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Effect of acute stress and gender on isatin in rat tissues and serum.

Isatin is an endogenous indole present in mammalian tissues and fluids. This study was designed to test the effect of both acute stress (AS) and gender on isatin's levels in rat serum, heart and brain, using a HPLC-UV detection method. Basal brain isatin levels were higher in females than in males. AS resulted in increased isatin levels in male serum, heart and brain, and in female serum and heart, but not in the brain. The percentage increases were greater in males than in females in all three sources. After stress, there were significant correlations between isatin levels in the serum and the heart. However, there were no correlations between brain levels and those in the other sources. These results consolidate previous evidence that isatin levels are altered by stress and suggest that brain isatin is under separate control from that in the periphery.

Acute Disease↗

Isatin, an endogenous MAO inhibitor, improves bradykinesia and dopamine levels in a rat model of Parkinson's disease induced by Japanese encephalitis virus.

Isatin, an endogenous monoamine oxidase (MAO) inhibitor, has an important role in the control of neurotransmitter concentration. We previously reported that exogenously administered isatin significantly increased acetylcholine (ACh) and dopamine (DA) levels in the rat striatum. In order to test the possibility of treating Parkinson's disease by isatin, we evaluated DA levels in the striatum and bradykinesia using a rat model of Parkinson's disease induced by the Japanese encephalitis virus (JEV).We have already reported that in adult Fischer rats infected with JEV at day 13, there was a marked decrease of tyrosine hydroxylase-positive neurons in the bilateral substantia nigra after 12 weeks. Effects of isatin were investigated in JEV-induced post-encephalitic parkinsonism rats by a pole test and high performance liquid chromatograph (HPLC) with an electrochemical detector (ECD). Isatin (100 mg/kg per day for 1 week, intraperitoneal injection) improved the bradykinesia observed in the JEV-induced parkinsonism rats. Dopamine (DA) concentrations in the JEV-infected rats were profoundly reduced in the striatum as compared with controls. Isatin also increased DA in the striatum of parkinsonism rats. These results suggest that isatin could be a possible treatment for Parkinson's disease as well as for post-encephalitic parkinsonism.

Animals↗

Isatin: role in stress and anxiety.

(Indoledione 2,3) isatin is an endogenous indole found both in mammalian brain and peripheral tissues. Isatin concentration in blood can exceed 1 microM and tissue concentrations vary from < 0.1 to 10 microM. Its level in the brain and periphery is increased by stress. Isatin has a wide spectrum of behavioural and metabolic effects. It is anxiogenic at lower doses and sedative at higher doses. Its most potent known in vitro actions are as an antagonist of atrial natriuretic peptide (ANP) function and NO signaling. In this review, we discuss isatin and stress in animal models, the few human studies, and also what it is known to date about the molecular mechanisms of its action. We suggest the possibility that isatin and its analogues may be interesting new pharmacological agents; Isatin antagonists may be anxiolytic, and isatin agonists may activate the HPA axis.

Animals↗

The effects of isatin (indole-2, 3-dione) on pituitary adenylate cyclase-activating polypeptide-induced hyperthermia in rats.

BACKGROUND: Previous studies have demonstrated that centrally administered natriuretic peptides and pituitary adenylate cyclase-activating polypeptide-38 (PACAP-38) have hyperthermic properties. Isatin (indole-2, 3-dione) is an endogenous indole that has previously been found to inhibit hyperthermic effects of natriuretic peptides. In this study the aim was to investigate the effects of isatin on thermoregulatory actions of PACAP-38, in rats. RESULTS: One microg intracerebroventricular (icv.) injection of PACAP-38 had hyperthermic effect in male, Wistar rats, with an onset of the effect at 2 h and a decline by the 6th h after administration. Intraperitoneal (ip.) injection of different doses of isatin (25-50 mg/kg) significantly decreased the hyperthermic effect of 1 microg PACAP-38 (icv.), whereas 12.5 mg/kg isatin (ip.) had no inhibiting effect. Isatin alone did not modify the body temperature of the animals. CONCLUSION: The mechanisms that participate in the mediation of the PACAP-38-induced hyperthermia may be modified by isatin. The capability of isatin to antagonize the hyperthermia induced by all members of the natriuretic peptide family and by PACAP-38 makes it unlikely to be acting directly on receptors for natriuretic peptides or on those for PACAP in these hyperthermic processes.

Animals↗

Inhibition of D-glucose uptake by isatin in rat intestine: effect of harmaline and various sulfhydryl reagents.

