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Biomedical subjects

Y L Yamamoto

Publications and source records attributed to Y L Yamamoto.

At least 19 recordsLinked to original sources

Permeability change and brain tissue damage after intracarotid administration of cisplatin studied by double-tracer autoradiography in rats.

The present study was designed to find the reliable parameter(s) for the detection of early neurotoxicity following intracarotid (IC) administration of cisplatin. IC administration was performed for 60 minutes in female Wistar rats derived into four groups according to the dose given (1 mg, 1.2 mg, and 1.5 mg of cisplatin, and normal saline in control rats). Blood-brain barrier (BBB) permeability and local cerebral blood flow (LCBF) were measured by a double-tracer autoradiography technique using 1-[14C]-alpha-aminoisobutyric acid (14C-AIB) and 4-[18F] fluoroantipyrine (18F-FAP), respectively. Blood chemistry and neuropathology were also examined. BBB permeability was increased only on the ipsilateral side. This increase was dose-dependent, preceded the brain necrosis, and was statistically significant in the hypothalamus (1.2 mg group), auditory cortex and caudoputamen (1.5 mg group). Renal dysfunction was often observed. The changes in the LCBF did not occur until brain necrosis was noticeable. These findings demonstrate that the increase in the BBB permeability provides a sensitive and reliable indication of an early toxicity to brain tissue following IC administration of cisplatin.

Animals

Effect of acute fluoxetine treatment on the brain serotonin synthesis as measured by the alpha-methyl-L-tryptophan autoradiographic method.

The effect of treatment with acute fluoxetine, a serotonin reuptake inhibitor, on the rate of serotonin synthesis in the rat brain was studied through autoradiography following intravenous administration of alpha-methyl-L-[3H]tryptophan. The rate of serotonin synthesis in fluoxetine-treated rats was compared with the rate measured in sham-treated rats (saline injection). Results showed a significant increase in the rate of synthesis in the majority of cerebral structures examined. The greatest increase (given as a percentage of rates in control animals) in the rate of serotonin synthesis was observed in the substantia nigra compacta (344%), hippocampus-CA3 (337%), dorsal hippocampus (283%), and caudate-putamen (232%). Fluoxetine had a less significant effect on the rate of synthesis in the pineal body (44%). Data suggest that acute fluoxetine treatment (30 mg/kg, i.p.) enhances the rate of serotonin synthesis in all the structures of rat brain examined in this work.

Animals

Autoradiographic study of peripheral benzodiazepine receptors in animal brain tumor models and human gliomas.

In vitro binding of [3H]PK-11195 (1-(2-chlorophenyl)-N-methyl-(1- methylpropyl)-3-isoquinoline carboxamide) in rodent AA ascites and C6 glioma as well as in human gliomas was investigated. The Bmax (mean +/- S.D.) of AA ascites tumor and C6 glioma is 1.39 +/- 0.15 pmol/mg tissue and 4.50 +/- 0.76 pmol/mg tissue, respectively. This Bmax is 9 and 30 times, respectively, higher than the one found in the rat cortex (0.15 +/- 0.03 pmol/mg tissue). A Bmax of 1.26 +/- 0.24 pmol/mg tissue and 0.64 +/- 0.08 pmol/mg tissue was found in human malignant and low grade gliomas respectively. This Bmax value should be compared to 0.35 +/- 0.04 pmol/mg tissue found in the normal human cortex. There are significant (P less than 0.05) differences between Bmax in tumors and normal cortex. There was no significant difference in KD between the malignant and low grade gliomas. C6 glioma has a KD significantly greater than rat cortex. In some cases of human low grade gliomas, kinetic measurements suggested the presence of two affinity receptor sites. However, at this time, heterogeneity of the tissue cannot be excluded as being at least in part a source of this.

Animals

Influence of the tumor mass on the valine rate constants and on valine incorporation into proteins in an experimental brain tumor model.

