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Biomedical subjects

M M Langenhuijsen

Publications and source records attributed to M M Langenhuijsen.

At least 19 recordsLinked to original sources

Does iron-deficient erythropoiesis in pregnancy influence fetal iron supply?

BACKGROUND: It was investigated whether the iron status in newborns is negatively influenced by iron-deficient erythropoiesis of the mother during pregnancy. METHODS: The iron status is characterized by hemoglobin, erythrocyte zinc protoporphyrin and serum ferritin values. Iron-deficient erythropoiesis of the mother is characterized by erythrocyte zinc protoporphyrin values. Measurement of erythrocyte zinc protoporphyrin was performed in 103 non-anemic females within 24 hours after delivery. The iron status of their newborns was measured in cord blood. RESULTS: Erythrocyte zinc protoporphyrin concentrations were normal in 62% and elevated in 38% of the females, hence 39 women had iron-deficient erythropoiesis. There were no significant differences in mean values of the iron status parameters between neonates born to females with iron-deficient erythropoiesis and neonates born to females not having iron-deficient erythropoiesis. No correlation was found between maternal erythrocyte zinc protoporphyrin values and any of the neonatal parameters. CONCLUSION: It is concluded that fetal iron supply is not negatively influenced by iron-deficient erythropoiesis in the mother.

Anemia, Iron-Deficiency↗

Erythrocyte zinc protoporphyrin testing in pregnancy.

BACKGROUND: To compare the usefulness of serum ferritin, hemoglobin and erythrocyte zinc protoporphyrin estimations as indicators of the need of iron supplementation in pregnancy. METHODS: In 97 healthy pregnant women serum ferritin, hemoglobin and erythrocyte zinc protoporphyrin concentrations were measured at each trimester period. Iron supplementation was prescribed at hemoglobin values below 113 g/L. RESULTS: Neither in the first nor in the second trimester differences in serum ferritin and erythrocyte zinc protoporphyrin values have been found between women who got iron therapy prescribed and women who did not get iron therapy, whereas already in the first trimester hemoglobin values were lower in the group that got iron therapy. These results indicate that hemodilution rather than iron deficiency determined which women got iron therapy. In the third trimester 14 out of 80 women without iron supplementation had depleted iron stores and a significant erythrocyte zinc protoporphyrin increase, indicating evolving iron deficiency anemia. However, only five of them showed hemoglobin levels below 113 g/L and got iron therapy. Low serum ferritin levels were found in 23% of the women at booking and in 92% in the third trimester. Serum ferritin levels neither predicted the development of iron deficient erythropoiesis nor of anemia. CONCLUSIONS: Iron deficiency can neither be diagnosed nor predicted by serum ferritin or hemoglobin measurements at booking or later on in pregnancy. Erythrocyte zinc protoporphyrin measurements can be of help in determining which women have iron deficient erythropoiesis and may benefit by iron therapy.

Adult↗

Influence of iron deficiency anaemia on haemoglobin A2 levels: possible consequences for beta-thalassaemia screening.

Iron deficiency modulates the synthesis of HbA2, resulting in reduced HbA2 levels in patients with iron deficiency anaemia. The diagnosis heterozygous beta-thalassaemia is based on a raised HbA2 level. Patients with beta-thalassaemia and concomitant iron deficiency can show normal HbA2 levels. It is of clinical importance to know the quantitative effect of iron-deficient erythropoiesis on the levels of HbA2 in order to be able to determine which iron-deficient patients with normal HbA2 levels have to be retested after iron therapy in thalassaemia screening programmes. In this study, HbA2 levels in 150 patients with iron-deficiency anaemia and 71 healthy controls have been measured. A linear correlation is found in the patient group between HbA2 and Hb, HbA2 and MCV, and HbA2 and erythrocyte zinc protoporphyrin (ZPP). In future studies, the correlation between HbA2 and erythrocyte parameters in patients with heterozygous beta-thalassaemia and concomitant iron deficiency has to be examined. We recommend that ZPP be measured in these studies too, as ZPP levels may be a better indicator of concomitant iron deficiency than Hb or MCV in thalassaemic patients.

