• 제목/요약/키워드: oocyte aging

검색결과 13건 처리시간 0.02초

Nitric Oxide-induced Protein S-nitrosylation Causes Mitochondrial Dysfunction and Accelerates Post-ovulatory Aging of Oocytes in Cattle

  • Niu, Ying-Jie;Zhou, Dongjie;Zhou, Wenjun;Nie, Zheng-Wen;Kim, Ju-Yeon;Oh, YoungJin;Lee, So-Rim;Cui, Xiang-Shun
    • 한국동물생명공학회지
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    • 제35권1호
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    • pp.102-111
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    • 2020
  • Nitric oxide (NO)-induced protein S-nitrosylation triggers mitochondrial dysfunction and was related to cell senescence. However, the exact mechanism of these damages is not clear. In the present study, to investigate the relationship between in vitro aging and NO-induced protein S-nitrosylation, oocytes were treated with sodium nitroprusside dihydrate (SNP), and the resultant S-nitrosylated proteins were detected through biotin-switch assay. The results showed that levels of protein S-nitroso thiols (SNO)s and expression of S-nitrosoglutathione reductase (GSNOR) increased, while activity and function of mitochondria were impaired during oocyte aging. Addition of SNP, a NO donor, to the oocyte culture led to accelerated oocyte aging, increased mitochondrial dysfunction and damage, apoptosis, ATP deficiency, and enhanced ROS production. These results suggested that the increased NO signal during oocyte aging in vitro, accelerated oocyte degradation due to increased protein S-nitrosylation, and ROS-related redox signaling.

Caffeine Treatment during Oocyte Aging Improves the Developmental Rate and Quality in Bovine Embryos Developing In Vitro

  • Choi, Hyun-Yong;Lee, Sung-Hyun;Xu, Yong-Nan;Lee, Seung-Eun;Kim, Nam-Hyung
    • Reproductive and Developmental Biology
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    • 제37권4호
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    • pp.281-287
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    • 2013
  • In mammal, unfertilized oocytes remain in the oviduct or under in vitro culture, which is called "oocyte aging". This asynchrony negatively affects fertilization in pre- and post-implantation embryo development. Caffeine a phosphodiesterase inhibitor is known to rescue oocyte aging in several species. The objective of this study is to determine the cytoskeleton distribution in aged oocytes and the embryo developmental ability of aged oocytes in the present or absence of caffeine during maturation. Caffeine treatment increased the incidence of normal spindle assembly of aged oocytes (treatment, $67.57{\pm}4.11%$ aging, $44.61{\pm}6.4%$) and no significant differences compared to control group. Fluorescence values were compared using ROS (Reactive oxidation species) stain. Fluorescence values appear of control group intensity rate ($51.53.{\pm}3.80$), aging group ($68.10{\pm}5.54$) and treatment of caffeine ($45.04{\pm}2.98$). Aged oocytes that were derived from addition of caffeine to the IVM (in vitro maturation) medium had significantly increased 2-cell that developed to the blastocyst stage compared to the aging group. Blastocysts, derived from caffeine treatment group, significantly increased the total cell number compare aging ($90.44{\pm}10.18$ VS $67.88{\pm}7.72$). Apoptotic fragments of genomic DNA were measured in individual embryo using TUNEL assay. Blastocyst derived from caffeine treatment group decreased significantly the apoptotic index compared to blastocyst derived from aging group. In conclusion, we inferred that the caffeine treatment during oocyte aging can improve the developmental rate and quality in bovine embryos developing in vitro.

DNA damage repair is suppressed in porcine aged oocytes

  • Lin, Tao;Sun, Ling;Lee, Jae Eun;Kim, So Yeon;Jin, Dong Il
    • Journal of Animal Science and Technology
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    • 제63권5호
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    • pp.984-997
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    • 2021
  • This study sought to evaluate DNA damage and repair in porcine postovulatory aged oocytes. The DNA damage response, which was assessed by H2A.X expression, increased in porcine aged oocytes over time. However, the aged oocytes exhibited a significant decrease in the expression of RAD51, which reflects the DNA damage repair capacity. Further experiments suggested that the DNA repair ability was suppressed by the downregulation of genes involved in the homologous recombination (HR) and nonhomologous end-joining (NHEJ) pathways. The expression levels of the cell cycle checkpoint genes, CHEK1 and CHEK2, were upregulated in porcine aged oocytes in response to induced DNA damage. Immunofluorescence results revealed that the expression level of H3K79me2 was significantly lower in porcine aged oocytes than in control oocytes. In addition, embryo quality was significantly reduced in aged oocytes, as assessed by measuring the cell proliferation capacity. Our results provide evidence that DNA damage is increased and the DNA repair ability is suppressed in porcine aged oocytes. These findings increase our understanding of the events that occur during postovulatory oocyte aging.

