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Biomedical subjects

M Cottrell

Publications and source records attributed to M Cottrell.

18 recordsLinked to original sources

A stochastic model for interconnected neurons.

A model is proposed to describe the collective behavior of a biologically plausible neural network, composed of interconnected spiking neurons which separately receive external stationary stimulations. The spiking dynamics of each neuron is represented by an hourglass metaphor. This network model was first studied in a special case where the connections are only inhibitory (Cottrell, 1988, 1992). We study the network dynamics as a function of the parameters which quantify the strengths of both inhibitory and excitatory connections. We show that the model exhibits two kinds of limit states. In the first states (convergent case), the system is ergodic and all neurons have a positive mean firing rate. In the other states (divergent case), some neurons become definitively inactive while the sub-network of the active neurons is ergodic. The patterns which result from these divergent states can be seen as a neural coding of the external stimulation by the network. This property is applied to the olfactory system to produce a code for an odor. The role of inhibitory connections in odor discrimination is studied.

Action Potentials↗

Altered platelet indices in dogs with hypothyroidism and cats with hyperthyroidism.

Changes in platelet indices (platelet count and platelet size) and PCV associated with thyroid disease were studied in 7 dogs with hypothyroidism and 21 cats with hyperthyroidism that were admitted to the veterinary teaching hospital. Compared with control (euthyroid) dogs, dogs with hypothyroidism had higher platelet count (P = 0.003), smaller platelet size (P = 0.01), and lower PCV (P = 0.02). Comparison of the group of hyperthyroid cats with a group of similarly aged, clinically normal cats with normal thyroxine values indicated that the group of hyperthyroid cats had significantly (P = 0.03) higher mean platelet size than did control cats, but differences were not found in mean platelet count or PCV. Results of this investigation indicate that the changes in platelet size reported in human beings with thyroid endocrinopathies also are found in animals so-affected. Although the pathogenesis of platelet abnormalities in animals with thyroid derangement is unclear and likely is multifactorial, the observed relation between platelet and erythrocyte production in this group of dogs is consistent with reports of an inverse relation between thrombocytopoiesis and erythropoiesis in iatrogenically hyperthyroid mice and in mice exposed to hypoxia.

Animals↗

Stability and attractivity in associative memory networks.

We focus on stable and attractive states in a network having two-state neuron-like elements. We calculate the connection matrix which guarantees the stability and the strongest attractivity of p memorized patterns. We present an analytical evaluation of the patterns' attractivity. These results are illustrated by some computer simulations.

Association↗

Recovery of thrombopoietin during purification.

A thrombocytopoiesis-stimulating factor (TSF or thrombopoietin) was previously purified by a six-step purification procedure. However, the exact quantity of TSF that was recovered, through the various purification procedures, was unknown because of the absence of a method for establishing a unit of measure of TSF. In the present work dose-response relationships on both the crude TSF preparations and on the more highly purified TSF were determined. TSF units were calculated from the dose-response curves. A unit of TSF is defined as the amount of material (mg) that is required to increase the percentages 35S incorporation into platelets of immunothrombocythemic mice by 50% above the baseline. The results of determining the TSF units on the crude TSF preparation indicated that 0.11 unit (U) of TSF/mg protein was present. Results showed that the specific activity of TSF can be increased to about 3.6 U/mg by a single purification procedure using Sephadex G-75 column chromatography. Increased specific activities were obtained by additional purification steps, i.e., DEAE-cellulose column chromatography, SE-HPLC, DEAE-HPLC, and SDS-PAGE. The purified product appears to have a specific activity of about 11,000 U/mg of protein with 0.00003% of the protein and 1.1% of the TSF recovered from the starting material. Establishing a unit of measure for TSF will allow calculations of its degree of purity, provide a method for quantitation of recoveries of activities after various purification procedures, and allow comparisons of results from different experiments and different laboratories.

Animals↗

A stochastic model of retinotopy: a self organizing process.

Following Kohonen and using the Hebb principle, we define a self organizing stochastic process, which is a simple modelization of the retinotopy, i.e. the establishment of well-ordered connexions between the retina and the cortex. We give some mathematical results about convergence of this process. These results are illustrated by computer simulations.

Depth Perception↗

Monoclonal antibodies to human urinary thrombopoietin.

