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Potential involvement of oxidative stress in cartilage senescence and development of osteoarthritis: oxidative stress induces chondrocyte telomere instability and downregulation of chondrocyte function.

Oxidative stress leads to increased risk for osteoarthritis (OA) but the precise mechanism remains unclear. We undertook this study to clarify the impact of oxidative stress on the progression of OA from the viewpoint of oxygen free radical induced genomic instability, including telomere instability and resulting replicative senescence and dysfunction in human chondrocytes. Human chondrocytes and articular cartilage explants were isolated from knee joints of patients undergoing arthroplastic knee surgery for OA. Oxidative damage and antioxidative capacity in OA cartilage were investigated in donor-matched pairs of intact and degenerated regions of tissue isolated from the same cartilage explants. The results were histologically confirmed by immunohistochemistry for nitrotyrosine, which is considered to be a maker of oxidative damage. Under treatment with reactive oxygen species (ROS; 0.1 micromol/l H2O2) or an antioxidative agent (ascorbic acid: 100.0 micromol/l), cellular replicative potential, telomere instability and production of glycosaminoglycan (GAG) were assessed in cultured chondrocytes. In tissue cultures of articular cartilage explants, the presence of oxidative damage, chondrocyte telomere length and loss of GAG to the medium were analyzed in the presence or absence of ROS or ascorbic acid. Lower antioxidative capacity and stronger staining of nitrotyrosine were observed in the degenerating regions of OA cartilages as compared with the intact regions from same explants. Immunostaining for nitrotyrosine correlated with the severity of histological changes to OA cartilage, suggesting a correlation between oxidative damage and articular cartilage degeneration. During continuous culture of chondrocytes, telomere length, replicative capacity and GAG production were decreased by treatment with ROS. In contrast, treatment with an antioxidative agent resulted in a tendency to elongate telomere length and replicative lifespan in cultured chondrocytes. In tissue cultures of cartilage explants, nitrotyrosine staining, chondrocyte telomere length and GAG remaining in the cartilage tissue were lower in ROS-treated cartilages than in control groups, whereas the antioxidative agent treated group exhibited a tendency to maintain the chondrocyte telomere length and proteoglycan remaining in the cartilage explants, suggesting that oxidative stress induces chondrocyte telomere instability and catabolic changes in cartilage matrix structure and composition. Our findings clearly show that the presence of oxidative stress induces telomere genomic instability, replicative senescence and dysfunction of chondrocytes in OA cartilage, suggesting that oxidative stress, leading to chondrocyte senescence and cartilage ageing, might be responsible for the development of OA. New efforts to prevent the development and progression of OA may include strategies and interventions aimed at reducing oxidative damage in articular cartilage.

Aged↗

Activation of autonomic nervous system during exposure of rats to restraint and water immersion stress. II. Comparison with restraint stress.

To determine whether initial sympatho-adrenal stimulation during stress was responsible for inducing a parasympathetic stimulation, the autonomic nervous activities were estimated in rats subjected to either restraint stress or restraint and water immersion stress. The parasympathetic and sympatho-adrenal activities were estimated functionally by measuring responses of gastric motility and heart rate, and also chemically by measuring catecholamine content in urine and tissues such as the heart and adrenals. Restraint and water immersion produced a definite parasympathetic predominance in contrast to the case of restraint alone. But both kinds of stress developed an increase in the sympatho-adrenal activity, and the extent of their increase was almost the same when evaluated on the basis of urinary catecholamine content. These findings indicate that initial sympatho-adrenal stimulation is not directly associated with parasympathetic stimulation. A marked fall in body temperature during stress was assumed to participate somewhere in the induction of parasympathetic stimulation.

Adrenal Glands↗

Biochemical studies on experimental stress ulcer. I. Gastric mucosal hemorrhage and coagulation fibrinolysis in rat stress ulcer.

The relationship between gastric mucosal hemorrhage and coagulation-fibrinolysis of fasting, restraint and water immersion stress (FS) rats was studied in comparison with normal (N) and fasting (F) rats. In this case, the FS group was fasted for 18 h prior to the stress application and then subjected to restraint and water immersion for various intervals. The F group was fasted for 18 h plus the time comparable to the stress load. Gastric mucosal erosions with bleeding were recognized from 1 h after the stress load only in FS group and the hemorrhagic erosion index progressively increased 1 to 16 h. In the FS group, prothrombin time and active partial thromboplastin time gradually prolonged with time course from 8 and 1 h, respectively, and plasma prothrombin level remarkably decreased from 1 h, although no changes in these parameters were observed in the F group. Plasminogen activator activity in gastric mucosa significantly increased in not only FS group but also F group from 0.5 h as compared with N group. However, no significant difference was seen between F and FS groups on this activity. Plasma plasminogen and antiplasmin levels in FS group were lower than those of N group, 3 h later. It is suggested from these results that sustained hemorrhage from the gastric mucosa in this stress ulcer may be associated with high fibrinolytic activity in the gastric mucosa and the delay of blood coagulation.