Adult↗

Combined use of erythrocyte zinc protoporphyrin and mean corpuscular volume in differentiation of thalassemia from iron deficiency anemia.

In a retrospective study the diagnostic value of erythrocyte zinc protoporphyrin (ZPP) measurement as a means of distinguishing iron deficiency anemia from thalassemia syndromes in patients with microcytosis was explored. ZPP values were increased in all patients with iron deficiency and in part of the patients with thalassemia. The combined measurement of erythrocyte mean corpuscular volume (MCV) and ZPP resulted in a correct classification of patients with iron deficiency and with thalassemia in more than 95%. The predictive value of this method is better than the results obtained by using formulae derived from red cell indices. In population screening programs for thalassemia syndromes, in which MCV determination is used as the initial test, the ZPP test is recommended as a second test, in order to discriminate between patients with microcytosis due to iron deficiency and patients with microcytosis due to thalassemia syndromes.

Adult↗

Zinc protoporphyrin as screening test in female blood donors.

Erythrocyte zinc protoporphyrin (ZPP) was measured in 102 women blood donors to evaluate its usefulness in screening for evolving iron deficiency anemia, a reason for the deferral of donors. The results were compared with serum ferritin determinations. Five women were deferred before their first donation and eight women were deferred after one or two donations. Women with increased ZPP values all had low serum ferritin concentrations, indicating iron-deficient erythropoiesis that was caused by iron depletion. The positive predictive value of an increased ZPP in predicting deferral of the donor after one or two donations was 75%, whereas a serum ferritin concentration < or = 12 microg/L predicted deferral in 26% of the donors. The results indicate that the ZPP test can be recommended as a feasible and inexpensive predonation test to determine a subset of donors with iron-deficient erythropoiesis at risk of developing iron deficiency anemia.

Adult↗

Molecular analysis of hematopoietic colonies derived from chronic myeloid leukemia patients: interphase fluorescence in situ hybridization compared with RT-PCR.

In this study we compared interphase fluorescence in situ hybridization (I-FISH) with reverse transcription polymerase chain reaction (RT-PCR) for the molecular analysis of hematopoietic colonies derived from patients with chronic myeloid leukemia (CML). Molecular analysis of individual colonies is often performed to monitor purging efficacy in CML. We harvested individual colony-forming unit granulocyte-macrophage (CFU-GM) colonies. One half was analyzed with I-FISH, for the presence of bcr-abl fusion gene. The other half was analyzed with RT-PCR for the presence of the bcr-abl mRNA. We wanted to address the following questions: (1) is the bcr-abl gene always expressed in CFU-GM colonies and (2) which technique has to be preferred to analyze individual CFU-GM colonies? In total, 133 colonies, derived from six CML patients, could be analyzed both with I-FISH and RT-PCR. We found a positive correlation in 89% of the cases: 118 colonies showed the same results with both techniques. However, 15 of the 106 I-FISH-positive colonies were negative in the RT-PCR. Serial analysis of the cDNA derived from 22 colonies showed in each round of amplification 21-29% RT-PCR-negative but I-FISH-positive colonies. However, all I-FISH-positive colonies showed at least one positive RT-PCR, either in the first, second or third round of amplification. These results indicate that the bcr-abl gene is probably always transcriptionally active in CFU-GM colonies. Reliable analysis with RT-PCR is possible but likely to generate false negative results. We conclude that: (1) I-FISH offers a reliable alternative to RT-PCR for analyzing individual hematopoietic colonies and (2) results obtained with RT-PCR should only be interpreted with caution.

Adult↗

Hypersensitivity of bcr-abl-positive progenitors to hyperthermia in patients with chronic myeloid leukemia.

