• 제목/요약/키워드: oxidative stress status

검색결과 212건 처리시간 0.024초

임신 쥐의 철 과잉섭취가 조직의 산화적 스트레스에 미치는 영향 (Effects of Iron Overload during Pregnancy on Oxidative Stress in Maternal Rats)

  • 박미나;이연숙
    • Journal of Nutrition and Health
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    • 제44권1호
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    • pp.5-15
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    • 2011
  • 본 연구는 임신기 동안 어미쥐의 철 섭취 수준이 모체의 철 대사지표와 산화적 스트레스 및 임신의 결과에 미치는 영향을 검토하기 위해 비임신쥐를 대조군으로 하여 수행하였다. 10주령 200 g 이상 된 암컷과 수컷 흰쥐를 1 : 1로 교배시켜 임신을 확인한 후, 비임신쥐 (대조군)와 임신쥐 (실험군)에게 식이 중 철 수준이 정상수준 (AIN-93G diet 수준, 35 mg Fe/kg diet), 고수준 (정상의 10배, 350 mg Fe/kg diet) 및 과잉수준 (정상의 30배, 1,050 mg Fe/kg diet)의 3가지 실험식이를 급여하였다. 임신 19일째 되는 날, 비임신쥐와 임신 쥐를 희생시켜 분석한 결과는 다음과 같다. 체중의 증가나 식이섭취량은 철 섭취 수준의 영향을 받지 않았고, 임신의 결과로서 태아의 수, 태아체중 및 태반무게도 철 섭취 수준의 영향은 받지 않았다. 헤모글로빈, 헤마토크릿, 혈청 철 농도 등의 혈액지표들은 철 섭취 수준의 영향은 받지 않았으나 임신에 의한 감소 경향을 보였다. 임신쥐의 철 섭취 수준의 증가에 따라 간과 지라 조직의 철 함량이 유의적으로 증가하였다. 또한 임신쥐의 간에서 페리틴 단백질 수준이 철 섭취의 증가에 따라 현저히 증가하였다. 산화적 손상지표인 지질과산화물 (MDA)은 철 섭취수준의 영향을 받지 않았고, 단백질 산화물 (protein carbonyls)은 비임신쥐와 임신쥐에서 모두 철 과잉 섭취군의 경우 유의적으로 증가하였다. 항산화효소 중에서는 철 과잉섭취군에서 간의 GPx 활성이 유의적으로 감소하였다. 결론적으로, 임신기 동안 어미쥐의 철 섭취수준의 증가는 어미쥐의 혈액지표와 임신의 결과에는 유의적인 영향을 미치지 않았지만, 간 조직 내 철 함량과 페리틴 단백질 수준을 유의적으로 증가시켰으며, 간 조직에서 단백질 산화물인 protein carbonyl 농도를 증가시키고, 항산화효소 중 특히 GPx의 활성 감소를 초래하였다. 또한 간 조직에서 세포사멸을 억제하는 중요한 인자인 Bcl-2 단백질 수준이 임신쥐에서 철 섭취의 증가에 따라 유의적으로 감소하였다. 이러한 영향이 철을 정상 수준의 10배 섭취한 군에서는 약하게 나타났으나, 30배 과잉으로 철을 섭취한 군에서는 유의적으로 차이를 보였다. 이 결과는 임신시 철 과잉 섭취의 해로운 영향이 지금까지 철 대사의 측정도구로 삼아왔던 혈액지표의 변화 보다는 체내에서 일어나는 조직의 산화적 스트레스의 증가나 조직 내 철의 축적 등에 보다 더 민감하게 반영됨을 알 수 있었다. 따라서, 철 과잉 섭취가 모체 뿐만 아니라 태생 조직의 산화적 스트레스에도 영향을 줄 수 있음을 시사하였다.

