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L Slørdal

Publications and source records attributed to L Slørdal.

At least 55 records · Page 3Linked to original sources

Induction of a reversible block in murine CFU-C differentiation by exposure to nitrous oxide.

Patients subjected to prolonged exposure to nitrous oxide (N2O) often develop megaloblastic bone marrow changes. This toxicity is due to the N2O-mediated inactivation of cobalamin-dependent enzymes with resultant perturbations in cell metabolism. The effect of N2O on the behavior of murine colony-forming units-cytokine (CFU-C) in vitro was studied by incubating granulocyte/macrophage colony-stimulating factor (GM-CSF)-stimulated bone marrow cultures for 7 days in an atmosphere of either 5% CO2 in air or 50% N2O/5% CO2 in air. Exposure of bone marrow cells in agarose to N2O resulted in an approximately 50% reduction in colony formation when compared with cultures incubated in air. In contrast, when residual CFU-C numbers were determined in bone marrow liquid cultures after 7 days of incubation in the presence of GM-CSF, exposure to N2O was found to dramatically enhance CFU-C recovery. Since these liquid cultures contain a strong differentiation inducer, and are unable to support CFU-C generation, the enhancement of CFU-C recovery in N2O-exposed cultures appears to be related to its ability to induce a reversible block in CFU-C differentiation. The reversible block in CFU-C maturation seen in vitro parallels clinical observations where a rapid hematologic recovery is seen in N2O-exposed patients treated with hydroxycobalamin. These observations would suggest that N2O is not markedly cytotoxic to CFU-C and that its action is, at least in part, cytostatic in nature.

Animals↗

The effect of vindesine on methotrexate hydroxylation in the rat.

The effect of vindesine (VDS) on methotrexate (MTX) disposition was studied in bile-drained rats administered VDS prior to [3H]MTX, and in isolated rat hepatocytes and rat liver homogenate concomitantly incubated with MTX and VDS at 37 degrees. In vivo, 7-hydroxylation was reduced by 0.65 mg/kg VDS. In VDS-treated animals, biliary recovery of the MTX dose (50 mg/kg) as 7-hydroxymethotrexate (7-OH-MTX) (1.75 +/- 0.2%, mean +/- SEM) was significantly reduced compared to controls (2.83 +/- 0.57%). In vitro, hydroxylation of MTX (10-200 microM) in hepatocytes was reduced by 14.3 and 66.4% (means) at 12.5 and 100 microM VDS, respectively. With increasing VDS concentrations up to 100 microM, a reduction in intracellular MTX accumulation could account for the decreased MTX hydroxylation. Experiments in a cell free system gave no evidence of inhibition of 7-OH-MTX formation by VDS. In vitro MTX transport studies demonstrated that VDS inhibited the hepatocellular influx of MTX, as (1) the accumulation of MTX corresponded inversely to increasing VDS concentrations and (2) the MTX efflux was not increased by VDS. The apparent Ki for VDS inhibition of MTX influx was 57 microM. We suggest that VDS, by reducing the 7-OH-MTX formation in liver cells, may have implications for combination chemotherapy regimens which include MTX.

Animals↗

[Determination of homocysteine and methylmalonic acid in cobalamin deficiency. Diagnostic problem with a solution?].

Conditions with cobalamin deficiency are common and may represent a considerable diagnostic challenge. This deficiency state may result in a wide range of uncharacteristic symptoms, and the traditional laboratory assays may give inconclusive or even misleading results. This article briefly reviews the biochemistry, normal homeostasis, pathology, symptoms and signs resulting from cobalamin deficiency. Homocysteine and methylmalonyl-CoA are substrates in the two cobalamin-dependent pathways. Recent research suggests that measurements of homocysteine and methylmalonic acid in blood may constitute a simple, sensitive, and specific tool in the diagnosis and follow-up of the cobalamin-deficient patient.

Homocysteine↗

Gonadal endocrine dysfunction in patients with lung cancer: relation to responsiveness to chemotherapy, respiratory function and performance status.