Quantitative autoradiography was used to estimate regional transfer coefficients for valine incorporation and the rate of valine (exogenous and total) incorporation into proteins in an implanted brain-tumor model (AA ascites tumor). Special attention was paid to the evaluation of the tumor mass influence on the transfer coefficients and the rate of incorporation. The size of the tumors used in this study ranged from 2 to 5 mm in diameter. Nine groups of two to three animals each were used to determine the transfer coefficient. The transfer coefficients for movement of the label between different compartments were significantly greater in the tumor than in the normal brain. There is no tumor mass effect on the transfer coefficients or the rate of valine incorporation into proteins in surrounding or remote brain structures. The ratio between specific radioactivities of the free value in tissue and plasma was also measured. Results indicate that approximately the same fraction of the total valine is recycled in cortex as in the tumor tissue. The mean rates of exogenous valine incorporation into proteins (nmol g-1 min-1) is about one order of magnitude greater in the tumor than in the contralateral parietal cortex.

Animals

Effects of retrograde perfusion of the brain with combined drug therapy after focal ischemia in rat brain.

BACKGROUND AND PURPOSE: The ischemic edema associated with blood-brain barrier permeability changes and the excess production of free radicals are serious complications in prolonged cerebral ischemia. We examined the efficacy of transvenous perfusion of the brain, starting treatment 5 hours after occlusion of the middle cerebral artery for a period of 2 hours in rats with the combined agents mannitol (10 ml/2 hr) and dexamethasone (1 mg/2 hr) to counter edema and verapamil (0.05 mg/kg/2 hr) for vasodilation. METHODS: In experiment 1, blood-brain barrier permeability changes were examined in five groups with six rats each: group C rats underwent 7 hours of middle cerebral artery occlusion with no treatment; group V, treatment with verapamil alone; group VD, treatment with verapamil and dexamethasone; group VM, treatment with verapamil and mannitol; and group VDM, treatment with verapamil, dexamethasone, and mannitol. In experiment 2, we examined local cerebral blood flow, ischemic tissue damage volume, and water content of cerebral hemispheres in two groups of 16 rats each subjected to the same treatment as groups C and VDM rats in experiment 1. RESULTS: There was a significant reduction of blood-brain barrier permeability changes in the ischemic cortex of rats in group VDM compared with rats in the other groups. In the group undergoing transvenous perfusion of the brain with the three combined agents, there was a significant improvement of cerebral blood flow (39-58%, p < 0.05) in the ischemic cortex and reduction of ischemic cerebral damage volume (22%, p < 0.01) and water content of the ischemic hemisphere (p < 0.05) compared with the control group. CONCLUSIONS: The therapeutic approach using combined agents is effective treatment when initiated within 5 hours of focal cerebral ischemia in rats.

Analysis of Variance

Pharmacokinetics of 11C-labelled BCNU and SarCNU in gliomas studied by PET.

This paper describes the study of the pharmacodynamics of two 11C-labelled nitrosoureas, 1,3-bis-(2-chloroethyl) nitrosourea (BNCU) and sarcosinamide chloroethylnitrosourea (SarCNU), both labelled in the carbonyl position. Distribution of the radioactivity as measured by positron emission tomography was compared to the distribution of radioactivity observed after injection of 68Ga-EDTA, this being used as an indicator of the blood-brain barrier integrity around the brain tumor. Data suggest that the new nitrosourea, SarCNU, most likely enters brain tissue by different mechanism(s) than BCNU, which enters by diffusion. Data also indicate that use of SarCNU may result in a better tumor to brain ratio than BCNU.

Antineoplastic Agents

Neurotoxicity after intracarotid 1,3-bis(2-chloroethyl)-1-nitrosourea administration in the rat: hemodynamic changes studied by double-tracer autoradiography.

