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T de Boer

Publications and source records attributed to T de Boer.

36 records · Page 2Linked to original sources

B cells specific for bromelain-treated erythrocytes are not derived from adult rat bone marrow.

As part of an evolutionary layered hematopoietic system, the B lymphocyte compartment consists of different lineages of B lymphocytes, which evolve sequentially during ontogeny. In mice, there is ample evidence for the existence of at least two lineages, a layer of B-1 cells (Ly-1 B cells) and the evolutionary more advanced layer consisting of conventional B cells. In a previous study we were unable to detect B-1 cells in the rat as determined by phenotypic markers. Here we studied the possible existence of putative B-1 cells in the rat based on some functional and developmental characteristics as have been described for mouse B-1 cells. We show that B cells secreting antibodies that recognize bromelain-treated mouse red blood cells (BrMRBC) can be identified in rat spleen, whereas these cells (in contrast to DNP-specific B cells) are virtually absent in lethally X-irradiated and bone marrow (BM) reconstituted animals. The number of anti-rMRBC-secreting B cells could not be restored to control levels by reconstitution with fetal liver cells or by cotransfer of 10(7) cells from peritoneal cavity, lymph node or Peyer's patches or up to 2 x 10(8) splenocytes. Although our findings thus suggest that B-1 cells (or B-1 like cells) may be present in rats, formal proof for the existence of such a lineage in rats awaits definition of these cells at the progenitor level.

Animals↗

Topography and characteristics of specific binding sites for non-opioid gamma-type endorphins in the rat brain as studied by autoradiography with [35S]Met-desenkephalin-gamma-endorphin.

An in vitro autoradiographic study was performed to characterize specific rat brain binding sites for non-opioid neuroleptic-like gamma-type endorphins, using [35S]Met-des-enkephalin-gamma-endorphin ([35S]Met-DE gamma E; [35]S-beta-endorphins(5-17)) with high specific activity as radioligand. The binding sites appeared to be confined to rat forebrain regions, e.g., orbital cortex, frontal cortex, cingulate cortex, piriform cortex, nucleus accumbens, amygdala, mediodorsal nucleus of the thalamus and arcuate and periventricular nuclei of the hypothalamus. These regions are part of the mesocorticolimbic feedback circuit. Densitometric analysis of the autoradiographs revealed that the density of the binding sites was highest in the mediodorsal nucleus of the thalamus and the amygdala. Concentration-dependent displacement of [35S]Met-DE gamma E (500 pM) with DE gamma E yielded an IC50 of 0.6 nM whereas DE alpha E (beta-endorphin(6-16)) had an IC50 of 210 nM. Various endorphins, sharing the gamma-endorphin C terminus, displaced [35S]Met-DE gamma E to the same extent as non-labelled DE gamma E (at 10(-6) M) whereas non-endorphin peptides did not show displacing capacity. Possible relationships of the binding sites with opioid receptors were investigated. DAMGO (mu) and DPDPE (delta) displaced [35S]Met-DE gamma E to some extent at 10(-6) M whereas U69,593 (kappa) was inactive, suggesting that the binding sites for gamma-type endorphins may resemble mu- and delta-opioid receptors in some aspects. Similarly, relationships with dopamine receptors were investigated. Haloperidol partially displaced [35S]Met-DE gamma E whereas sulpiride, SKF38,393 and 3-PPP at 10(-6) M did not induce significant displacement. Thus, binding sites are distinct from dopamine receptors.(ABSTRACT TRUNCATED AT 250 WORDS)

Amygdala↗

Therapeutic effect of THA on hemicholinium-3-induced learning impairment is independent of serotonergic and noradrenergic systems.