Animals↗

[Effects of neurotropin and other drugs on EEG alterations in SART-stressed (repeated cold-stressed) rats].

SART-stressed (repeated cold-stressed) rats, experimental model animals for vagotonic-type dysautonomia, have been reported to show EEG with lower-amplitude fast waves during resting-arousal and higher-amplitude slow waves during slow-wave sleep compared to normal rats. In this report, the effects of certain drugs on EEG alterations were investigated using the power spectral analysis. EEG was measured 60 min after a single dose of drugs and on the day following the final dose of 6 administrations. Neurotropin, a sedative analgesic, slightly increased faster waves on resting-arousal EEG and slower waves on slow-wave sleep EEG in normal rats, and it prevented SART stress-induced EEG alterations during both resting-arousal and slow-wave sleep. Alprazolam, a minor tranquilizer, and GABOB, a GABA related compound, were also effective on SART stress-induced EEG alterations. Alprazolam produced remarkable but transient high-amplitude fast waves in the resting-arousal EEG of normal rats, and GABOB produced lasting low-amplitude fast waves in the slow-wave sleep EEG of normal rats. From the above results, it appears that Neurotropin may have an effect on EEG alterations caused by SART stress and that its action is likely due to mechanisms different from those of alprazolam and GABOB.

Alprazolam↗

The role of the catecholaminergic mechanism in foot shock (FS) stress- and immobilized-water immersion (IW) stress-induced analgesia in mice.

Involvement of the catecholaminergic mechanism in foot shock (FS)- and immobilized-water immersion (IW)-stress-induced analgesia (SIA) and in the development of tolerance to the effect were investigated in mice. With daily treatment with clonidine or daily exposure to stresses, tolerance developed rapidly to the analgesic effect. Clonidine-induced analgesia, which could not be antagonized by naloxone, was potentiated in the animals rendered tolerant to FS-stress, and it was attenuated in the animals tolerant to IW-SIA. On the other hand, animals tolerant to clonidine failed to show the attenuation of FS- and IW-SIA. The analgesic effect of clonidine and the development of tolerance to the effect were not influenced by reserpine. However, reserpine pretreatment completely suppressed the analgesic effect induced by FS- and IW-stresses on the 1st day; but with daily exposure to the stress, the analgesic effect gradually appeared and returned to the control level on the 5th day. These results indicate not only the differences between clonidine analgesia and SIAs but also those between each SIA. Thus, the central catecholaminergic mechanisms play an important role in these SIAs and also in the development of tolerance to the effect, although the degree of participation of these mechanisms seems to be somewhat different between FS- and IW-SIA, as indicated by the cross-tolerance between clonidine analgesia and each SIA.

Analgesia↗

Mechanism of hyperalgesia in SART stressed (repeated cold stress) mice: antinociceptive effect of neurotropin.

Exposing mice to 24 and 4 degrees C in alternate 1 hr periods in the day time and maintaining 4 degrees C at night for several days decreases the tail clamp pressure required to evoke pain behavior. This model is referred to as SART (specific alternation rhythm of temperature) stress. An extract from inflamed skin of rabbits inoculated with vaccinia virus (neurotropin) clearly normalized the hyperalgesia in this SART stress model. To clarify the mechanism of the hyperalgesia in SART mice and the mode of the antinociceptive action of neurotropin in this model, the influence of systemically administered neurotransmitter related drugs was studied. 1) Neurotropin, 5-hydroxytryptophan and L-dihydroxyphenylalanine significantly normalized the decrease in nociceptive threshold, and muscimol tended to inhibit it in nociceptive threshold in SART stressed mice. 2) Haloperidol, phenoxybenzamine, reserpine, bicuculline, scopolamine, physostigmine and naloxone alone did not influence the nociceptive threshold in SART stressed mice. 3) The antinociceptive effect of neurotropin was significantly attenuated by p-chlorophenylalanine, haloperidol and phenoxybenzamine; and it was completely inhibited by reserpine. 4) Naloxone, bicuculline, scopolamine and physostigmine had no influence on the antinociceptive effect of neurotropin. These results suggest that hypofunction mainly of the monoaminergic systems contributes to hyperalgesia in SART stressed mice and that neurotropin produces the antinociceptive effect by restoring these neural functions.