Changes in blood-brain (BBB) permeability and local cerebral blood flow after intracarotid administration of 1,3-bis(2-chloroethyl)-1-nitrosourea (BCNU) were examined quantitatively in rats with double-tracer autoradiography using [14C]alpha-amino-isobutyric acid and [18F]fluoroantipyrine. Forty-eight female Wistar rats were divided into four groups. The control group (Group 1) received 1 ml of 5% dextrose. The other three groups received three different doses of BCNU dissolved in 5% dextrose: Group II rats received 1 mg, Group III 3 mg, and Group IV 10 mg. The tracer study was performed on Day 1 or Days 4 to 12 after intracarotid administration of BCNU. In 11 rats in Group II, there were no changes of BBB permeability. Transient BBB permeability changes were seen in the striatum or hippocampus in 3 of the 5 rats (60%) in Group III within 24 hours. In 8 of 9 rats (89%) in the same group, late BBB permeability changes were observed in the hypothalamus with or without histological changes. BBB permeability changes were seen in all rats of Group IV. Focal increase of local cerebral blood flow on the infused side compared with the non-infused side of the brain was observed, although not at a significant level, in 5 of 25 rats examined with [18F]fluoroantipyrine. The results of BBB permeability and histological examinations and study of heterogenous distribution by [18F]fluorodeoxyglucose indicated that the ipsilateral subcortical structures such as the hypothalamus, amygdala, internal capsule, and caudate putamen have the highest incidence of neurotoxicity, which are closely related to histopathological damage seen in human BCNU leucoencephalopathy.(ABSTRACT TRUNCATED AT 250 WORDS)

Aminobutyrates

Efficacy of bypass between extracerebral artery and cerebral vein with retrograde verapamil infusion into focal cerebral ischemic tissue in rats.

We examined the efficacy of a bypass from an extracerebral artery to a cerebral vein (EA-CV) with retrograde verapamil infusion on acute focal cerebral ischemia in 35 rats. In 12 rats, within 1 hour after occlusion of the middle cerebral artery (MCAO), changes in blood-brain barrier permeability were examined by [14C]alpha-aminoisobutyric acid autoradiography after EA-CV bypass surgery; there were no significant changes during a period of 2 hours after EA-CV bypass. The other 18 rats having MCAO were divided into three groups of six each. Group A rats (control) underwent only cannulation of the cerebral vein. Group B rats had an EA-CV bypass. Group C rats received verapamil (0.1 mg/kg every 2 h) by transvenous perfusion of the brain (TVPOB) through the EA-CV bypass. In all rats in Groups A and C, local cerebral blood flow (LCBF) and quantitative measurement of early cerebral infarct volume were performed by autoradiography using [14C]iodoantipyrine and histochemical staining methods. Group B rats were examined only with the LCBF measurement. Group B (EA-CV bypass only) showed a nonsignificant improvement (18-40%) of LCBF in the ischemic cerebral cortical areas as compared with control Group A. Group C (EA-CV bypass with TVPOB with verapamil) showed an extensive and significant improvement in LCBF in the ischemic cortical areas (115-140%; P less than 0.05) and a slight increase in LCBF in the subcortical areas (17-29%), with a significant reduction (greater than 35%; P less than 0.05) in a total cerebral infarct volume in the ischemic cerebral hemisphere as compared with the control Group A.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals

Serotonin synthesis rate measured in living dog brain by positron emission tomography.

In vivo measurements by positron emission tomography of the brain serotonin synthesis rates in the normal dog, in the dog with increased plasma tryptophan concentration, and in the dog under different arterial oxygen tensions are described. The method described here permits repeated measurements in the same brain for the first time. An increase in the plasma tryptophan concentration from 16.6 to 191.5 and then to 381 microM resulted in close to a linear increase in the brain serotonin synthesis rate. When PaO2 was raised from 76 +/- 2 to 106 +/- 1 mm Hg, the rate of serotonin synthesis in the dog brain increased from 39 +/- 8 to 54 +/- 10 pmol g-1 min-1. The estimates of the Michaelis-Menten constants, Kappm and Vmax, for the transport of tryptophan through the blood-brain barrier are 303 +/- 54 microM and 63 +/- 10 nmol g-1 min-1, respectively.

