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Isatin inhibits food intake in mice.

Isatin (2,3-dioxindole) is an endogenous compound which is distributed throughout the central nervous system. The studies reported here demonstrate that isatin decreased food intake in food deprived TAC (SW) male mice 12-16 weeks of age. Isatin was more effective at decreasing food intake when the mice had to work harder to obtain food. Isatin also decreased sucrose, milk and water intake. When hunger was reduced by prefeeding milk to the mice, isatin was more effective at decreasing food intake. Isatin did not alter spontaneous activity in an openfield. Behaviors observed in the home cage indicated that mice which received isatin approached the food more often without eating than the controls. Movement in the home cage was significantly reduced in mice receiving isatin. Drinking, grooming and resting were not significantly affected by administration of isatin. These studies suggest that isatin may be an endogenous modulator of food intake.

Animals↗

Characterization of a major form of human isatin reductase and the reduced metabolite.

Isatin, an endogenous indole, has been shown to inhibit monoamine oxidase, and exhibit various pharmacological actions. However, the metabolism of isatin in humans remains unknown. We have found high isatin reductase activity in the 105,000 g supernatants of human liver and kidney homogenates, and have purified and characterized a major form of the enzyme in the two tissues. The hepatic and renal enzymes showed the same properties, including an M(r) of 31 kDa, substrate specificity for carbonyl compounds and inhibitor sensitivity, which were also identical to those of recombinant human carbonyl reductase. The identity of the isatin reductase with carbonyl reductase was immunologically demonstrated with an antibody against the recombinant carbonyl reductase. About 90% of the soluble isatin reductase activity in the liver and kidney was immunoprecipitated by the antibody. The Km (10 microm) and k(cat)/K(m) (1.7 s(-1) x microm(-1)) values for isatin at pH 7.0 were comparable to those for phenanthrenequinone, the best xenobiotic substrate of carbonyl reductase. The reduced product of isatin was chemically identified with 3-hydroxy-2-oxoindole, which is also excreted in human urine. The inhibitory potency of the reduced product for monoamine oxidase A and B was significantly lower than that of isatin. The results indicate that the novel metabolic pathway of isatin in humans is mediated mainly by carbonyl reductase, which may play a critical role in controlling the biological activity of isatin.

Alcohol Oxidoreductases↗

[Effects of isatin, an endogenous MAO inhibitor, on dopamine (DA) and acetylcholine (ACh) concentrations in rats].

Isatin (indole-2,3-dione), an endogenous inhibitor of monoamine oxidase (MAO), has several physiological properties for stress and anxiety. We previously identified isatin in the brain of stroke-prone spontaneously hypertensive rats (SHRSP) using gas-chromatography mass spectrometry. This study elucidated the effects of isatin on the ACh and DA levels of brain tissues in rats. Furthermore, we evaluated the effect of isatin on DA levels in a rat model of Parkinson's disease induced by Japanese encephalitis virus. Striatal ACh and DA levels significantly increased at 2 hours after isatin (50-200 mg/kg, i.p.) administration. Perfused through a microdialysis probe, isatin (10(-6)-10(-4) M) also produced a significant and concentration-dependent increase in the ACh and DA concentrations in the perfusate from the rat striatum. Furthermore, urinary isatin concentrations in patients with Parkinson's disease tend to increase according to the severity of disease. Isatin (100 mg/kg, i.p.) significantly increased striatal DA levels in a rat model of Parkinson's disease. These results suggest that urinary isatin may become a diagnostic marker for the clinical severity of Parkinson's disease and that endogenous isatin, a new biological modulator, may play a role in the regulation of the brain levels of ACh by increasing the level of DA under stress.

Acetylcholine↗

Isatin, an endogenous monoamine oxidase inhibitor, triggers a dose- and time-dependent switch from apoptosis to necrosis in human neuroblastoma cells.

