• Title/Summary/Keyword: Cortisol

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Serum cortisol concentrations on the normal condition in Korean native goats by ELISA (ELISA에 의한 국내 재래종 산양의 정상상태에서의 혈중 cortisol 농도)

  • Cho, Kyu-woan;Hur, Ju-hyeong;Lee, Eun-sug;Kang, Chung-boo
    • Korean Journal of Veterinary Research
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    • v.33 no.4
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    • pp.711-717
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    • 1993
  • This study was performed to examine the charges of serum cortisol concentrations on the normal conditions in Korean native goats by enzyme-linked immunosorbent assay(ELISA). The Korean native goats were 4 to 30 months old and weighted 6.0 to 28kg. The goats were allowed ad libitum access to water and food. To minimize the stress with handing and blood sampling, animals were adapted for 2 weeks before the experiment. After adaptation, intravenouse catheter was inserted left intact a jugular vein of 6 goats and blood samples were done 2~3 days later. Experimental animals were divided into 2 groups which was non-catheterized and catheterized group in order to examine the effect for changes of serum concentration and circadian rhythm of cortisol. The results were obtained as follows ; The sensitivity of serum cortisol concentration was $20pg/m{\ell}$. The intra-assay and inter-assay coefficient of variation were below 2.5% and 5%, respectively. Serum concentration of cortisol was more higher in noo-catheterized group$(32.84{\pm}16.78ng/m{\ell})$ than catheterized group$(23.20{\pm}10.29ng/m{\ell})$. The difference according to months old in serum concentration of cortisol was the more higber on 4~6 than 7~12 and lowest over 12 months old. A circadian rhythm in the serum concentration of cortisol in Korean native goats was not found significantly with 2 hours sampling intervals.

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Urinary Catecholamine and Cortisol Responses of Japanese Shorthorn Cows to Social Isolation

  • Higashiyama, Yumi;Nashiki, M.;Narita, H.
    • Asian-Australasian Journal of Animal Sciences
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    • v.22 no.10
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    • pp.1437-1440
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    • 2009
  • This study was performed to investigate the use of urinary catecholamines to monitor changes in the activity of the sympathetic nervous system and to determine the relationship of urinary cortisol and catecholamines in Japanese Shorthorn cows in response to social isolation. One cow was isolated from its group, which consisted of 14 cows (457 to 756 kg BW, 2 to 12 years old), for three days. The isolated cow was in contact with the other cows visually only at meal times. This isolation was repeated for 6 cows. Spontaneously voided urine samples were collected from the experimental animals once a day, before the treatment and on days 1, 2, and 3. Urinary cortisol and adrenaline levels were significantly increased compared with pre-isolation levels on the first day, and then declined to the basal levels during the next two days. Urinary noradrenaline levels changed in the same way as cortisol and adrenaline levels, but the difference was not significant. Urinary cortisol levels tended to be correlated with those of urinary adrenaline, but not noradrenaline. This study suggests that the urinary adrenaline levels can be a non-invasive indicator of stress and that the change of urinary adrenaline is similar to that of urinary cortisol.

Relationship between Physiological Response and Salivary Cortisol Level to Life Stress (생활 스트레스에 대한 인간의 생리적 반응과 타액 코티졸과의 관계)

  • Park, Sei-Kwon;Kim, Dong-Soo
    • Journal of the Ergonomics Society of Korea
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    • v.26 no.1
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    • pp.11-18
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    • 2007
  • The physiological and biochemical responses of healthy men and women to life stress were measured in order to temperature, blood pressure (BP), heart rate (HR) and galvanic skin response (GSR) were selected as physiological stress indices and salivary cortisol level was used as a biochemical stres biomarker. Twenty six (male 14 and female 13) colege students were participated in the experiment. Female showed the significant higher value of salivary cortisol level (p<0.01), diastolic BP (p<0.01), and HR (p<0.01) than male. The difference of skin temperature between forehead and fingertip correlated significantly with salivary cortisol level (p<0.01). The LF(low frequency)/HF(high frequency) ratio of HRV also correlated significantly with salivary cortisol level (p<0.01). However, BP, HR and GSR corelated insignificantly with salivary cortisol level. We suggest that LF/HF ratio of HRV and skin temperature may be good indices for the assessment of life stress, and may apply to measure the stress level of individual in real time.

