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Biomedical subjects

M B Youdim

Publications and source records attributed to M B Youdim.

At least 19 recordsLinked to original sources

Preferential release of epinephrine by glycine from adrenal chromaffin cells.

Isolated adrenal chromaffin cells were used as a model for the release of catecholamines from adrenergic nerve endings. In this study we used an HPLC technique to determine the effects of acetylcholine and glycine on norepinephrine and epinephrine release. The amount of catecholamine released in response to glycine was 22% less than that released by acetylcholine. However, while the norepinephrine-to-epinephrine ratio was 1.6 after stimulation with acetylcholine, it was 0.6 after stimulation with glycine. This suggests that glycine preferentially affects epinephrine secretion as compared to acetylcholine, which preferentially releases norepinephrine. This differential effect could be of physiological importance considering our recent demonstration of a functional high-affinity chloride-gated glycine receptor on adrenal chromaffin cells.

Acetylcholine

Role of iron and iron chelation in dopaminergic-induced neurodegeneration: implication for Parkinson's disease.

Recent studies in Parkinson's disease suggest that the degeneration of the nigrostriatal melanin-containing dopaminergic neurons results from toxic effects of free radicals, which are generated during dopamine metabolism in the substantia nigra (SN). This has been linked to the selective accumulation of iron, a known catalyst of radical formation, in the zona compacta of the SN. We have shown that interaction of iron with melanin may result in a high affinity binding of iron to melanin (KD = 13.0 +/- 0.15 nM). Indeed, x-ray analysis of melanized dopamine neurons of parkinsonian SN has shown an interaction of iron with melanin that is absent in control brains. In the presence of excess Fe3+, melanin potentiates iron-induced lipid peroxidation. Since iron chelators prevent lipid peroxidation, we have ascertained the ability of the iron chelator deferoxamine to prevent the lesion of the nigrostriatal dopamine neuron induced by 6-hydroxy dopamine (6-OHDA). Our results demonstrated that intraventricular injection of 130 ng deferoxamine to rats prior to 250 micrograms of 6-OHDA partially prevented the decrease in striatal dopamine content caused by 6-OHDA (56% reduction vs 90%, respectively). This protection was sufficient to produce normal dopamine-related behavioral responses. These results suggest that iron and iron chelators play a crucial role in the process of dopaminergic neurodegeneration and neuroprotection. The latter is further supported by our recent findings that intranigral injection of iron (50 micrograms) resulted in a substantial selective decrease of striatal dopamine (95%) and impaired dopamine-related responses.

Animals

The distal axis of growth hormone (GH) in nutritional disorders: GH-binding protein, insulin-like growth factor-I (IGF-I), and IGF-I receptors in obesity and anorexia nervosa.

The endocrine abnormalities along the growth hormone (GH) axis in anorexia nervosa (AN) and in obesity include hypothalamic, pituitary, and peripheral elements. The present study was undertaken to evaluate the effects of these nutritional extremes on GH-binding protein (BP) levels and on Insulin-like growth factor-I (IGF-I) receptors on red blood cells (RBC). Nine patients with AN and 20 obese subjects were compared with normal control children, adolescents, and adults. GH-BP was measured by a binding assay with dextran-coated charcoal separation. IGF-I binding was measured on enriched RBC. Serum GH-BP levels were markedly reduced in the AN patients, and highly increased in the obese. Scatchard analyses showed linear plots with unaltered binding affinities (Ka). The binding capacity (Bmax) was significantly lower than normal control in the AN patients and higher in the obese. GH-BP levels correlated positively with the body mass index (BMI). RBC [125I]IGF-I binding was significantly elevated in the AN patients and low in the obese. Scatchard analyses showed curvilinear plots. The high-affinity constants (Ka1) were slightly, but significantly, higher in the AN patients and in the obese compared with control. The binding capacity of the first binder (Bmax1) was lower in obesity than in AN or control. The low-affinity constants (Ka2) were similar in the three groups, and its binding capacity (Bmax2) was similar in the AN patients and the controls, but significantly lower in the obese. [125I]IGF-I binding correlated negatively and significantly with the BMI and with the GH-BP.(ABSTRACT TRUNCATED AT 250 WORDS)

Adolescent

Effect of human growth hormone (GH)-binding protein in human serum on GH binding to rabbit liver membranes.