Isatin is an endogenous indole that is increased in stress, inhibits monoamine oxidase (MAO) B and improves bradykinesia and striatal dopamine levels in rat models of Parkinson's disease. Consequently, it has been suggested that isatin might be a possible treatment for Parkinson's disease although little is known about its effects on neural cell growth and survival. The aim of this study was to investigate the survival of dopaminergic human neuroblastoma (SH-SY5Y) cells following treatment with increasing concentrations of isatin. SH-SY5Y cells were exposed to isatin for defined time points, after which cell survival was determined by MTT assay. A combination of Annexin V binding and propidium iodide (PI) exclusion was used to distinguish apoptosis from necrosis in flow cytometry experiments and FACS profiles of permeabilised PI-labelled cells were employed for the assessment of cell cycle distribution. Isatin treatment (1-400 microM) for 24h induced a significant dose-dependent increase in MTT metabolism by SH-SY5Y cells in culture, but this was not due to an increase in cell division. At the higher concentrations (200-400 microm) isatin triggered cell death, although MTT metabolism was still increased in the culture, suggesting that surviving cells were hypermetabolic. Following a longer (48 h) exposure, isatin was found to cause cell death in a dose-dependent manner; at lower concentrations (50 microM), the predominant mode of cell death was apoptosis while at the highest concentration (400 microm) increasing numbers of necrotic cells were also evident. Thus, in dopaminergic SH-SY5Y cells isatin induces cell death in dose- and time-dependent manner. This death occurred as a continuum of survival, apoptosis and necrosis. Our results re-emphasise that caution should be exercised when considering high doses of isatin as a putative anti-Parkinson's disease therapeutic.

Annexin A5↗

Determination of isatin, an endogenous monoamine oxidase inhibitor, in urine and tissues of rats by HPLC.

1. We have previously identified isatin as one of the endogenous monoamine oxidase (MAO) inhibitors in the urine and the brain of stroke-prone spontaneously hypertensive rats (SHRSP), using gas chromatography-mass spectrometry (GC-MS). 2. In this study, we attempted to develop a convenient assay to determine isatin using high performance liquid chromatography with an ultraviolet detector (HPLC-UV). The standard curve for authentic isatin was linear at a range from 2 to 20 nmol per ml. The coefficient of variance was within 3% for both intra-assay and inter-assay. The sensitivity was 20 pmol per 10 microl of urine sample. 3. Isatin concentration correlated significantly and positively with endogenous MAO activity (tribulin-like activity) in both urine (r=0.924, P<0.001) and kidney extracts (r=0.862, P<0.01). There was a significant difference in urinary isatin between Wistar Kyoto rats (WKY) and SHRSP. Oral administration of isatin increased urinary isatin concentration and systolic blood pressure in WKY. 4. Determination of isatin using HPLC-UV may be useful for elucidating role of isatin in various conditions of stress and disease.

Animals↗

[Pharmacological role of isatin, an endogenous MAO inhibitor].

Isatin (indole-2,3-dione) has been found in mammalian tissues as one of major components of tribulin, a postulated endogenous marker of stress and anxiety. I previously identified isatin as an endogenous inhibitor of monoamine oxidase (MAO) in the human urine and the brain of stroke-prone spontaneously hypertensive rats (SHRSP) using GC-MS. A single dose of isatin significantly increased norepinephrine (NE) and 5-hydroxytryptamine (5-HT) concentrations measured 2 h later in the various brain regions of normotensive Wistar Kyoto rats (WKY). Striatal acetylcholine (ACh) and dopamine (DA) levels significantly increased 2 h after the administration of isatin. Perfused through a microdialysis probe, isatin also produced a significant and concentration-dependent increase in the ACh and DA concentration in the perfusate from the rat striatum. In the patients with Parkinson's disease, urinary isatin concentrations tended to increase according to the severity of disease, as classified by the Hoehn and Yahr criteria. Isatin significantly increased striatal DA levels in a rat model of Parkinson's disease. Isatin may play a role in the regulation of the brain levels of ACh and DA. Furthermore, isatin has a wide spectrum of biological properties: (a) a marker of stress and anxiety, (b) an inhibitor of a number of enzymes, (c) an anti-seizure agent, (d) an inhibitor of benzodiazepin receptors and ANP binding to its receptors.