Technical and clinical aspects of cortisol as a biochemical marker of chronic stress

  • Lee, Do Yup;Kim, Eosu;Choi, Man Ho
    • BMB Reports
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    • v.48 no.4
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    • pp.209-216
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    • 2015
  • Stress is now recognized as a universal premorbid factor associated with many risk factors of various chronic diseases. Acute stress may induce an individual's adaptive response to environmental demands. However, chronic, excessive stress causes cumulative negative impacts on health outcomes through "allostatic load". Thus, monitoring the quantified levels of long-term stress mediators would provide a timely opportunity for prevention or earlier intervention of stressrelated chronic illnesses. Although either acute or chronic stress could be quantified through measurement of changes in physiological parameters such as heart rate, blood pressure, and levels of various metabolic hormones, it is still elusive to interpret whether the changes in circulating levels of stress mediators such as cortisol can reflect the acute, chronic, or diurnal variations. Both serum and salivary cortisol levels reveal acute changes at a single point in time, but the overall long-term systemic cortisol exposure is difficult to evaluate due to circadian variations and its protein-binding capacity. Scalp hair has a fairy predictable growth rate of approximately 1 cm/month, and the most 1 cm segment approximates the last month's cortisol production as the mean value. The analysis of cortisol in hair is a highly promising technique for the retrospective assessment of chronic stress. [BMB Reports 2015; 48(4): 209-216]

Urinary Cortisol Levels in Japanese Shorthorn Cattle before and after the Start of a Grazing Season

  • Higashiyama, Y.;Narita, H.;Nashiki, M.;Higashiyama, M.;Kanno, T.
    • Asian-Australasian Journal of Animal Sciences
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    • v.18 no.10
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    • pp.1430-1434
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    • 2005
  • We conducted two experiments to assess the effect of transfer from housing to grazing on stress hormone secretion in cattle using urine samples. In a preliminary experiment, urine samples were collected following an adrenocorticotrophic hormone (ACTH) challenge, and cortisol levels in urine were compared with the levels in plasma. In a second experiment, urinary cortisol was measured before and after the start of a grazing season in 6 Japanese Shorthorn cows, all of which had experienced grazing before. In experiment 1, urinary cortisol showed a pattern of changes similar to that of plasma with a 0.5-h temporal lag time, and the peak levels were 4 to 10 times higher than the basal levels. In experiment 2, the urinary cortisol levels in cows did not change after the cows were let out to pasture, with no decreases in body weight. This study suggests that the transfer from housing to grazing did not affect physiological responses to cause high excretion of urinary cortisol in grazing-experienced cattle using a non-invasive sampling method.

The Effects Caused by Lavender and Rosemary for Salivary Cortisol, Stress Levels and Mood Alteration

  • Lee, Aeran;Cho, Hongbum
    • Journal of Fashion Business
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    • v.17 no.6
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    • pp.18-27
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    • 2013
  • This study is being conducted in order to confirm the effects of inhaling method for aromatherapy on cortisol which is a stress hormone by the saliva test method. An attempt is being made to dertermine if there are any differences between the effect of lavender and rosemary when concidering their effects on the cortisolsl. The test shows a statistically significant decrease in the cortisol levesl(Table 4), and as far as the comparison of the effects between lavender(N=10) and rosemary(N=10) is concerned, the lavender group show a p-value of .005 which means that there are no statistical significances; while the rosemary group show p-values of .081 meaning that there is a decrease in cortisol levels, which is statistically significant(Table 5). It has been proven that the saliva test method is a practical and scientific method when confirming the effects of aromatherapy and also a convenient method for both of the test coordinator and the subjects. Results of all 20 subjects showed similar results obtained by means of conventional blood tests. However, the rosemary group shows statistically significant decrease in cortisol level compared to the lavender group, thus proving that the test method for studying the effect of aromatherapy on stress is valid. Further studies should be conducted in order to investigate the differences in the effects of the cortisol level at different concentrations of the aroma.