Male lung cancer patients with poor performance status [Eastern Cooperative Oncology Group (ECOG) index 3-4] have an endocrinological dysfunction as assessed by serum testosterone and sex hormone-binding globulin (SHBG) levels. Patients who respond to therapy regain normal free testosterone levels within 12 weeks post chemotherapy, whereas non-responders continue to exhibit subnormal levels. The perturbations of endocrinological variables in patients with lung cancer is not due to development of hypoxia, as patients with respiratory failure maintain a significantly lower testosterone level compared to cancer patients. The development of a deficiency in total testosterone concentrations in lung cancer patients is correlated to their performance status, and not to the presence of metastatic disease. The mechanisms responsible for the endocrinological dysfunction in patients with lung cancer remain unknown.

Aged↗

Beta-adrenoceptor regulation in insulin-dependent diabetes mellitus.

The study was performed to determine whether the regulation of mononuclear leukocyte beta-adrenergic receptors and responses was changed in insulin-dependent diabetes mellitus (IDDM). The concentrations of noradrenaline, the beta-adrenoceptor densities, basal cAMP levels and maximal isoprenaline-induced cAMP responses were the same in the diabetic and healthy subjects. After isoprenaline-promoted receptor internalization and uncoupling, the receptor densities and the responsiveness did not differ. In the control group, a highly significant correlation existed between the number of beta-adrenoceptors and maximal isoprenaline responses, before (r = 0.99, p less than 0.01) and after (r = 0.96, p less than 0.01) receptor internalization and uncoupling. This correlation between receptor densities and responses was not present in the IDDM group, which also showed elevated levels of plasma adrenaline. This study demonstrates that IDDM subjects have an unaltered mechanism of agonist-promoted beta-adrenoceptor internalization, but indicates a partial dysfunction of the beta-adrenoceptor-coupling to adenylate cyclase.

Adult↗

Protective effects of tumor necrosis factor on murine hematopoiesis during cycle-specific cytotoxic chemotherapy.

Tumor necrosis factor (TNF) is a pleiotropic cytokine which exerts a wide range of effects when administered in vivo. Using a murine model, we have investigated the effect of pretreatment with 1 microgram (2.6 x 10(4) units) per mouse of recombinant murine TNF-alpha on hematopoietic recovery following administration of cyclophosphamide, 5-fluorouracil, methotrexate, or vinblastine. TNF pretreatment results in enhanced regeneration of circulating neutrophils and hematopoietic progenitors, as measured by in vivo and in vitro assays, in animals given cycle-specific chemotherapeutic agents. The results may suggest that TNF affects cycle kinetics in hematopoietic progenitor cell populations, thus making these cells less prone to the cytocidal effects of the chemotherapeutic agents. As myeloablation is a frequent and often critical side effect following cancer treatment, these findings may have clinical implications.

Animals↗

7-Hydroxymethotrexate concentrations in serum and cerebrospinal fluid of children with acute lymphoblastic leukemia.

Concentrations of methotrexate (MTX) and 7-hydroxymethotrexate (7-OH-MTX) were determined by HPLC in the serum and cerebrospinal fluid (CSF) of 29 children with acute lymphoblastic leukemia. CSF and serum samples were obtained at the end of 104 infusions of MTX given in a dose range of 0.5-8.0 g/m2. Concentrations, distribution ratios in serum and CSF for MTX and 7-OH-MTX, and the metabolic index were analyzed with regard to the MTX dose, age and clinical state of the patients. A wide inter-patient (2- to 12-fold) but narrower (1.1- to 3.5-fold) intra-patient variability of the concentrations was observed. A dose-proportional increase in the metabolite concentration was found in serum. On the other hand, the elevation of the level of metabolite in CSF was less than proportional to the dose. The CSF/serum distribution data suggest the existence of a saturable carrier system for MTX and 7-OH-MTX between serum and CSF that has lower affinity for 7-OH-MTX. No correlation was found between concentrations of MTX and 7-OH-MTX in the serum of patients receiving the same dose of MTX. No significant difference was observed in the values for metabolic index between relapsed patients and those who were in continuous complete remission. A significant correlation was found between age and metabolic index: the younger the patient, the higher the metabolite concentration measured in serum.

Aging↗

Tumor-necrosis factor induces cell cycle arrest in multipotential hematopoietic stem cells: a possible radioprotective mechanism.

