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Biomedical subjects

M T Makler

Publications and source records attributed to M T Makler.

10 recordsLinked to original sources

EGF is incomplete mitogen in porcine aortic smooth muscle cells: DNA synthesis without cell division.

To characterize growth effects of epidermal growth factor (EGF) in subconfluent quiescent porcine aortic vascular smooth muscle cells (VSMC), we measured DNA and protein synthesis by [3H]thymidine (Thd) and [35S]methionine (Met) incorporation, respectively, and cell proliferation rates over 0-6 days in Dulbecco's modified Eagle's-Ham's F-12 media containing 0.4% fetal calf serum (FCS) and insulin. EGF induced dose-dependent [3H]Thd uptake (P less than 0.001); after 10(-9) M EGF, DNA synthesis rate peaked at 24 h, averaging 77% of the response to 10% FCS, and then declined steeply with nadir at 48-60 h. Unexpectedly, EGF failed to induce cell proliferation in the first 4 days, leaving this initial burst of DNA synthesis (12-60 h) uncoupled from cell division. A second lesser but sustained phase of increased DNA synthesis, apparent by day 3-4, was associated with a small increase in cell number on day 6 (P less than 0.05). The early unsustained burst of DNA synthesis reflects EGF's potent mitogenic efficacy for DNA synthesis (G1- to S-phase traversal), probably acting on a subset of cells partially synchronized initially at an EGF-responsive G0/G1 locus; the minimal cell division despite brisk DNA synthesis documents EGF's limited efficacy for (or inhibition of) late cell-cycle events required for completion of mitosis. Late cell-cycle processes are thus rate limiting. EGF also increased protein synthetic rate over control (P less than 0.03) but to a lesser degree (P less than 0.01) than 10% FCS. Indomethacin (10(-6) M) did not alter DNA or proliferative responses to 10(-9) M EGF but transiently augmented EGF-induced protein synthesis (P less than 0.025) at 24 h only.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals

Detection of Plasmodium falciparum infection with the fluorescent dye, benzothiocarboxypurine.

The fluorescent dye benzothiocarboxypurine (BCP) intensely stains nucleic acids. The dye does not penetrate viable white blood cells but does stain these cells following fixation. It has also been found that the dye stains the nucleic acid of viable Plasmodium falciparum. We have subsequently evaluated the staining of P. falciparum by benzothiocarboxypurine within red blood cells and have found that the red blood cell membrane is freely permeable to this dye and consequently P. falciparum is stained within the red blood cell. This finding prompted an in-depth analysis of the dye in the laboratory and in a field study as an alternative to Giemsa-stained blood smears and as a means of enhancing the microscopic diagnosis of malarial infection. In a field study the BCP dye allowed detection of malaria in fresh blood at a level equivalent to the Giemsa method (parasitemia ranged from 0.01% to 30%). The BCP staining procedure could also be used with fixed specimens although the differential staining characteristics were lost following specimen preparation. Of 111 blinded samples obtained in the field 22 were negative by Giemsa-stained thin smear, 16 were negative on thick smear and the same 16 were negative by BCP analysis. We have found that the BCP dye offers many advantages compared with the microscopic diagnosis of P. falciparum infection with standard Giemsa stains. These advantages are especially evident in conditions of low parasitemia, in the speed of staining and evaluation, and the relatively low level of training required to provide consistent results.

Animals

Laboratory diagnosis of malaria.

Diagnostic procedures for the detection of malaria differ considerably depending on the aims of evaluation. The current requirements of any laboratory procedure for general application to the detection and diagnosis of malaria include: sensitivity, specificity, simplicity in application, unambiguous interpretation, and rapid turn-around time. Presently the differential stained thick and thin blood smear, examined under the microscope, remains the most reliable and definitive test for diagnosis of malaria.

Animals

An enzyme immunoassay for the flow cytometer (FEIA).

This report describes the use of a fluorescent activated cell sorter (FACS) in combination with an enzyme immunosorbent assay (EIA). This combination of techniques expands the versatility of the flow cytometer. It introduces a new set of fluorescent enzyme products for antigen detection. These highly substantive fluorescent compounds permit the flow cytometer to quantify cell-EIA reactions and also to delineate subpopulations of cells with different quantities of surface antigens. Because the FEIA product is colored, as well as fluorescent, a simple light microscope may also be used to define the distribution of the label on the cell surface. These techniques have been applied to the examination of antigens on human erythrocytes, human T cell lymphoma cells (H9), and to surface markers on the tissue culture cell line K562.

Antigens

Thiazole orange: a new dye for Plasmodium species analysis.

A rapid sensitive method for the determination of Plasmodium falciparum in in vitro culture is presented. The technique employs a fluorescent flow cytometer equipped with a 15-mwatt argon laser that emits light at 488 nm and a membrane-permeable fluorochrome thiazole orange (TO) that stains RNA. Parasitized red cells are stained by suspending them in 1 ml of phosphate-buffered saline (PBS) containing 10(-5) M of TO and incubating this mixture for 15 min in the dark at room temperature. The stained cells may be analyzed fresh or after fixation with 1% paraformaldehyde/PBS or 0.25% glutaraldehyde/PBS. Alternatively the cells may be fixed first and then stained. There is excellent correspondence between the number of fluorescent-labeled parasitized red cells and Giemsa-stained cells.

Animals