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A A Ermens

Publications and source records attributed to A A Ermens.

At least 19 recordsLinked to original sources

Inverse relation between plasma G-CSF levels and neutrophil counts in a patient with autoimmune neutropenia treated with G-CSF.

The pharmacokinetic characteristics of granulocyte colony-stimulating factor (G-CSF) appears to be related to the neutrophil count. We report the case of an 81-year-old male with acquired antibody induced neutropenia treated with G-CSF. This produced a rapid increase in the neutrophil count which appeared to be associated with diminished trough plasma G-CSF levels. Our data appears to indicate that mature neutrophils may play a part in the clearance of G-CSF from plasma.

Aged↗

Evaluation of an automated hemostasis testing analyzer, the Trombolyzer Combi.

We evaluated the Trombolyzer Combi (Behnk Elektronik, Norderstedt, Germany), an automated hemostasis analyzer, in a clinical setting. Determination of prothrombin time (PT), activated partial prothrombin time (APTT), fibrinogen (FIB) and antithrombin (AT) were performed using Organon Teknika reagents. Determination of PT, APTT and FIB on a KC4 (Amelung, Germany) using Dade reagent (Dade Behring, The Netherlands) and determination of AT on a Hitachi 912 using Chromogenix reagent (Nodia, The Netherlands) were used as reference methods. Within-run and total precision of the tests were determined by measuring pooled plasma samples at various levels in duplicate twice daily for twenty days. For all tests the within-run and total precision of the Trombolyzer Combi was comparable or superior to the reference methods. Methods comparison was performed with 100 patient samples for PT, APTT and FIB and with 50 patient samples for AT. The correlation coefficients between the Trombolyzer Combi values and the results from the reference methods were between 0.87 and 0.98. No effect of hemolysis on the determination of the studied parameters was detected. However, bilirubinemia above 260 micromol/L and triglycerides above 9 mmol/L resulted in erroneous test results. In conclusion, it is shown that the Trombolyzer Combi performs equivalently or better than the reference methods and can be used as a state-of-the-art hemostasis analyzer in a clinical laboratory.

Bilirubin↗

Parathyroid hormone-related protein (PTH-rP)-associated hypercalcemia in a patient with an atypical chronic lymphocytic leukemia.

We describe a patient with an atypical chronic lymphocytic leukemia (CLL) of the mixed cell type with a hypercalcemia due to parathyroid hormone-related protein production by the malignant B cells. On regard of the elevated serum calcium level without overt lytic bone lesions we found elevated serum levels of PTH-rP and demonstrated the presence of PTH-rP on the malignant lymphocytes. PTH-rP-related hypercalcemia in CLL is very rare. The role in PTH-rP in humoral hypercalcemia of malignancy is discussed.

Aged↗

[Latex hypersensitivity, an increasing problem].

As a result of the frequent use of rubber containing products in medical health care, latex allergy is becoming an increasing problem. Based on a case history of a hospital employee, this paper will discuss the cause and consequences of this specific allergy.

Adult↗

Four agglutination assays evaluated for measurement of von Willebrand factor (ristocetin cofactor activity)

The concentration of von Willebrand factor (vWf) in patients' plasma can be determined by measuring the ristocetin cofactor activity (vWf R:Co). However, this vWf R:Co assay is time consuming, which limits its routine use. Several commercial vWf R:Co tests, based on agglutination of lyophilized fixed platelets, are available. We evaluated the slide tests and aggregometer assays from Behring and Organon Teknika and compared them with the classic vWf R:Co aggregometer method. The within-run and between-run precisions of the two slide tests were better than those of the aggregometer methods. The correlation studies between the four commercial assays and the classic aggregation method were based on 23 plasma samples (range: 15-450% vWf R:Co). The correlation coefficients, which ranged from 0.923 to 0.950, did not differ significantly (P > 0.1). All four commercial assays gave significantly lower vWf R:Co values than the classic aggregation method (P < 0.01). We conclude that commercially available fixed platelets can be used for the rapid measurement of vWf R:Co with a slide test. The use of the aggregometer is time consuming and may result in a lower precision.

Humans↗

Effect of nitrous oxide and methotrexate on folate coenzyme pools of blast cells from leukemia patients.

