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Effects of repetitive daily acute stress on pituitary LH and prolactin release during exposure to the same stressor or a second novel stress.

The present study was carried out to examine the effect of repetitive acute stress on pituitary secretion of prolactin (PRL) and luteinizing hormone (LH) during subsequent exposure to the same stimulus or to a second, novel stress. Intact adult male rats were subjected to either a single or 10 daily acute episodes of a psychological stress, transfer to a novel environment, or a physical stressor, restraint. A single acute exposure to either stress caused a temporary but significant increase in circulating concentrations of LH and PRL, and repetitive daily exposure to these stressors resulted in the habituation of stress-stimulated release of both hormones by the 10th consecutive day. When rats previously exposed to daily novel environment stress were subjected to a single episode of restraint stress, they showed an attenuation of both the LH and PRL secretory responses to this type of stress, compared to rats exposed to only one episode of restraint. These results indicate that repeated daily exposure to specific acute stress stimuli can result in the eventual habituation of both the LH and PRL hormonal responses to stress. At least with regard to the paired stressors examined in this study, adaptation to one type of acute stress stimulation may result in altered hormonal responsiveness to a second, unfamiliar stressor.

Animals↗

Transcriptomic insights into thermal stress reveal physiological trade-off between thermal stress adaptation and reproductive investment in Spodoptera litura.

Spodoptera litura, a highly polyphagous lepidopteran pest, poses a major threat to agricultural productivity due to its remarkable adaptability to diverse environmental conditions. Although heat stress is known to trigger transcriptional reprogramming in insects, the molecular mechanisms underlying thermal stress responses in S. litura remain poorly understood. In the present study, fourth-instar larvae were exposed to acute heat stress (44 °C) and compared with control conditions (27 ± 1 °C) to investigate heat-induced transcriptional alterations affecting physiology and reproduction. High-quality RNA-Seq data achieved more than 80% mapping efficiency, with a total of 15,782 transcripts were identified. Transcriptome analysis of S. litura larvae showed 323 differentially expressed genes (DEGs), of which 262 genes were significantly upregulated and 61 were downregulated in heat-stressed larvae compared to the control group. The DEGs were associated with stress response, reproduction, signalling, proteostasis, detoxification, oxidative stress, metabolism, development, and chromatin regulation. Heat shock proteins genes, including HSP70, HSP90, and HSP27, together with co-chaperones such as TRET-1, STIP1, and Starvin, were strongly upregulated, indicating enhanced cellular protection against protein damage and oxidative stress under heat stress. Conversely, key reproductive and cell cycle-related genes, including BARR, CAPD2, FEO, CDK2 and MORULA, were significantly downregulated, suggesting reproductive impairment and developmental arrest. RT-qPCR validation corroborated the RNA-Seq findings, demonstrating a heat-induced physiological trade-off that prioritizes survival over reproduction. Consistent with these molecular responses, heat-stressed insects exhibited marked reproductive impairment, including significant reductions in gonadosomatic index, eupyrene sperm bundle count, mating frequency, mating success, female calling behaviour, copulation duration, fecundity, and egg fertility. Collectively, these findings provide comprehensive insights into the molecular basis of thermal adaptation in S. litura and demonstrate that acute heat stress compromises reproductive fitness while activating conserved stress-response pathways that promote short-term survival.

Animals↗

Endoplasmic reticulum stress response is involved in the pathogenesis of stress induced gastric lesions in rats.

Stress gastric ulcer is a serious complication, but the mechanism involved is not fully clarified. It is well known that mucosal cell apoptosis plays a crucial role in the pathogenesis of gastric ulceration. Recent studies have shown that endoplasmic reticulum (ER) stress is an important pathway leading to cellular apoptosis. To investigate the role of ER stress in the pathogenesis of stress gastric ulcer, we studied the alteration in the expression of ER stress markers GRP78 (glucose-regulated protein 78) and caspase-12 (an ER stress-specific proapoptotic molecule) and their relations with gastric mucosal apoptosis during development of stress gastric lesions in the water-immersion and restraint stress (WRS) model in rats. Rats developed severe gastric lesions after 6 h of WRS. Typical apoptosis was observed at the edge cells of WRS induced gastric lesions. Western blot analysis showed that GRP78 and activated caspase-12 were over-expressed in the gastric tissues of WRS rats. Immunohistochemical analysis demonstrated that increased GRP78 and caspase-12 were distributed only under the lesions. In addition, dithiothreitol and tunicamycin (ER stress inducers), which increased the expression of GRP78 and activated caspase-12, caused gastric mucosal injury and mucosal cell apoptosis in vitro. These findings suggest that ER stress might be involved in the development of stress gastric ulcer through an apoptotic mechanism.

