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Biomedical subjects

J Kuhlmann

Publications and source records attributed to J Kuhlmann.

At least 73 records · Page 4Linked to original sources

Rat adjuvant arthritis: imaging with technetium-99m-anti-CD4 Fab' fragments.

UNLABELLED: The abundance of CD4 molecules on inflammatory cells in the synovial membrane renders anti-CD4 monoclonal antibodies (MAbs) or their fragments very promising for specific imaging of arthritic joints. METHODS: Joint uptake and body distribution of a 99mTc-labeled Fab', derived from the anti-rat CD4 MAb W3/25 (IgG1), were investigated following intravenous injection in normal and adjuvant arthritic rats. An isotype-matched Fab' (anti-human nonspecific crossreacting antigen-90) was used as control. RESULTS: A 14-hr sequential pinhole scan of the ankle joints revealed that both the anti-CD4 and the control Fab' accumulated to a higher degree in arthritic than in normal ankle joints; however, accumulation of the anti-CD4 Fab' in arthritic joints exceeded that of the control Fab' (approximate to 1.6 fold). Preferential joint accumulation of anti-CD4 Fab' was confirmed by whole-body scans at 14 hr and by direct well counter measurements of tissue samples at 16 hr following injection. Unlike the control Fab', the anti-CD4 Fab' preferentially accumulated in the liver and lymph nodes, organs rich in CD4-positive cells, as observed by direct tissue measurements. CONCLUSION: Despite its monovalency, the anti-CD4 Fab' retains the in vivo selectivity for CD4-positive cell-rich tissues, previously reported for the complete anti-CD4 MAb, and improves imaging of inflamed joints in experimental adjuvant arthritis.

Animals↗

Pharmacokinetics, safety and tolerability of the orally administered receptor antagonist of cysteinyl-leukotrienes BAY x 7195 in single-dose escalation studies.

BAY x 7195 is a novel receptor antagonist of cysteinyl-leukotrienes currently under development for the treatment of asthma. It is effective in antagonizing the leukotriene-D4 induced bronchoconstriction in healthy volunteers following oral administration. The pharmacokinetics, safety and tolerability of the drug were investigated in six partially placebo-controlled studies in healthy volunteers with single oral administration of a 50, 100, 250, 500 and 1000 mg dose as a tablet. The drug was well tolerated. The only remarkable adverse event was diarrhea in one volunteer receiving the highest dose of 1000 mg. There were no additional clinically relevant changes in any safety parameter including laboratory values. Concentrations of BAY x 7195 were determined in plasma and urine by high performance liquid chromatography with fluorescence detection and plasma-concentrations were further evaluated by compartmental and non-compartmental methods. The concentration vs time profiles of the drug were biphasic with a dominant t1/2 of 0.5-2 h and a terminal t1/2 of 5-10 h. Pharmacokinetics were linear in the investigated range of doses. In spite of substantial inter-subject variability intra-individual variability in AUC and Cmax was reasonable. In general, the concentration vs time profiles could be described with a 2-compartment body model. However, in some cases the occurrence of second and third concentration maxima necessitated the use of a multiple segment absorption model to accomplish a good fit to the data. Enterohepatic recirculation following glucuronidation of the drug is the likely reason for the multiple peaks. Urinary excretion of BAY x 7195 and its glucuronide metabolite was negligible the amount excreted into urine from 0 to 48 h being < 0.1% of the dose. The low renal clearance of BAY x 7195 (< or = 0.07 ml/min) is suggestive of significant reabsorption in the renal tubuli taking into account that the expected renal clearance for a drug with 99.5% protein binding is about 0.6 ml/min.

Administration, Oral↗

Structure of the T cell receptor in a Ti alpha V beta 2, alpha V beta 8-positive T cell line.