Monoclonal antibodies (MA) to a thrombocytopoiesis-stimulating factor (TSF or thrombopoietin) were obtained from hybridomas derived from the fusion of P3 X 63/Ag 8 cells and spleen cells from TSF-immunized BALB/c mice. The immunizing protein was a partially purified TSF-rich preparation from the urine of a thrombocytopenic patient, and was shown to stimulate platelet production in rebound-thrombocytotic mice; i.e., platelet counts of recipient mice were increased to 133% of control and the values for percentage 35S incorporation into platelets were elevated to 225% of control. Media from several hybrid cultures were tested in a microantibody detection technique that measured the binding of MA to a 125I-purified TSF preparation from human embryonic kidney (HEK) cells. The immune complex was precipitated by the addition of goat anti-mouse IgG serum and centrifugation. One clone gave 25% binding of 125I-TSF after a sevenfold dilution of the medium. This cell line was recloned and four of the subclones produced MA that gave even greater binding capacities. Hybridized cells were injected into "pristane-primed" mice and the antibodies produced in the ascites fluid were also shown to bind the 125I-TSF. Compared to the results of normal mouse serum, ascites fluid containing MA was shown to bind the unlabeled TSF from HEK cells. The TSF activity was significantly reduced in the supernatant fluid after precipitating the TSF-anti-TSF immune complex by a second antibody when tested in an immunothrombocythemic mouse assay. After SDS-PAGE, the precipitate from this TSF-MA conjugate showed that the antiserum bound a single 32,000 mol wt component, indicating the monospecificity of the MA. MA directed toward human TSF will allow studies that were not previously possible.

Animals↗

Effects of hypoxia on the small acetylcholinesterase-positive megakaryocyte precursor in bone marrow of mice.

The number of small acetylcholinesterase-positive (SAChE+) cells in the marrow of hypoxic mice was measured. Mice were exposed to 6-7% O2 levels by enclosure in cages covered with dimethyl-silicone rubber membranes for 1-14 days. The mice showed a linear increase in packed cell volumes with time in the hypoxic atmosphere, but platelet counts showed a characteristic biphasic response, i.e., increased platelet counts were observed after 1-3 days of hypoxia, and significantly (P less than 0.05-P less than 0.0005) decreased platelet counts were observed thereafter (6-14 days). The total number of megakaryocytes in the marrow of hypoxic mice decreased significantly (P less than 0.005) with time. In agreement with the data on platelet counts, hypoxia caused the total number of SAChE+ cells in the marrow of mice to be biphasic. At Day 2 there was a significant increase (P less than 0.05) in the total number of SAChE+ cells/mm3 of bone marrow; however, by days 10-14 the numbers had decreased markedly (P less than 0.005). These data indicate that hypoxia decreases platelet production by action on a precursor cell to the SAChE+ cell. The hypoxia-induced thrombocytopenia is probably caused by stem-cell competition between the erythrocytic and megakaryocytic cell lines.

Acetylcholinesterase↗

Studies on the purification of thrombopoietin from kidney cell culture medium.

A thrombocytopoiesis-stimulating factor (TSF) has been purified from human embryonic kidney (HEK) cell culture medium. In the initial purification step, crude HEK cell culture medium was fractionated with saturated ammonium sulfate (step I). The proteins precipitated by 40% to 60% and 60% to 80% ammonium sulfate saturation increased the percent of sulfur 35 incorporation into platelets of assay mice (P less than 0.01). The ammonium sulfate-precipitated proteins that contained significant TSF activity were further refined on Sephadex G-75 columns (step II). The fraction containing the highest specific activity (greatest 35S incorporation into platelets of assay mice per milligram of protein) was further purified by diethylaminoethyl (DEAE)-cellulose column chromatography (step III). TSF activity was eluted from the columns between 0.3 and 1.0 mol/L NaCl. Additional Sephadex chromatography of post-DEAE-chromatographic preparations further increased the purity of the TSF (step IV). TSF from this four-step procedure was further processed on a DEAE-high-performance liquid chromatography (HPLC) column (step Va) or size exclusion (SE)-HPLC columns (step Vb). After HPLC, the activity was localized in a region corresponding to a retention time of 6 to 8 minutes for the DEAE-HPLC, but longer times were found after SE-HPLC. TSF was further purified by additional sodium dodecyl sulfate-polyacrylamide gel electrophoresis and SE-HPLC (step VI). The final product had significant TSF activity and represented a purification of approximately 500,000-fold. It was also shown that the isoelectric pH of partially purified TSF was 4.7 and the molecular weight of the more highly purified preparation was approximately 32,000. After extraction by a combination of chromatographic procedures, a single homogeneous product was obtained.

Ammonium Sulfate↗

Characterization of a thrombocytopoietic-stimulating factor from kidney cell culture medium.

The chemical characteristics of a thrombocytopoietic-stimulating factor (TSF or thrombopoietin) found in serum-free kidney cell culture medium were further delineated by subjecting the TSF-rich medium to varying temperatures, different pH, and trypsin digested; the ability of TSF to bind lectins on affinity chromatography was also determined. After treatment, the TSF was assayed in immunothrombocythemic mice by its ability to increase the incorporation of 35S-sodium sulfate into newly formed platelets. TSF appeared to be relatively heat stable; incubation of TSF for 16 h at temperatures of 4, 37, and 56 degrees C showed no loss of TSF activity. However, after incubation at 85 degrees C, TSF was completely inactivated TSF in culture medium was stable of pH 1-8. Above these pH values, the potency of the TSF material decreased sharply. Digestion of TSF with trypsin completely destroyed the thrombocytopoietic-stimulating activity. For TSF purification, two different lectin-agarose derivatives were used; i.e., wheat germ agglutinin (WGA) and concanavalin A (Con A). Both lectins bound TSF, and the hormone was eluted by the sugars specific for the particular lectin. lectins, therefore, can be used to partially purify the hormone; a further 10 to 200-fold purification was achieved by these techniques. Since other workers have shown that TSF from plasma of thrombocytopenic rabbits will bind WGA and Con A, TSF from kidney cell culture medium and TSF from animal sources appear to have similar carbohydrate compositions.