Animals

Efficacy of retrograde perfusion of the cerebral vein with verapamil after focal ischemia in rat brain.

BACKGROUND AND PURPOSE: For treatment of acute stroke, drug therapy administered systemically has been unreliable due to inadequate delivery of drug into ischemic tissue. We have developed a new method to deliver drugs into the ischemic tissue by retrograde perfusion of the cerebral vein. METHODS: We examined in rats the effectiveness of administering verapamil into ischemic tissue by retrograde perfusion through the cerebral vein, starting 3 hours after occlusion of the middle cerebral artery. Twenty-four Fischer-344 rats with occlusion of the middle cerebral artery were divided into four groups of six rats each. Group A rats had no treatment, group B rats received verapamil intravenously, and groups C and D rats received verapamil by transvenous perfusion of the brain with blood and with saline, respectively. We studied local cerebral blood flow using the autoradiographic method with carbon-14-labeled iodoantipyrine and examined cerebral infarct volume with cresyl violet and Luxol fast blue staining. RESULTS: As compared with group A rats, in groups C and D rats we found a significant and extensive increase of cerebral blood flow in the ischemic cortical and subcortical areas (55-119%, p less than 0.05) and a significant reduction of cerebral infarct volume (31-39%, p less than 0.05). We found no significant changes in group B rats. CONCLUSIONS: This study shows that transvenous perfusion of the brain with verapamil starting 3 hours after occlusion of the middle cerebral artery produces a significantly beneficial effect in rats.

Animals

Recent advances of PET in temporal lobe epilepsy.

Recent advancement of PET studies in patients with temporal lobe epilepsy was reviewed. Changes of receptor plasticity are also examined in the experimental model of temporal lobe epilepsy in rats with unilateral injection of Kainic acid into the basolateral portion of the amygdala. The characteristic changes of receptor function in the specific topographical areas in both hippocampi with and without any morphological changes in these rats were observed. We plan to investigate these changes of receptor plasticity by PET with 11C-labeled ligands in patients with temporal lobe epilepsy in the near future to obtain a better understanding of the mechanisms of temporal lobe epilepsy.

Amygdala

No-carrier-added carbon-11-labeled sn-1,2- and sn-1,3-diacylglycerols by [11C]propyl ketene method.

This article describes the preparation of sn-1,2-[11C]diacylglycerols and sn-1,3-[11C]diacylglycerols by a no-carrier-added reaction based on a labeling method using [1-11C]propyl ketene, which is one of the most potent acylating agents. [1-11C]Propyl ketene was produced by pyrolytic decomposition of [1-11C]butyric acid and was trapped in pyridine containing L-alpha-palmitoyl-lysophosphatidylcholine, producing L-alpha-palmitoyl-2-[1-11C]butyryl-sn-glycero-3-phosphorylcholine. We adopted an enzymatic reaction to remove the phosphorylcholine, in which L-alpha-palmitoyl-2-[1-11C]butyryl-sn-glycero-3-phosphorylcholine was incubated with phospholipase C, hydrolyzing to produce 1-palmitoyl-sn-2-[1-11C]butyrylglycerol. Total synthesis time was about 50 minutes and the specific activity was estimated at 93 GBq/mumol (2.5 Ci/mumol) at end of synthesis. Radiochemical yield was 3.8% based on the trapped 11CO2. sn-1,3-[11C]Diacylglycerol was also synthesized by [1-11C]propyl ketene reaction with 1-palmitoyl-sn-glycerol in a single procedure. The regional brain tissue radioactivities obtained in sn-1,2-[11C]diacylglycerol were higher than those of sn-1,3-[11C]diacylglycerol, and the regional values varied widely. In autoradiography of brain slices from conscious rats, sn-1,2-[11C]diacylglycerol incorporation sites were discretely localized, especially in the amygdala, cerebral cortex, and hippocampus, suggesting that intensive neuronal processing occurred in these areas on the basis of phosphatidylinositol turnover.