Lymphocyte DNA damage and plasma antioxidant status in Korean subclinical hypertensive patients by glutathione S-transferase polymorphism

  • Han, Jeong-Hwa;Lee, Hye-Jin;Choi, Hee Jeong;Yun, Kyung Eun;Kang, Myung-Hee
    • Nutrition Research and Practice
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    • 제11권3호
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    • pp.214-222
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    • 2017
  • BACKGROUND/OBJECTIVES: Glutathione S-transferase (GST) forms a multigene family of phase II detoxification enzymes which are involved in the detoxification of xenobiotics by conjugating substances with glutathione. The aim of this study is to assess the antioxidative status and the degree of DNA damage in the subclinical hypertensive patients in Korea using glutathione S-transferase polymorphisms. SUBJECTS/METHODS: We examined whether DNA damage and antioxidative status show a difference between GSTM1 or GSTT1 genotype in 227 newly diagnosed, untreated (systolic blood pressure $(BP){\geq}130mmHg$ or diastolic $BP{\geq}85mmHg$) subclinical hypertensive patients and 130 normotensive subjects (systolic BP < 120 mmHg and diastolic BP < 80 mmHg). From the blood of the subjects, the degree of the DNA damage in lymphocyte, the activities of erythrocyte superoxide dismutase, the catalase, and the glutathione peroxidase, the level of glutathione, plasma total radical-trapping antioxidant potential (TRAP), anti-oxidative vitamins, as well as plasma lipid profiles and conjugated diene (CD) were analyzed. RESULTS: Of the 227 subjects studied, 68.3% were GSTM1 null genotype and 66.5% were GSTT1 null genotype. GSTM1 null genotype had an increased risk of hypertension (OR: 2.104, CI: 1.38-3.35), but no significant association in GSTT1 null genotype (OR 0.982, CI: 0.62-1.55). No difference in erythrocyte activities of superoxide dismutase, catalase, or glutathione peroxidase, and plasma TRAP, CD, lipid profiles, and GSH levels were observed between GSTM1 or GSTT1 genotype. Plasma levels of ${\alpha}-tocopherol$ increased significantly in GSTT1 wild genotype (P < 0.05); however, plasma level of ${\beta}-carotene$ increased significantly in GSTT1 null genotype (P < 0.01). DNA damage assessed by the Comet assay was significantly higher in GSTM1 null genotype than wild genotype (P < 0.05). CONCLUSIONS: These results confirm the association between GSTM1 null genotype and risk of hypertension as they suggest that GSTM1 null genotype leads to an increased oxidative stress compared with wild genotype.

Growth, Morphology, Cross Stress Resistance and Antibiotic Susceptibility of K. pneumoniae Under Simulated Microgravity

  • Kalpana, Duraisamy;Cha, Hyo-Jung;Park, Moon-Ki;Lee, Yang-Soo
    • 한국환경과학회지
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    • 제21권3호
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    • pp.267-276
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    • 2012
  • Spaceflights results in the reduction of immune status of human beings and increase in the virulence of microorganisms, especially gram negative bacteria. The growth of Klebsiella pneumoniae is enhanced by catecholamines and during spaceflight, elevation in the levels of cortisols occurs. So it is necessary to know the changes in physiology, virulence, antibiotic resistance and gene expression of K. pneumoniae under microgravity conditions. The present study was undertaken to study effect of simulated microgravity on growth, morphology, antibiotic resistance and cross stress resistance of K. pneumoniae to various stresses. The susceptibility of simulated microgravity grown K. pneumoniae to ampicillin, penicillin, streptomycin, kanamycin, hygromycin and rifampicin were evaluated. The growth of bacteria was found to be fast compared with normal gravity grown bacteria and no significant changes in the antibiotic resistance were found. The bacteria cultured under microgravity conferred cross stress resistance to acid, temperature and osmotic stress higher than the normal gravity cultured bacteria but the vice versa was found in case of oxidative stress.

