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Biomedical subjects

S S Parmar

Publications and source records attributed to S S Parmar.

At least 19 recordsLinked to original sources

Novel appearance of placental nuclear monoamine oxidase: biochemical and histochemical evidence for hyperserotonomic state in preeclampsia-eclampsia.

OBJECTIVE: The aim of this study was to explore the relevance of placental monoamine oxidase at the subcellular level in the etiology of the hyperserotonomic state in preeclampsia-eclampsia. STUDY DESIGN: The study was conducted on placentas from 20 normal pregnant women and 25 women with varied severity of preeclampsia-eclampsia. Placental serotonin and subcellular monoamine oxidase activity were determined. Histochemical localization of monoamine oxidase was done in placental sections and cell isolates. RESULTS: Placental serotonin increases with severity (rsystolic 0.84, rdiastolic 0.83) and monoamine oxidase decreases (rsystolic 0.86, rdiastolic 0.79). Placental monoamine oxidase showed marked changes in preeclampsia-eclampsia. Histochemical localization of monoamine oxidase showed diffused low activity evenly throughout the cytoplasm and nucleus of the syncytiotrophoblastic cells in preeclampsia-eclampsia; in contrast, normal placenta showed high activity in the cytoplasm without any activity in the nucleus of syncytiotrophoblastic cells. Detection of monoamine oxidase activity in nuclei of the placenta in preeclampsia-eclampsia is a novel finding. Monoamine oxidase activity at the subcellular level further strengthens this observation. A severity-dependent decrease was present in the nuclei of placentas with preeclampsia-eclampsia. The use of specific substrates and inhibitors revealed the presence of monoamine oxidase in mitochondria and nucleus. CONCLUSION: The study delineates an impaired catabolism of placental serotonin in preeclampsia-eclampsia. The novel appearance of monoamine oxidase in nuclei in proximity to its normal site and low activity resulting in a hyperserotonomic state may lead to preeclampsia-eclampsia.

Adult↗

Substituted thiosemicarbazides and corresponding cyclized 1,3,4-oxadiazoles and their anti-inflammatory activity.

Several 1-(4-biphenoxyacetyl)-4-substituted arylthiosemicarbazides and their corresponding cyclized 2-(4-biphenoxymethyl)-5-arylamino-1,3,4- oxadiazoles were synthesized and characterized by elemental analyses and IR, mass, and nuclear magnetic resonance spectra. All compounds were evaluated for anti-inflammatory activity by determining their ability to provide protection against carrageenin-induced edema in rat paw. The anti-inflammatory activity possessed by substituted thiosemicarbazides [100 mg/kg, intraperitoneal(ip)] ranged from 22 to 68%, whereas substituted 1,3,4-oxadiazoles (100 mg/kg, ip) provided protection of 10-76%. Hydrocortisone (10 mg/kg, ip) and oxyphenbutazone (40 mg/kg, ip), used as standard reference drugs, decreased edema in rat paw by 44.6 and 52.9%, respectively. All compounds (1 mM) possessed antiproteolytic activity that was reflected by their ability to cause in vitro inhibition of trypsin-induced hydrolysis of bovine serum albumin. This inhibition ranged between 43 and 72% for substituted thiosemicarbazides and 30 and 83% for substituted 1,3,4-oxadiazoles.

Animals↗

Monoamine oxidase inhibitory and anticonvulsant studies of substituted 1,4-benzodiazepines.

Sixteen new 2,3-dihydro-N-(substituted phenyl)-spiro (benzo [b] cyclopenta [e][1,4] diazepine-10(1H), 1'-cyclopentane)-9(10aH)-ethanamines, whose structures were confirmed by correct elemental analyses, IR, NMR and mass spectral studies, were synthesized and evaluated for anticonvulsant and analgesic activity in vivo and monoamine oxidase (MAO) inhibitory activities in vitro. The compounds exhibiting significant anticonvulsant and analgesic activity also showed marked inhibition of the enzyme MAO. The low toxicity of these compounds was reflected by their high approximate LD50 values.

Analgesics↗

Anti-inflammatory activity of quinazolinoformazans.

