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H Kreipe

Publications and source records attributed to H Kreipe.

101 records · Page 6Linked to original sources

Lectin binding and surface glycoprotein pattern of human macrophage populations.

In the present study unstimulated and stimulated human blood monocytes, untreated and phorbol ester treated U-937 cells, as well as human peritoneal and alveolar macrophages were studied with respect to their surface membrane properties. Binding of different lectins and electrophoretic patterns of tritium labeled surface glycoproteins were compared. The analysis of surface glycoproteins could be interpreted as evidence for a common origin of the analysed cell populations. Furthermore, banding patterns of glycoproteins might be useful to define certain activation states within monocyte/macrophage differentiation. In contrast, lectin binding pattern did not clearly discriminate macrophage subpopulations.

Fluorescein-5-isothiocyanate↗

Phenotypic differentiation patterns of the human monocyte/macrophage system.

In the present study phenotypic properties of non-stimulated and stimulated blood monocytes and of their normal macrophage derivatives were studied applying enzyme cytochemistry, isoenzyme analysis of acid esterase (EC 3.1.1.6), and immunohistochemical staining using a panel of newly established monoclonal antibodies specific for the monocyte/macrophage lineage. Certain marker profiles could be established for the various normal subpopulations within the monocyte/macrophage system, which were also observable in epithelioid cells and U-937 cell line considered as reactive and neoplastic differentiation variants of monocytes, respectively. Alveolar macrophages, in contrast to the other analysed monocyte/macrophage populations, showed a highly activated phenotype comparable to lymphokine stimulated blood monocytes and epithelioid cells. The results underline the concept that the adaptation of monocytes/macrophages to their particular microenvironment is of decisive importance for their definitive differentiation.

Acetylesterase↗

Human macrophage hybrid forming spontaneous giant cells.

Thymidine kinase-deficient clones of the human monocyte/macrophage cell line U-937 were established and used for fusion experiments with separated normal human blood monocytes. A hybrid (H 29) was generated during HAT-selection procedure, about 50% of which formed spontaneous giant cells, as shown by morphological, immunocytochemical, and chromosomal analyses. It is concluded that giant cells originate from monocytes and display mitotic activity. Macrophage hybrids are the basic requirement for the elucidation of monocyte/macrophage heterogeneity and immortalization of their functional properties.

Cell Fusion↗

Lineage-specific expression of c-fos and c-fms in human hematopoietic cells: discrepancies with the in vitro differentiation of leukemia cells.

In vitro differentiation studies using the bipotential human leukemia cell line, HL60, have indicated that high levels of expression of two proto-oncogenes, c-fos and c-fms, are restricted to the myelomonocytic lineage. No such expression has been detected in induced granulocytic cells. In striking contrast to these observations, we found that c-fos mRNA levels are very high in purified human granulocytes, but barely detectable in blood monocytes and tissue macrophages. Human granulocytes contain, however, relatively low levels of c-fos protein, indicating that c-fos mRNA is inefficiently translated or that the protein is rapidly degraded in these cells. In closer agreement with the in vitro results, the level of the expression of c-fms is high in purified blood monocytes and undetectable in granulocytes. We found, however, that the evolution of monocytes into tissue macrophages is accompanied by a significant decrease in c-fms expression, suggesting that the function of c-fms is restricted to specific stages of monocytic differentiation. Our observations also show that results obtained using in vitro differentiation systems have to be regarded with caution, since they may not reflect the in vivo situation.

Cell Differentiation↗

Induction of hypoxanthine phosphoribosyltransferase deficiency in human U-937 cells.

The aim of the study was to establish enzyme-deficient mutants of the human permanent cell line U-937. Following chemical mutagenesis with the use of ethyl methanesulfonate, this cell line was chronically exposed to increasing concentrations of the toxic hypoxanthine analogue 6-thioguanine. Cells surviving hypoxanthine-aminopterin-thymidine selective media were separated by glass adherence with the use of 12-O-tetradecanoyl-phorbol-13-acetate. Three mutant clones were established, which have remained hypoxanthine phosphoribosyltransferase (HPRT) deficient for a period of 7 months, as shown by indirect measurements with the use of autoradiography and scintillation counting of cells exposed to [3H]hypoxanthine. Since the phenotypic properties and growth behavior of U-937 cells have remained unaltered after the induced mutation, a highly restricted chromosomal segment coding for HPRT seems to have been mutated.

Autoradiography↗

Monocyte/macrophage-reactive monoclonal antibody Ki-M6 recognizes an intracytoplasmic antigen.