5-Hydroxytryptophan↗

Oxidative stress-induced increase in intracellular Ca2+ and Ca(2+)-induced increase in oxidative stress: an experimental model using dissociated rat brain neurons.

In order to study the oxidative stress-induced change in intracellular concentration of Ca2+ ([Ca2+]i) and Ca(2+)-induced oxidative stress, effects of hydrogen peroxide and ionomycin, a calcium ionophore, on rat cerebellar neurons were examined using a flow cytometer and fluorescent dyes: fluo-3 for monitoring [Ca2+]i; 2',7'-dichlorofluorescin, for reactive oxygen species; and 5-chloromethylfluorescein, for cellular nonprotein thiols. Oxidative stress induced by hydrogen peroxide dose-dependently increased [Ca2+]i and decreased the content of nonprotein thiols. Ionomycin increased oxidative metabolism and decreased the content of nonprotein thiols. Results suggest that oxidative stress induces an increase in [Ca2+]i while an increase in [Ca2+]i increases oxidative stress in neurons.

Aniline Compounds↗

Ecdysteroids in stress responsive and nonresponsive Drosophila virilis lines under stress conditions.

After exposure to thermal stress or a control temperature, the relative abundance of ecdysone (E) and 20-hydroxyecdysone (20E) was measured in a wild-type line of Drosophila virilis (101) that is stress responsive and in a mutant line (147) that is not stress responsive. In line 101, the 20E content was higher and E content lower in females than in males. The abundance of E and 20E in females of line 147 was significantly higher than that in females of line 101. Females of line 101 were found to respond to 60 min of heat stress (38 degrees C) by an increase in the abundance of both E and 20E, while in males of this line the amount of 20E increased and that of E declined. A role of the ecdysteroids in the control of reproduction of D. virilis under stress is discussed.

Adaptation, Physiological↗

Stimulation of the stress-induced expression of stress proteins by curcumin in cultured cells and in rat tissues in vivo.

Curcumin, a major component of turmeric, a seasoning commonly used in Indian food, and a known antioxidant, anti-inflammatory and anti-carcinogenic agent, is a potent stimulator of the stress-induced expression of Hsp27, alphaB crystallin and Hsp70. When C6 rat glioma cells were exposed to arsenite (100 microM for 1 h), CdCl2 (100 microM for 1 h) or heat (42 degrees C for 30 min) in the presence of 3-10 microM curcumin, induction of the synthesis of all three proteins was markedly stimulated, as detected by specific immunoassays, Western blot analysis and Northern blot analysis. A gel mobility shift assay revealed that curcumin prolonged the stress-induced activation of the heat shock element-binding (HSE-binding) activity of heat shock transcription factor (Hsf) in the cultured cells. The stimulatory effect of curcumin on the responses to stress was also observed in BRL-3A rat liver cells and Swiss 3T3 mouse fibroblasts. Induction of Hsp27, alphaB crystallin and Hsp70 in the liver and adrenal glands of heat-stressed (42 degrees C for 20 min) rats was also enhanced by prior injection of curcumin (20 mg/kg body weight). As curcumin is a potent inhibitor of arachidonic acid metabolism, it is suggested that the mechanism of the stimulation by curcumin of the stress responses might be similar to that of salicylate, indomethacin and nordihydroguaiaretic acid.

3T3 Cells↗

Surgical stress increases renal glutathione content via increased glucocorticoid, and resistance to subsequent oxidative injury in the rat: significant link between endocrine response and cell defense system under the stress.