Eight substituted quinazolonoformazans were synthesized and evaluated for anti-inflammatory activity. The degree of protection provided by seven of these compounds, at a dose of 100 mg/kg, po, against carrageenin-induced edema in rat paw ranged from 26 to 57%. The four active substituted quinazolonoformazans (1, 2, 6, 8), on further evaluation for antiwrithmogenic activity, provided 10-80% protection against the aconitine-induced writhing response in mice. The ulcerogenic liabilities of two of the most active compounds were also determined. The doses producing ulcers in 50% of the treated rats (UD50) were 155 and 260 mg/kg, ip, for 2 and 8, respectively. The low toxicities possessed by these substituted quinazolonoformazans were indicated by their LD50 values which ranged from 600 to 1300 mg/kg, ip, in mice.

Animals↗

Negative endocrine control system for inflammation in rats.

Inflammatory processes may be suppressed by endogenous mechanisms such as release of adrenocorticosteroid hormones through stimulation of the hypothalamus-pituitary-adrenal axis. In the present study, the relationship between the temporal development of carrageenan-induced edema in the hindlimb of the rat and release in plasma of the principal endogenous adrenocorticosteroid of the rat corticosterone was investigated. Suplantar injection of carrageenan produced a biphasic increase in basal plasma corticosterone levels that was not attributed to diurnal variation. The plasma level of corticosterone increased rapidly after injection of carrageenan and peaked 12-fold at 20 min. This first phase increase was attributed to the stress of the injection since it was mimicked by subplantar injection of saline. The second phase of corticosterone release was gradual and peaked 12-fold 7 hr after injection of carrageenan. The second phase was not elicited by subplantar injection of saline. When the hypothalamus-pituitary-adrenal axis is impaired via hypophysectomy, carrageenan-induced edema is more intense and lasts longer than in control rats. The results demonstrate that adrenocorticosteroid hormones are released as a result of the stress of injection and by the inflammatory response. Release of adrenocorticosteroids acts as a feedback mechanism to suppress the inflammatory response.

Animals↗

Anti-inflammatory activity of substituted 1,3,4-oxadiazoles.

Various 2-(4-biphenoxymethyl)-5-arylamino-1,3,4-oxadiazoles were synthesized by cyclization of the corresponding 1-(4-biphenoxyacetyl)-4-substituted thiosemicarbazides. These compounds were characterized by their elemental analyses and infrared, mass, and nuclear magnetic resonance spectral data. All substituted thiosemicarbazides (100 mg/kg, ip) and cyclized substituted oxadiazoles (100 mg/kg, ip) possessed anti-inflammatory activity, as reflected by their ability to provide protection against carrageenin-induced edema in the rat paw which ranged from 28 to 68% and 36 to 76%, respectively. Cyclization of the substituted thiosemicarbazides, in general, resulted in an increase in the anti-inflammatory activity of their corresponding substituted oxadiazoles, with the exception of those containing 2,4-dimethyl and 3,4-dimethyl substituents in their molecular structure. Hydrocortisone (10 mg/kg, ip) and oxyphenbutazone (40 mg/kg, ip) were used as the standard reference drugs and these provided 45 and 53% protection, respectively. All compounds (1 mM) possessed antiproteolytic activity and the in vitro inhibition of trypsin-induced hydrolysis of bovine serum albumin ranged from 13 to 75% for substituted thiosemicarbazides and 39 to 70% for substituted oxadiazoles. There was no relationship between the anti-inflammatory activity of substituted thiosemicarbazides and substituted oxadiazoles and their antiproteolytic effectiveness. The low toxicity of these compounds was reflected by their high approximate LD50 values, ranging from 500 to 1000 mg/kg.

Animals↗

Neuromodulatory role of serotonin in the anticonvulsant activity of 2-phenylbenzoate of 3-diethylamino-1-propanol.HCl (JAW-669).

The role of serotonin in the mediation of the anticonvulsant activity of JAW-669 was investigated against maximal electric shock (MES)-induced seizures in mice. A dose-dependent protection against seizures was provided by JAW-669 (4, 6 and 8 mg/kg, IP) and the calculated ED50 value was 6.01 mg/kg, IP. Pretreatment of mice with 5-hydroxytryptophan (50 mg/kg, IP) 2 hr before the administration of JAW-669 (6.01 mg/kg, IP) was found to cause a 40% increase in the ability of JAW-669 to provide protection against MES-induced seizures. Similar pretreatment with tryptophan (100 mg/kg, IP, 1 hr) caused a 30% decrease in the anticonvulsant activity of JAW-669. Prior administration of p-chlorophenylalanine (300 mg/kg, IP, 48 hr) and methysergide (10 mg/kg, IP; 0.5 hr) before administration of JAW-699 caused a 66% and 74% decrease, respectively, in the ability of JAW-669 to provide protection against MES-induced seizures. These results suggest a facilitatory role of serotonin in the anticonvulsant activity of JAW-669.

