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C Blourde

Publications and source records attributed to C Blourde.

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Immunosuppressive property of a very high purity antihaemophilic preparation: a low molecular weight component inhibits an early step of PHA induced cell activation.

Immune deficiency has been reported in haemophiliac patients receiving antihaemophilic factor VIII preparations, but the mechanisms involved in the immunosuppression are not fully understood. By using the proliferative response of peripheral blood mononuclear cells to phytohaemagglutinin (PHA) as a test system, we investigated the inhibitory influence of a very high purity antihaemophilic factor (AHF) preparation on T cell proliferation and on T lymphocyte activation molecules. We observed that this preparation reduced significantly the PHA-induced mononuclear cell proliferation, independently of the monocyte concentration. The AHF preparation did not act through a cytotoxic mechanism or a steric hindrance of PHA. The AHF preparation had no effect on the immediate expression of T lymphocyte activation molecules such as CD54 (ICAM-1). In contrast, the very high purity AHF reduced the induced expression of two early T cell activation molecules: CD25 (interleukin-2 receptor) and CD71 (transferrin receptor). The very high purity AHF also had the capacity to inhibit the up-regulation of two late activation antigens, CD38 and CD11a/CD18, and to inhibit the induced expression of HLA-DR molecule, defined also as a late T cell activation molecule. The CD45R expression level, used as a control marker, was not changed after AHF exposure. The very high purity AHF therefore influenced an early step of cell proliferation. We have also shown that the immunoregulatory properties of the preparation were not restricted to the factor VIII itself, but resulted from the presence of dialysable and low molecular weight components in the preparation.

Antigens, CD↗

Group 3-anti Rh.

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Patterns of electrical activity in the digestive tract of the conscious cat.

1. Bipolar electrodes were permanently implanted on the gastric antrum, and on the different portions of the small intestine of each of eleven healthy adult cats receiving one meal daily. All parts of the feline gut exhibited, as in several other species, regular slow waves and alternate periods of quiescence and electrical spiking activity during the recording sessions lasting from 10 to 30 d. 2. Patterns of electrical activity characteristic of this species were identified. Both the amplitude and frequency of the antral slow-wave were related to the presence of superimposed spike bursts during fasting. A decrease in the antral slow-wave frequency and increase in the length of the duodenal plateau of slow waves after the daily meal were related to its nature. 3. In fasted state, the electrical spiking activity of the small intestine occurred as fused spike bursts of large amplitude potentials migrating slowly over short distances only 24 h after feeding. They are interspersed with short periods of irregular spiking activity. 4. These findings suggested that, except the distal part of the small intestine which showed an activity which resembled partially the migrating myoelectric complex observed in other species during the fasting state, the motility patterns of the digestive tract in the cat were not comparable to those observed in the dog or sheep. In the cat, mixing of the contents seemed to result from more or less regular spiking activity allowing their propulsion distally. The propagation over distances varying from 200 to 1000 mm of nine to eighteen daily fused spike bursts in the fasting state remains unclear but they are related to the digestive function in accordance with the displacement aborally of their origin in a prolonged fasting condition.

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