국내 일부 소각장 근로자와 주변지역주민들의 PCDDs/Fs 노출과 건강 영향 평가 (Exposure Assessment of PCDD/Fs and Monitoring of Health Effects on Workers and Resident near the Waste Incinerators in Korea)

  • 홍윤철;이관희;권호장;장재연;임종한
    • Journal of Preventive Medicine and Public Health
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    • 제36권4호
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    • pp.314-322
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    • 2003
  • Objectives : In this study, the exposure status of the hazardous substances from incinerators, such as polychlorinated dibenzo-p-dioxins (PCDDs) and polychlorinated dibenzofurans (PCDFs), were studied , and the relationship between the exposure of these hazardous substances and their heath effects on the workers and residents near municipal solid waste (MSW) incinerators and an industrial incinerator investigated. Methods : Between July 2001 and Jure 2002, 13 workers at two MSW incinerators, 16 residents from the area around the two MSW incinerators, 6 residents from the control area, and further 10 residents near an industrial incinerator, estimated to emit higher levels of hazardous substances, were interviewed. Information, including sociodemographic information, personal habits, and work history, detailed gynecologic and other medical history were collected through interviews. Blood samples were also collected from 45 subjects, and analyzed for PCDD/DFs, by high resolution gas chromatography -high resolution mass spectrometry, using the US EPA 1613 method. In addition to the questionnaire survey, urinary concentrations of 8-hydroxydeoxyguanosine (8-OH-dG) and malondialdehyde (MDA) were measured as oxidative injury biomarkers. The urinary concentrations of 8-OH-dG were determined by in vitro ELISA, and the MDA by HPLC, using u adduct with thiobarbituric acid. Results : The PCDD/DFs concentrations in the residents near the industrial incinerator were higher than those in the controls, workers and residents near the MSW incinerators. The average TEQ (Toxic Equivalencies) concentrations of the PCDD/DFs in residents near the industrial incinerator were 53.4pg I-TEQs/g lipid. The estimated daily intakes were within the tolerable daily intake range (1-4 pg I-TEQ/Kg bw/day) suggested by WHO (1997) in only 30% to the people near the industrial incinerator. Animal studies have already shown that even a low body border of PCDD/DFs, such as 10 ng TEQ/kg bw, can cause oxidative damage in laboratory animals. Our study also showed that the same body burden of PCDD/DFs can cause oxidative damage to humans. Conclusions : The exposures to PCDD/DFs and the oxidative stress of residents near the industrial incinerator, were higher than those in the controls, workers and residents near the MSW incinerators. Proper protection strategies against these hazardous chemicals are needed. Because a lower body burden of PCDD/Fs, such as 10ng TEQ/kg bw, can cause oxidative damage, the tolerable daily intake range should be restrictedly limited to 1pg I-TEQ/kg bw/day.

Protective Efficacy of Alpha-lipoic Acid against AflatoxinB1-induced Oxidative Damage in the Liver

  • Li, Y.;Ma, Q.G.;Zhao, L.H.;Guo, Y.Q.;Duan, G.X.;Zhang, J.Y.;Ji, C.
    • Asian-Australasian Journal of Animal Sciences
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    • 제27권6호
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    • pp.907-915
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    • 2014
  • Alpha-lipoic acid (${\alpha}$-LA) is not only involved in energy metabolism, but is also a powerful antioxidant that can protect against hepatic oxidative stress induced by some drugs, toxins, or under various physiological and pathophysiological conditions. Here, we investigated the effect of ${\alpha}$-LA against liver oxidative damage in broilers exposed to aflatoxin $B_1$ ($AFB_1$). Birds were randomly divided into four groups and assigned different diets: basal diet, 300 mg/kg ${\alpha}$-LA supplementation in basal diet, diet containing 74 ${\mu}g/kg$ $AFB_1$, and 300 mg/kg ${\alpha}$-LA supplementation in diet containing 74 ${\mu}g/kg$ $AFB_1$, for 3 weeks. The results revealed that the addition of 300 mg/kg ${\alpha}$-LA protected against the liver function damage of broilers induced by chronic low dose of $AFB_1$ as estimated by a significant (p<0.05) change in levels of plasma total protein, albumin, alkaline phosphatase and the activities of liver glutamic-oxalacetic transaminase and glutamic-pyruvic transaminase. The histopathological analysis also showed that liver tissues were injured in the $AFB_1$ diet, but this effect was alleviated by the addition of 300 mg/kg ${\alpha}$-LA. Additionally, $AFB_1$ induced a profound elevation of oxidative stress in birds, as indicated by an increase in malondialdehyde level, a decrease in glutathione peroxidase activity and a depletion of the glutathione content in the liver. All of these negative effects were inhibited by treatment with ${\alpha}$-LA. Our results suggest that the inhibition of $AFB_1$-induced excess production of lipid peroxides and the maintenance of intracellular antioxidant status may play important roles in the protective effects of ${\alpha}$-LA against $AFB_1$-induced oxidative damage in the liver.