2-Pyridinylmethylsulfinylbenzimidazoles↗

Effects of psycho-social stress during pregnancy on neuroendocrine and behavioural parameters in lactation depend on the genetically determined stress vulnerability.

The neuroendocrine consequences of repeated exposure of the pregnant mother to relevant stressors have been studied in the offspring, but not in the mothers. As these stress effects might depend on the genetically determined stress susceptibility of the dams, here, we investigated the effects of daily exposure to psycho-social stressors (maternal defeat by an aggressive lactating resident and restraint) between pregnancy days 4 and 18 in female rats selectively and bidirectionally bred for high (HAB) or low (LAB) anxiety-related behaviour. ACTH and corticosterone secretory responses to a mild stressor were found to be low in unstressed lactating HAB and LAB dams (day 8 of lactation) indicating an intact physiological attenuation of the HPA axis at this time. Pregnancy stress significantly increased the reactivity of the hypothalamo-pituitary-adrenal (HPA) axis in lactating HAB, but not LAB rats, reflecting impaired attenuation of the HPA axis selectively in pregnancy-stressed HAB dams. The high and low anxiety phenotypes were consistent in lactation and not significantly altered by pregnancy stress, despite an elevated level of arousal in pregnancy-stressed HAB dams. In general, HAB dams showed signs of a more protective maternal behaviour compared to LAB dams: (i) in the home cage, HAB dams spent more time in direct pup contact (day 1 of lactation), (ii) during two forms of the pup retrieval test, differing in the level of challenging the dam, HAB dams retrieved the pups faster, and (iii) during the maternal defence test, they were more aggressive towards a virgin intruder compared to LAB and NAB dams. Pregnancy stress did not alter any of these behavioural measures, except an increase in the speed of pup collection in a novel environment in HAB dams and increased maternal aggression in LAB dams. The results indicate a robust behavioural phenotype of HAB and LAB dams with respect to anxiety and maternal behaviour which was found to be almost unchanged by exposure to pregnancy stress. However, the finding of differential effects of pregnancy stress on the attenuation of the reactivity of the HPA axis in lactation makes HAB and LAB rats a potential animal model for studying genetically determined differences in stress vulnerability and stress-induced maladaptation of the HPA axis post-partum.

Adaptation, Physiological↗

Persistent effects of cognitive-behavioral stress management on cortisol responses to acute stress in healthy subjects--a randomized controlled trial.

Psychosocial stress leads to a release of cortisol. While this psychoneuroendocrine response helps to maintain physiological as well as psychological equilibrium under stress, exaggerated secretion of cortisol has been shown to have negative effects on somatic health and cognitive functioning. The study set out to examine the long-term effects of cognitive-behavioral stress management training on cortisol stress responses in healthy men and women. Eighty-three healthy subjects were randomly assigned to cognitive-behavioral stress management (CBSM) training or a control condition. Four months after the CBSM, 76 subjects underwent a standardized psychosocial stress test. Salivary cortisol responses were assessed repeatedly before and after the stress test. Subjects in the CBSM group showed significantly reduced cortisol stress responses. With regard to gender, this effect was observed in both men and women. However, the magnitude of the CBSM effect on cortisol responses was smaller in women than in men. Use of oral contraceptives in women influenced the cortisol response, but did not have an impact on the CBSM effect on cortisol. The results show that the previously reported attenuation of cortisol stress responses through CBSM persists and are observable in both men and women. Since stress-induced alterations of hypothalamus pituitary adrenal axis functioning are discussed to be involved in the onset and maintenance of both somatic and psychiatric conditions, similar interventions could be used for prevention and therapy of these detrimental stress effects.

Acute Disease↗

Acute stress-induced increases in thalamic CRH mRNA are blocked by repeated stress exposure.