5-Hydroxytryptophan↗

High affinity binding of the calcium channel blocker, (+)-[methyl-3H]PN200-110(3HPN) in rat brain.

PN200-110 is a recently introduced 1,4-dihydropyridine which has been demonstrated to be a potent calcium channel blocker. 3HPN has been shown to bind in a specific saturable manner to P2 fractions obtained from brain homogenates from male Sprague-Dawley rats. 3HPN binding was found to be temperature-dependent. Specific 3HPN binding was maximal at 25 degrees C; binding decreased at 2 degrees C and 37 degrees C. The KD calculated from Scatchard analysis was 0.0943 +/- 0.0038 nM while the Bmax was found to be 109.1 +/- 2.3 fmol/mg protein. A concentration dependent inhibition of 3HPN binding by various cations was determined and found to be as follows: ZN2+ greater than La3+ greater than Rh3+, Al3+ greater than Co2+, Ni2+, Mn2+ greater than Ca2+, Mg2+ greater than Ba2+ greater than Sr2+. These results provide evidence for the existence of central high affinity dihydropyridine receptor sites in rat brain.

Animals↗

Serotonin as a facilitatory neurotransmitter in the anticonvulsant activity of methaqualone.

The neuromodulatory role of serotonin in the anticonvulsant activity of methaqualone was investigated. A dose-dependent increase in the ability of methaqualone to provide protection against pentylenetetrazol (90 mg/kg SC)-induced convulsions in mice was observed. The ED50 value for the anticonvulsant activity of methaqualone was calculated and found to be 60 mg/kg, IP. Pretreatment of mice with 5-hydroxytryptophan (100 mg/kg, IP, 2 hr) and p-chlorophenylalanine (300 mg/kg, IP, 2 hr), causing an increase in brain serotonin levels, resulted in a 60% and 80% increase, respectively, in the anticonvulsant activity of methaqualone. Similar pretreatment with p-chlorophenylalanine (300 mg/kg, IP, 48 hr), causing a lowering of brain serotonin, and methysergide (10 mg/kg, IP, 0.5 hr), causing blockade of brain serotonin receptors, resulted in a 40% and 20% decrease, respectively, in the ability of methaqualone to provide protection against pentylenetetrazol-induced convulsions. These results suggest a facilitatory role of serotonin in the anticonvulsant activity of methaqualone.

5-Hydroxytryptophan↗

Cyclic-AMP in human lung preparations.

Cyclic-AMP levels in unaffected and affected cancerous portions of human lung preparations were determined by measuring displaced 3H-cyclic-AMP from the specific binding protein by unlabeled ligand. The levels of cyclic-AMP in unaffected portions of human lungs ranged between 52-116 pmoles/g protein. Significantly higher levels of cyclic-AMP were found in lung samples affected with squamous cell carcinoma, adenocarcinoma and malignant melanoma with the mean values being 251, 290, and 509 pmoles/g protein, respectively. On the other hand, a decrease in the level of cyclic-AMP to 39 pmoles/g protein was observed in portions of lungs affected with granuloma. These results suggest that the level of cyclic-AMP in lung tissue may reflect the malignant or benign nature of the pulmonary disease.

Adenocarcinoma↗

Anti-inflammatory and analgesic activities of 5-(4-[aryl(aryl azo)methyleneamino]phenyl)-1,3,4-oxadiazole-2(3H)-thiones.

Various new formazans of substituted oxadiazole 2(3H)-thiones were tested for their anti-inflammatory activity against carrageenin-induced paw oedema in albino rats. Among these, two most potent derivatives were evaluated in detail using cotton pellet implantation methods in albino rats of either sex. These two active analogues were also tested for their analgesic activity in albino mice and ulcerogenic liability in albino rats. The toxicity of the compounds was assessed by determination of their approximate LD50 value in albino mice. An attempt has also been made to establish the structure-activity relationship.

Aconitine↗

Role of dopamine receptors in gastrointestinal motility.