Bezafibrate prevents aging in in vitro-matured porcine oocytes

  • Kim, Ju-Yeon;Zhou, Dongjie;Cui, Xiang-Shun
    • Journal of Animal Science and Technology
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    • 제63권4호
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    • pp.766-777
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    • 2021
  • Bezafibrate, a fibrate drug used as a lipid-lowering agent to treat hyperlipidemia, is a pan-agonist of peroxisome proliferator-activated receptor alpha. It can enhance mitochondrial fatty acid oxidation, oxidative phosphorylation, and mitochondrial biogenesis. After ovulation, oocytes may get arrested at the metaphase II (MII) stage until fertilization beyond optimal timing, which is termed as post-ovulatory aging. Post-ovulatory aging is a disease that degrades DNA, mitochondria, and oxidative system, and has a negative impact on embryo development and quality; however, the impact of bezafibrate during post-ovulatory aging has not been fully defined. In the present study, we assessed the ability of bezafibrate to prevent the progression of aging in in vitro conditions as well as the underlying mechanisms in pigs. An appropriate concentration of this drug (50 µM) was added, and then oxidative stress, reactive oxygen species downstream, mitochondrial biogenesis, and mitochondrial function were analyzed via immunofluorescence staining and real-time polymerase chain reaction. Bezafibrate significantly alleviated reactive oxygen species and ameliorated glutathione production simultaneously in oocytes and embryos. Moreover, it diminished H2A.X and attenuated CASPASE 3 expression produced by oxidative stress in oocytes and embryos. Furthermore, bezafibrate remarkably improved the mitochondrial function and blastocyst quality as well as markedly reduced the mitochondria/TOM20 ratio and mtDNA copy number. The elevated PARKIN level indicated that mitophagy was induced by bezafibrate treatment after post-ovulatory aging. Collectively, these results suggest that bezafibrate beneficially affects against porcine post-ovulatory oocyte aging in porcine by its antioxidant property and mitochondrial protection.

Effect of MLN8237, a Novel Aurora A Kinase Inhibitor, on the Spontaneous Fragmentation of Ovulated Mouse Oocytes

  • Park, Ji-Hun;Choi, Tae-Saeng
    • Reproductive and Developmental Biology
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    • 제35권4호
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    • pp.499-502
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    • 2011
  • Aurora A kinase is a mitotic serine/threonine kinase whose proposed functions include the maturation of centrosomes, G2/M transition, alignment of chromosomes at metaphase, and cytokinesis. In this study, we investigated the effect of MLN8237, an aurora A kinase inhibitor, on the postovulatory aging of oocytes based on the frequency of oocyte fragmentation, cdk1 kinase activity, and cyclin B degradation. The fragmentation of ovulated oocytes during prolonged culture was inhibited by treatment with MLN8237 in a concentration-dependent manner. The frequency of fragmented oocytes was significantly lower in oocytes treated with 2 ${\mu}M$ MLN8237 (13%) than in control oocytes (64%) after two days of culture. Most of the control (non-fragmented) oocytes (91%) were activated after two days of culture. In comparison, only 22% of the MLN8237-treated oocytes were activated; the rest of the oocytes (78%) were still in metaphase with an abnormal spindle and dispersed chromosomes. Next, cdk1 activity and the level of cyclin B were examined. The level of cyclin B and cdk1 activity in MLN8237-treated oocytes were nearly equal to those in control oocytes. Our results indicate that MLN8237 inhibited the fragmentation of ovulated oocytes during prolonged culture, although it blocked the spontaneous decrease in activity of cdk1 and degradation of cyclin B. This mechanism of inhibition is different from that in oocytes treated with nocodazole, which have high levels of cdk1 activity and cyclin B.

