Behaviour was evaluated by catalepsy tests and activity box. N-ethyl-2-bromobenzylamine selectively depleted noradrenaline from neurons of locus coeruleus origin. Decreased dopamine content in the striatum, substantia nigra and pre-frontal cortex was observed after dopaminergic lesion with 6-hydroxydopamine (42.9%). Additional locus coeruleus noradrenaline depletion with N-ethyl-2-bromobenzylamine aggravated the dopamine depletion (61.2%). The lesion in the noradrenergic and dopaminergic neurodegenerated group was not sufficient to induce consistent catalepsy and akinesia. However, after a subthreshold dose of haloperidol (0.1 mg/kg), the expression of catalepsy and akinesia was strong in the dual-lesioned group and less in the 6-hydroxydopamine-lesioned group. These results indicate that denervation of locus coeruleus noradrenergic terminals with N-ethyl-2-bromobenzylamine potentiates the 6-hydroxydopamine-induced partial dopaminergic neurodegeneration and parkinsonian symptoms. Based on the present findings and existing reports, it can be concluded that noradrenergic neurons of locus coeruleus have neuromodulatory and neuroprotective properties on the dopaminergic neurons of basal ganglia and that noradrenergic degeneration may contribute to the aetiology and pathophysiology of Parkinson's disease.

3,4-Dihydroxyphenylacetic Acid↗

C(5)-C(5a)-modified bicyclomycins: synthesis, structure, and biochemical and biological properties.

Bicyclomycin (1) is a novel antibiotic that targets rho transcription termination factor in Escherichia coli. We have demonstrated that retention of the C(5)-C(5a) exomethylene unit in 1 is not essential for inhibition. In a recent paper we proposed a working model for 1 and rho function and suggested that 1 binds in a cleft with the C(5)-C(5a) exomethylene unit directed toward the dimeric interface of two rho monomers. This report examines the bicyclomycin C(5)-C(5a) structural constraints necessary for retention of rho inhibitory activity. Three classes of C(5)-C(5a)-modified bicyclomycins have been prepared and their inhibitory activities evaluated in the poly C-dependent ATPase and filter disk antimicrobial assays. The first series consisted of 12 analogues (8-19) that contained a C(5a)-unsaturated substituent and possessed C(5E)-geometry. The second set were a pair of C(5a)-substituted C(5E)- and C(5Z)-geometrical isomers (21 and 23). The final group of compounds consisted of six C(5)-C(5a)-dihydrobicyclomycins (24-28, 34) where the terminal substituent was systematically varied. We find that extending the C(5)-C(5a) double bond with unsaturated substituents provides bicyclomycin derivatives with excellent inhibitory activities in the biochemical assay, and that enhanced inhibitory activity is observed for the C(5E) geometrical isomer compared with its C(5Z) counterpart. Finally, C(5a)-substituted dihydrobicyclomycin inhibitory activity appears to be tightly regulated by the nature and spatial placement of the C(5a)-terminal substituent with respect to the [4.2.2]-bicyclic ring system. The observed biochemical activities for the C(5a)-extended conjugated bicyclomycin derivatives and the (5E) and (5Z) isomers were correlated with a structural model for the 1-rho complex.

Adenosine Triphosphatases↗