Systemic and nonspecific stress response effects on the cellular defense mechanism were studied in the male rat kidney. Two days after laparotomy-induced surgical stress, rats showed increased serum corticosterone and renal cortical reduced glutathione (GSH). Rats were then injected s.c. with mercuric chloride (HgCl2) to oxidatively injure renal tubuli. Increased serum creatinine levels indicated that laparotomy pretreatment lessened renal damage. To study the effects of the activated pituitary-adrenal axis on renal cortical GSH content and vulnerability to subsequent oxidative injury, rats were injected s.c. with ACTH on two consecutive days. ACTH administration increased both corticosterone and aldosterone. These rats showed increased, dose-dependent renal cortical GSH content, i.e., controls (n=7): 1.25 +/- 0.23 micromol/g tissue, daily dose of 10 microg/100 gBW (n=7): 1.53 +/- 0.24 micromol/g tissue, and daily dose of 40 microg/100 gBW (n=7): 2.31 +/- 0.23 micromol/g tissue. Rats receiving daily doses of 40 microg of ACTH/100 gBW acquired resistance to oxidative injury, indicated by serum creatinine levels: controls (n=6), 22 +/- 4 micromol/L; HgCl2 (n=6), 145 +/- 88 micromol/L; ACTH and HgCl2 (n=6), 37 +/- 11 micromol/L. Morphological evidence indicated that ACTH pretreatment in HgCl2-injected rats prevented renal tissue from inflammatory cell infiltration but not from tubular degeneration. Cellular GSH content of LLC-PK1 cells, porcine renal-tubule-derived culture cells, increased significantly in incubation with dexamethasone or aldosterone, suggesting that adrenal steroids directly stimulate renal cell GSH. We demonstrated that stress or ACTH administration activates the defense mechanism in the kidney via increased GSH. This stress-activatable defense system may therefore indicate a connection between endocrine stress response and the cellular defense mechanism.

Adrenocorticotropic Hormone↗

Vitamin D inhibits the activation of stress-activated protein kinases by physiological and environmental stresses in keratinocytes.

In addition to its known effects on keratinocyte proliferation and differentiation, the hormonal form of vitamin D, 1,25-dihydroxyvitamin D(3) (1,25(OH)(2)D(3)), has been shown to protect keratinocytes from UV- and chemotherapy-induced damage. Epidermal keratinocytes contain both the machinery needed to produce 1,25(OH)(2)D(3) and vitamin D receptors. The activation of the stress-activated protein kinases (SAPKs), such as c-Jun N-terminal kinase (JNK) and p38, is an early cellular response to stress signals and an important determinant of cell fate. This study examines whether modulation of these SAPKs is associated with the effects of 1,25(OH)(2)D(3) on keratinocytes under stress. HaCaT keratinocytes were exposed to heat shock, hyperosmotic concentrations of sorbitol, the epidermal growth factor receptor tyrosine kinase inhibitor AG1487, the pro-inflammatory cytokine tumor necrosis factor alpha, and H(2)O(2). These stresses activated both SAPKs. Pretreatment with 1,25(OH)(2)D(3) inhibited the activation of JNK by all stresses and the activation of p38 by heat shock, AG1478 and tumor necrosis factor alpha. Under the same conditions, treatment with 1,25(OH)(2)D(3) protected HaCaT keratinocytes from cytotoxicity induced by exposure to H(2)O(2) and hyperosmotic shock. The effect of 1,25(OH)(2)D(3) was dose-dependent, already apparent at nanomolar concentrations, and time-dependent, maximal after a 24-h pre-incubation. We suggest that inhibition of SAPK activation may account for some of the well-documented protective effects of 1,25(OH)(2)D(3) on epidermal cells during exposure to UV or chemotherapy and may also be related to the anti-inflammatory actions of the hormone in skin.

Calcitriol↗

[Radiograph stress measurement of metallic denture base formed by wire explosion energy. 1. Stress changes during various stages of manufacturing metallic denture base].

The radiograph stress measurement method is the only known means of a non-destructive measurement, and this method is used to assess the residual stresses of various metals. This study was made to evaluate the possibility of radiograph stress measurement of the metallic denture base formed by the wire explosion energy. Radiograph stress measurements of stress changes during various stages of manufacturing metallic denture base were successfully obtained.

Dental Stress Analysis↗

Sources of stress among Greek team handball referees: construction and validation of the Handball Officials' Sources of Stress Survey.

Sports officials have recently received some attention in the academic literature. The aim of the present study was to examine sources of perceived psychological stress among certified Greek team handball referees. For this purpose, participants evaluated the intensity of 17 acutely stressful game situations on two occasions within a period of seven months. To explore the factor structure of the Handball Officials Sources of Stress Survey, 84 team handball officials completed the questionnaire. The analysis yielded a 4-factor structure (Evaluation, Fear of Physical Harm, Interpersonal Conflicts, and Fear of Appearing Incompetent), which accounted for 70% of the total variance. Age, education, rank, and years of experience as a handball player were unrelated to the referees' scores on the survey. To confirm the factor structure, 93 handball officials completed the survey seven months later. A confirmatory factor analysis supported the factorial structure of the scale. Sources and intensity of stress for handball referees are comparable to those identified in previous studies of referees' stress in other team sports.

Adaptation, Psychological↗

Role of fitness in mediating stress: a correlational exploration of stress reactivity.