The T cell receptor (TcR) is composed of at least six different polypeptide chains consisting of the clonotypic Ti heterodimer (Ti alpha beta or Ti gamma delta) and the noncovalently associated CD3 chains (CD3 gamma delta epsilon zeta). The exact number of subunits constituting the TcR is still not known; however, it has been suggested that each TcR contains two Ti dimers. To gain insight into the structure of the TcR we constructed a Ti alpha V beta 2, alpha V beta 8-positive T cell line which expressed the endogenous human TiV beta 8 and the transfected mouse TiV beta 2 both in association with the endogenous Ti alpha and CD3 chains at the cell surface. Preclearing experiments with radioiodinated cell lysate prepared with digitonin lysis buffer demonstrated that depleting the lysate of Ti alpha V beta 8 by immunoprecipitation with anti V beta 8 monoclonal antibody (mAb) did not reduce the amount of Ti alpha V beta 2 in the lysate, and likewise, depleting the lysate of Ti alpha V beta with anti-V beta 2 mAb did not reduce the amount of Ti alpha V beta 8. Comodulation experiments showed that V beta 8 and V beta 2 did not comodulate with each other. Furthermore, functional tests demonstrated that TcR containing V beta 8 and TcR containing V beta 2 mediated transmembrane activation signals independently of each other. These data demonstrate that mouse V beta 2 and human V beta 8 were not expressed in the same TcR in agreement with a TcR model where each TcR contains only one Ti dimer.

Animals↗

Effect of BAY x 7195, an oral receptor antagonist of cysteinyl-leukotrienes, on leukotriene D4-induced bronchoconstriction in normal volunteers.

Leukotrienes (LT) have been proposed to play an important role in the pathogenesis of asthma. This paper reports the results of two studies investigating the effect of BAY x 7195, a new oral receptor antagonist of cysteinyl-leukotrienes, on LTD4-induced bronchoconstriction in healthy male volunteers. Using a double-blind, placebo-controlled, crossover design, volunteers received 250 mg (n = 6; study 1) and 100 and 500 mg (n = 6; study 2) of BAY x 7195. Bronchoprovocation with nebulized LTD4 was performed 2 (250 mg) and 2 and 8 (100 and 500 mg) h p.a. The specific airway's conductance (SGaw) was used to assess the airway's response. Blood samples to determine plasma concentrations of BAY x 7195 were taken at the end of bronchoprovocation. BAY x 7195 showed no effect on baseline lung function. Compared to placebo, the different doses of BAY x 7195 increased the concentration of LTD4 needed to produce a 35% decrease in SGaw 2 h p.a. between 1- and 23-fold. Eight hours p.a., 100 and 500 mg caused shifts in the concentration-response curve of between 1- and 13-fold. There was no predictive relationship between plasma concentrations of BAY x 7195 and the response to LTD4 challenge. However, there was a relationship between dose and effect. No relevant adverse effects were reported. In conclusion, the present results suggest that BAY x 7195 is an effective LTD4-receptor antagonist in man.

Administration, Inhalation↗

Lack of interaction between diazepam and nimodipine during chronic oral administration to healthy elderly subjects.

1. Nimodipine (30 mg three times daily) and diazepam (10 mg once daily), were given orally to 24 elderly healthy subjects in a randomized, non-blinded, threefold-crossover study. Each of the three treatment periods lasted 5 days separated by 2 week washout phases. 2. Plasma concentrations of nimodipine and diazepam were not affected by the combined treatment. 3. No clinically relevant changes in haemodynamics, ECG recordings, clinical chemistry or haematology were observed after all of the three treatments. The overall frequency of side effects was lowest during monotherapy with nimodipine and highest during diazepam monotherapy. 4. In the test of subjective rating of tiredness (VAS) and the Pauli calculation test, diazepam, alone and with nimodipine co-medication, produced an increase in tiredness and a clear reduction in performance and endurance. After nimodipine monotherapy an improvement was observed only in the Pauli test. Using the critical flicker fusion frequency test (CFF) significant decrements in performance were found after diazepam monotherapy only. 5. In summary, there was no evidence that either nimodipine or diazepam affected the pharmacokinetics, safety and tolerance of each other. However, the CNS-effects of diazepam were compensated partially by nimodipine.