Acylation

Non-invasive in-vivo autoradiographic method to measure axonal transport in serotoninergic neurons in the rat brain.

We studied axonal transport of serotoninergic neurons by autoradiography following intravenous administration of alpha-[14C]methyl-L-tryptophan (alpha-[14C]MTrp). Autoradiograms obtained 24 h after intravenous injection of the tracer demonstrated clearly all raphe nuclei and the major ascending pathway, the medial forebrain bundle (MFB). From these autoradiograms it was clear that radioactivity traveling along the MFB had already reached the substantia nigra and ventrolateral geniculate body nuclei, terminal field. The whole route of the MFB was well visualized from an axial cross-section of a three-dimensional display of data. Autoradiograms obtained at 6 h after injection revealed only the caudal part of the MFB but all raphe nuclei were labelled, indicating that the tracer was in the process of being transported, probably as an alpha-methyl-5-hydroxytryptamine, via the MFB. The axonal transport rate was estimated from the brain autoradiograms of 4 rats killed 6 h after injection of the tracer. The mean distance of the tracer transported via the medial forebrain bundle in 4 rats was 3.8 +/- 0.4 (S.D.) mm, which corresponded to the level of the posterior to mid-hypothalamus. The axonal transport rate calculated from this distance from the medial raphe was 0.63 +/- 0.07 mm/h (14 mm/day). There was no significant difference in the axonal transport rate between the right and left side of the MFB.

Animals

A new method to measure brain serotonin synthesis in vivo. I. Theory and basic data for a biological model.

We describe here an autoradiographic method to measure the in vivo rate of serotonin synthesis in rat brain. The method is based on the use of the L-tryptophan analogue alpha-methyl-L-tryptophan (alpha-MTrp), which is converted in vivo into alpha-methylserotonin (alpha-M5HT). Since alpha-M5HT is not a substrate for monoamine oxidase, it is accumulated in the brain tissue. Data are presented to confirm time-dependent conversion of alpha-MTrp into alpha-M5HT in the dorsal raphe nucleus and also in the pineal body, an organ outside the blood-brain barrier. It has also been shown that washing brain slices in 10% trichloroacetic acid results in less than 3% incorporation of alpha-MTrp into brain proteins. The rates of synthesis are calculated in several grossly dissected brain structures by using tracer kinetics and a three-compartment biological model. The half-life of the precursor pool is estimated to be approximately 20 min. The rate of serotonin synthesis is highest in the pineal body.

Animals

A new method to measure brain serotonin synthesis in vivo. II. A practical autoradiographic method tested in normal and lithium-treated rats.

We describe here a practical autoradiographic method to estimate the rate of serotonin synthesis in brain. A two-time point method (60 and 150 min after injection of alpha-[14C]methyl-L-tryptophan) was first evaluated in 14 normal rats (7 at each time point). After this the method was tested in lithium-treated rats. In normal rats the rate of serotonin synthesis measured by the two-time point method generally correlated with known concentrations of tryptophan hydroxylase. The rate of synthesis in lithium-treated rats was compared with that in sham-treated rats (NaCl treatment). The results showed a significant increase in the synthesis rate in some cerebral structures. The greatest increases in the serotonin synthesis rate, attributable to the lithium treatment, were observed in the parietal cortex (52%) and caudate nucleus (47%). This is the first investigation to demonstrate, with autoradiographic resolution (approximately 100 microns), the differential changes in the rate of serotonin synthesis in the brain. Lithium had no significant effect on the rate of synthesis in the pineal gland.

Animals

Hemodynamic and metabolic effects of extracranial carotid disease.