Apomorphine (3.5 and 10 mg/kg, s.c.) and morphine (1.3 and 10 mg/kg, s.c.) produced a dose-dependent decrease in gastrointestinal transit of charcoal dust in rats. The involvement of dopamine in such a constipatory effect was found to be mediated to a greater extent by DA2 than by DA1 receptors, using a specific DA1 antagonist (SCH 23390) and DA2 antagonists (alizapride, domperidone). The decrease in apomorphine (50 micrograms) and dopamine (100 and 200 micrograms)-induced gastrointestinal transit after intracisternal administration was antagonized by haloperidol. These results provide evidence for the involvement of dopamine receptors in the constipatory effects of apomorphine and morphine in rats.

Animals↗

Novel formazans as potent anti-inflammatory and analgesic agents.

Various new substituted formazans were synthesized and characterized by elemental analyses, IR and mass spectral data. The compounds were evaluated for their ability to protect against inflammation by carrageenin-induced paw edema in albino rats of either sex. The active derivatives of the present series were also tested for their analgesic activity against aconitine-induced writhing in albino mice and ulcerogenic activity in albino rats. The toxicity of the compounds was assessed by determination of their approximate LD50 on albino mice. An attempt has also been made to establish a structure-activity relationship.

Analgesics↗

The effect of diethylcarbamazine citrate on incidence and recovery rates of Brugia malayi microfilaremia in Sabah, Malaysia.

Mass drug administration via 3 modes of delivery reduced the incidence and prevalence rates and intensity of Brugia malayi infection in 3 rural villages in the Bengkoka Peninsula, Sabah, in 1982-1983. A dosage of 6 mg diethylcarbamazine citrate (DEC-C)/kg body weight was administered either daily or weekly (total of 6 doses, 36 mg/kg body weight), and impact on B. malayi cases were comparable in the 3 villages. A total of 384 people participated in the DEC-C regimens, and all pregnant women and children under 2 years were excluded from the study. Bekessy's method of estimation of incidence and recovery rates was applied to data on B. malayi microfilaremia before drug administration. Treatment with DEC-C by any of the 3 modes of delivery drastically reduced the number of episodes of patent microfilaremia, incidence and prevalence, and median microfilarial density. Reduction was sustained for at least 18 to 24 months after treatment.

Adolescent↗

Prostaglandin D2 inhibits pentylenetetrazole-induced convulsions in rats by a serotonin-mediated mechanism.

Prostaglandins (PGs) of the E series are known to exert anticonvulsant action in experimental animals. Earlier studies from this laboratory have indicated that PGE1 inhibits pentylenetetrazole (PTZ)-induced convulsions in rats through a serotonin-mediated mechanism. PGD2, the major PG in the rodent brain, shares a number of central pharmacological actions of the PGEs, and like the latter it potentiates the anticonvulsant action of phenobarbitone and phenytoin in rats. The present study was undertaken to investigate the putative anticonvulsant action of PGD2 against PTZ-induced convulsions in rats and to evaluate the role of serotonin in the anticonvulsant action of PGD2. PGD2 (5, 10, and 20 micrograms, icv) produced a dose-related inhibition of PTZ-induced clonic convulsions in rats. The anticonvulsant action of PGD2 (20 micrograms, icv) was significantly attenuated following pretreatment of the rats with pharmacologic agents known to reduce central serotonergic activity, including 5,6-dihydroxytryptamine, a selective neurotoxin for serotonergic neurons, p-chlorophenylalanine, a specific inhibitor of serotonin biosynthesis, metergoline, a serotonin postsynaptic receptor antagonist, and quipazine, which is known to inhibit neuronal release of serotonin. These findings, in conjunction with an earlier study from this laboratory indicating that PGD2 augments rat brain serotonergic activity, suggest that the anticonvulsant activity of PGD2 against PTZ-induced convulsions in rats is mediated through a serotonergic mechanism.

Animals↗

Tetrazoles as potent anti-inflammatory agents.

Various new tetrazoles were tested for their anti-inflammatory activity against carrageenin-induced paw oedema in albino rats. Among these, two most potent derivatives were evaluated in detail using cotton pellet implantation methods in albino rats of either sex. These two active analogues were also tested for their analgesic activity in albino mice and ulcerogenic liability in albino rats. All derivatives of the present series were evaluated for their antiproteolytic activity. The toxicity of the compounds was assessed by determination of their approximate LD50 in albino mice. An attempt has also been made to establish the structure activity relationship.

Animals↗