Administration, Oral↗

Bicarbonate-based dialysis solution preserves granulocyte functions.

OBJECTIVE: Intraperitoneal phagocytes play an important role in local defense in preventing continuous ambulatory peritoneal dialysis (CAPD) peritonitis. This study therefore investigates the effect of the conventional lactate-based dialysis solution-pH 5.2 (LBDS-pH 5.2) and a bicarbonate-based dialysis solution (BBDS) on various cell functions. DESIGN: We studied C5a-induced actin polymerization (AP) as a measure of the cytoskeletal alteration, phagocytosis of zymosan particles, and chemotaxis in neutrophils incubated in either LBDS-pH 5.2, LBDS-pH 7.4, or BBDS-pH 7.4, comparing the data with cells treated with phosphate-buffered saline-pH 7.4 (PBS-pH 7.4) as a control. SUBJECTS: Polymorphonuclear neutrophils (PMNs) were isolated from the blood of healthy donors and incubated with dialysis solution prior to the experiment. RESULTS: C5a-induced AP was dramatically inhibited in PMNs incubated in LBDS-pH 5.2, paralleled by a complete inhibition of phagocytosis and C5a-induced chemotaxis. In comparison, BBDS improved AP to values above the control and also nearly normalized phagocytosis. Chemotaxis markedly improved in cells treated with the low glucose-containing BBDS (Bic 20), containing high glucose concentrations (Bic 30). CONCLUSION: In comparison with conventional lactate-based dialysis solution-pH 5.2, bicarbonate-based dialysis solution at low osmolality better preserves neutrophil functions that involve the cytoskeleton.

Actins↗

Drug interaction studies during drug development: which, when, how?

Drug-drug interaction studies have become an important aspect of the development process of new drugs. Since formal studies of all possible interactions are neither practicable nor suggestive, a careful selection of a limited number of drug combinations to be investigated during the development phase is indicated. Priorities should be based on the likelihood of certain combinations to occur in clinical practice as well as on risks associated with them. In the main, clinical drug interaction studies are performed during late phase II and phase III of clinical drug development. In some exceptional cases clinical interaction studies are necessary at an earlier stage of development. This counts especially for drugs with a small therapeutic range and a steep course of the dose-response curve and especially for drug interactions which may effect vital processes. For all other drugs often administered together an initial screen for pharmacokinetic and/or pharmacodynamic interactions with plasma level measurements and examinations of a possible concentration-effect relationship might be sufficient. Taking these criteria into account an interaction program for new drugs under development with different indications like cardiovascular diseases, respiratory diseases, diseases of the central nervous system as well as rheumatic diseases, metabolic diseases and infectious diseases was developed.

Dose-Response Relationship, Drug↗

Characterization of T cell receptor assembly and expression in a Ti gamma delta-positive cell line.

T cell antigen receptor (TcR) heterodimers of both the Ti-alpha beta and Ti-gamma delta types are expressed at the surface of T cells noncovalently associated with the CD3 complex composed of the monomorphic chains gamma, delta, epsilon and zeta. The structural relationship and assembly of the various components of this multimeric protein complex is still not fully understood. In this report, the human leukemic T cell line Lyon which expresses a Ti-gamma delta/CD3 complex, was characterized and compared to another human leukemic T cell line Jurkat (Ti-alpha beta/CD3). Membrane TCR-/CD3- variants of the T cell Lyon were induced and found to produce all of the Ti/CD3 components, with the exception of Ti-delta. Biochemical analysis indicated that: (1) Ti-gamma/CD3 gamma, delta, epsilon complexes were formed in the endoplasmic reticulum in the absence of Ti-delta; (2) the CD3-zeta chain did not associate with the Ti-gamma/CD3 gamma delta epsilon complex and (3) the Ti-delta chain was required for cell surface expression of the Ti-gamma delta/CD3 complex. Introduction of Jurkat wild-type Ti-alpha cDNA into Lyon T cells resulted in Ti-alpha beta/CD3 expression and abrogated Ti-gamma delta/CD3 expression. In contrast, the expression of the Ti-gamma delta/CD3 complex was not affected by transfection of a mutated Ti-alpha cDNA into Lyon cells. The mutated Ti-alpha chain formed complexes with Ti-beta and CD3 gamma delta epsilon, but the CD3-zeta chain did not associate with these complexes. Taken together analysis of Lyon cells transfected with either wild-type or mutated Ti-alpha suggested that the CD3-zeta chain may have higher affinity for Ti-alpha beta/CD3 complexes than for Ti-gamma delta/CD3 complexes.