In this study, we evaluated the effect of hyperthermia on hematopoietic progenitors from six chronic myeloid leukemia (CML) bone marrow (BM) samples at diagnosis and four peripheral blood stem cell (PBSC) samples from CML patients after stem cell mobilisation. CD34-positive cells, isolated from these samples, were incubated for 2 h at 37, 42 or 43 degrees C and were plated in the colony-forming unit granulocyte-macrophage (CFU-GM) and the long-term culture initiating cell (LTCIC) assay. To evaluate purging, individual colonies from these assays were analyzed for the presence of the bcr-abl gene with interphase fluorescence in situ hybridization (FISH) and/or RT-PCR. BM samples showed a significant higher sensitivity both at the CFU-GM and LTCIC level, after treatment at 42 degrees C, as compared to the control BM samples obtained from healthy volunteers. The four BM samples of CML patients with a low leukocyte number at diagnosis harbored a mixture of bcr-abl-negative and positive colonies and an increase in the percentage of bcr-abl-negative colonies was observed in all cases. CML patients with a high leukocyte count at diagnosis, however, showed only bcr-abl-positive progenitors even after hyperthermia. PBSCs showed a significant higher sensitivity at the LTCIC level but not at the CFU-GM level, after treatment at 42 degrees C, as compared to the control PBSC samples obtained from nonhematologic cancer patients. Molecular analysis of individual colonies demonstrated an increase of bcr-abl-negative progenitors after thermic treatment in two out of three samples. When comparing both stem cell sources, PBSCs showed a decreased thermic sensitivity as compared to the BM samples at the CFU-GM level, whereas at the LTCIC level an increased thermic sensitivity was observed, both for the controls and the CML samples. In conclusion, both for BM and PBSCs samples, CML progenitors are more sensitive to hyperthermia than control cells, especially at the LTCIC level. In agreement with these results, an increase of bcr-abl-negative progenitors in six out of seven samples could be demonstrated either at the CFU-GM level, LTCIC level or both. Hyperthermia should be explored further as a possible purging modality in CML.

Adult↗

A functional study on the migration of human monocytes to human leukemic cell lines and the role of monocyte chemoattractant protein-1.

In the present study the migration of human monocytes towards the supernatants of five different human myeloid leukemic cell lines, four different human lymphatic leukemic cell lines and blasts derived from three different patients with acute myeloid leukemia (AML) was studied and the role of monocyte chemoattractant protein (MCP)-1 was established with an ELISA assay. Large differences in migration of monocytes towards the leukemic cell supernatants were shown (variation of approximately 10 to 150% compared to positive control), but high amounts of monocyte migration was always restricted to myeloid leukemic cells (cell lines or patient blasts). MCP-1 turned out to play a major role in the migration, firstly since there was a direct correlation between the amount of migration and the concentration of MCP-1 in the supernatants, and secondly since the addition of anti-hMCP-1 was able to inhibit migration to background level in all cases. Cytotoxicity experiments with a MTT test using MCP-1-stimulated monocytes against two human myeloid leukemic cell lines showed no increase in cell death compared to unstimulated monocytes. It is concluded that monocyte migration towards leukemic cells is restricted to the myeloid lineage and is regulated by MCP-1, which is produced in different amounts by the leukemic cells. Besides, MCP-1 does not increase the direct toxic effects of monocytes on leukemic cells.

Cell Culture Techniques↗

Characterization of a newly established human bone marrow endothelial cell line: distinct adhesive properties for hematopoietic progenitors compared with human umbilical vein endothelial cells.