Tetrahydroaminoacridine (THA: Tacrine) has previously been shown to reverse deficits in spatial discrimination learning induced by hemicholinium-3 (HC-3). In the present experiments the effects of prior depletion of serotonin (5-HT) or noradrenaline (NA) on this reversal were examined. In the first experiment 5-HT lesions were made by injecting 5,7-DHT (2 x 50 micrograms/5 microliters) into the lateral ventricles of rats pretreated with desmethylimipramine (DMI 25 mg/kg IP). A permanently indwelling guide tube was then implanted over the right lateral ventricle. Subsequent testing under drug-free conditions, revealed no effect of the lesion on the number of trials needed to attain criterion (nine consecutive correct choices) in two-platform spatial discrimination learning in a watermaze. Using a latin square design rats were then tested for the effects of HC-3 and THA. HC-3 (5 micrograms/5 microliters ICV) or placebo (CSF) were injected 60 min before the start of a 30-trial training session. THA (4.6, 10 mg/kg SC) or placebo were then injected 15 min before training. Choice accuracy but not choice latency was significantly impaired by HC-3 and the effect was reversed by THA in both sham operated and 5-HT lesioned rats. In the second experiment two injections of DSP-4 (50 mg/kg IP) were given, following cannulation, to deplete forebrain NA. The lesion had no effect on spatial learning under drug-free conditions and failed to block the THA-induced reversal of spatial discrimination learning deficits following HC-3. These results confirm that forebrain Ach depletion by HC-3 impairs spatial discrimination learning and that the deficit is reversed by THA.(ABSTRACT TRUNCATED AT 250 WORDS)

5,7-Dihydroxytryptamine↗

The pharmacological profile of Org 6906, a potential non-sedative antidepressant that combines monoamine uptake inhibition with alpha 2-adrenolytic activity.

(dl)-(5 alpha,8 alpha,9 alpha)-5,8,9,10-Tetrahydro-5,9- methanobenzocycloocten-8-amine hydrochloride (Org 6906) is a potential new antidepressant agent, with a neurochemical profile quite different from that of the classical tricyclic antidepressant drugs. The compound was found active in behavioural tests which are considered to be predictive for antidepressant activity, such as the muricidal test in the rat and the acquired immobility model. Neurochemical studies showed that Org 6906 was an inhibitor of the reuptake of monoamines both in vitro and ex-vivo without having appreciable anticholinergic, antihistaminergic or alpha 1-adrenolytic activity. The facilitatory effect on monoaminergic neurotransmission was confirmed by the reversal of hypothermia induced by reserpine. The drug Org 6906 appeared to have selective alpha 2-adrenolytic properties. It facilitated potassium-stimulated release of noradrenaline from slices of cortex, displaced [3H]rauwolscine and [3H]dihydroergocryptine from their binding sites but only weakly blocked alpha 1-adrenoceptors. The alpha 2-adrenolytic properties were also apparent in behavioural interaction models. The compound antagonized the sleep-inducing effects of clonidine in chicks and mice and it antagonized the mydriasis induced by clonidine in the rat. Finally, it was shown that the two enantiomers of Org 6906 contributed almost equally to the relevant neurochemical and behavioural properties.

Adrenergic alpha-Antagonists↗

Differential interactions of muscarinic drugs with binding sites of [3H]pirenzepine and [3H]quinuclidinyl benzilate in rat brain tissue.

Some atypical muscarinic drugs were compared with classical drugs with respect to inhibition of specific binding of [3H]pirenzepine ([3H]PZ) and [3H]quinuclidinyl benzilate ([3H]QNB) to membrane preparations of rat brain. The interactions of the agonists McN-A343 and carbachol with [3H]QNB at muscarinic sites in brain stem preparations were differently modulated in the presence of an excess of PZ. Moreover, McN-A343 exhibited a preferential affinity for [3H]PZ sites in whole brain membranes whereas carbachol bound with high affinity to [3H]QNB sites in brain stem preparations. Various muscarinic agonists and antagonists displayed different affinity patterns in the [3H]PZ and [3H]QNB binding. These data are indicative of two populations of pharmacologically distinguishable binding sites and support the concept of muscarinic receptor heterogeneity in rat brain.