Biological Transport↗

Effect of food on the pharmacokinetics of the active metabolite of the prodrug repirinast.

The effect of food on the pharmacokinetics of the active metabolite of the new antiasthmatic drug repirinast was investigated in two different studies after oral administration of 300 mg of repirinast. In each study, 12 healthy volunteers received the repirinast dose under fasting or fed conditions in a crossover manner. In one study, a high-fat meal (American breakfast) was used and in another study, a low-fat, high-carbohydrate meal (continental breakfast) was used. Concentrations of the active metabolite in plasma and urine were determined by reversed-phase high-performance liquid chromatography with UV detection. After administration of repirinast with a low-fat and a high-fat meal, the relative bioavailability of the active metabolite increased by factors of 1.9 and 2.4, respectively, as expressed by area under the curve of concentration versus time from 0 to 12 h. The amount excreted into urine doubled after drug administration with both types of food and accounted for approximately 8% of the dose under fasting conditions and approximately 16% of the dose under fed conditions. Maximum concentrations in plasma were different between the two studies: mean maximum concentrations in plasma increased by factors of 1.7 and 3.2 after administration of drug with a low-fat (drug intake immediately after breakfast) and a high-fat breakfast (drug intake just before breakfast), respectively, compared with fasting conditions.

Adult↗

Structure of the T-cell receptor in a Ti alpha beta, Ti gamma delta double positive T-cell line.

The multichain T-cell receptor is composed of at least six different polypeptide chains. The clonotypic Ti heterodimer (Ti alpha beta or Ti gamma delta) is non-covalently associated with the CD3 chains (CD3 gamma delta epsilon zeta). The exact number of subunits constituting the T-cell receptor is still not known. It has been suggested that each T-cell receptor contains two Ti dimers. To gain insight into the structure of the T-cell receptor we constructed a Ti alpha beta, Ti gamma delta double positive T-cell line which contained four functional Ti chains (Ti alpha, beta, gamma, and delta). The data demonstrated an absence of Ti dimers containing mixtures of chains other than the typical Ti alpha beta and Ti gamma delta combinations. Furthermore, by co-modulation experiments we demonstrated that the Ti alpha beta and the Ti gamma delta dimers were not expressed in the same T-cell receptor. Our data indicate that the T-cell receptor does not contain two Ti dimers.

Antibodies, Monoclonal↗

The IE allogeneic response of T cells from C57Bl/6 mice is associated with genes in the TCRa locus.