Researchers have investigated the effect of exercise on reducing subjects' responsiveness to stress. Results from the initial studies were positive, yet these studies often did not use objective measures of fitness. This investigation applied more rigorous methodology than past experiments to assess the relationship between fitness and reactivity to stress. Maximal oxygen consumption was measured to indicate the fitness of recreational cyclists who were then exposed to three stressful situations (mental subtraction, speech preparation, and the cold pressor test). Heart rate, frontalis electromyographic (EMG) levels, and self-report of tension were monitored during the stress-inducing tasks. Physical fitness was significantly related to heart rate taken during the subtraction and cold pressor tasks, with EMG during subtraction, and with self-report during all three stressor tasks. These results further support the hypothesized association of physical fitness and reducing response to stress.

Adaptation, Psychological↗

Effects of a stress-management program on injury and stress of competitive gymnasts.

20 competitive gymnasts (17 girls, 3 boys; mean age, 14.4 +/- 3.4 yr.) were recruited from two clubs in Auckland, New Zealand. Gymnasts, who had competed at a national or international level, were divided into two groups to examine the effects of a longitudinal stress-management program on injury and stress. Those in the stress-management group took part in 12 1-hr. sessions over 24 weeks, while the control group took part in a placebo program of anthropometric measurements and lectures on nutrition. All participants completed the Life Experiences Survey and Athletic Experiences Survey at baseline, 3 mo., 6 mo. (end of intervention), and 9 mo. (3 mo. after completion of intervention). Injury data were collected prospectively by weekly self-report over the 9-mo. study. Repeated-measures analyses of covariance with age and, where applicable, the baseline measure of the dependent variable entered as covariates, indicated no significant group or group by time effects for the scores on the two surveys, or injury scores. However, given the small sample, the statistical power of the study to detect even large effects was low. Therefore, rather than concluding that the stress-management program had no effect on training hours lost to injury or on stress, upper limits were placed on the magnitude of any effects that might exist. Further research using larger samples is recommended.

Adaptation, Psychological↗

Meta-analysis of relations of stress propensity with subjective stress and strain.

Meta-analyses were used to examine relations of three factors of stress propensity, i.e., cognitive-affective connectivity, psychological magnification, and anger-irritability, with three stress criteria, i.e., subjective stress, psychological strain, and physiological strain. Each of the stress propensity factors was significantly related to each criterion. Sex was a significant moderator for two of these nine relations (cognitive-affective connectivity with subjective stress and anger-irritability with psychological strain).

Adult↗

Oxidative stress induced by 2,3,7,8-tetrachlorodibenzo-p-dioxin: an application of oxidative stress markers to cancer risk assessment of dioxins.

Dioxins are known to be a class of highly toxic and persistent environmental contaminants. Among them the toxicity of 2,3,7,8-tetrachlorodibenzo-p-dioxin (TCDD) has been the most intensively studied, and it has been classified as a human carcinogenic substance by the International Agency for Research on Cancer (IARC). Although the mechanism of carcinogenesis by TCDD is unclear, it is now considered to have act a cancer promoter. In this review, was discuss the ability of TCDD to induce oxidative stress in vivo, the mechanism of the oxidative stress induction, and how oxidative stress relates to the development of cancer. We then discuss the advantages of measuring the level of oxidative stress in people exposed to dioxins in epidemiological studies for cancer risk assessment. We also discuss several methods of measuring the level of oxidative stress in humans.

Carcinogens↗

[Transferred employees' psychological stress due to "tanshin-funin" family separation: a study of stress responses].

A transferred employee may take his family along (taido-funin), or have to temporarily move and live alone (tanshin-funin), leaving the family behind. Two hundred and thirty-nine (239) taido-funin transferees, 247 tanshin-funin transferees, and 225 non-transferred employees completed a 31-item questionnaire designed to measure stress responses on the present level. Factor analysis found five factors for the stress: feeling of instability, poor health, loneliness, loss of self-confidence, and feeling of elation. Results indicated that (1) in general, tanshin-funin transferees felt more stressful than the other groups. However, family separation might not be as bad as expected, because while it did cause loneliness and poor health and decrease feeling of elation, the transferee self-confidence was actually increased. (2) The transferee rank did not affect the effects of family separation. (3) Besides, stress responses were measured on 31-items on the difference between present and past levels. According to the results, tanshin-funin transferees believed that psychological stress due to family separation was especially harmful. The effects of family separation depended also on the conceptual levels of measurement.

Adult↗