Acetylcholine↗

Urinary isatin concentrations in patients with Parkinson's disease determined by a newly developed HPLC-UV method.

Isatin, an endogenous monoamine oxidase (MAO) inhibitor, has been found in mammalian tissues. We previously reported that exogenously administered isatin significantly increased acetylcholine (ACh) and dopamine (DA) levels in the rat striatum. In order to elucidate the relationship between isatin and Parkinson's disease, we measured urinary isatin excretions in patients with Parkinson's disease using a newly developed HPLC-UV method. The recovery of this assay was approximately 102.3% at a range from 2 to 50 nmol/ml. The Coefficient of Variance (CV) for the determination at this range was approximately 2.5% for intra-assay and 6.2% for inter-assay, respectively. There was no significant difference in urinary isatin excretion between data from men and women in healthy control. The value in young age group (19-35 years old) was not significantly different compared with that of the older age group (54-84 years old). Urinary isatin levels in patients with Parkinson's disease tended to increase in accordance to the Hoehn and Yahr criteria. This is the first study in which a significant increase in urinary isatin excretion was observed at Stage III, IV and V in patients with Parkinson's disease. Urinary isatin concentrations in drug-treated patients with Parkinson's disease (at Stage I and II) tended to decrease compared with those of patients without medication. These results demonstrated that urinary isatin excretion may serve as an endogenous diagnostic marker for the clinical severity of Parkinson's disease.

Aged↗

[Study of the tissue and subcellular distribution of isatin-binding proteins with optical biosensor].

An original method for the integral evaluation of tissue and subcellular distribution of isatin binding proteins has been developed. This method is based on continuous monitoring of changes of optical characteristics that accompany complex formation between a ligand (immobilized on dextran bed of IAsys biosensor cell) and its soluble receptor. Solubilisation of tissue preparations and subcellular fractions with detergent (1% Triton X-100) is the important preconditions for the applicability of this method. The immobilisation of 5-aminoisatin was achieved by peptide bond formation between amino group of this isatin analogue and carboxyl group of the dextran bed of the biosensor cell. Addition of Triton X-100 treated preparations of membrane and soluble fractions of rat brain, liver, heart, and kidneys to the biosensor cell resulted in appearance of the characteristic response, indicating complex formation with the immobilised isatin analogue. The magnitude and a shape of kinetic curve vary in these samples. Isatin binding proteins predominated in membrane fractions of brain, liver and heart preparations whereas in the kidneys the highest isatin-binding response was detected in the soluble fraction. The distribution of isatin binding sites in the particulate fraction reduced in the following order: brainstem > brain hemispheres = cerebellum > heart > kidneys > liver. In the soluble fraction there was different rank of isatin binding activity: kidneys > heart > brainstem = brain hemispheres > liver > cerebellum. Liver outer mitochondrial membranes are characterised by the higher isatin-binding than mitochondria. Treatment of mitochondria with clorgyline and deprenyl, specifically inhibiting MAO A and B, respectively, significantly reduced the magnitude of the biosensor response and changed the shape of the kinetic curve. These data are consistent with the notion that within mitochondria MAOs are the major targets of isatin.

Animals↗

Biological activities of isatin and its derivatives.

Isatin is an endogenous compound identified in humans that possesses a wide range of biological activities. Isatin has anxiogenic, sedative, anticonvulsant activities and acts as a potent antagonist on atrial natriuretic peptide receptors in vitro. A series of p-substituted isatin semicarbazones have shown anticonvulsant activity in MES, scPTZ and scSTY tests. Various isatin-N-Mannich bases of isatin-3-thiosemicarbazones have shown antiviral and tuberculostatic activity. Methisazone is an effective compound against variola and vaccinia viruses. The N-dimethyl and morpholino derivative of 5-methyl isatin and trimethoprim exhibited an EC50 of more than 4.3 and 17.7 mg mL(-1), respectively. Isatin (3-o-nitrophenyl) hydrazone has shown activity against Walker carcinoma-256. Various substituted indolinones showed antitubercular activity against M. tuberculosis H37Rv with MIC ranging from 10-20 microg mL(-1). Isatin derivatives of Mannich bases had fibrinolytic, muscle relaxant, antiallergic, immunosuppressant, and antithrombotic activity. Isatin showed cardioinhibitory effect on frog heart, and hypotensive, respiratory depression and antidiuretic effects.