The sequence identity of growth hormone-binding protein (GH-BP) with the extracellular domain of GH receptors raised the possibility that circulating GH-BP might affect the binding of human GH (hGH) to its receptors, and thus, its biological effects. To test this hypothesis, we tested the effects of sera with low GH-BP levels (obtained from prepubertal children, girls with anorexia nervosa [AN], and patients with hepatic cirrhosis), normal control sera, and sera with high GH-BP levels (obtained from obese patients) on hGH binding to its receptors. GH-BP activity in patients' sera was measured by incubation with [125I]hGH and the separation of bound hGH from free hGH with dextran-coated charcoal. The effect of GH-BP was studied by preincubation of patients' sera with increasing concentrations of hGH, followed by incubation with [125I]hGH and a rabbit liver membrane preparation known to be rich in GH receptors, and finally by measuring hGH bound to the receptors. In this study, we report on the ability of GH-BP to reduce the inhibitory capacity (IC50) of hGH on [125I]hGH binding to GH receptors. The concentration of GH-BP in serum is positively correlated with the IC50 of hGH incubated with different sera on [125I]hGH binding to its receptors (n = 21; r = .886, P less than .001). In the presence of high serum GH-BP levels, such as those observed in obesity (20.13% +/- 0.71%/0.05 mL serum), the IC50 values were significantly higher than those obtained with sera containing GH-BP levels lower than those measured in human control subjects, such as from prepubertal children, AN patients, and cirrhotic patients.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals

Modulation of human growth hormone binding to somatogenic and lactogenic receptors by monoclonal antibodies to human growth hormone.

The relationship between the structure of human growth hormone (hGH) and the hormone-receptor interaction was investigated by studying the effects of specific monoclonal antibodies (MAbs) to hGH on the binding of [125I]hGH to rabbit liver and mouse liver microsomes. Receptor binding assays were carried out using a constant dose (1 ng) of [125I]hGH and varying concentrations of MAbs. The assay was carried out in the presence of either excess ovine prolactin for the measurement of somatogenic (SOM) binding sites, or excess bovine growth hormone for the determination of lactogenic (LAC) binding sites. Anti-hGH MAbs were found to have a whole spectrum of effects on hGH binding, including inhibitory, non-effect and enhancing activities. Enhancement of the binding of [125I]hGH to both SOM and LAC receptors was observed in liver membranes of rabbit or mouse. The observed amplified signal of [125I]hGH binding to various receptors in the presence of MAb no. 8 may be due to conformational changes which occur following MAb binding to hGH. On the other hand, most of the other MAbs caused inhibition of [125I]hGH binding. A negative correlation exists between the cross-reaction of various MAbs with the N-terminus truncated forms of hGH (Met14-hGH or Met8Leu-hGH) and their respective KD/IC50 values enabled the evaluation of the crucial role of the N-terminus region in hGH binding to both LAC and SOM receptors. MAb nos 1 and 19, which are directed towards acid residues 95-134 and the C-terminus, inhibited SOM binding more potently than LAC binding. Thus, it seems that these mid-molecule and C-terminus regions are also important in hGH binding, and that they play a role in the partial overlap of SOM and LAC binding.

Animals

A parkinsonian syndrome induced in the goldfish by the neurotoxin MPTP.

Parkinson's disease has been modeled in humans, lower primates, and to a lesser extent in some other vertebrates by administration of the potent neurotoxin MPTP (1-methyl-4-phenyl-1,2,3,6 tetrahydropyridine). The MPTP model has thus drawn considerable attention as a system to search for anti-Parkinson's disease drugs, although the cost and scarcity of primates has limited extensive applications. We now report that a parkinsonian syndrome can be elicited in the common goldfish (Carassius auratus) by a single dose of MPTP. The syndrome is characterized by profound bradykinesia (slow movement), the full extent of which is reached 3 days after MPTP administration. The reduction in movement is paralleled by loss of dopamine and norepinephrine from the forebrain and midbrain and in other brain regions as well. The toxic oxidative product of MPTP, MPP+, is also accumulated predominantly in forebrain and midbrain, and pretreatment with the monoamine oxidase blocker tranylcypromine substantially reduces accumulation of the toxic metabolite. A barely perceptible coarseness in balance adjustment also occurs in treated animals. The MPTP-treated goldfish recover normal movement and normal brain monoamine levels within 10-13 days after administration of the drug. We interpret these and other data to indicate that MPTP can induce a Parkinson's disease-like syndrome in the goldfish that is similar in many aspects to the syndrome induced by MPTP in humans and other primates. This remarkable parallel may permit the goldfish to supplement expensive and scarce primates for the purpose of searching and screening neuroprotective drugs with specific relevance to Parkinson's disease.

1-Methyl-4-phenyl-1,2,3,6-tetrahydropyridine

Iron-melanin complex in substantia nigra of parkinsonian brains: an x-ray microanalysis.