The effect of isatin (indole-2,3-dione) on D-glucose uptake has been studied in rat intestine. Isatin at 6 mM concentration significantly inhibited both the sugar uptake and transmural (mucosal to serosal side) transport in the intestine. The suppression of glucose uptake by isatin was irreversible. Similar to the action of various SH-group-reacting agents, isatin inhibited the sugar uptake, presumably by binding to membrane sulfhydryl groups through a covalent linkage. Isatin-induced reduction in glucose uptake was unaffected by pH (between 5.5 and 8.4) and by DTT addition to incubation medium. Inhibition of sugar uptake by isatin and harmaline was additive in nature; this suggested that these compounds interact at different sites on the microvillus membrane surface.

Alkaloids↗

Behavioral effects of isatin on open field activity and immobility in the forced swim test in rats.

Isatin is an endogenous selective inhibitor of monoamine oxidase (MAO) B, related to tribulin, whose activity and excretion in urine is increased during stress and anxiety. A previous study from our laboratory hypothesized that isatin may be a component of an alarm substance that rats secrete in the forced swim test. The present study tested that hypothesis by examining isatin's behavioral effects on open field activity and in the forced swim test. Male rats injected (i.p.) with isatin (0-160 mg/kg) ambulated less in the open field and were more immobile in the forced swim test than controls. These results did not support the hypothesis that alarm substance contains isatin and suggest, instead, that isatin has sedative or anxiolytic activity.

Animals↗

Natriuretic peptide interaction with [3H]isatin binding sites in rat brain.

Isatin is an endogenous indole, which has a distinct and discontinuous distribution in the brain and exhibits a wide range of physiological and pharmacological effects. In the present study, we have demonstrated that atrial natriuretic peptide (ANP) and C-type natriuretic peptide (CNP) inhibited [3H]isatin binding to rat brain sections and isolated membrane fractions. Isatin itself antagonised not only natriuretic peptide receptor type A (NPR-A) (ANP-stimulation of guanylyl cyclase) but also NPR-C (ANP and CNP mediated inhibition of adenylyl cyclase) signalling. These results suggest that some [3H]isatin binding in the brain may be to NPR-A and NPR-C. Competitive interactions between isatin and natriuretic peptides and their receptors give a possible explanation of the known anxiogenic effect of low doses of isatin, interacting at NPR-A, and the sedative effects of higher doses, antagonising respectively the anxiolytic effect of ANP and the anxiogenic effect of CNP.

Animals↗

Effects of isatin on atrial natriuretic peptide-mediated accumulation of cGMP and guanylyl cyclase activity of PC12 cells.

We have previously demonstrated that isatin (indole-2,3 dione), an endogenous compound widely distributed in mammalian tissues and body fluids, effectively inhibits atrial natriuretic peptide (ANP) receptor binding and ANP-stimulated guanylyl cyclase activity of rat membrane preparations. In the present study the effects of isatin on ANP-mediated accumulation of cGMP and guanylyl cyclase (GC) activity of PC12 cells were studied. Isatin (0.1 mM) effectively inhibited ANP-stimulated GC-activity of broken cells but was nearly inactive in attenuating ANP-dependent accumulation of cGMP in intact PC12 cells. The ATP-analogue adenylylimidodiphosphate (AMP-PNP) slightly potentiated the ANP effect on GC activity in broken cell preparations and significantly reduced GC sensitivity to isatin. Isatin caused a more pronounced reduction of ANP-dependent cGMP accumulation in cells grown in the presence of 10% embryonal calf serum (ECS) than in 0.5% ECS. The data obtained suggest that, in intact cells, the manifestation of the isatin effect on ANP-mediated signal transduction may depend on intracellular factor(s), possibly interacting at the kinase domain.

Adenylyl Imidodiphosphate↗

Comparative study of the effects of isatin, an endogenous MAO-inhibitor, and selegiline on bradykinesia and dopamine levels in a rat model of Parkinson's disease induced by the Japanese encephalitis virus.

We previously reported that exogenously administered isatin, an endogenous monoamine oxidase (MAO) inhibitor, significantly increased acetylcholine (ACh) and dopamine (DA) levels in the rat striatum. Selegiline [(-)-deprenil] was developed as a MAO-B inhibitor more than 30 years ago and widely used in the treatment of Parkinson's disease. Effects of isatin or selegiline were investigated in Japanese encephalitis virus (JEV)-induced post-encephalitic parkinsonism rats by a pole test for detecting motor activity and by the determination of biogenic amine levels. Motor activity of JEV-induced rats receiving isatin (100 mg/kg per day for 1 week, i.p.) or selegiline (0.2 mg/kg per day for 1 week, i.p.) was significantly improved compared with that of untreated JEV-infected rats. Both isatin and selegiline prevented the decrease in striatal DA levels in JEV-rats. The increased turnover of DA (DOPAC/DA) induced by JEV was significantly inhibited by isatin, but not by selegiline. These results suggested that exogenously administered isatin and selegiline can improve JEV-induced parkinsonism by increasing DA concentrations in the striatum.