The Effect of Cortisol on Proliferative Properties of Flounder (Paralychthys Olivaceus) B Lymphocytes

  • Choi, Sang-Hoon;Oh, Chan-Ho
    • Animal cells and systems
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    • v.7 no.1
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    • pp.57-62
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    • 2003
  • Flounder B lymphocytes isolated from different tissues were studied in terms of cell proliferation, apoptosis and the effects of cortisol on these processes. B lymphocytes, isolated from the flounder head kidney and spleen, were characterized by higher proliferation and lower intracellular calcium ($Ca^2$) response to lgcrosslinking compared with peripheral blood B lymphocytes. Cortisol induced high levels of apoptosis (150% of control levels) in peripheral blood B lymphocytes, in combination with a stimulatory LPS signal. Head kidney and to a lesser extent spleen B lymphocytes, although less sensitive than their equivalent in peripheral blood, underwent cortisol-induced apoptosis irrespective of extra stimulation up to 142% of control levels. Also proliferation with and without LPS stimulation was suppressed by cortisol (compared to plasma values measured during stress conditions) that is effective in inducing a significant increase in apoptosis in all three populations of B-cells, suggesting that cortisol may be important for immunoregulation in both stressed and non-stressed conditions. This implies possible severe impact of stress on lymphocyte development and activity, Different sensitivity of B-cells to the corticosteroid, with respect to developmental stage and activity, may prevent excessive and long lasting depletion of B-lymphocytes.

Analysis of Affecting Factors for Cortisol Level in Cord Blood (제대혈 Cortisol 농도에 영향을 미치는 인자에 대한 연구)

  • Lim, Hyun Jung;Song, Chang Hun;Kim, Eun Young;Park, Sang Kee
    • Clinical and Experimental Pediatrics
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    • v.46 no.2
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    • pp.183-187
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    • 2003
  • Purpose : Long-term stress to the fetus causes alterations in adrenal steroidogenesis. The purpose of this study was to analyze the association of cord blood cortisol with stress during delivery. Methods : Cord blood samples were collected from 58 neonates at once to labor. Cortisol was measured by RIA method(DPC, USA). Cortisol level according to gestational age(<34, 34-37, >38 wks) and method of delivery(Cesarean section vs. vaginal delivery), Apgar score and uterine contraction, were compared to know stress during labor. Results : Cortisol of cord blood had considerable differences between each group, according to gestational age(P<0.001). It was statistically higher in the cases of vaginal delivery than cessarian delivery(P<0.001). The concentration of cortisol was significantly higher according to duration of labor (P<0.05). There was a significant relationship between cortisol level and uterine contraction(P<0.05). The concentration of cortisol was significantly low when Apgar score at 1 min was low(P<0.05). Conclusion : Cord cortisol has close association with stress during labor. And so do with post birth prognosis of neonate.

The Influence of Cortisol Level on Progesterone and Ovulation in the Estrus Dogs (혈액 내 코티졸의 패턴 변화가 발정 암캐의 P4 변화와 배란에 미치는 영향)