Using energy-dispersive x-ray analysis on an electron microscope working in the scanning transmission electron microscopy mode equipped with a microanalysis system, we studied the subcellular distribution of trace elements in neuromelanin-containing neurons of the substantia nigra zona compacta (SNZC) of three cases of idiopathic Parkinson's disease (PD) [one with Alzheimer's disease (AD)] and of three controls, in Lewy bodies of SNZC, and in synthetic dopamine-melanin chemically charged or uncharged with Fe. Weak but significant Fe peaks similar to those of a synthetic melanin-Fe3+ complex were seen only in intraneuronal highly electron-dense neuromelanin granules of SNZC cells of PD brains, with the highest levels in a case of PD plus AD, whereas a synthetic melanin-Fe2+ complex showed much lower iron peaks, indicating that neuromelanin has higher affinity for Fe3+ than for Fe2+. No detectable Fe was seen in nonmelanized cytoplasm of SNZC neurons and in the adjacent neuropil in both PD and controls, in Lewy bodies in SNZC neurons in PD, and in synthetic dopamine-melanin uncharged with iron. These findings, demonstrating for the first time a neuromelanin-iron complex in dopaminergic SNZC neurons in PD, support the assumption that an iron-melanin interaction contributes significantly to dopaminergic neurodegeneration in PD and PD plus AD.

Aged

Growth-hormone-binding protein in patients with acromegaly.

The present study was undertaken to investigate the possible regulatory effect of chronic exposure to human growth hormone (hGH), in patients with acromegaly, on growth-hormone-binding protein (GH-BP). Nineteen patients with active acromegaly, before, during or after treatment, comprised the subjects of this study. Serum GH was measured by radioimmunoassay and GH-BP by a binding assay with dextran-coated charcoal separation. The specific binding of [125I]hGH (1 ng) obtained with 50 microliters serum was expressed as a percentage of total cpm. To evaluate the impact of the lower GH-BP on GH activity, we studied the effect of acromegalic serum on hGH displacement of [125I]hGH binding to GH receptors in rabbit liver membranes. Compared to normal controls (11.43 +/- 0.37%), the acromegalic patients had low serum levels of GH-BP (5.45 +/- 0.40%; p < 0.001), which correlated negatively with serum GH levels (p < 0.01). In 7 patients, GH-BP normalized within 2-3 months of successful therapy. The lower GH-BP was due to a reduction in binding capacity, whereas binding affinity remained unchanged. Acromegalic serum, with its low GH-BP, resulted in a shift to the left of the GH displacement curve when compared with normal human sera: IC50 values were 7.47 +/- 0.29 and 11.19 +/- 0.84 ng (p < 0.02) for acromegalic and normal human sera, respectively. We conclude that acromegaly is characterized by low levels of GH-BP due to a decrease in serum-binding capacity. The decrease in GH-BP may render the acromegalic serum GH relatively more active in the GH receptor assay.

Acromegaly

Growth hormone (GH)-binding protein regulation by estrogen, progesterone, and gonadotropins in human: the effect of ovulation induction with menopausal gonadotropins, GH, and gestation.

The recently described serum GH-binding protein (GH-BP) may reflect the GH-receptor level. To assess the serum GH-BP levels under various physiological and supraphysiological levels of sex steroids, we have evaluated its concentration in 26 patients undergoing 34 cycles of ovulation induction with either human menopausal gonadotropins (hMG)/hCG or GH/hMG/hCG. The latter ovulation induction protocol was undertaken in "Clonidine negative" patients in a prospective, randomized, crossed-over manner, between GH/hMG/hCG or hMG/hCG. The increase in GH-BP levels in patients' sera undergoing ovulation induction directly correlated with peripheral estradiol (E2) (r = 0.577; P < 0.001), and with peripheral progesterone (P4) (r = 0.542; P < 0.001; n = 174) concentrations in hMG/hCG cycles, and also in GH/hMG/hCG cycles (r = 0.669, P < 0.001 for E2, and r = 0.722, P < 0.001 for P4, n = 84). GH-BP levels did not change significantly in response to 0.15 mg Clonidine ingestion. The baseline GH-BP levels significantly correlated with the body mass index of 47 patients (r = 0.547; P < 0.001). The insulin-like growth factor-I (IGF-I) concentrations increased in correlation with increasing E2 levels up to 5500 pmol/L but decreased thereafter, at very high E2 concentrations. In gestations generated by ovulation induction with hMG/hCG or GH/hMG/hCG, longitudinal measurements of GH-BP levels showed an initial sharp increase during early gestation, followed by a gradual decrease beginning around the end of the first trimester and continuing during the mid and late trimesters. In normal spontaneous pregnancies, GH-BP levels, measured from the fifth week until term, were negatively correlated with gestational age (r = -0.581; P < 0.001; n = 84). This pattern is highly suggestive of the possibility that GH-BP is coregulated not only with E2 and P4 but also with hCG, and possibly other gonadotropins as well. Indeed, in patients with "resistant ovaries", pharmacological amounts of hMG failed to increase E2 concentrations but moderately increased GH-BP levels. These data provide good indirect evidence for coregulation of the GH-BP with both sex steroids and gonadotropins. The mid and late trimesters decrease in GH-BP levels in spite of increasing sex steroids concentrations, may be attributed to the decreasing hCG concentrations, and/or to the increasing secretion of placental lactogen (PL) and placental GH with the advancing gestation.