Cerebral blood flow (CBF), cerebral blood volume (CBV), the CBF/CBV ratio - an index of the hemodynamic reserve capacity - the rate of oxygen metabolism (CMRO2), and the fractional extraction of oxygen by the brain (OEF) were studied by positron emission tomography (PET) in the cortical territory of both internal carotid arteries in 15 cases of transiently symptomatic or progressive extracranial atherosclerotic carotid disease. None of the patients had a major stroke or had a significant neurological deficit except 1 whose damaged hemisphere is excluded from study. All were asymptomatic at the time of PET scanning. Values were obtained in the middle cerebral artery (MCA) distribution, and in the anterior and posterior borderzone regions. Eight cases had unilateral carotid stenosis of 80% or greater and 7 had unilateral or bilateral occlusion of the origin of the internal carotid artery. Results obtained in patients were compared using Student's t-test, to those obtained in neurologically normal, elderly volunteers. Patients with carotid stenosis had a significantly decreased CBF (p less than .025) and CBF/CBV ratio (p less than .025) selectively in the anterior borderzone regions. This was accompanied by a trend toward elevated OEF and declining CMRO2 values. Patients with carotid occlusion had significantly decreased CBF (p less than .005), decreased CBF/CBV ratio (p less than .005) and decreased CMRO2 (p less than .025) in the ipsilateral anterior borderzone and MCA territories. Similar changes were present in the opposite hemisphere of patients with bilateral carotid disease. These results indicate that carotid stenosis is associated with hypoperfusion and diminished hemodynamic reserve capacity in the anterior borderzone, and that carotid occlusion produces more widespread hypoperfusion and metabolic depression.

Aged

Quantitative measurements of regional glucose utilization and rate of valine incorporation into proteins by double-tracer autoradiography in the rat brain tumor model.

We examined the rate of glucose utilization and the rate of valine incorporation into proteins using 2-[18F]fluoro-2-deoxyglucose and L-[1-14C]-valine in a rat brain tumor model by quantitative double-tracer autoradiography. We found that in the implanted tumor the rate of valine incorporation into proteins was about 22 times and the rate of glucose utilization was about 1.5 times that in the contralateral cortex. (In the ipsilateral cortex, the tumor had a profound effect on glucose utilization but no effect on the rate of valine incorporation into proteins.) Our findings suggest that it is more useful to measure protein synthesis than glucose utilization to assess the effectiveness of antitumor agents and their toxicity to normal brain tissue. We compared two methods to estimate the rate of valine incorporation: "kinetic" (quantitation done using an operational equation and the average brain rate coefficients) and "washed slices" (unbound labeled valine removed by washing brain slices in 10% trichloroacetic acid). The results were the same using either method. It would seem that the kinetic method can thus be used for quantitative measurement of protein synthesis in brain tumors and normal brain tissue using [11C]-valine with positron emission tomography.

Animals

The deoxyglucose method in the ferret brain. II. Glucose utilization images and normal values.

To measure cerebral glucose utilization with the autoradiographic deoxyglucose method, the tracer transfer rate constants and lumped constants must be known. 2-Deoxyglucose (2-DG) and fluorodeoxyglucose (FDG) constants were determined in 18 gray and white matter brain structures of the anesthetized ferret. The ferret is a domestic carnivore particularly suitable for deoxyglucose studies because of its small brain size and low body weight. The average gray matter rate constants for tracer transfer across the blood-brain barrier are similar for 2-DG and FDG in the ferret brain (K*1 = 0.21 ml/g/min and k*2 = 0.39 min-1). The rate constant for the rate-limiting step of tracer phosphorylation, k*3, is 1.6 times higher for FDG than for 2-DG (0.21 vs. 0.13 min-1). Loss of metabolized tracer is about 1-1.5%/min throughout the ferret brain for both tracers as estimated for a 180 min experimental period. Taking into account this loss, the lumped constant is 0.92 for FDG and 0.68 for 2-DG. Glucose utilization values in the brain of the anesthesized ferret range from 33 mumol/100 g/min in the corpus callosum to 104 mumol/100 g/min in the caudate nucleus. Representative glucose utilization images of coronal sections of the ferret brain are shown. Brain structures are identified on the same slices counterstained with thionin.

Animals