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H Ovadia

Publications and source records attributed to H Ovadia.

93 records · Page 6Linked to original sources

Absence of neural responses following suppression of the immune response by cyclophosphamide.

Injection of sheep red blood cells (SRBC) as an antigenic stimulus, causes significant increases (up to 300%) in multiunit neural activity in the preoptic area/anterior hypothalamus of conscious rats. This increase occurs on the fifth or sixth day after immunization, at the time of first appearance of circulating antibodies at a serum titer of 1:32, increasing to 1:128 by day 10 following sensitization. Treatment with the immunosuppressive drug cyclophoshamide was able to prevent both antibody production and the expected increases in electrical activity in 5 of 6 rats; the one remaining animal showed a low level of circulating anti-SRBC antibodies on day 10 (1:32) and also, a small increase (36%) in neural activity at the expected time. These results provide further evidence that activation of the immune system is able to alter neuronal activity in an area of the brain important in the regulation of both neuroendocrine and neuroimmunomodulatory mechanisms, and that such activity is probably due to soluble secretory products released from components of the immune system.

Animals↗

Neural responses to antigenic challenges and immunomodulatory factors.

In studies designed to examine the effects of the immune system, recordings of multi-unit electrical activity (MUA) in the central nervous system were made in the preoptic area/anterior hypothalamus (POA/AH) and paraventricular nucleus (PVN) of rats, following sheep red blood cell (SRBC) immunization. Peak increases in POA/AH MUA were observed on the fifth day following SRBC sensitization, the day on which serum antibodies were first detected. A significant increase in paraventricular nucleus (PVN) MUA was also observed on the sixth day. These changes in POA/AH and PVN MUA were found to be associated with increased plasma corticosterone levels on day 8. Induction of a second immune response to SRBC evoked a POA/AH MUA increase of extended duration but reduced amplitude, while administration of the immunosuppressive drug, cyclophosphamide, prevented both antibody generation and any increases in POA/AH MUA. These data suggest that activation of the immune system may provide signals, in the form of chemical messengers, which are able to alter neural activity in some regions of the brain that are important in neuroendocrine regulatory mechanisms. Accordingly, intracerebroventricular injections of thymic humoral factor or alpha-interferon decreased POA/AH MUA, increased EEG synchronization, and decreased plasma levels of corticosterone. Histamine and interleukin 1 did not alter POA/AH MUA but decreased EEG synchronization and increased plasma levels of corticosterone.

Animals↗