Carrier Proteins

Neurotoxicity and neuroprotection in Parkinson's disease.

Recent findings of impaired mitochondrial function, altered iron metabolism and increased lipid peroxidation in the substantia nigra in Parkinson's disease emphasize the significance of oxidative stress and free radical formation in the pathogenesis of the disease. Future research will focus on improvements in neuroprotective therapy to prevent or slow the rate of progression of Parkinson's disease. Possible neuroprotective strategies include free radical scavengers, monoamine oxidase-B inhibitors, iron chelators and glutamate antagonists.

Antiparkinson Agents

Developmental changes in the activity of catechol-O-methyl transferase in rat and rabbit fetuses.

Variations in the activity of catechol-O-methyltransferase (COMT) in peripheral organs in the brain of rat and rabbit fetus during development have been studied. The pattern of changes in COMT activity in rat fetus differed to a great extent according to the respective organs studied. In kidney and liver sharp declines occurred between days 18 and 20 and days 16 and 18 of fetal life respectively, followed by progressive increases up to onset of birth. Brain COMT of rat fetus declined progressively from day 16 of fetal life up to 0 hours after birth, while COMPT activity in adrenal and heart showed its maximum value at the 20th day of fetal life and at 0 hours after birth respectively. In the contrary, the developmental changes in activity of rabbit fetus were very similar in all the organs except in the adrenals, since it decreased between day 24 to 8 hours after birth in heart, liver, brain and kidney. In the adrenals an important increase could be seen between the 24th and 28th days of fetal life. Rat COMT activity during 4 and 8 hours of postnatal life in heart, liver and kidney declined from 0-hour value but it increased in the brain and adrenals. COMT in rabbit increased after birth in all the organs studied. The results suggest that metabolic degradation of catecholamines by 3-O-methylation in rat and rabbit fetus may have different developmental patterns to some extent according to the physiological status of the organ concerned. These species related differences for monoamine inactivation during fetal development may suggest a physiological role for COMT as a marker of the maturation of the autonomic nervous system.

Adrenal Glands

Tranylcypromine ('Parnate') overdose: measurement of tranylcypromine concentrations and MAO inhibitory activity and identification of amphetamines in plasma.

A case of tranylcypromine overdose is reported. Tranylcypromine, amphetamine methamphetamine and phenylethylamine were detected in the plasma by gas chromatography and their identity confirmed by mass spectrometry. The data suggested that the amphetamines were metabolic products of tranylcypromine. Platelet monoamine oxidase activity was more than 95% inhibited during the 72 h after the overdose despite complete clinical recovery by that time. The possible role of amphetamines and phenylethylamine in causing the clinical manifestations of tranylcypromine overdose is discussed.

Amphetamine

The metabolism of 5-hydroxytryptamine and beta-phenylethylamine in perfused rat lung and in vitro.

1 Metabolism of 5-hydroxytryptamine (5-HT) and beta-phenylethylamine (PHE) by monoamine oxidase (MAO) was investigated in rat isolated lungs and in mitochondrial preparations from rat lung. 2. In perfused lungs 5-HT metabolism had an apparent Km of 2 microgram and PHE metaoblism a Km of 54 microgram, whereas in vitro the Km values were 330 microgram and 28 microgram respectively. 3 In vitro, MAO activity had substrate and inhibitor specificities compatible with the presence of A and B types of MAO. 4 In perfused lung, metabolism of 5-HT but not that of PHE was inhibited by desmethylimipramine. 5 These results show that PHE metabolism in perfused lung, unlike that of other metabolized amines, is not limited by transport and the transport process for PHE is unlike that of 5-HT or noradrenaline. 6 These results also show that the kinetic parameters obtained for MAO activity in vitro do not generally apply to the isolated lung where transport of substrate can be the deciding factor. This discrepancy emphasizes that the enzymic properties of the whole organ cannot relaibly be deduced from its enzymic content.

Animals