It has been demonstrated that induction of immune responses, infectious diseases and autoimmune manifestations can be associated with at least four gene loci: the major histocompatibility complex (MHC) locus; the immunoglobulin (Ig) heavy chain (Hc) locus; and the T-cell receptor (TCR) TCR-alpha or TCR-beta chain loci. In the present study, we have analysed whether T-cell responses of IE-negative C57Bl/6 (B6) mice to IE alloantigen (IE alpha transgenic B6 mice = B6.E alpha 16) or to trinitrophenylated (TNP) syngeneic spleen cells were influenced by changes in the Ig-Hc locus or the TCRa locus. Whereas the fine specificity of T-cell responses to IE alloantigen was the same in B6 mice and in Ig-Hc congenic B6.26a or TCRa congenic B6.10TCa mice, the latter strain of mice demonstrated much higher IE-specific T-cell responses against B6.E alpha 16 spleen cells than B6 or B6.26a mice. This high responsiveness was a dominant feature and associated with the TCRa locus. In addition, the TCRV alpha or V beta repertoire of the congenic strains of mice was polyclonal and very similar. The TNP-specific T-cell responses of B6 and B6.10TCa mice showed the same restricted TCRV alpha and V beta repertoire. It is concluded that in both an oligoclonal T-cell response (anti-TNP) and a polyclonal T-cell response (anti-IE), exchange of Ig-Hc or TCRa loci does not significantly influence the TCRV alpha or V beta repertoire in IE-negative C57Bl/6 mice.

Animals↗

Biochemical characterization of a novel channel-activating site on nicotinic acetylcholine receptors.

We have studied the interaction of the reversible acetylcholine esterase inhibitor (-)physostigmine and several structurally related compounds with the nicotinic acetylcholine receptor (nAChR) from Torpedo marmorata electric tissue by means of ligand-induced ion flux into nAChR-rich membrane vesicles, direct binding studies and photoaffinity labeling. (-)Physostigmine acts as a channel-activating ligand at low concentrations and as a direct channel blocker at elevated concentrations. Channel activation is not inhibited by desensitizing concentrations of ACh or ACh-competitive ligands (including alpha-bungarotoxin and D-tubocurarine) but is inhibited by antibody FK1 and several other compounds. From photoaffinity labeling using tritiated physostigmine and mapping of the epitope for the Phy-competitive antibody FK1, the binding site for physostigmine is located within the alpha-subunit of the Torpedo nAChR and is distinct from the acetylcholine binding site. Our data suggest a second pathway of nAChR channel activation that may function physiologically as an allosteric control of receptor activity.

Amino Acid Sequence↗

Biosynthesis of Tcr-alpha, beta and Tcr-gamma, delta/CD3 complexes.

Jurkat J76 clone, LYON L12.37 clone and L12.37 cells transfected with J76-alpha cDNA or J76 Tcr-alpha mutated cDNA (J79) were analysed for membrane expression of Tcr/CD3 complex using WT31 mAb (Tcr-alpha, beta) or Tcr-delta 1 mAb (Tcr-gamma, delta): LYON cells express V beta 9 bearing Tcr-beta chains. J76 Tcr-alpha cDNA transfected LYON cells have intracellular Tcr-gamma, delta chains and J79 Tcr-alpha cDNA transfected LYON cells have intracellular Tcr-alpha (M), beta chains.

Amino Acid Sequence↗

Pharmacokinetics of the active metabolite of the prodrug repirinast in healthy Caucasian volunteers after a single oral dose.

The pharmacokinetics of BAY w 8199, the active metabolite of the prodrug repirinast (BAY u 2372), has been investigated after oral administration of 150, 300 and 450 mg repirinast to twelve healthy male Caucasians. Plasma BAY w 8199 concentrations were very variable between subjects. The mean peak level (geom.mean; 1s-range) was 0.14 (0.08-0.25), 0.19 (0.13-0.29) and 0.24 (0.14-0.42) mg/l after the 150, 300 and 450 mg doses, respectively. Peak levels were reached 0.5-2.5 h after drug intake. Terminal half-lives were calculated as 5.9 h (150 mg), 8.0 h (300 mg) and 9.8 h (450 mg). The dose proportionality of the plasma profiles of BAY w 8199 and of its excretion in urine was demonstrated by testing several parameters. About 7.4% of each dose (calculated as BAY w 8199) was excreted in urine over 36 h. The renal clearance of about 27 l/h suggests that BAY w8199 is excreted by tubular secretion in addition to glomerular filtration.

