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I Baciu

Publications and source records attributed to I Baciu.

At least 19 recordsLinked to original sources

Hypothalamic mechanisms of immunity.

The present article considers a synthetical analysis of the results reported by our laboratory in the last twenty years in the field of neuroimmunomodulation. The studies we discuss here continue a previous research activity, a synthesis of which has also been published in this journal (Baciu, 1988). In that paper, we reported data concerning the role of the hypothalamic tubero-mammillary area in triggering of the phagocytic and of the secondary immune specific response. Here, we present an analysis of experimental facts gathered after 1988, and also of some prior to that date, which were not included in the above-mentioned review. They regard localizations, attained with stereotactical methods, of hypothalamic areas involved in maintenance of basal phagocytosis and of its circadian rhythm, of the phagocytic and of the primary and secondary specific response. We attempted to re-analyze these data in an integrative view, and accomplish a coherent image of the hypothalamic mechanisms of the nonspecific and specific immune response. The conclusion we draw is that the nervous system may exert its modulatory action upon the immune response in several ways: i) subsequent to a direct hypothalamic stimulation (electrical or through bacteria or bacterial products) or to a cortico-hypothalamic stimulation; ii) depending on the nature, intensity, duration, and frequency of the appropriate stimulus, it may either enhance the immune response, via neural and humoral pathways, or depress it; iii) via the hypothalamus-pituitary-adrenal axis. Nervous triggering and enhancement of the immune response are essential, their occurrence in the initial stages ensuring its favorable course. The finding that repeated electroconvulsant shocks, employed for hypothalamus stimulation in dogs of different breed, age, weight, and individual history, are followed by extremely variable changes of the phagocytic activity raises the question on the individuality of the immune response.

Animals↗

Nervous control of the phagocytic system.

The complexity of the immune response, including numerous functional changes (thermoregulatory, circulatory, respiratory, metabolic etc.) led us (Benetato, Baciu & Vlad, 1945) to hypothesize nervous hypothalamic control of this important homeostatic response. This work synthesizes the experimental results obtained in the last four decades by us on the nervous control of the phagocytic system. Unfortunately at that time those findings were uninteresting, immunity being satisfactorily explained as a purely cellular process. The phagocytic response of the mobile (neutrophils and monocyte) system to i.v. administration of bacteria, may be reproduced by direct electrical stimulation of the hypothalamic tuberomammillary area, and by electroshock. It is blocked after sectioning the spinal cord, or after barbiturates. Using the original "isolated head" technique, applied to dogs, it was demonstrated that the injection of Salmonella typhi murium suspension in the head circulation, may activate phagocytosis in the body, isolated humorally, only through nervous effector ways, which are conserved. The current explanation is that the bacteria in the common circulation of head activates macrophages, producing the endogenous pirogen factor (II 1), which through area hypothalamica anterior acts on the tuberomammillary zone, triggering the phagocytic response by neural effector pathways. Phagocytosis stimulating substances appeared in blood, some as a result of activation of protease systems of the blood (coagulation, fibrinolysis, kininforming and complement). Epinephrine activates peripherally the fibrinolytic and kinin forming systems. Neuroimmunomodulatory effects were also demonstrated for the RES.

Animals↗

Changes of phagocytic biological rhythm by reduction of circadian times and by influences upon hypothalamus.

The circadian oscillations of central temperature and phagocytic activity of blood polymorphonuclears were studied in guinea pigs after circadian times have been reduced, under the effect of chlorpromazine or in animals with bilaterally lesioned hypothalamus in preoptic or in tuberomammillary area. The phagocytic activity was assayed against staphylococcus epidermidis in heparinized blood. In the animals exposed to artificial light in conditions of space restriction (stressed) the phagocytic activity is depressed in the lighting period, the differences light-dark being higher (300%) as in controls (25%). Chlorpromazine lowers both central temperature and phagocytic activity, without changes of their circadian rhythms. Bilateral symmetrical injuries of the preoptic hypothalamic area determined a rise of the central body temperature in the beginning of the dark period. The phagocytic activity of these animals decreases especially at the end of the dark period. Lesions of the tuberomammillary area reduces the phagocytic activity to very low levels and attenuates to a marked extent its circadian oscillations. Body temperature remain unaffected. The circadian biorhythm of the body temperature and of the phagocytic activity, usually concurrently, are controlled by separate hypothalamic mechanisms. After tuberomammillary lesions the phagocytic response of animals to an endovenous injection of a bacterial suspension is very low. The results are discussed on the basis of present data and of prior researches of this laboratory.

Animals↗

[Contribution to the study of stress (author's transl)].

The research activity of the physiological laboratories (Medical and Hygienic Institute, Cluj-Napoca, Roumania) in the area of stress studies is described from three aspects: a) Methods of stress provocation and assessment; b) The effects of hormones, especially of anterior pituitary, on the adaptation to physical load; c) Nervous and endocrine factors of stress (physical exertion, fatigue, high pressure, anoxia).

17-Hydroxycorticosteroids↗