A monoclonal antibody, termed Ki-M6, is described, which shows a restricted reactivity to cells of the monocyte/macrophage system. On light- and electron-microscopic immunoperoxidase staining Ki-M6 recognizes monocytes and the phagocytosing compartment of macrophages residing in different tissue sites; granulocytes and the so-called immune accessories of B- and T-cell immune response as closely monocyte/macrophage related cell populations do not reveal any reactivity. This is shown by comparison with the monoclonal antibodies Ki-M4 and Ki-M1 or OKT6 recognizing immune accessory cells by immunohistochemical methods. Ki-M6 binds to a lysosomal membrane-restricted antigen of 60,000 daltons without influencing significantly lysosome-related functions as far as the chemiluminescence response is concerned.

Antibodies, Monoclonal↗

Establishment of thymidine kinase (EC 2.7.1.21)-deficient mutants of human monocytic cell line U-937.

Using morphologic, enzyme-cytochemical, and immunocytochemical methods, the functional diversity of the mononuclear phagocyte system can be studied only to a limited extent. Therefore, enzyme-deficient monocyte/macrophage cell lines have been established as technical prerequisites for the generation of monocyte/macrophage hybrids by applying selective media. After mutation with ethylmethanesulfonate, six clones of U-937 were selected against increasing concentrations of 5'-bromodesoxyuridine; these clones are defective in thymidine kinase (EC 2.7.1.21), as shown by autoradiography and direct measurement of [3H]thymidine uptake. A broad marker panel indicates that the clones could be appropriate for the establishment of human monocyte/macrophage hybrids.

Cell Line↗

Monocytic origin of human alveolar macrophages.

The monocytic lysosomal acid esterase (AcE; EC 3.1.1.6) comprises five isoenzymes, each having specific isoelectric points (pI) as well as antigenicity. In the present study attempts were made to retrace the monocytic origin of human alveolar macrophages (AM) by comparison of their isoenzyme patterns with those of blood monocytes. Resident AM obtained from bronchial lavages lacking any neutrophils and unstimulated monocyte admixture showed in addition to the five monocytic isoenzymes nine additional isoenzyme loci. In vitro stimulation of blood monocytes (BM) using lymphokine-conditioned media led to a gradual transition of the typical monocytic isoenzyme pattern into that of AM. It is concluded that AM originates from blood monocytes by tissue-specific stimulation. This cellular transformation can be modeled in vitro as far as morphology, cytochemistry, and isoenzyme pattern are concerned.

Acetylesterase↗

Tartrate-resistant acid phosphatase as a differentiation marker for the human mononuclear phagocyte system.

Human blood monocytes (BM) were stimulated with various immune modulators in short-term cultures. Tartrate-resistant acid phosphatase (TAcP) activity was demonstrated with an enzyme cytochemical method. Other members of the mononuclear phagocyte system (MPS), such as peritoneal (PM) and alveolar macrophages (AM), were also tested. Unstimulated BM and physiologic functional forms of macrophages, with the exception of AM, were invariably TAcP negative. On appropriate stimulation, particularly with media containing lymphokines, cultured BM became TAcP positive. The results suggest that TAcP is an inducible differentiation marker that indicates transformation of monocytes into cells belonging to a distinct subset of the MPS.

Acid Phosphatase↗

Induction of telomerase activity in stimulated human lymphocytes precedes expression of topoisomerase II alpha.

Telomerase activity has been demonstrated in human immortal cell lines and in tumors, whereas it is generally absent from normal tissues, with the exception of germ cells. Low levels have also been detected in blood and skin cells. In this report we describe up-regulation of telomerase activity in normal human blood lymphocytes by mitogen stimulation. After 24 h of mitogen treatment a strong induction was detectable using the PCR-based telomeric repeat amplification protocol. The level of activity remained almost constant when the cultivation lasted 72 h. By contrast, topoisomerase II alpha was induced later with a maximum expression after 48-72 h. Our data show that telomerase can be induced in normal peripheral lymphocytes prior to expression of the S-phase typical protein topoisomerase II alpha indicating that telomere elongation might be initiated before DNA replication.

Antigens, Neoplasm↗

Lectin binding and uptake in human (myelo)monocytic cell lines: HL60 and U937.

The terminal carbohydrate residues of the human (myelo) monocytic cell lines HL60 and two subclones of U937 were investigated by the use of lectins. Several terminal carbohydrate residues, including N-acetylglucosamine and carbohydrates of the complex type, were detected on all three cell lines. Except for galactose residues, the two subclones of U937 had almost identical terminal carbohydrate residues. The differences between the two U937 subclones and HL60 were more pronounced, the latter expressing fucose residues, which might be part of the CD15 cell adhesion molecules. Some of the differences of the carbohydrate residues between the cell lines could be attributed to their differentiation within the myelomonocytic cell lineage. Lectins that bound to the cell surface were internalized via either clathrin-coated pits and vesicles or nonspecific endocytosis, indicating that functionally different classes of cell surface glycoproteins are involved in lectin binding and internalization.

Cell Differentiation↗