Corticotropin-releasing hormone (CRH) coordinates multiple aspects of the stress response. Recently, CRH mRNA has been identified in two regions of the thalamus: the posterior nuclear group (Po), and a region located at the interface of the central medial and ventral posteromedial nucleus (parvicellular part) (CM-VPMpc). Previous studies demonstrated that in both regions CRH mRNA increases following 1 h of restraint stress, suggesting involvement of thalamic CRH in processing somatosensory and visceral information related to stress. The current study was proposed to further understand the effects of repeated and acute restraint stress on levels of thalamic CRH mRNA. Adult male rats were assigned to one of four groups in a 2 (repeated stress, no repeated) x2 (acute, no acute) design. Brain sections were processed for CRH mRNA in situ hybridization. ANOVA revealed no main effects of acute or repeated stress in either thalamic region. However, significant interactions between acute and repeated stress for levels of CRH mRNA were found for both regions of the thalamus. Compared to the no stress condition, acute restraint significantly increased CRH mRNA in the Po (39%) and the CM-VPMpc (32%). Repeated restraint did not alter baseline CRH mRNA levels, but blocked the acute restraint-induced effects. Thus, while acute stress increases levels of thalamic CRH mRNA, repeated exposure to the same stressor is without effect and prevents the acute response. These findings add to data establishing a role for thalamic CRH in the stress response and suggest a mechanism that may underlie habituation to repeated stress exposure.

Acute Disease↗

A systematic review of stress and stress management interventions for mental health nurses.

BACKGROUND: Health care professionals in the United Kingdom (UK) appear to have higher absence and sickness rates than staff in other sectors, and stress may be a reason for nurses leaving their jobs. These problems need to be addressed, particularly in the mental health field, if current service provision is to be maintained. AIM: The aim was to identify stressors, moderators and stress outcomes (i.e. measures included those related to stress, burnout and job satisfaction) for mental health nurses, as these have clear implications for stress management strategies. METHOD: A systematic review of research published in English between 1966 and 2000 and undertaken in the UK that specifically identified participants as mental health nurses was carried out to determine the effectiveness of stress management interventions for those working in mental health nursing. Studies from non-UK countries were examined as potential models of good practice. The study was limited to primary research papers that specifically involved mental health nurses, where the health outcomes measured were stressors, moderators and stress outcomes and where sufficient data was provided. RESULTS: The initial search identified 176 papers, of these 70 met the inclusion criteria. Seven studies have been reported since the completion of the review and have been included in this article. Sixty-nine focused on the stressors, moderators and stress outcomes and eight papers identified stress management techniques. Relaxation techniques, training in behavioural techniques, stress management workshops and training in therapeutic skills were effective stress management techniques for mental health nurses. Methodological flaws however, were detracted from the rigour of many of the studies. CONCLUSIONS: The review demonstrated that a great deal is known about the sources of stress at work, about how to measure it and about the impact on a range of outcome indicators. What was found to be lacking was a translation of these results into practice, into research that assessed the impact of interventions that attempt to moderate, minimize or eliminate some of these stressors.

Adaptation, Psychological↗

Environmental stress, psychological stress and allostatic load.

The mechanism by which chronic caregiving stress results in poor health is not well understood. The objective was to determine whether such a mechanism may be allostatic load, a novel concept specifying physiological systems that may suffer cumulative wear and tear following chronic stress, leading collectively to poor health. The study examines the association of allostatic load with environmental and psychological stress in the contexts of dementia caregiving and relinquishment of care, and is a 2-year longitudinal comparison of three groups: 80 new dementia spouse caregivers, 120 veteran caregivers, and 60 non-caregivers. Data comprised allostatic load markers and environmental and psychological stress measures. Cross-lagged analyses produced a statistically significant association between psychological stress and one allostatic load component (primary mediators). Psychological stress was a better predictor of primary mediators than environmental stress. Primary mediators rose with time for caregivers, but not for non-caregivers. A greater rise was evident for caregivers who had relinquished their role by the second year, although the level of psychological stress actually declined. Primary mediators are a key component of the relationship between allostatic load and prior stress. When allostatic load is treated as an outcome of stress, it is important to distinguish environmental and psychological stress.