Human bone marrow endothelial cells (HBMEC) are intimately involved in the homing of hematopoietic progenitor cells (HPC) to the bone marrow and in the regulation of proliferation and differentiation of these cells. Because availability of primary HBMEC and their capacity to be cultured in vitro are limited, we used isolated HBMEC to establish a cloned cell line by microinjection of a recombinant plasmid expressing simian virus 40 early genes under the control of a deletion mutant of the human vimentin promoter. Serum requirements for growth of a transformed HBMEC line (TrHBMEC) were markedly decreased compared with those of primary cells, and added growth factors were not required for proliferation. Cells took up acetylated low-density lipoprotein normally, bound to Ulex europaeus lectin, and stained positively for von Willebrand factor, P-selectin, CD31, CD34, CD44, very late antigen-5, and intercellular adhesion molecule-2 (ICAM-2). After treatment with TNF-alpha or lipopolysaccharide, TrHBMEC increased surface expression of E-selectin, vascular cell adhesion molecule-1 (VCAM-1), and ICAM-1 in a manner similar to primary HBMEC. In contrast, IL-1 beta elicited much less up-regulation of these adhesion molecules than in primary cells. In previous work, we reported that, in a flow adhesion model, rolling of peripheral blood CD34+ cells on primary HBMEC was E-selectin-dependent, whereas VCAM-1 and ICAM-1 contributed to firm adhesion. In the present study, we show that HPC adhere in a similar way to TrHBMEC. A less-pronounced role for VCAM-1 and ICAM-1 was found in the adhesion of HPC to human umbilical vein endothelial cells. Furthermore, significantly more CD34+ cells adhered to TNF-alpha-stimulated HBMEC and TrHBMEC than to similarly stimulated human umbilical vein endothelial cells. These data emphasize the importance of using microvessel HBMEC for studying the homing of HPC to the bone marrow, and indicate the usefulness of the above-described bone marrow endothelial cell line.

Antigens, CD↗

Constitutive expression of E-selectin and vascular cell adhesion molecule-1 on endothelial cells of hematopoietic tissues.

The first step in the homing of hematopoietic progenitor cells (HPCs) from the peripheral blood to the bone marrow involves an adhesion molecule-dependent contact with human bone marrow endothelial cells (HBMECs). In the present study we describe the constitutive expression of two of these molecules, E-selectin and vascular cell adhesion molecule-1 (VCAM-1), on endothelial cells of hematopoietic tissues. Immunophenotypic analysis of tissue sections of hematopoietically active (human adult and fetal bone marrow, fetal spleen, fetal liver, and adult spleen with extramedullary hematopoiesis) and inactive tissues (human adult spleen, lymph node, appendix, and liver; and fetal lung and fetal intestine) revealed that E-selectin and VCAM-1 are selectively expressed on endothelial cells of adult and fetal hematopoietic organs. These results were validated by means of reverse-transcriptase polymerase chain reaction. Adhesion studies revealed that binding of normal mobilized peripheral blood HPCs to HBMECs was completely inhibited by preincubation of HBMECs with anti-E-selectin (ENA2), whereas no effect of anti-VCAM-1 (1G11B1) was detected. These results suggest that E-selectin plays a role in the homing of HPCs and that its constitutive expression on endothelial cells of hematopoietic organs may be essential in the initial step of the homing process.

Adult↗

The role of BCL-2 and bax protein in monocyte-mediated apoptosis in human leukemic cell lines.