Animals↗

Stress-induced increase in urinary isatin excretion in rats: reversal by both dexamethasone and alpha-methyl-P-tyrosine.

The effects of acute food deprivation and acute cold exposure on 24-hr urinary isatin excretion in rats and a mechanism responsible for changes in urinary isatin excretion during stress were investigated. This is the first study to demonstrate by HPLC that urinary isatin excretion is increased by stress. Both types of stress induced a marked increase in urinary isatin excretion during the 24 hr following the initiation of stress. Dexamethasone administration prevented the increase in urinary isatin excretion induced by both of the different types of stress. Furthermore, administration of either the benzodiazepine receptor agonist diazepam or the tyrosine hydroxylase inhibitor alpha-methyl-p-tyrosine prevented the increase in urinary isatin excretion induced by acute food deprivation, whereas the dopamine-beta-hydroxylase inhibitor diethyldithiocarbamate proved ineffective. These observations suggest that during stress, activated catecholamine-synthesizing cells and corticotropin-releasing factor cells, both of which play central roles in stress responses, may be involved in total isatin production. Isatin may serve as an endogenously generated marker for some types of stress.

Animals↗

5-HT(2A/2C) receptor agonist-induced increase in urinary isatin excretion in rats: reversal by both diazepam and dexamethasone.

Isatin, a stress-related biological substance, increases in rat urine in association with elevated catecholamine biosynthesis during stress. The goal of this study was to unravel how the biosynthetic pathway of isatin is related to stress response. The importance of the serotonergic compounds in anxiety, which is the major emotional process of stress response, has emerged. m-Chlorophenylpiperazine (m-CPP), a 5-HT(1A/1B/2A/2C) receptor agonist, and (+/-)-1-(4-iodo-2,5-dimethoxyphenyl)-2-aminopropane hydrochloride [(+/-)-DOI], a 5-HT(2A/2C) agonist, both of which have anxiogenic properties, induced a marked increase in 24-hr urinary isatin excretion, whereas neither 1-(m-chlorophenyl)-biguanide (m-CPBG), a 5-HT3 agonist, nor 2-methyl-5-HT, a 5-HT(3,4) agonist, affected urinary isatin excretion. 5-HT(2A/2C) receptor antagonists such as ketanserin and ritanserin prevented the increase in urinary isatin excretion induced by the 5-HT(2A/2C) receptor agonist m-CPP. These findings are the first to provide evidence that pharmacological substances cause increases in urinary isatin excretion via specific 5-HT receptors, probably 5-HT(2A/2C) receptors. In addition, both the synthetic glucocorticoid dexamethasone and diazepam prevented the m-CPP-induced increase in urinary isatin excretion. These observations suggest that the mechanism by which m-CPP elicits enhancing effects on urinary isatin excretion has something in common with stress response involving activation of hypothalamic CRF cells and the sympathetic nervous system.

Animals↗

Effects of isatin on rotational behavior and DA levels in caudate putamen in Parkinsonian rats.

Isatin was a potent endogenous monoamine oxidase (MAO) inhibitor that is more active against MAO-B than MAO-A. The acute effects of isatin on apomorphine (APO)-induced rotations were evaluated in Parkinsonian rats induced by 6-hydroxydopamine (6-OHDA) lesion. Furthermore, the effects of isatin on DA release in caudate putamen (CPu) of model and normal rats were monitored using fast cyclic voltammetry (FCV). The contents of monoamine transmitters and their metabolites in CPu of model and normal rats were also analyzed by high performance liquid chromatography with electrochemical detection after administration of isatin. Here we show that isatin (100 mg/kg, i.p.) apparently inhibited APO-induced rotations of Parkinsonian rats to 39.1+/-3.7% of the control (n=12), while it had no apparent effects on electrical stimuli-induced DA release either in normal rats or in model rats. In addition, the content of 5-hydroxytryptamine but not DA was increased in both normal rats and model rats after isatin (100 mg/kg, i.p.) was administered (P<0.01, n=6). The content of 5-hydroxyindole acetic acid was not changed. These results suggest that isatin cannot increase DA levels in rat CPu. Therefore, the effects of isatin on APO-induced rotations of our Parkinsonian rats could not attribute to its inhibition of DA catabolism as a MAO inhibitor.