Animals↗

Characterization of the fusogenic properties of Sendai virus: kinetics of fusion with erythrocyte membranes.

A novel fluorescence assay [Hoekstra, D., De Boer, T., Klappe, K., & Wilschut, J. (1984) Biochemistry 23, 5675-5681] has been used to characterize the fusogenic properties of Sendai virus, using erythrocyte ghosts and liposomes as target membranes. This assay involves the incorporation of the "fusion-reporting" probe in the viral membrane, allowing continuous monitoring of the fusion process in a very sensitive manner. Fusion was inhibited upon pretreatment of Sendai virus with trypsin. Low concentrations of the reducing agent dithiothreitol (1 mM) almost completely abolished viral fusion activity, whereas virus binding was reduced by ca. 50%, indicating that the fusogenic properties of Sendai virus are strongly dependent on the integrity of intramolecular disulfide bonds in the fusion (F) protein. Pretreatment of erythrocyte ghosts with nonlabeled Sendai virus inhibited subsequent fusion of fluorophore-labeled virus irrespective of the removal of nonbound virus, thus suggesting that the initial binding of the virus to the target membrane is largely irreversible. As a function of pH, Sendai virus displayed optimal fusion activity around pH 7.5-8.0. Preincubation of the virus at suboptimal pH values resulted in an irreversible diminishment of its fusion capacity. Since virus binding was not affected by the pH, the results are consistent with a pH-induced irreversible conformational change in the molecular structure of the F protein, occurring under mild acidic and alkaline conditions. In contrast to virus binding, fusion appeared to be strongly dependent on temperature, increasing ca. 25-fold when the temperature was raised from 23 to 37 degrees C.(ABSTRACT TRUNCATED AT 250 WORDS)

Erythrocyte Membrane↗

Fluorescence method for measuring the kinetics of fusion between biological membranes.

An assay is presented that allows continuous and sensitive monitoring of membrane fusion in both artificial and biological membrane systems. The method relies upon the relief of fluorescence self-quenching of octadecyl Rhodamine B chloride. When the probe is incorporated into a lipid bilayer at concentrations up to 9 mol% with respect to total lipid, the efficiency of self-quenching is proportional to its surface density. Upon fusion between membranes labeled with the probe and nonlabeled membranes, the decrease in surface density of the fluorophore results in a concomitant, proportional increase in fluorescence intensity, allowing kinetic and quantitative measurements of the fusion process. The kinetics of fusion between phospholipid vesicles monitored with this assay were found to be the same as those determined with a fusion assay based on resonance energy transfer [Struck, D. K., Hoekstra, D., & Pagano, R. E. (1981) Biochemistry 20, 4093-4099]. Octadecyl Rhodamine B chloride can be readily inserted into native biological membranes by addition of an ethanolic solution of the probe. Evidence is presented showing that the dilution of the fluorophore, occurring when octadecyl Rhodamine containing influenza virus is mixed with phospholipid vesicles at pH 5.0, but not pH 7.4, resulted from virus-vesicle fusion and was not related to processes other than fusion. Furthermore, by use of this method, the kinetics of fusion between Sendai virus and erythrocyte ghosts and virus-induced fusion of ghosts were readily revealed. Dilution of the probe was not observed upon prior treatment of fluorescently labeled Sendai virus with trypsin.(ABSTRACT TRUNCATED AT 250 WORDS)

Erythrocyte Membrane↗

The effects of convulsant and anticonvulsant drugs on the release of radiolabeled GABA, glutamate, noradrenaline, serotonin and acetylcholine from rat cortical slices.