Tumor-necrosis factor (TNF) and interleukin-1 (IL-1) have been shown to confer protection of hematopoiesis in mice challenged with radiation. Herein, a series of experiments designed to elucidate the underlying mechanism is presented. After TNF administration, colony-stimulating activity, but no IL-1 activity, was detectable in mouse plasma. In endogenous CFU-S assays, TNF enhanced the survival of multipotential progenitors when administered before, but not after, irradiation. In experiments with fractionated irradiation, the radioprotective effect of TNF was distinctly different from that of IL-1. In vivo and in vitro thymidine suicide assays demonstrated that TNF wholly or partially abolished cell cycling of the CFU-S hematopoietic compartment. These data imply that TNF may inhibit the cell cycle in hematopoietic progenitor cell populations.

Animals↗

An automated method for the determination of nortriptyline and its isomeric 10-hydroxylated metabolites in plasma by high pressure liquid chromatography.

A high pressure liquid chromatography assay for determination of the tricyclic antidepressant nortriptyline (NT) and its two major metabolites, Z- and E-10-Hydroxy-NT, in plasma is described. Sample preparation included addition of internal standard and a single step extraction procedure. Run time was approximately 14 min. with a LC-18. 5 mu 250 x 4.6 mm column, a mobile phase consisting of aqueous ammonium: methanol: acetonitrile (0.8:6.2:93, v/v), and flow of 1.3 ml/min. NT, Z- and E-10-OH-NT, amitriptyline, Z- and E-10-OH-AT and the internal standard desipramine, were adequately separated within this time span. In our laboratory, the assay has been employed mainly for pharmacokinetic and toxicologic studies in experimental animals at relatively high concentrations.

Animals↗

Dose-dependent pharmacokinetics of methotrexate and 7-hydroxymethotrexate in the rat in vivo.

The pharmacokinetics of methotrexate (MTX) and 7-hydroxymethotrexate (7-OH-MTX) in bile, urine, and serum was studied in rats in vivo after short-time infusions of 10, 50, 250, and 1000 mg/kg MTX. All animals were anesthetized and drained of bile during experiments. The biliary secretion rate of MTX approached saturation when serum MTX levels surpassed 700-800 microM, causing a significant reduction in biliary recovery as the parent compound (49 to 32%) at MTX doses exceeding 50 mg/kg. The hepatic metabolism of MTX to the 7-hydroxy metabolite was not saturated at the doses used. Serum MTX pharmacokinetics demonstrated dose dependency, inasmuch as doses exceeding 10 mg/kg were accompanied by a reduced total body clearance (Clr) and biliary clearance (ClB). A significant finding in relation to acute hepatotoxicity reported after high-dose MTX in humans was the occurrence of cholestasis 30-90 min after drug infusion and the observation of macroscopic precipitations in the bile duct in five of six animals treated with 1000 mg/kg MTX. In these five animals, cessation of bile secretion occurred at similar bile 7-OH-MTX levels [9800 +/- 1100 (SD) microM], while the single rat that secreted bile throughout the experiment had a 5-fold lower peak 7-OH-MTX concentration in bile. Analysis of biliary precipitates formed in vivo and in vitro found 7-OH-MTX to constitute 97% and MTX 3% of the drug content of the precipitated material.

Animals↗

[Cytokines with effects on myelopoiesis. On mice, molecular biology and men].

The proliferation and differentiation of hematopoietic progenitors to mature blood cells are regulated by a family of glycoprotein cytokines with paracrine functions. Here in, the biology, possible pathogenic functions, and pharmacological potential of cytokines stimulating myelopoiesis are briefly reviewed.

Animals↗

Formation and elimination of 7-hydroxymethotrexate in the rat in vivo after methotrexate administration.