The effects of methotrexate (inhibiting dihydrofolate reductase) and nitrous oxide (inactivating methionine synthase) on intracellular folate coenzyme levels of leukemic cells were studied. Blast cells from 10 cases of acute myeloid leukemia (AML) and 5 cases of acute lymphoid leukemia (ALL) were incubated with 5 x 10(-8) M [3H] 5-formyltetrahydrofolate (5-formylTHF) for 18 h to label intracellular folate pools, which were subsequently quantitated by high performance liquid chromatography (HPLC). In AML, 5-methylTHF made up 53% of the total folate pool followed by 10-formylTHF (26%), 5-formylTHF (10%), THF (9%) and DHF (1%). Cells from ALL differed from AML (p less than 0.05) with respect to 10-formylTHF (17%) and DHF (10%). Exposure to nitrous oxide (8 h) caused an equal decrease of 10-formylTHF and 5-formylTHF in both AML (30%) and ALL (45%), whereas 5-methylTHF increased (130%). Methotrexate (4 h, 10(-6) M) caused an accumulation of DHF and a decrease of 5-methylTHF in both AML (32%) and ALL (12%). A specific reduction of the 10-formylTHF (50%) and 5-formylTHF (25%) pools was noticed in ALL. Exposure to nitrous oxide prior to methotrexate treatment aggravated the reduction of 10-formylTHF and 5-formylTHF presumably by impaired replenishment from the 5-methylTHF pool. In conclusion, this study demonstrates a significant difference in folate coenzyme distribution between cells from AML and ALL. Moreover it is shown that nitrous oxide and methotrexate treatment of leukemic cells cause an accumulation of 5-methylTHF and DHF respectively at the expense of other folate forms. The presence of substantial amounts of DHF in cells from ALL together with the specific reduction of 10-formylTHF (necessary for purine synthesis) during MTX treatment may in part explain the efficacy of methotrexate in the treatment of ALL.

5-Methyltetrahydrofolate-Homocysteine S-Methyltran↗

Monitoring cobalamin inactivation during nitrous oxide anesthesia by determination of homocysteine and folate in plasma and urine.

The effects of nitrous oxide-induced cobalamin inactivation on homocysteine and folate metabolism have been investigated. Plasma levels of cobalamin, folate, homocysteine, and methionine were determined in 40 patients before and after operation under nitrous oxide anesthesia (range of exposure time, 70 to 720 minutes). Twelve patients anesthetized with total intravenous anesthesia served as control subjects (range of exposure time, 115 to 600 minutes). Postoperative plasma levels of folate and homocysteine increased (p less than 0.001) up to 220% and 310%, respectively, in nitrous oxide-exposed patients, whereas plasma levels of methionine decreased (p less than 0.025). Response occurred after 75 minutes of nitrous oxide exposure. The percentage increase of plasma folate and homocysteine correlated significantly with exposure time (p less than 0.025 and p less than 0.0001, respectively). In eight patients receiving nitrous oxide anesthesia plasma homocysteine levels had not returned to preoperative levels within 1 week (p less than 0.01). Urinary excretion of folate and homocysteine increased during and after nitrous oxide exposure (p less than 0.01 and p less than 0.002, respectively) and correlated with exposure time (p less than 0.01 and p less than 0.005, respectively). It can be concluded that disturbance of homocysteine and folate metabolism by nitrous oxide develops with little delay and return to normal levels requires several days. Elevation of plasma homocysteine levels may therefore be used for monitoring nitrous oxide-induced cobalamin inactivation.

Adult↗

Anti-leukemic potential of methyl-cobalamin inactivation by nitrous oxide.

Myelo-cytotoxicity of extended nitrous oxide (N2O) inhalation was described almost forty years ago and then incidentally applied already with temporary success for suppressing leukemia. In 1948 the accompanying megaloblastic maturation arrest was explained by inactivation of the methylcobalamin coenzyme and subsequent folate deficiency. We studied the anti-leukemic effect of N2O on a transplantable acute leukemia in B(rown) N(orway) rats. Progression of this B,N,M(yelocytic)L(eukemia) was measured as spleen and liver weights, and leukemic blood cell counts. The deoxyuridine (dU)-suppression test provided in vitro indication of the functional folate activity of leukemic cells. Breathing of N2O-oxygen considerably reduced but did not eradicate, BNML-proliferation. Addition of anti-metabolites, interfering with some enzyme in the folate metabolism beyond the methylcobalamin co-enzyme dependent methionine synthase step, acted at least synergistically. The anti-leukemic effect of cycloleucine, which reduces S-adenosyl-methionine synthesis by inactivation of methionine adenosyltransferase, was moderate but became much stronger with N2O inhalation. Methotrexate, a potent anti-leukemic agent by inhibiting tetrahydrofolate (THF) generation through inactivation of di-HF reductase, became highly anti-BNML, even in low dosage when combined with or preceded by N2O. 5-Fluorouracil, which inhibits methylene-THF dependent thymidilate synthase, itself was surprisingly anti-BNML, but also became much more potent with previous or concomitant N2O exposure. Preliminary dU-suppression test results with human acute leukemia cells, exposed to N2O and/or folate antagonists in vitro, correlated well with the in vivo BNML-experiments. Combining the anticobalamin activity of N2O with an anti-folate therefore seems to be a promising chemotherapeutic approach.

Animals↗

Toxicity of methotrexate in rats preexposed to nitrous oxide.