A possible presynaptic site of action of convulsant and anticonvulsant drugs has been evaluated by studying their effect on depolarization-induced transmitter release using radiolabeled GABA, glutamate, noradrenaline, serotonin and acetylcholine. The antiepileptic diphenylhydantoin (DPH) inhibited the release of noradrenaline and serotonin at concentrations that are antiepileptic in vivo. The release of the other transmitters was affected only with higher concentrations. Phenobarbital (PhB) reduced the release of all transmitters studied at concentrations much above the levels that are considered antiepileptic in vivo. Comparison with the anesthetic barbiturate pentobarbital (PB) further indicated that the presynaptic effects of PhB were related to its sedative rather than antiepileptic properties. Diazepam and sodium valproate had little effect; only GABA release was slightly reduced with diazepam at the highest concentration studied. The convulsants penicillin and pentylenetetrazole both increased the release of glutamate at concentrations that induce epileptiform activity in vivo or in vitro. Other transmitter systems were differentially affected by the two convulsants. A small increase of noradrenaline and serotonin release was observed with penicillin, but not with pentylenetetrazole. A presynaptic site of action for some, but not all, epileptogenic and antiepileptic drugs probably exists in addition to other, postsynaptic mechanisms. Glutamate is probably a major excitatory neurotransmitter in the brain and many physiological studies have suggested a role of excitatory pathways in the generation of epileptiform activity. The observed increase of glutamate release in the presence of two epileptogenic drugs observed in this in vitro study is in agreement with such a hypothesis.

Acetylcholine↗

Di-n-propylacetate-induced abstinence behaviour as a possible correlate of increased GABA-ergic activity in the rat.

Administration of di-n-propylacetate (DPA), an inhibitor of SSA-dehydrogenase, produces in naive rats abstinence behaviour which can be blocked by morphine and bicuculline and may be useful as a behavioural correlate of increased GABA-ergic activity. The usefulness of this model has been demonstrated by studying the effect of bicuculline, picrotoxin, strychnine, morphine, aminooxyacetic acid, 3-mercaptopropionate and thiosemicarbazide on DPA-induced abstinence behaviour. Behaviour was suppressed both by bicuculline or picrotoxin, while the selective glycine antagonist strychnine was ineffective. A comparable syndrome could not be evoked by treatment with aminooxyacetic acid, a GABA-transaminase inhibitor, indicating that the effect of DPA was not caused by inhibition of this enzyme. Instead, aminooxyacetic acid suppressed the DPA-induced abstinence behaviour, suggesting that two GABA-ergic systems with opposite effects on behaviour can be distinguished. The syndrome was also suppressed by convulsant doses of 3-mercaptopropionate, while thiosemicarbazide was ineffective. Abstinence behaviour was further suppressed by morphine with an ED50 of 0.5 mg/kg and this action could be clearly separated from its depressant effect on locomotor activity in non-treated animals. These results suggest that morphine receptors may be involved in DPA-induced abstinence behaviour. Based on these experiments a model has been proposed for GABA-ergic terminals being under the inhibitor influence of GABA-ergic autoreceptors. It is proposed that DPA-induced abstinence behaviour may be useful as a model of increased GABA-ergic activity to aid study of the regulation and properties of the GABA-ergic system in vivo.

3-Mercaptopropionic Acid↗

Tuning of the selectivity in capillary electrophoresis by cyclodextrins illustrated by the separation of some structurally related phenothiazines.

Cyclodextrins were used to affect the selectivity of the capillary electrophoresis system in the separation of 10 widely used phenothiazines. It was shown that the addition of cyclodextrins substantially improved the selectivity. The effect of temperature and cyclodextrin concentration was studied on the resolution between the screened phenothiazines. The best results were obtained with 8 mM hydroxypropyl-beta-cyclodextrin at 15.5 degrees C. Under these conditions, a resolution of at least 1.5 between all phenothiazines could be obtained. In addition, the chiral separation of the enantiomers of trimeprazine could be accomplished. Structure separability relations between the phenothiazines showed that a change in the side chain at the R10 position had the greatest effect on the migration.

Cyclodextrins↗