Animals↗

In vivo effects of isatin on rat platelet eicosanoids.

To establish the possible influence of isatin (2,3-dioxo-indole) on the activity of platelets, the effects of isatin on platelet eicosanoid synthesis were studied in rats. Different doses (12.5-50 mg/kg) of isatin were injected intraperitoneally (i.p.) and the effects on the arachidonate cascade of isolated platelets were investigated. Cells were labeled with [(14)C]arachidonic acid, then the eicosanoids were separated with overpressure thin-layer chromatography and were quantitatively determined with a liquid scintillation analyzer. The lipoxygenase pathway was significantly inhibited by isatin (50 mg/kg) treatment and also the overall activity of the arachidonate cascade was diminished; however, the cyclooxygenase system was significantly stimulated. A 50-mg/kg i.p. dose of isatin significantly increased the production of vasoconstrictor cyclooxygenase metabolites. Among the vasodilator cyclooxygenase products, the synthesis of PGE2 and PGD2 were significantly decreased while that of 12-hydroxyheptadecatrienoic acid (HHT) increased upon isatin (50 mg/kg) administration. Our results provide further evidence on the peripheral actions of isatin and suggest that this endogenous indole may induce significant changes in the production of blood platelet arachidonic acid metabolites, which are important regulatory substances, thus isatin may potentially affect an even broader range of functions than was previously assumed.

Animals↗

[Glycerol-3-phosphate dehydrogenase--cytosolic isatin-binding protein].

Isatin is an endogenous indole widely distributed in mammalian tissues and body fluids. The presence of isatin-binding proteins has been recognised in particulate and soluble fractions of various organs and tissues. However, identified targets of isatin action (monoamine oxidase, natriuretic peptide receptor type A and soluble NO-stimulated guanylate cyclase) cannot account for all biological activity of this compound. Highly purified glycerol-3-phosphate dehydrogenase (GPDH) from rabbit muscle effectively interacts with the isatin analogue immobilised on the cuvette of IAsys optical biosensor. This effect was specific because the other NAD-dependent cytosolic enzyme purified from rabbit muscle, lactate dehydrogenase failed to interact with the immobilised isatin analogue. Replacement of the cuvette medium for washing buffer did not cause total dissociation of GPDH-isatin complexes. This suggests involvement of several types of enzyme-isatin interaction including tight binding. Low (10 microM) and high (100 microM) concentrations of isatin caused different effects on GPDH activity: the former significantly increased apparent Km for NAD, whereas the latter decreased apparent Vmax and increased Km.

Animals↗

Electrogenerated chemiluminescence reaction of lucigenin with isatin at a platinum electrode.

The electrogenerated chemiluminescence (ECL) reaction of lucigenin with isatin was investigated at a platinum electrode in a neutral aqueous solution. The ECL intensity of lucigenin at -0.65 V was greatly enhanced by isatin, and the ECL intensity was about 50 times higher than that of lucigenin without isatin. The enhanced ECL was believed to be produced by the chemiluminescence reaction between reduced lucigenin and superoxide anion that was generated by the reaction of electrochemically reduced isatin with dissolved oxygen. The conditions for the determination of isatin were optimized. Under the optimized condition, the enhanced ECL intensity vs. isatin concentration was linear in the range 4.8 x 10(-7)-1.9 x 10(-5) g/mL; with a detection limit of 3.3 x 10(-8) g/mL, and the relative standard derivation 1.0 x 10(-6) g/mL isatin was 3.8%.

Acridines↗