Adaptation, Psychological↗

A conserved stress-activated protein kinase regulates a core stress response in the human pathogen Candida albicans.

Previous work has implicated the Hog1 stress-activated protein kinase (SAPK) in osmotic and oxidative stress responses in the human pathogen Candida albicans. In this study, we have characterized the role of Hog1 in mediating these and other stress responses in C. albicans. We provide evidence that a SAPK-dependent core stress response exists in this pathogen. The Hog1 SAPK is phosphorylated and it accumulates in the nucleus in response to diverse stress conditions. In addition, we have identified Hog1-regulated genes that are induced in response to stress conditions that activate Hog1. These analyses reveal both activator and repressor functions for the Hog1 SAPK. Our results also demonstrate that stress cross-protection, a classical hallmark of the core stress response, occurs in C. albicans between stresses that activate the Hog1 SAPK. Importantly, we find that the core stress response in C. albicans has adapted to the environmental niche of this human pathogen. This niche specificity is reflected by the specific environmental conditions that drive the Hog1-regulated core stress response in C. albicans and by differences in the molecular circuitry that control this response.

Base Sequence↗

The glutathione system as a stress marker in plant ecophysiology: is a stress-response concept valid?

Environmental stress impacts cause an increased formation of reactive oxygen species (ROS) in the chloroplasts (photo-oxidative stress). The role of glutathione in the antioxidative defence system provides a rationale for its use as a stress marker. However, responses of glutathione concentrations and redox states are not consistent among the large number of available publications. In the present review the hypothesis that stress responses of the glutathione system follow a general ecophysiological stress-response concept is investigated. In this view, an initial response phase would be followed by an acclimation phase where a new steady-state is established. Alternatively, if successful acclimation is not achieved, degradation of the system will follow. Recent publications dealing with responses to photochilling, salinity, and drought are analysed as to whether the results fit the concept. In general, an initial stress response was related to changes in the glutathione redox state, whereas acclimation was marked by increased glutathione concentrations, increased related enzyme activities, and/or a more reduced redox state of glutathione. The latter was interpreted as overcompensation leading to enhanced regeneration of glutathione. Deterioration effects upon strong stress impacts were related to progressive degradation and oxidation of the glutathione pool. A time-course analysis, which has rarely been done in the published literature, showed this sequence of events. When apple trees were subjected to progressing drought, the initial response was a slight oxidation of the glutathione pool, followed by increased glutathione concentrations. When the stress increased, glutathione concentrations dropped and redox state became more oxidized, which marked the degradation of the system. In spite of the general congruency of these results with the suggested stress-response concept, several limitations have to be highlighted: The importance of the glutathione system relative to other components of the photoprotective and antioxidative defence system, as well as relative to stress avoidance strategies, has to be established. It is suggested that a variety of parameters taking into account alternative protection pathways (e.g. photorespiration, light dissipation) and other components of the antioxidative systems should be measured. Within such response patterns the glutathione system is a valuable stress marker in ecophysiological studies.

Acclimatization↗

Transient left ventricular dysfunction in ischaemic myocardium after stress: comparative study with exercise and pharmacological stress gated myocardial single photon emission computed tomography.

In ischaemic heart disease patients, transient left ventricular dysfunction is observed due to post-exercise stunning. The aim of this study was to determine whether transient left ventricular dysfunction could also be seen after short-acting pharmacological stress (adenosine triphosphate). A 1 day rest/stress gated myocardial single photon emission computed tomography was performed on 362 patients suspected of having ischaemic heart disease by exercise (n=199) or short-acting pharmacological stress (n=163). Left ventricular ejection fraction were estimated both at rest and stress. Based on perfusion findings, patients were subdivided into ischaemia, fixed defect and normal group. For the ischaemia and fixed defect group, left ventricular ejection fraction after stress was significantly decreased compared with the resting value by exercise stress (ischaemia group, 57.5+/-11.0 vs 60.4+/-10.4; fixed defect group, 47.7+/-16.7 vs 49.6+/-16.8; P<0.01), but not by pharmacological stress (ischaemia group, 55.8+/-13.4 vs 57.1+/-13.8; fixed defect group, 50.8+/-13.5 vs 50.6+/-13.1; P=NS). In the normal group, left ventricular ejection fraction after stress was not significantly changed by either exercise (65.7+/-10.4 vs 66.8+/-10.2; P=NS) or pharmacological stress (63.0+/-11.7 vs 64.0+/-12.1; P=NS). It is concluded that a transient decrease in left ventricular ejection fraction after stress was observed following post-exercise, not following a short-acting pharmacological stress in patients showing perfusion abnormalities. Transient left ventricular dysfunction may be the result of post-exercise stunning, not from subendocardial hypoperfusion induced by short-acting pharmacological stress.