Animals↗

Does isatin interact with rat brain monoamine oxidases in vivo?

Isatin is a reversible endogenous monoamine oxidase (MAO) inhibitor found in the brain. The influence of isatin on the degree of irreversible MAO inhibition by phenelzine and pargyline has been studied in vitro and in vivo experiments. In vitro 10 and 100 microM isatin reduced irreversible inhibition of MAO A and MAO B assayed after mitochondria wash. Pretreatment of rats with 'anxiogenic dose' of isatin (10 mg/kg) protected neither MAO A nor MAO B against subsequently administered phenelzine (10 mg/kg). 'Anticonvulsant' dose of isatin (80 mg/kg) reduced phenelzine-dependent inhibition of MAO B but not MAO A. Data obtained suggest that the anticonvulsant effect of isatin does not result from the inhibition of MAO A and the increase of monoamine level in the brain reported in few laboratories is apparently stipulated by a mechanism that does not involve MAO A inhibition.

Animals↗

Determination of isatin in urine and plasma by high-performance liquid chromatography.

A method for the detection and determination of isatin (indole-2,3-dione) in urine and plasma by high-performance liquid chromatography has been developed. It consists of a two-step purification using two different columns with UV detection. With this method, we have reconfirmed that isatin is present in human urine. We have also demonstrated that isatin is present in human plasma and that the isatin levels in spot urine samples reflect the plasma isatin levels. In the present report we describe a rapid and sensitive means of determining urine and plasma isatin for laboratories equipped with a high-performance liquid chromatography system.

Adult↗

Experimental and theoretical vibrational study of isatin, its 5-(NO2, F, Cl, Br, I, CH3) analogues and the isatinato anion.

Effects of 5-R substitution (R = NO2, F, Cl, Br, I, CH3) and N-deprotonation on the 4000-400 cm(-1) region of the low temperature FT IR spectrum and the molecular structure of solid isatin are investigated. Harmonic IR spectra and molecular geometries of the 5-R isatins (except for Br and I analogues) are calculated at the HF/6-31G(d, p) level and compared with the experimental solid-state data. In general, substitution has small effect on the molecular structure and the IR spectrum of isatin. The v(CO) triplet in the IR spectra of isatin and its 5-substituted analogues is resulted by vibrational splitting of the out-of-phase CO stretching, v(op)[(CO)2]. While the frequency of the v(op)[(CO)2] mode is relatively less affected by 5-substitution and mainly depends on the substituent mass, the frequency of the in-phase stretching, v(ip)[(CO)2], is strongly sensitive to both mass and electronic properties of the substituent. Substitution at C5 has relatively greater influence on the electron density and the force constant of the amide than on the ketone carbonyl group. Strong electron-donors shorten and stabilize the unusually long alpha-dicarbonyl CC bond, while electron-accepting groups tend to stretch this bond further. N-Deprotonation brings to elongation of the five membered-ring along the N-C(CO(ketone)) vector and expansion of the bonds within the alpha-dicarbonyl part. Theoretical v(CO) frequency of isatin is lowered for about 180 cm(-1) upon conversion into isatinato ion. Harmonic vibrational analysis reveals that only the highest-frequency v(CO) mode of the isolated isatinato anion can be considered good group vibration for empirical assignments in spectra of solid isatinates. Owing to the solid-state influences on the v[(CO)2] modes, no reliable spectra structure correlations could be established from the present experimental spectroscopic data.

Chemical Phenomena↗

Role of an endogenous monoamine oxidase inhibitor, isatin, in SHRSP brain.

1. The acute effects of isatin, an endogenous monoamine oxidase (MAO) inhibitor, on norepinephrine (NE) and serotonin (5-HT) concentrations in the brain of stroke-prone spontaneously hypertensive rats (SHRSP) and Wistar-Kyoto rats (WKY) were determined in order to elucidate its pathophysiological role. 2. Isatin was identified in purified extracts of SHRSP brain. 3. A single dose of isatin significantly increased NE concentration in the cerebral cortex of WKY. Isatin also significantly increased 5-HT concentration in WKY brains. 4. After isatin administration NE and 5-HT levels in the SHRSP brain did not differ from those in WKY. 5. These data suggest that isatin, an endogenous MAO inhibitor, presents in the SHRSP brain and maintains high blood pressure.

Animals↗

[Effect of isatin on the electrical activity in the rat hippocampus cells].