Administration, Oral↗

Influence of the H2-receptor antagonists cimetidine and ranitidine on the pharmacokinetics of nimodipine in healthy volunteers.

A possible interaction between the calcium antagonist nimodipine and the H2-receptor antagonists cimetidine and ranitidine has been investigated in two separate studies in healthy subjects. In eight young volunteers the concomitant administration of nimodipine 30 mg t.i.d. and cimetidine 1000 mg/d for 7 days led to a significant increase of the relative bioavailability of nimodipine. The changes in the pharmacokinetic parameters were not accompanied by discernible haemodynamic effects or any change in the tolerability of nimodipine. There was no evidence of any significant change in the steady-state pharmacokinetics of nimodipine during five days of combined treatment with 30 mg t.i.d. nimodipine and ranitidine 300 mg/d given as single morning dose to twelve healthy, elderly subjects. Analysis of haemodynamics, clinical chemistry and tolerance also did not reveal any difference between the two treatment periods.

Adult↗

Neuroendocrine effects of ipsapirone on the hypothalamic-pituitary adrenal axis: CRF, ACTH and cortisol in healthy volunteers.

The neuroendocrine effects (changes in plasma CRF, ACTH and cortisol) of single and multiple (t.d.s. for 2 days) doses of ipsapirone (BAY Q 7821) 5 and 10 mg have been investigated in 6 healthy male volunteers. The study followed a balanced complete block, placebo-controlled and double blind design with two baseline phases (pre and post-treatment). Volunteers were investigated on identical days during 5 successive weeks. The results do not show a specific effect of ipsapirone on the hypothalamic-pituitary-adrenal axis when doses in the range of 5-30 mg per day were given.

Adrenocorticotropic Hormone↗

A second pathway of activation of the Torpedo acetylcholine receptor channel.

We have studied the interaction of the reversible acetylcholine esterase inhibitor (-)physostigmine (D-eserine) with the nicotinic acetylcholine receptor (nAChR) from Torpedo marmorata electric tissue by means of ligand-induced ion flux into nAChR-rich membrane vesicles and of equilibrium binding. We find that (-) physostigmine induces cation flux (and also binds to the receptor) even in the presence of saturating concentrations of antagonists of acetylcholine, such as D-tubocurarine, alpha-bungarotoxin or antibody WF6. The direct action on the acetylcholine receptor is not affected by removal of the methylcarbamate function from the drug and thus is not due to carbamylation of the receptor. Antibodies FK1 and benzoquinonium antagonize channel activation (and binding) of eserine, suggesting that the eserine binding site(s) is separate from, but adjacent to, the acetylcholine binding site at the receptor. In addition to the channel activating site(s) with an affinity of binding in the 50 microM range, there exists a further class of low-affinity (Kd approximately mM) sites from which eserine acts as a direct blocker of the acetylcholine-activated channel. Our results suggest the existence of a second pathway of activation of the nAChR channel.

Animals↗

Desensitization is a property of the cholinergic binding region of the nicotinic acetylcholine receptor, not of the receptor-integral ion channel.

The reversible acetylcholine esterase inhibitor (-)-physostigmine (eserine) is the prototype of a new class of nicotinic acetylcholine receptor (nAChR) activating ligands: it induces cation fluxes into nAChR-rich membrane vesicles from Torpedo marmorata electric tissue even under conditions of antagonist blocked acetylcholine binding sites (Okonjo, Kuhlmann, Maelicke, Neuron, in press). This suggests that eserine exerts its channel-activating property via binding sites at the nAChR separate from those of the natural transmitter. We now report that eserine can activate the channel even when the receptor has been preincubated (desensitized) with elevated concentrations of acetylcholine. Thus the conformational state of the receptor corresponding to desensitization is confined to the transmitter binding region, leaving the channel fully activatable-albeit only from other than the transmitter binding site(s).

Acetylcholine↗