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Featured researches published by Th. de Boer.


Neuropharmacology | 1988

Neurochemical and autonomic pharmacological profiles of the 6-aza-analogue of mianserin, org 3770 and its enantiomers

Th. de Boer; G. Maura; M. Raiteri; C.J. de Vos; J. Wieringa; R.M. Pinder

The neurochemical and autonomic pharmacological profile of 1,2,3,4,10, 14b-hexahydro-2-methyl-pyrazino[2,1-a]pyrido[2,3-c]pyrido[2, 3-c] [2] benzazepine [+/-)Org 3770) and the related antidepressant drug, mianserin, have been compared. The uptake of [3H]noradrenaline ([3H]NA) in vitro was weakly affected by (+/-)Org 3770 (pKi = 5.6) in contrast to mianserin (pKi = 7.4). Both (+/-)Org 3770 and mianserin facilitated the release of [3H]NA in slices of cortex. The effects of NA mediated by alpha 2-adrenoceptors on the release of both [3H]NA or [3H]serotonin ([3H]5-HT) were antagonized by (+)Org 3770 with pKi values of 8.4 and 8.1, respectively. However, (-)Org 3770 only antagonized the effect of NA on the release of [3H]5-HT (pA2 = 7.7). The binding of [3H]rauwolscine to alpha 2-adrenoceptors was inhibited by (+/-)Org 3770 and mianserin with identical affinity (pKi = 7.0), whereas the binding of [3H]prazosin to alpha 1-adrenoceptors was less potently affected by (+/-)Org 3770 (pKi = 6.4) than by mianserin (pKi = 7.1). A similar difference was found for alpha 1- and alpha 2-adrenoceptors in vas deferens of the rat. The binding of [3H]mianserin to 5-HT2 receptors was less potently blocked by (+/-)Org 3770 (pKi = 8.1) than by mianserin (pKi = 9.4) while the binding of [3H]mepyramine to histamine-1 receptors was more potently affected by (+/-)Org 3770 (pKi = 9.3) than by mianserin (pKi = 8.75). The binding of [3H]quinuclidinylbenzilate to muscarinic cholinergic receptors was blocked equally by (+/-)Org 3770 (pKi = 6.1) and mianserin (pKi = 6.3). Similar data on tryptamine-D, histamine-1 and muscarinic cholinergic receptors in isolated organs were obtained. A prominent role for the blockade of alpha 2-adrenoceptors in the therapeutic effects of mianserin and (+/-)Org 3770 in depression is suggested, probably excluding a role of inhibition of the uptake of NA.


Combinatorial Chemistry & High Throughput Screening | 2003

Fluorescence Assays for High-Throughput Screening of Protein Kinases

Guido J.R. Zaman; A. Garritsen; Th. de Boer; C. A. A. Van Boeckel

Protein kinases comprise one of the most important group of targets for drug discovery research today. Methods to identify novel kinase inhibitors by high-throughput screening have evolved rapidly in recent years. An important aspect is the availability of fluorescent probes that can be applied in a homogeneous, or mix-and-measure, assay format. Here, we illustrate the application of fluorescence read-out technologies for kinase targets in light of our own experiences in assay development and high-throughput screening.


Life Sciences | 1987

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

Jeroen A.D.M. Tonnaer; M.A. van Vugt; Th. de Boer; J.S. de Graaf

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.


Journal of Neuroscience Methods | 1989

Local cerebral glucose uptake in anatomically defined structures of freely moving rats

Peter Room; Antoon J.P.C. Tielemans; Th. de Boer; Jeroen A.D.M. Tonnaer; J. Wester; J.H.M. Van den Broek; A.M.L. Van Delft

Two limitations of the classical [14C]2-deoxyglucose (DG) method are the severe stress to which the restrained animals are exposed, and the difficulties with the anatomical analysis of the autoradiograms. The present study describes modifications which circumvent these limitations. Firstly, rats are provided with two chronic indwelling cannulas to allow blood sampling under unrestrained conditions. Absence of stress is demonstrated by low plasma corticosterone levels in the cannulated rats at the start of the experiment. The second modification concerns the image analysis system. The image of the autoradiogram is superimposed on the image of the identical histologically stained section in order to improve the accuracy of the structure identification. This approach enables the operator to delineate the anatomical brain structure in the histologically stained section and quantify the glucose uptake in the autoradiogram generated from this section. The reproducibility of the present quantitative measuring system is illustrated by glucose uptake measurements in different laminar zones of the various fields in the dorsal hippocampal formation. It is concluded that the present technical improvements of the classically applied [14C]2-deoxyglucose technique provide favourable conditions for the quantitative study on cerebral glucose uptake in normally behaving animals.


Bioorganic & Medicinal Chemistry Letters | 1995

Synthesis of myo-inositol-1-phosphatase inhibitors in which the phosphate group is replaced by less polar groups

A.M.P. van Steijn; Henrica A.M. Willems; Th. de Boer; J.L.T. Geurts; C. A. A. Van Boeckel

Abstract The phosphate group in the inositol-1-phosphatase inhibitor ( 1 ) is replaced by less polar phosphorus containing groups (substituted phosphate and phosphonates), by sulphur containing substituents (sulphate, sulphonamides) and by a carboxylate and carbamate. The effect of the replacement is studied on the enzyme myo -inositol-1-phosphatase.


Neuropharmacology | 1988

The pharmacological profile of Org 6906, a potential non-sedative antidepressant that combines monoamine uptake inhibition with alpha2-adrenolytic activity

Th. de Boer; Chris L.E. Broekkamp; Alma J. Gower; J.S. de Graaf; C.J. de Vos; D. Rae; A.M.L. Van Delft

(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.


Human Psychopharmacology-clinical and Experimental | 1995

The α2-selective adrenoceptor antagonist org 3770 (mirtazapine, Remeron®) enhances noradrenergic and serotonergic transmission

Th. de Boer; G. S. F. Ruigt; H. H. G. Berendsen


Recueil des Travaux Chimiques des Pays-Bas | 2010

Monoamine re‐uptake inhibiting 1‐[2‐[(phenoxyphenyl)methoxy]ethyl]‐ piperazines as potential antidepressants

J. Wieringa; A. van den Meerendonk; J. Steenvoorden; G. Heeres; F. van Bakel; T. Roeters; R. van der Hulst; A. Den Blanken; D. Leysen; Ralf Plate; Th. de Boer; H. Rijk


European Journal of Pharmacology | 1990

Chronic treatment with mianserin, mirtazapine (Org 3770) and desipramine affect α2-adrenuceptor mediated and β-adrenoceptor stimulated adenyiate cyclase

Th. de Boer; S. de Kock; J.A.M. van Lunenburg; J.L.T. Geurts; A.M.L. Van Delft


Clinical Neuropharmacology | 1992

ORG 5222, AN ANTIPSYCHOTIC WITH POTENT 5-HT RECEPTOR BINDING IN ANIMALS.

A.M.L. Van Delft; Hemmie H.G. Berendsen; Th. de Boer; Jeroen A.D.M. Tonnaer

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