  • Park, Jong-Ju;Kim, Hyun-Min;Choi, Mi-Kyoung;No, Jin-Gu;Yeom, Dong-Hyeon;Ji, Ju-Young;Kim, Dong-Kyo;Kim, Dong-Hoon;Park, Jin-Ki;Yoo, Jae Gyu
    • Journal of Embryo Transfer
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    • v.28 no.3
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    • pp.237-241
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    • 2013
  • It is generally accepted that chronic stress impairs female reproduction. It negatively affects ovarian function and the number of ovulated oocytes. Chronic stress lowers the number of retrieved oocytes. Ovarian follicular development is regulated by both pituitary-derived gonadotropins and intraovarian regulatory factors. The main corticosteroids are cortisol, cortisone, 11-deoxycortisol and corticosterone, cortisol being one of the most commonly used welfare and stress physiological indicator. In this study, we investigated the effect of cortisol level on progesterone patterns and ovulation in the dog. Cortisol and progesterone level of serum were analyzed by radioimmunoassay. The day of ovulation was considered as the day when serum progesterone concentration was 6.0~8.0 ng/ml. In vivo dog oocytes were collected by flushing oviducts of mixed-breed bitches at three days after ovulation. We classified dogs as having group 1 (cortisol level, 0 ${\leq}$ or < $2{\mu}g/dl$), group 2 (corisol level, 2 ${\leq}$ or < $4{\mu}g/dl$), group 3 (cortisol level, 4 ${\leq}$ or < $6{\mu}g/dl$) and group 4 (cortisol level, $6{\mu}g/dl$ ${\leq}$). The patterns of progesterone were not different in four cortisol groups. The average numbers of retrieved oocytes was not different in four cortisol groups. These results suggest that different cortisol levels on estrus dogs do not affect ovulation, number of ovulated oocytes and progesterone changes.

Determination of Appropriate Sampling Time for Job Stress Assessment: the Salivary Chromogranin A and Cortisol in Adult Females

  • Hong, Ran-Hi;Yang, Yun-Jung;Kim, Sang-Yon;Lee, Won-Young;Hong, Yeon-Pyo
    • Journal of Preventive Medicine and Public Health
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    • v.42 no.4
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    • pp.231-236
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    • 2009
  • Objectives : This study was conducted to determine the appropriate sampling time of the salivary stress markers, chromogranin A (CgA) and cortisol as objective indices of job stress assessment in adult females. Methods : The subjects were 20${\sim}$39-year-old women (13 office workers, 11 sales-service workers, and 11 college students) who were eligible for the study and free of acute and chronic medical conditions. Salivary CgA and cortisol levels were determined by enzyme-linked immunosorbent assay (ELISA). Saliva samples were collected (2 $m{\ell}$ each) at 7:00, 8:00, 10:30, 12:00, 17:30, and 22:30 on a typical day. Salivary CgA and cortisol levels, according to sampling time, were compared among the three groups using general linear model. The full version of the Korean Occupational Stress Scale (KOSS), which includes socioeconomic characteristics, health behavior, workrelated characteristics, and BMI, was used to access the subjects' job stress. Multiple regression analysis of the job stressors identified by the KOSS was performed on salivary CgA and cortisol levels. Results : The salivary CgA level peaked at 7:00 (time of awakening), then decreased and were maintained at a low level throughout the day, and increased slightly at 17:30. The salivary cortisol level increased steeply within the 1st hour after awakening, followed by a gradual decrease by 12:00, and was then maintained at a low level throughout the day. The salivary cortisol levels of subjects who worked ${\leq}$5 days per week and graduated from the university were significantly lower at 8:00 (p=0.006). The salivary cortisol levels of non-smokers were significantly lower at 7:00 p=0.040) and 8:00 (p=0.003) compared to smokers. There were no significant differences in salivary CgA and cortisol levels at 10:30 and 12:00 in general characteristics. The regression coefficients on salivary CgA level were significant with interpersonal conflict at 17:30 and job insecurity at 22:30. Regression coefficients on salivary cortisol level were significant with organizational system and total job stressors at 17:30. Conclusions : We suggest that the appropriate sampling times for the salivary stress markers, CgA and cortisol, are at 7:00 (time of awakening), 8:00 (1 hour after awakening), 17:30 (early evening), and 22:30 (before sleep).