Agglutinins↗

Assay for thrombopoietin: a comparison of time of isotope incorporation into platelets and the effects of different strains and sexes of mice.

Several workers have used mice for thrombocytopoiesis-stimulating factor (TSF) assays, but the methods have differed. In quest of the optimum TSF assay conditions, we investigated the effects of interval between isotope injection and measurement of 35S incorporation into platelets, different mouse strains and sexes of mice. The 35S incorporation into platelets of mice increased with increase of the interval after isotope injection. However, the greatest difference in radioactivity between control and TSF-injected mice occurred at 16-40 h for normal mice and 24 h for rebound-thrombocytotic mice. When C3H, BALB/c or B6D2F1 mice were injected with platelet specific antisera, similar degrees of thrombocytopenia and rebound-thrombocytosis occurred. After injection of a standard dose of TSF, C3H and B6D2F1 mice showed greater isotopic incorporation levels, compared to suitable controls, than did BALB/c mice. Female and male mice exhibited essentially the same response to a standard dose of TSF. The data show that the mouse strain and isotopic incorporation time influence the sensitivity of the TSF assay but sex of test animals does not.

Animals↗

Effects of short-term hypoxia on platelet counts of mice.

Recent studies have shown that long-term hypoxia causes decreased platelet counts in mice and short-term hypoxia increased platelet counts. In an attempt to explain the mechanism that increases platelet counts of mice after exposure to short-term hypoxia, we measured platelet counts, total circulating platelet counts (TCPC), total circulating platelet masses (TCPM), percentages of 35S incorporation, and platelet sizes. Platelet counts, as well as TCPC and TCPM of mice, increased after 1-3 days of hypoxia, but these values were decreased after 6-7 days of hypoxia. Although platelet counts were increased in hypoxic mice, the percentage 35S incorporation into platelets and platelet sizes did not show a concurrent increase. After 6 days of hypoxia, average platelet diameters began to increase as platelet counts decreased. Splenic release did not account for the increase in platelet counts of mice after short-term hypoxia. It seems possible, therefore, that megakaryocytes "shed" platelets into the circulation in response to hypoxia. The platelets that enter the circulation in response to short-term hypoxia are smaller and incorporate less 35S than platelets that are produced in response to acute thrombocytopenia.

Animals↗

Immunologic similarities of thrombopoietin from different sources.

Thrombopoietin (TSF) has been detected in kidney cell culture media and human urine fractions by both a bioassay and an immunoassay using antisera raised against TSF-rich kidney cell culture medium and human urinary thrombopoietin. Both antisera cross-reacted with the 2 sources of TSF and gave essentially the same results in the HAI assay, a finding that suggests similarities in immunologic determinants of these 2 thrombopoietin preparations.

Biological Assay↗

Hematologic changes and thrombopoietin production in mice after X-irradiation and platelet-specific antisera.

Sera or plasma thrombopoietin (TSF) levels of mice were determined after: (a) no treatment; (b) induction of thrombocytopenia by injection of rabbit anti-mouse platelet serum (RAMPS); (c) exposure to 750 R or 900 R whole-body x-irradiation; or (d) irradiation and injection with RAMPS. Levels of TSF were assayed in thrombocythemic mice, using Na235SO4 uptake. RAMPS produced an immediate, severe thrombocytopenia without altering RBC or WBC counts of mice. Plasma collected from mice 4 hours after RAMPS injection increased both 35S incorporation into platelets (170% of control, P less than 0.005) and platelet counts (P less than 0.025) of TSF-assay mice. Although severe thrombocytopenia persisted, plasma TSF levels decreased thereafter, i.e., 111% of control after 8 hours and 99% of control after 16 hours. Platelet counts in mice exposed to 750 R and 900 R x-rays progressively decreased to severe thrombocytopenia by day 7, but almost normal RBC counts were maintained. Sera or plasma from animals with x-ray-induced thrombocytopenia caused significant increases in 35S incorporation into platelets of TSF-assay mice (196% of control, P less than 0.005 after 750 R and 141% of control, P less than 0.025 after 900 R). A combination of x-irradiation and RAMPS-injection did not produce greater TSF levels in mice than did x-ray or RAMPS treatment alone.

Animals↗