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A Kusnecov

Publications and source records attributed to A Kusnecov.

5 recordsLinked to original sources

Lactation alters the effects of conditioned stress on immune function.

During lactation, endocrine function is altered and stress responses are dampened. Stress effects on immune function are partially determined by endocrine factors; therefore, we assessed whether stress similarly alters immune function during lactation. Sprague-Dawley rats were conditioned by exposure to a tone paired with foot shock (2 sessions, 16 shocks each) prior to breeding or were left undisturbed. Lactating (day 10) (Lac) and nonlactating diestrous virgin controls (C) were killed immediately after reexposure to the tone or removal from their home cage. Plasma corticosterone stress responses were dampened in Lac relative to C animals. Peripheral blood lymphocyte proliferation to T cell receptor antibody stimulation was reduced to a similar extent in both experimental groups. Conditioned stress reduced splenocyte proliferation and increased nitrite accumulation in C animals, but not in Lac animals. Mesenteric lymph node lymphocyte proliferation was significantly increased after stress in Lac compared with C animals. Both plasma interleukin-6 (IL-6) and phytohemagglutinin-stimulated splenic IL-6 production were increased in Lac animals compared with C animals after stress exposure. These data indicate that stress-induced alterations may be determined by different regulatory mechanisms within immune compartments and that these effects depend on the physiological state of the organism.

Animals↗

Effect of one or more footshocks on spleen and blood lymphocyte proliferation in rats.

The effect of 1 (1.6 mA, 5 s), 3, 8, or 16 inescapable footshocks on the response of spleen and peripheral blood lymphocytes to nonspecific mitogenic stimulation and plasma corticosterone levels was studied in adult Lewis male rats. One footshock suppressed mitogenic activity in the spleen and this effect was comparable to 3, 8, and 16 footshocks. The maximum suppression to nonspecific mitogenic stimulation in the spleen was observed at 1 and 10 min after exposure to a single footshock and suppression of the mitogenic responses in the spleen persisted for at least 60 min. In contrast, immediately after a single footshock peripheral blood lymphocyte mitogenic function was not suppressed but instead was significantly enhanced. A significant suppression of mitogenic responsiveness of blood lymphocytes occurred 30 min after exposure to a single footshock and at 60 min the blood mitogenic activity did not differ from the home cage controls. Eight footshocks produced a significant suppression of mitogenic responses in the blood and 16 footshocks produced the greatest suppression of blood mitogenic function. These data suggest that 1 brief footshock caused activation of the HPA axis and sympathetic nervous system and resulted in significant alteration of the immune system. We suggest that noncomplex models of short-term stress may provide for a better understanding of the mechanisms underlying the development of stress reactions in the CNS and the periphery.

Animals↗

Stress-induced alteration of polymorphonuclear leukocyte function in rats.

We have used a laboratory model of footshock stress in rats to determine whether stressor-induced alterations can be induced in polymorphonuclear leukocyte (PMN) function. We studied the ability of peripheral blood PMN to ingest and kill gram-positive bacteria. A single, 1-h session of footshock stress did not alter the ability of PMN to ingest or kill bacteria. However, 3 consecutive days of a 1-h session of footshock stress significantly enhanced the phagocytic activity of PMN but suppressed the ability of PMN to kill bacteria. Thus, this experimental model suggests that both the phagocytic and killing functions of PMN can be altered by repeated exposure to a stressor.

Animals↗

Immunomodulation by behavioural conditioning.

The contemporary surge in studies of behaviourally conditioned immunomodulation following Ader and Cohen (1975) was preceded by Pavlovian conditioning conducted in the Soviet Union during the 1920s and 1950s. Data from these studies provided a tenable hypothesis for immunomodification using classical conditioning processes. In particular a variant of Pavlovian conditioning, the conditioned taste aversion (CTA) paradigm, has proved very robust; here a novel gustatory experience (CS) is paired with an aversive physiological event (UCS) and subsequent gustatory avoidance of the CS alone is measured. Similar procedures have also been successfully applied to the conditioned alteration of cellular immune responses. Studies demonstrating behaviourally conditioned effects on the immune system are reviewed. More recently, conditioned immunoenhancement studies have demonstrated that taste aversion can induce a conditioned increase in the helper: suppressor T cell subset ratio in rats, and a depressed DTH response in mice. Mediating mechanisms for the conditioned effects are examined, in particular the roles of adrenocorticotropin (ACTH) and beta-endorphin (BEP), and the routes of communication between the CNS and immune system. Clinical applications of immunomodification may also be demonstrated by the potential therapeutic efficacy of both conditioned immunosuppression and immunoenhancement.

Animals↗

An increase in startle response in rats administered oxytocin.

Twenty-four male albino Wistar rats were allocated to four groups and given either 23.2, 11.6 or 5.8 IU OXT/kg or vehicle (0.9% saline). A significant increase in startle response was observed in the 11.6 and 5.8 IU OXT/kg groups when compared to vehicle. Our results further support the suggestion that OXT is a "stress hormone" by implicating this peptide with increased emotionality/reactivity during a stressful experience.

11-Hydroxycorticosteroids↗