대학생들의 생활습관과 혈청 항산화비타민 및 지질상태의 관련성에 관한 연구 (The Relationship between the Life Style and the Status of Serum Lipis and Antioxidant Vitamins in University Students)

  • 권정숙;한은화;윤수홍;장현숙
    • 한국식품영양과학회지
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    • 제28권1호
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    • pp.257-264
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    • 1999
  • This study was undertaken to investigate the relationship between the life style and the nutritional status of serum antioxidant vitamins and lipids in university male and female students. 48 male and 49 female students attending Andong university, aged between 18 and 25 years, were selected. Questions about the life styles including dietary intakes, food habits, smoking, drinking alcohol, exercise, stress were answered. And serum levels of antioxidant vitamins and lipids were determined. Average serum levels of total cholesterol, LDL C, HDL C, and triglyceride in male and female subjects were 158.6$\pm$32.7, 177.3$\pm$33.8; 86.4$\pm$26.0, 109.0$\pm$31.2; 46.0$\pm$10.7, 49.9$\pm$12.4; 131.2$\pm$22.5, 91.7$\pm$ 38.6mg/dl respectively. Average serum levels of antioxidant vitamin A, E and C in male and female subjects were 42.6$\pm$12.3, 31.4$\pm$9.8 g/dl, 1.11$\pm$0.38, 1.15$\pm$0.29mg/dl and 164.66 $\pm$65.01, 220.06$\pm$80.11 g/dl respectively. There was no significant difference between smoking habits and either serum lipids or antioxidant vitamins level. The serum vitamin C level of drinkers was significantly lower(p=0.038), but serum lipids(total cholesterol, LDL C, and triglyceride) were higher than non alcoholic subjects. The subjects with severe stress had lower in HDL C and higher in atherogenic index than others. This result indicates that oxidative stress may be increased in stressful environment from undesirable life styles and influence the status of serum lipid and antioxidant vitamins.

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Coenzyme Q10: a progress towards the treatment of neurodegenerative disease

  • Kumar, Peeyush;Kumar, Pramod;Ram, Alpana;Kuma, Mithilesh;Kumar, Rajeev
    • Advances in Traditional Medicine
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    • 제10권4호
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    • pp.239-253
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    • 2010
  • Coenzyme $Q_{10}$ ($CoQ_{10}$, or ubiquinone) is an electron carrier of the mitochondrial respiratory chain (electron transport chain) with antioxidant properties. In view of the involvement of $CoQ_{10}$ in oxidative phosphorylation and cellular antioxidant protection a deficiency in this quinone would be expected to contribute to disease pathophysiology by causing a failure in energy metabolism and antioxidant status. Indeed, a deficit in $CoQ_{10}$ status has been determined in a number of neuromuscular and neurodegenerative disorders. Primary disorders of $CoQ_{10}$ biosynthesis are potentially treatable conditions and therefore a high degree of clinical awareness about this condition is essential. A secondary loss of $CoQ_{10}$ status following HMG-CoA reductase inhibitor (statins) treatment has been implicated in the pathophysiology of the myotoxicity associated with this pharmacotherapy. $CoQ_{10}$ and its analogue, idebenone, have been widely used in the treatment of neurodegenerative and neuromuscular disorders. These compounds could potentially play a role in the treatment of mitochondrial disorders, Parkinson's disease, Huntington's disease, amyotrophic lateral sclerosis, Friedreich's ataxia, and other conditions which have been linked to mitochondrial dysfunction. This article reviews the physiological roles of $CoQ_{10}$, as well as the rationale and the role in clinical practice of $CoQ_{10}$ supplementation in different neurological diseases, from primary $CoQ_{10}$ deficiency to neurodegenerative disorders. These will help in future for treatment of patients suffering from neurodegenerative disease.