Adenosine Triphosphate↗

Multiple stress responses in Streptococcus mutans and the induction of general and stress-specific proteins.

The authors have previously demonstrated that Streptococcus mutans shows an exponential-phase acid-tolerance response following an acid shock from pH 7.5 to 5.5 that enhances survival at pH 3.0. In this study the response of S. mutans H7 to acid shock was compared with the responses generated by salt, heat, oxidation and starvation. Prior induction of the acid-tolerance response did not cross-protect the cells from a subsequent challenge by the other stresses; however, prior adaptation to the other stresses, except heat (42 degrees C), protected the cells during a subsequent acid challenge at pH 3.5. Starvation by fivefold dilution of the basal medium (BM) plus fivefold reduction of its glucose content increased the numbers of survivors 12-fold, whereas elimination of glucose from fivefold-diluted BM led to a sevenfold enhancement compared to the control cells; this indicated a relationship between the acid and starvation responses. The stress responses were further characterized by comparing the 2D electrophoretic protein profiles of exponential-phase cells subjected to the various stress conditions. Cells were grown to exponential phase at pH 7.5 (37 degrees C) and then incubated for 30 min under the various stress conditions in the presence of 14C-labelled amino acids followed by cell extraction, protein separation by 2D gel electrophoresis and image analysis of the resulting autoradiograms. Using consistent twofold or greater changes in IOD % as a measure, oxidative stress resulted in the upregulation of 69 proteins, 15 of which were oxidation-specific, and in the downregulation of 24 proteins, when compared to the control cells. An acid shock from pH 7.5 to 5.5 enhanced synthesis of 64 proteins, 25 of them acid-specific, while 49 proteins exhibited diminished synthesis. The dilution of BM resulted in the increased formation of 58 proteins, with 11 starvation-specific proteins and 20 showing decreased synthesis. Some 52 and 40 proteins were enhanced by salt and heat stress, with 10 and 6 of these proteins, respectively, specific to the stress. The synthesis of a significant number of proteins was increased by more than one, but not all stress conditions; six proteins were enhanced by all five stress conditions and could be classified as general stress proteins. Clearly, the response of S. mutans to adverse environmental conditions results in complex and diverse alterations in protein synthesis to further cell survival.

Autoradiography↗

Absence of skeletal muscle lesions after experimental restraint stress induced by pancuronium in normal and stress-susceptible pigs.

Stress-susceptible (SS) pigs develop rhabdomyolysis and increased serum levels of muscle enzymes after a 12 min experimental stress induced by the depolarizing myorelaxant succinylcholine. It is suspected that not only the stress situation but also succinylcholine itself contributes to the skeletal muscle lesions. This experiment was performed to study whether rhabdomyolysis occurs after restraint stress when succinylcholine was replaced by the non-depolarizing myorelaxant pancuronium. Four normal and four SS pigs were subjected to restraint stress by intravenous injection of pancuronium. The neuromuscular block was reversed after 12 min by neostigmine. The animals wee necropsied approximately 48 h after stress and 24 skeletal muscle groups were examined pathologically. The severity of acute myofibre lesions were graded, and the results were compared with the results from normal and SS pigs which had been subjected to restraint stress induced by succinylcholine. The serum levels of creatine kinase (CK) and aspartate aminotransferase (ASAT) stayed at the base line level after the stress. The scores for muscle lesions were significantly lower, both in normal and SS pigs, than after restraint stress induced by succinylcholine indicating no rhabdomyolysis after restraint stress induced by pancuronium. Thus succinylcholine is synergistic with stress, exacerbating its effect on skeletal muscle in SS pigs.