Several chemotherapeutic protocols for the treatment of malignancies include administration of methotrexate (MTX) during or shortly after total anesthesia. Clinical observations in patients treated for breast carcinoma or childhood cancer have shown unexpected myelosuppression and mucosal damage. This phenomenon may be attributed to the synergistic effects of nitrous oxide, which inactivates the cobalamin coenzyme of methionine synthase, and MTX, which inhibits dihydrofolate reductase, on folate metabolism. However, no quantitative data on dose-effect relationships are available regarding the combined toxicity of MTX and N2O. We investigated the effect of exposure to N2O on the toxicity of MTX. Groups of male Wistar rats were exposed to either 50% N2O/50% O2 or air for 12-48 h. Subsequently, a single i.p. injection of 10, 20, 40, or 80 mg MTX/kg body weight was given. Gastrointestinal toxicity resulted in diarrhea and weight loss in all groups for 5 days after MTX administration. Concomitantly, bone marrow depression with leukocytopenia and thrombocytopenia occurred. Exposure to N2O did not alter the plasma clearance of MTX. No substantial liver or kidney toxicity could be detected, but the 50% lethal dose for MTX was reduced from 60 mg/kg to 10 mg/kg if rats had been exposed to N2O for 48 h; the main causes of death were dehydration and bleeding. The administration of 5-formyl-tetrahydrofolate (4 x 10 mg i.p.) but not 5-methyltetrahydrofolate protected completely against the lethal effect of the drug combination. Altogether, cytotoxic effects of MTX on proliferating cells are potentiated by N2O. Therefore, the use of this anesthetic shortly before or during MTX administration should be avoided.

Animals↗

Nitrous oxide selectively reduces the proliferation of the malignant cells in experimental rat leukemia.

A considerable reduction of hepatosplenomegaly and leucocytosis in leukemic rats of the Brown Norway Myeloid Leukemia (BNML) can be achieved by exposure to 50% nitrous oxide/50% oxygen. In this study the differential antiproliferative effect of nitrous oxide, inactivating vitamin B12, on normal and leukemic hemopoiesis was investigated in this rat model. Rats injected with leukemic cells and exposed to nitrous oxide for 10 days showed 30% reduction of hepatosplenomegaly and 50% reduction of leukocytosis. Similarly treated healthy rats showed no signs of impaired hemopoiesis as measured by peripheral blood parameters. Clonogenic assays of erythroid and myeloid progenitors from both healthy and leukemic rats revealed that exposure to nitrous oxide did not suppress normal bone marrow functioning. On the contrary, the reduction of leukemic proliferation by nitrous oxide retarded the leukemic infiltration of the bone marrow compartment.

Animals↗

The reduction of intracellular polyamines by sequential inhibition of the synthesis of decarboxylated S-adenosylmethionine: effects on rat leukemia.

Decarboxylated S-adenosylmethionine (SAM) is an aminopropyl donor in the synthesis of the polyamines, spermidine and spermine. The decarboxylation of SAM is inhibited by the toxic cytostatic drug methylglyoxalbis-(guanylhydrazone) (MGBG). To achieve more specific and less toxic effects of MGBG, this drug was combined with cycloleucine, which inhibits SAM synthesis, and with nitrous oxide, which inhibits methionine synthetase. This treatment thus aimed at sequential inhibition of the synthesis of decarboxylated SAM, and was studied in a rat leukemia model (BNML). Combined treatment further decreased the level of spermine, but not of spermidine, in leukemic cells, compared to the effects of MGBG alone. The therapeutic effects of this combination were additive or less than additive, however. MGBG was not very effective in reducing leukemic growth and severely toxic, although less with combined treatment. Another inhibitor of SAM decarboxylase, berenil, was also used, and although this drug was about equally active in inhibition of leukemic growth, alterations in intracellular polyamines were not observed. The combination of nitrous oxide and cycloleucine, which effectively reduced leukemic growth at non-toxic dosages, selectively inhibited spermine synthesis, and therefore may be used to interfere with polyamine metabolism. The relevance of this polyamine deprivation to the treatment of leukemia could not be demonstrated.

Adenosylmethionine Decarboxylase↗

Effect of cobalamin inactivation on folate metabolism of leukemic cells.

Exposure to nitrous oxide inactivates the cobalamin coenzyme of methionine synthetase, an essential enzyme in folate metabolism. Hemopoietic cells are especially dependent on the function of cobalamin for the folate-dependent synthesis of thymidylate (dTMP). Inhibition of methionine synthetase may therefore be of potential value in the treatment of hematological malignancies. In the present study we investigated the effect of nitrous oxide induced cobalamin inactivation on folate metabolism of fresh leukemic cells and the human myelomonocytic cell line U937. Cells were exposed to nitrous oxide for 20 h. Subsequently they were subjected to the deoxyuridine suppression test (dU test), which measures the disturbance of folate-dependent dTMP synthesis. In all bone marrow samples, cobalamin inactivation resulted in a 200% increase of the dU test value, implicating a decreased de-novo synthesis of dTMP. Incubation of leukemic cells with methotrexate, 5-fluorouracil or cycloleucine induced similar increases of the dU test values which could be further raised to 400% with the addition of N2O exposure. Prolonged experiments with U937 cells revealed that the disturbance of folate metabolism aggravated up to 48 h of nitrous oxide exposure. It can be concluded that cobalamin inactivation in human leukemic cells results in disturbed folate-dependent dTMP synthesis. Moreover, effects of several drugs interfering with folate metabolism can be enhanced.

Bone Marrow↗