A Comparison of Natural (D-α-tocopherol) and Synthetic (DL-α-tocopherol Acetate) Vitamin E Supplementation on the Growth Performance, Meat Quality and Oxidative Status of Broilers

  • Cheng, K.;Niu, Y.;Zheng, X.C.;Zhang, H.;Chen, Y.P.;Zhang, M.;Huang, X.X.;Zhang, L.L.;Zhou, Y.M.;Wang, T.
    • Asian-Australasian Journal of Animal Sciences
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    • 제29권5호
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    • pp.681-688
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    • 2016
  • The present study was conducted to compare the supplementation of natural (D-${\alpha}$-tocopherol) and synthetic (DL-${\alpha}$-tocopherol acetate) vitamin E on the growth performance, meat quality, muscular antioxidant capacity and genes expression related to oxidative status of broilers. A total of 144 1 day-old Arbor Acres broiler chicks were randomly allocated into 3 groups with 6 replicates of 8 birds each. Birds were given a basal diet (control group), and basal diet supplemented with either 20 IU D-${\alpha}$-tocopherol or DL-${\alpha}$-tocopherol acetate for 42 days, respectively. The results indicated that treatments did not alter growth performance of broilers (p>0.05). Compared with the control group, concentration of ${\alpha}$-tocopherol in the breast muscle was increased by the supplementation of vitamin E (p<0.05). In the thigh, ${\alpha}$-tocopherol content was also enhanced by vitamin E inclusion, and this effect was more pronounced in the natural vitamin E group (p<0.05). Vitamin E supplementation increased the redness of breast (p<0.05). In the contrast, the inclusion of synthetic vitamin E decreased lightness of thigh (p<0.05). Dietary vitamin E inclusion reduced drip loss at 24 h of thigh muscle (p<0.05), and this effect was maintained for drip loss at 48 h in the natural vitamin E group (p<0.05). Broilers given diet supplemented with vitamin E showed decreased malondialdehyde (MDA) content in the breast (p<0.05). Additionally, natural rather than synthetic vitamin E reduced MDA accumulation in the thigh (p<0.05). Neither natural nor synthetic vitamin E supplementation altered muscular mRNA abundance of genes related to oxidative stress (p>0.05). It was concluded that vitamin E supplementation, especially the natural vitamin E, can enhance the retention of muscular ${\alpha}$-tocopherol, improve meat quality and muscular antioxidant capacity of broilers.

Significance of $p27^{kip1}$ as potential biomarker for intracellular oxidative status