Animals↗

Influence of stress in acute pancreatitis and correlation with stress-induced gastric ulcer.

BACKGROUND AND AIMS: In the general adaptation syndrome, gastric lesions are the first manifestation of stress. We hypothesized that acute pancreatitis (AP), an inflammatory acute disease, will be exacerbated if unchained following stress. Visceral hypersensitivity will be enhanced due to catecholaminergic discharges leading to an over-induction of the intrapancreatic cholinergic tone with increased response of the pancreocyte to cholecystokinin (CCK). Our aim was to investigate the influence of stress before AP on the later AP, and the effect of AP on underlying diseases such as gastric ulceration. METHODS: The model of stress induced by restraint was followed by the bilio-pancreatic duct outlet exclusion closed duodenal loops model. The effect of autonomous arc reflex (AAR) interruption by anesthetics after stress but before AP was assessed. The participation of the vagal and sympathetic pathways and involvement of CCK-A receptors were considered. The degree of severity was evaluated using biochemical and histopathological analyses. RESULTS: Induction of AP after stress was more severe than in its absence. Acinar and fat necrosis, hemorrhage and neutrophil infiltrate foci were evenly distributed, being significantly greater in size and number after stress. Gastric ulceration evolved to ulcer, hemorrhage and gastric necrosis after AP triggering. Serum amylase, lipase, C-reactive protein, IL-6, IL-10 and plasmatic hsp72 as well as pancreatic and lung myeloperoxidase were significantly elevated in AP after stress while pancreatic amylase and lipase were significantly reduced. AAR blockage ameliorated AP after stress. CONCLUSIONS: Stress aggravates pancreatic pathology while AP deteriorates gastric pathology, and anesthetic treatment was beneficial for both. Restraint in other animal models can be useful to study the influence of stress in the evolution of other diseases.

Acute Disease↗

Differential adaptive responses to chronic stress of maternally stressed male mice offspring.

It is well established that stress in early life can alter the activity of the hypothalamus-pituitary-adrenal (HPA) axis, but most studies to date have focused on HPA reactivity in response to a single acute stress. The present study addressed whether stress in pregnant mice could influence the adaptive responses of their offspring to chronic stress. Male offspring were exclusively used in this study. Elevated plus maze tests revealed that 14 d of repeated restraint stress (6 h per day; from postnatal d 50-63) significantly increased anxiety-like behavior in maternally stressed mice. NBI 27914, a CRH receptor antagonist, completely eliminated anxiety-related behaviors in a dose-dependent manner, indicating an involvement of a hyperactive CRH system. In accordance with increased anxiety, CRH contents in the hypothalamus and amygdala were significantly higher in these mice. Despite an increased basal activity of the CRH-ACTH system, the combination of chronic prenatal and postnatal stress resulted in a significant reduction of basal plasma corticosterone level, presumably because of a defect in adrenal function. Along with alterations in hypothalamic and hippocampal corticosteroid receptors, it was also demonstrated that a dysfunction in negative feedback inhibition of the HPA axis could be deteriorated by chronic stress in maternally stressed male mice. Taken together, these results indicate that exposure to maternal stress in the womb can affect an animal's coping capacity to chronic postnatal stress.

Adaptation, Psychological↗

Stress-induced adrenocorticotropin secretion: diurnal responses and decreases during stress in the evening are not dependent on corticosterone.