Bile, urine, and serum concentrations of methotrexate (MTX) and 7-hydroxy-methotrexate (7-OH-MTX) were monitored in rats in vivo following a short-time infusion of 10 mg/kg [3H]MTX. The experiments were performed in one group of anesthetized, bile-drained rats and in two control groups, one anesthetized and one unanesthetized, that were not bile-drained. Peak biliary levels of MTX (3.8 x 10(-3) M) and 7-OH-MTX (1.8 x 10(-4) M) appeared within 15 min after cessation of infusions. For two log ranges of serum MTX concentrations, biliary levels remained 180-fold higher. High bile 7-OH-MTX levels appeared few min after start of MTX administration, and were 720 times higher than the peak serum concentrations, indicating that the liver is a major site of 7-OH-MTX formation in the rat. 7-OH-MTX concentrations in bile declined monophasically with a half-life of 29.4 min, while MTX showed a biphasic elimination with initial and second phase half-lives of 23.1 and 86.4 min, respectively. Bile was the major excretory route for MTX and 7-OH-MTX, with 50% of the dose recovered as the parent compound and 3.6% as the metabolite. There was no difference in urinary recovery of MTX in bile-drained and control animals, indicative of insignificant enterohepatic circulation of MTX. This was further corroborated by the finding of just 2.1% urinary recovery of MTX in rats who received previously collected MTX-containing bile through a duodenal catheter. Serum concentration curves were analyzed according to a three-compartment open model with an initial elimination half-life of 1.7-3.3 min, a second phase half-life of 15.4-21.0 min, and a terminal phase half-life of 119-240 min. Our finding of 7-OH-MTX formation and high biliary levels of the metabolite in the rat, can be used as basis for studies of interactions with in vivo MTX conversion to the 7-hydroxy metabolite.

Animals↗

Effect of recombinant murine tumor necrosis factor on hemopoietic reconstitution in sublethally irradiated mice.

Intravenous bolus administration of a single 2-micrograms dose of murine rTNF-alpha to BALB/c mice 20 h before sublethal total-body irradiation (7.5 Gy) conferred significant protection against radiation-induced leukopenia. Murine rTNF-alpha administration not only reduced the decline of neutrophil and total blood cell counts after radiation, but also accelerated the subsequent normalization of peripheral blood cell counts. This was accompanied by accelerated regeneration of primitive hematopoietic progenitors, as determined by the in vivo spleen CFU assay, and the in vitro assay of the more mature hematopoietic cell compartment. This demonstrates that pretreatment with murine rTNF-alpha enhances hematopoietic reconstitution after sublethal irradiation, and indicates a possible therapeutic potential for this agent in the treatment of radiation-induced myelo-suppression.

Animals↗

Radioprotection by murine and human tumor-necrosis factor: dose-dependent effects on hematopoiesis in the mouse.

Tumor-necrosis factor (TNF) has been shown to confer significant radioprotection in murine models. Herein, we demonstrate a dose-dependent enhancement of hematological recovery when single doses of either murine or human recombinant TNF are administered prior to irradiation. In addition to its action upon leukocytes and erythrocytes, TNF also alleviates radiation-induced thrombocytopenia in the mouse. These effects on circulating blood constituents are further reflected in increased numbers of both primitive (CFU-S) and more differentiated (CFU-GM, CFU-Mega) hematopoietic progenitors in TNF-treated animals. This suggests that TNF exerts it radioprotective effects on a pool of primitive multi-potential hematopoietic cells.

Animals↗

Chemotherapy and endocrine function in lung cancer.

To investigate whether cyclic chemotherapy for lung cancer influenced endocrine function, we monitored thyroxine, cortisol, testosterone, sex hormone binding globulin (SHBG), estradiol, FSH, LH, and transcortin every three weeks in 12 male patients. Treatment regimens consisted of cisplatin and etoposide in 9 patients, or vincristine, doxorubicin, and cyclophosphamide in 3 patients. SHBG and FSH level were significantly elevated after 6 to 9 weeks of therapy, whereas the other variables were unchanged. The results suggest that the therapy induces endocrine gonadal dysfunction. The increments in SHBG levels reflect a considerable fall in free testosterone, and may effect alterations in total androgen/estrogen ratios. The mechanism underlying the increased SHBG levels is unknown.

Aged↗

Effects of 3-deazaadenosine, an inducer of HL-60 cell differentiation, on human blood cells in vitro.

The adenosine analogue 3-deazaadenosine (c3 Ado) induces differentiation of human promyelocytic leukemia HL-60 cells in vitro. c3 Ado affects in vitro viability and growth of cells involved indirectly (cytokine-producing cells) and directly (transformed myeloid cells) in leukemic cell differentiation. Growth inhibition of proliferating cells is achieved at c3 Ado concentrations between 10-100 microM. Concentrations higher than 100 microM affect viability of proliferating and nonproliferating cells.

Cell Differentiation↗