  • Quintos, Lesley;Lee, In-Ae;Kim, Hyo-Jung;Lim, Ji-Sun;Park, Ji-A;Sung, Mi-Kyung;Seo, Young-Rok;Kim, Jong-Sang
    • Nutrition Research and Practice
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    • 제4권5호
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    • pp.351-355
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    • 2010
  • Our previous proteomic study demonstrated that oxidative stress and antioxidant delphinidin regulated the cellular level of $p27^{kip1}$ (referred to as p27) as well as some heat shock proteins in human colon cancer HT 29 cells. Current study was conducted to validate and confirm the regulation of these proteins using both in vitro and in vivo systems. The level of p27 was decreased by hydrogen peroxide in a dose-dependent manner in human colon carcinoma HCT 116 (p53-positive) cells while it was increased upon exposure to hydrogen peroxide in HT 29 (p53-negative) cells. However, high concentration of hydrogen peroxide (100 ${\mu}M)$ downregulated p27 in both cell lines, but delphindin, one of antioxidative anthocyanins, enhanced the level of p27 suppressed by 100 ${\mu}M$ hydrogen peroxide. ICR mice were injected with varying concentrations of hydrogen peroxide, delphinidin and both. Western blot analysis for the mouse large intestinal tissue showed that the expression of p27 was upregulated by 25 mg/kg BW hydrogen peroxide. To investigate the association of p27 regulation with hypoxia-inducible factor 1-beta (HIF-$1{\beta}$), the level of p27 was analyzed in wild-type mouse hepatoma hepa1c1c7 and Aryl Hydrocarbon Nuclear Translocator (arnt, HIF-$1{\beta}$)-defective mutant BPRc1 cells in the absence and presence of hydrogen peroxide and delphinidin. While the level of p27 was responsive to hydrogen peroxide and delphinidin, it remained unchanged in BPRc1, suggesting that the regulation of p27 requires functional HIF-$1{\beta}$. We also found that hydrogen peroxide and delphinidin affected PI3K/Akt/mTOR signaling pathway which is one of upstream regulators of HIFs. In conclusion, hydrogen peroxide and antioxidant delphinidin seem to regulate intracellular level of p27 through regulating HIF-1 level which is, in turn, governed by its upstream regulators comprising of PI3K/Akt/mTOR signaling pathway. The results should also encourage further study for the potential of p27 as a biomarker for intracellular oxidative or antioxidant status.

Relationship between reactive oxygen species and autophagy in dormant mouse blastocysts during delayed implantation

  • Shin, Hyejin;Choi, Soyoung;Lim, Hyunjung Jade
    • Clinical and Experimental Reproductive Medicine
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    • 제41권3호
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    • pp.125-131
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    • 2014
  • Objective: Under estrogen deficiency, blastocysts cannot initiate implantation and enter dormancy. Dormant blastocysts live longer in utero than normal blastocysts, and autophagy has been suggested as a mechanism underlying the sustained survival of dormant blastocysts during delayed implantation. Autophagy is a cellular degradation pathway and a central component of the integrated stress response. Reactive oxygen species (ROS) are produced within cells during normal metabolism, but their levels increase dramatically under stressful conditions. We investigated whether heightened autophagy in dormant blastocysts is associated with the increased oxidative stress under the unfavorable condition of delayed implantation. Methods: To visualize ROS production, day 8 (short-term dormancy) and day 20 (long-term dormancy) dormant blastocysts were loaded with $1-{\mu}M$ 5-(and-6)-chloromethyl-2', 7'-dichlorodihydrofluorescein diacetate, acetyl ester (CM-$H_2DCFDA$). To block autophagic activation, 3-methyladenine (3-MA) and wortmannin were used in vivo and in vitro, respectively. Results: We observed that ROS production was not significantly affected by the status of dormancy; in other words, both dormant and activated blastocysts showed high levels of ROS. However, ROS production was higher in the dormant blastocysts of the long-term dormancy group than in those of the short-term group. The addition of wortmannin to dormant blastocysts in vitro and 3-MA injection in vivo significantly increased ROS production in the short-term dormant blastocysts. In the long-term dormant blastocysts, ROS levels were not significantly affected by the treatment of the autophagy inhibitor. Conclusion: During delayed implantation, heightened autophagy in dormant blastocysts may be operative as a potential mechanism to reduce oxidative stress. Further, ROS may be one of the potential causes of compromised developmental competence of long-term dormant blastocysts after implantation.