In vitro superfusion of rat hippocampal slices with isatin changed the population spikes. Isatin perfusion produced two clear effects. 50 microM isatin it increased the amplitude of the population spike in the CA1 evoked by stimulation of stratum radiatum. This effect was readily reversible. 100 microM isatin decreased the population spike amplitude with minimal effect on its latency. High initial response were more suppressed. This effect on the population spike amplitude was not eliminated even after 1 h of washing with saline. The data obtained suggest that isatin-induced electrophysiological changes are involved into the anticonvulsant effect of isatin.

Action Potentials↗

Biopharmaceutical studies of 3-substituted isatin derivatives.

The metabolic fate of isatin hydrazone (Ia), isatin-3-thiosemicarbazone (Ib), isatin-3-semicarbazone (Ic), isatin-3-phenylhydrazone (Id), isatin oxime (Ie) and 3-hydroxy-3-acetonyl oxindole (II) was studied in rabbits. The compounds were administered orally in the dose of 300 mg/kg body wt. Isatin anthranilic acid, tryptophan and nicotinic acid were identified as the major metabolites excreted in urine. The 3-hydroxy-3-acetonyl oxindole (II) gave on additional metabolite, oxindole. The major metabolites were separated and identified unambiguously on thin layer silica gel plate. Metabolic pathways have been proposed to explain the biotransformation of the compounds investigated.

Animals↗

Isatin-enzyme interactions. VII. Mechanism of inhibition of rat kidney alkaline phosphatase.

Isatin has been found to inhibit rat kidney alkaline phosphatase (EC 3.1.3.1). The inhibition is dependent on isatin concentration and is of un-competitive type. The hydrolysis of disodium phenyl phosphate by the enzyme at different temperatures (17--37 degrees C) obeys the Arrhenius equation. Energy of activation in the absence and presence of isatin has been found to be 9.84 and 10.24 kCal/mol. The hyperbolic profile of isatin inhibition; the lowering of both Km and Vmax in the presence of isatin, and, small changes in enthalpy, free energy and entropy in the presence of isatin suggest a non-allosteric un-competitive inhibition of the enzyme.

Alkaline Phosphatase↗

Dose-related proconvulsant and anticonvulsant activity of isatin, a putative biological factor, in rats.

Isatin (indole-2, 3-dione) is an endogenous compound with anxiogenic properties, which occur within a narrow dose range (15-20 mg/kg, i.p.). Dose increment beyond 50 mg/kg, i.p. leads to the loss of anxiogenesis. Since a link has been postulated between anxiogenic and convulsant activity, the effect of a range of doses of isatin (20-80 mg/kg, i.p.) was investigated on subconvulsant and convulsant doses of two seizure-inducing agents, namely, pentylenetetrazole (PTZ) and 3-mercapto-propionic acid (3MPA) in rats. Isatin was found to induce a dose-related effect on PTZ and 3MPA convulsions. The lower dose (20 mg/kg, i.p.) potentiated PTZ and 3MPA convulsions, a median dose (40 mg/kg, i.p.) had insignificant effect, whereas higher doses (60 and 80 mg/kg, i.p.) of isatin exhibited significant anticonvulsant effect against both PTZ and 3MPA induced clonic convulsions. The investigation, thus, supports the contention that anxiogenic agents increase the susceptibility to chemical seizures. The proconvulsant effect of isatin, may be due to its inhibitory effect on central atrial natriuretic peptide receptors and stimulation of 5-hydroxytryptamine3 (5-HT3) rather than its monoamine oxidase (MAO) B inhibitory action. The anticonvulsant effect on higher doses of isatin, on the contrary, may be induced by its metabolites, including 5-hydroxyisatin.

3-Mercaptopropionic Acid↗

The endogenous oxindoles 5-hydroxyoxindole and isatin are antiproliferative and proapoptotic.

Oxindole-core synthetic molecules are currently being developed as anticancer drugs that target protein tyrosine kinases associated with growth factor receptors. Oxindole, 5-Hydroxyoxindole, and 2, 3-dioxindole [isatin] are natural molecules found in mammalian body fluids and tissues and we addressed the question of similar properties of endogenous oxindoles. 5-Hydroxyoxindole and isatin, but not oxindole, inhibited N1E-115, BALB/c3T3, BBC, PC12, and HL60 proliferation at submicromolar concentrations. Acute treatment with 5-hydroxyoxindole and isatin reduced the activity of extracellular signal regulated protein kinases (ERKs) by 35% at 100 microM and ERK1 activity was strongly inhibited by 5-Hydroxyoxindole at 10 microM. Survival of PMA-differentiated HL60 and FGF(2)-differentiated PC12 cells was not affected by 5-Hydroxyoxindole and isatin treatment, suggesting that endogenous oxindoles interact with growth factors signaling. The physiological implications of these data and the potential utility of 5-Hydroxyoxindole and isatin as antitumor agents are discussed.

Animals↗