Monocytes or monocyte-derived supernatants are able to kill leukemic cells via apoptosis, thereby preferentially effecting more mature leukemic cells. In the present study, the relationship between apoptosis and the apoptosis related proteins, bcl-2 and bax, was investigated in a number of human leukemic cell lines. Monocyte-derived supernatant induces extensive apoptosis in U937 myeloid leukemia cells and minor apoptosis in HL60 cells. No apoptosis was seen in four other cell lines (THP1, HL60-D3, KG1, and K562). The expression of bcl-2 and bax protein was determined in both groups of leukemic cell lines by flow cytometry (bcl-2 and bax) and Western blotting (bcl-2) at baseline level and after incubation with monocyte supernatant after different time periods. No clear relation was found between baseline bcl-2 or bax protein expression and the occurrence of apoptosis after incubation with monocyte supernatant. After different incubation time periods, no change was found in bcl-2 protein expression in U937 and K562 cells, whereas in KG1, HL60, and especially in THP1 cells, a significant decrease could be noticed. On the other hand, there was an increase in bcl-2 expression in HL60-D3 cells. Bax protein expression, measured at the same time points, remained essentially unchanged in HL60-D3 cells, decreased significantly in U937, HL60, and THP1 cells and slightly in K562 cells, and increased significantly in KG1 cells. Also, the ratio bax/bcl-2 decreased in HL60D3, but especially in U937 and HL60 cells, increased slightly in THP1 and KG1 cells, and remained essentially unchanged in K562 cells. Rh-tumor necrosis factor-alpha (TNF-alpha), the main mediator of monocyte mediated cytotoxicity, induced apoptosis in U937, HL60, and THP1 cells, thereby showing changes in bcl-2 expression similar to those found for monocyte derived supernatants. We concluded that in human leukemic cell lines, there is no relation between either bcl-2 or bax protein expression or the ratio of both, and apoptosis mediated by monocyte derived supernatant or TNF-alpha.

Apoptosis↗

Bryostatin-5 stimulates normal human hematopoiesis and inhibits proliferation of HL60 leukemic cells.

In this study we explored the effects of bryostatin-5 on the clonogenic response of normal bone marrow mononuclear (BM) cells and HL60 myeloid leukemia cells. Leukemic HL60 colony formation was strongly inhibited by bryostatin-5 depending on dose and schedule. An inhibitory effect on HL60 colony formation was readily demonstrated after 1 h of exposure, reaching a maximal inhibitory effect at 96 h. Normal BM cells differed in their clonogenic response: short-term exposure to bryostatin-5 resulted in increased clonogenicity while longstanding exposure to bryostatin-5 permitted the survival of a substantial fraction of committed progenitors. This differential modulation of normal and leukemic myeloid clonogenicity by bryostatin-5 suggests a possible role for bryostatin-5 in the treatment of acute myeloid leukemia.

Antineoplastic Agents↗

Isolation and culture of human bone marrow endothelial cells.

Bone marrow endothelial cells are likely to play an important role in the homing of hematopoietic progenitor cells. In view of analyzing the interactions between endothelial cells and hematopoietic progenitor cells, we studied several methods of isolating endothelial cells from human bone marrow, including fluorescence activated cell sorting (FACS) and separation by immunomagnetic beads. FACS sorting gave the best results as contamination with other cells did not occur. After density-gradient centrifugation of bone marrow aspirates, the mononuclear cell (MNC) fraction was depleted for T cells, B cells, and myeloid cells by immunomagnetic separation. Further enrichment of endothelial cells was achieved by FACS sorting using BNH9 or S-Endo1 monoclonal antibodies (MAbs). These MAbs, in contrast to several other endothelial-cell reactive MAbs, were found to react highly specifically with sinus endothelial cells as tested by immunohistochemistry on bone marrow tissue sections and cell culture preparations and by double-colored FACS analysis on bone marrow MNCs (BMMNC). Sorted cells, which formed 0.05% of the MNC fraction, showed strong intracytoplasmic von Willebrand factor positivity. Ultrastructural analysis revealed cells with endothelial characteristics. Cells were cultured in fibronectin-coated, 24-well culture plates in endothelial-cell culture medium or long-term bone marrow culture medium. After 1 to 3 weeks of culture, a monolayer of spindle-shaped cells developed expressing endothelial cell antigens. Cells could be kept in culture for 4 to 6 weeks. In conclusion, the method described provides highly purified preparations of human bone marrow endothelium that may permit in vitro adhesion experiments with normal and leukemic hematopoietic progenitor cells.