To test whether the diurnal rhythm in stress responsiveness is dependent on corticosterone (B)-mediated negative feedback, the responses of intact (SHAM) and adrenalectomized (ADX) rats to restraint for 3-90 minutes or ip injection with saline in the morning (AM) and the evening (PM) were compared. In both SHAM and ADX rats, ACTH responses to restraint stress were larger in the AM. In intact rats, this could have resulted from both fast negative feedback, due to the rate of rise of B during the stress in the PM, and delayed negative feedback, due to the high basal concentrations of B before the stress in the PM. However, this diurnal pattern of stress responsiveness was not dependent on B, as the same relative responses to restraint and ip injection were found in ADX rats. To determine whether the lack of response of ADX rats in the PM to stress was due to a loss of sensitivity to endogenous secretagogues, ADX rats were given CRF + arginine vasopressin (AVP) while anesthetized with ether after 30 min of restraint. In both the AM and the PM, the pituitaries were able to respond to exogenous secretagogues. A second novel finding was that in the PM, but not the AM, plasma ACTH concentrations in the ADX rats decreased substantially during the period of restraint, despite the lack of B-mediated negative feedback. In the AM and the PM, ADX rats were restrained for 30 min and then stressed with ether for 6 min. The ACTH concentrations were not different before and after ether, suggesting that, although the pituitaries of ADX rats are able to respond to exogenous CRF + AVP after stress, an additional stress of ether exposure no longer stimulates endogenous CRF and AVP release after 30 min of restraint at either time of day. After 90 min of restraint in the AM and the PM, the relationship between ACTH and B was positive, not negative, providing no evidence of ongoing B-mediated negative feedback in the SHAM rats. Therefore, the same mechanism responsible for the decrease in ACTH secretion in ADX rats may occur in SHAM rats as well. From these results, we conclude that the diurnal rhythm in stress responsiveness and, in the PM in the ADX rats, the decrease in plasma ACTH during stress, are largely independent of B.

Adrenalectomy↗

Stress distributions inside intervertebral discs: the validity of experimental "stress profilometry'.

This paper evaluates a technique for measuring the distribution of compressive stress within cadaveric intervertebral discs. A strain-gauged pressure transducer, side-mounted near the tip of a 1.3 mm diameter needle, was inserted into cubes of disc tissue and into intact discs. Regardless of the position and orientation of the transducer within the tissue or disc, its output was found to be proportional to the compressive force applied to the specimen. The distribution of compressive stress was measured by pulling the instrumented needle through the specimen and the resulting stress profiles were reproducible to within 20 per cent. Profiles obtained at different applied loads showed a similar distribution of stress within the disc, suggesting that the compressive stress at any location and direction increased in proportion to the applied load. Since transducer output was also proportional to applied load, it was reasoned that it must be proportional to compressive stress within the disc. The average vertical compressive stresses acting on various regions within a disc were calculated from the stress profiles and multiplied by the cross-sectional area of each region: the resulting force was then compared with the known applied force in order to assess the calibration coefficient of the transducer. Agreement between the two forces was good, indicating that the calibration coefficient established in a saline bath was applicable to disc tissues also. However, artifactual stress peaks could be generated if the transducer was pulled across a bony asperity. It is concluded that the transducer measures the mean compressive stress acting upon it within disc tissues. Errors associated with the technique are small compared to differences in stress distributions which occur naturally, for example when intervertebral discs are loaded to simulate different postures in a living person.

Adult↗

[Decrease of ACh response in isolated duodenum from SART stressed (repeated cold stressed) mice (author's transl)].

ACh response in the isolated duodenum from SART stressed (repeated cold stressed) mice was remarkably decreased in comparison to normal mice 5 days after onset of loading SART stress, and maximal contraction in SART stress mice duodenum was about 37% of that in non-stressed mice. Pilocarpine and KCl responses were also considerably decreased, but BaCl2 response was much the same as in the controls. Thus, the contraction system of the muscle is apparently not damaged by SART stress. Though body weights decreased, the daily intake of food incressed in SART stressed mice. Length of small intestine from SART stressed mice was much the same as in controls, but wet weights of small intestines were larger than in controls. Autonomic agonists, antagonists, tranquilizers and other drugs were given intraperitoneally to mice once daily during SART stress, and the ACh responses in the isolated duodenum were investigated. Pretreatment with adrenergic and anticholinergic drugs inhibited the decrease of ACh response, but antiadrenergic and cholinergic drugs had no effects. Pretreatment with tranquilizers such as reserpine, chlorpromazine, carpipramine and imipramine inhibited the decrease of ACh response in the isolated duodenum, but diazepam, meprobamate and benadryl had no influence. Pretreatment of neurotropin, a neurosedative had good inhibitory effects. Our results suggest that SART stressed mice may be in a state of unbalance regarding sympathetic and parasympathetic nerves, particularly with regard to abnormal tension in the parasympathetic nervous system, in part of duodenum. Pretreatment with most of the above drugs had no influence on loss of body weight in SART stressed mice while pretreatment with neurotropin inhibited body weight to a considerable extent.

Acetylcholine↗