Antibodies, Monoclonal↗

A tetrazolium-based colorimetric MTT assay to quantitate human monocyte mediated cytotoxicity against leukemic cells from cell lines and patients with acute myeloid leukemia.

The MTT-colorimetric monocyte mediated cytotoxicity assay, based upon the ability of living cells to reduce 3-[4,5-dimethylthiazol-2-yl]-2,5 diphenyltetrazolium bromide (MTT) into formazan, was evaluated using leukemic cells from five representative human leukemic cell lines and from 28 patients with acute myeloid leukemia (AML). An excellent linearity between absorbance and leukemic cell number was observed up to 5 x 10(4) cells/well and 50 x 10(4) cells/well for all cell lines and patients samples tested, respectively, in a 96-wells microtiter culture system. A huge variability in the susceptibility of leukemic cells to purified and IFN-gamma-activated human monocytes could be observed at effector-to-target cell (E:T) ratios of 1. The mean signal-to-noise ratio of the MTT assay for monocyte-leukemic cell mixtures from patients was 2.69 +/- 0.39 at E:T 1. In conclusion, the MTT based monocyte mediated cytotoxicity assay should be useful for studying the susceptibility of a variety of leukemic cells from cell lines and from patients with AML to monocytes in a rapid, sensitive and semi-automated manner.

Acute Disease↗

In vitro purging of clonogenic leukaemic cells from human bone marrow by interferon-gamma-activated monocytes.

With a view to the immunologically mediated purging of autologous bone marrow transplants in acute myeloid leukaemia, the efficacy of cytotoxic monocytes to eradicate leukaemic cells has been studied using clonogenic assays. U937 cells were found to be sensitive to highly purified and interferon-gamma-activated human monocytes whereas HL60 cells were rather resistant as measured in an MTT-based cytotoxicity assay under liquid conditions. A spectrophotometric clonogenic assay measured almost complete inhibition of clonogenic activity for U937 cells at low effector-to-target cell (E/T) ratios of at least 0.1. Limiting dilution analysis detected a 2-3 log10 unit reduction in clonogenic activity. In an experimental mixture of U937 cells with a 20-fold excess of normal bone marrow nuclear cells a maximum 2-log10-unit killing could be measured at E/T = 10. Only at high E/T ratios could a reduction in granulocyte/macrophage-colony-forming units (cfu) be observed with only marginal effects on erythroid cfu and erythroid burst-forming. In conclusion, cytotoxic monocytes are highly potent anti-leukaemic effector cells, as measured in clonogenic assays, that do not compromise normal human progenitors.

Acute Disease↗

Circulating human megakaryocytes in cardiac diseases.

Both bone marrow and circulating megakaryocytes may produce platelets. Changes in number and properties of the circulating megakaryocytes in cardiac diseases may provide information about thrombopoiesis in these disease states. Circulating megakaryocytes were obtained by retrograde aspiration through wedged pulmonary artery catheters from patients without cardiac abnormalities, patients with cardiac diseases and patients with disorders known to affect the megakaryocyte-platelet axis or marrow-blood barrier. Their number, ploidy distribution and expression of the beta 1-integrin adhesion antigens were estimated. We found evidence for an increased number of circulating megakaryocytes during acute myocardial infarction and in patients with triple vessel disease. A significantly higher proportion of circulating megakaryocytes obtained within 60 h after acute myocardial infarction, expressed CDw49b (alpha-chain of VLA2), CDw49e (alpha-chain of VLA5), and CDw49f (alpha-chain of VLA6) compared to megakaryocytes of patients without cardiac diseases. In myocardial infarction the increase in number of circulating megakaryocytes together with the higher proportion that expressed the beta 1-integrin adhesion antigens favour the hypothesis that these megakaryocytes are acutely released from the bone marrow. This could reflect either a selective response to an increased demand for circulating platelets or be the result of an a selective mechanism resulting from damage to the marrow-blood barrier following the acute infarction or thrombolytic therapy administered.

Adult↗