암컷 설치류에서의 생식 노화 (Reproductive Aging in Female Rodents)

  • 이성호
    • 한국발생생물학회지:발생과생식
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    • 제11권1호
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    • pp.13-20
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    • 2007
  • 암컷 포유동물의 노화 과정에서 생식계는 체내 여러 시스템 가운데 가장 먼저 기능 저하가 나타난다. 생식 노화(reproductive aging) 과정 중인 암컷 포유동물은 비록 종 특이성이 있지만 주기성(cyclicity)의 소실과 같은 생식 능력의 감소와 함께 여러 기능들의 변화가 동반되면서 궁극적으로 인간의 폐경 현상과 같은 생식 능력 상실이 나타난다. 본 증설은 암컷 포유동물의 생식호르몬 축, 특히 신경내분비 회로의 노화에 대한 정보들과 노화 연구에 유용한 설치류 모델들을 소개하고자 한다. 암컷 설치류의 중년(middle age, 생후 $8{\sim}12$개월)은 인간의 폐경기 진입 직전에 해당되는 시기로, 이 시기에 시상하부 GnRH 분비의 맥동성과 급등(surge)이 현저히 지연되기 시작하고, 곧 이어 뇌하수체 LH 분비의 맥동성과 급등이 역시 약화 내지 지연된다. 노화와 관련된 GnRH-LH 신경내분비 활성의 결손은 시상하부 GnRH 뉴런의 활성을 조절하는 여러 자극(예, glutamate)들의 변화와 밀접하게 연관되어 있다. 많은 연구자들이 이러한 '시상하부 결손(hypothalamic defects)'이 생식 노화의 주된 요인임을 지지하지만, inhibin과 같은 난소 요인의 변화 역시 생식 노화의 유도와 관련된 것으로 보인다. 생식 노화를 연구함에 유용한 몇몇 설치류 모델이 있다; FSH 수용체 녹아웃(follitropin receptor knockout; FORKO) 생쥐 모델의 경우는 homozygous(null) 뿐만 아니라 heterozygous(haploinsufficient) 상태도 노화에 따른 난자/난포의 고갈을 나타낸다. Dioxin/aryl hydrocarbon 수용체 녹아웃 (AhRKO) 생쥐 모델도 유사한 상태를 유발할 수 있다. 생식 노화의 기작에 관한 연구는 삶의 질을 높이기 위한 수단들, 예를 들어 호르몬 보충요법(HRT)의 장단점을 평가하고 안전성을 제고하는데 도움이 될 것이다.

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The antioxidant icariin protects porcine oocytes from age-related damage in vitro

  • Yoon, Jae-Wook;Lee, Seung-Eun;Park, Yun-Gwi;Kim, Won-Jae;Park, Hyo-Jin;Park, Chan-Oh;Kim, So-Hee;Oh, Seung-Hwan;Lee, Do-Geon;Pyeon, Da-Bin;Kim, Eun-Young;Park, Se-Pill
    • Animal Bioscience
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    • 제34권4호
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    • pp.546-557
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    • 2021
  • Objective: If fertilization does not occur within a specific period, the quality of unfertilized oocytes in the oviduct (in vivo aging) or in culture (in vitro aging) will deteriorate over time. Icariin (ICA), found in all species of Epimedium herbs, has strong antioxidant activity, and is thought to exert anti-aging effects in vitro. We asked whether ICA protects oocytes against age-related changes in vitro. Methods: We analyzed the reactive oxygen species (ROS) levels and expression of antioxidant, maternal, and estrogen receptor genes, and along with spindle morphology, and the developmental competence and quality of embryos in the presence and absence of ICA. Results: Treatment with 5 μM ICA (ICA-5) led to a significant reduction in ROS activity, but increased mRNA expression of glutathione and antioxidant genes (superoxide dismutase 1 [SOD1], SOD2, peroxiredoxin 5, and nuclear factor erythroid 2-like 2), during aging in vitro. In addition, ICA-5 prevented defects in spindle formation and chromosomal alignment, and increased mRNA expression of cytoplasmic maturation factor genes (bone morphogenetic protein 15, cyclin B1, MOS proto-oncogene, serine/threonine kinase, and growth differentiation factor-9). It also prevented apoptosis, increased mRNA expression of antiapoptotic genes (BCL2-like 1 and baculoviral IAP repeat-containing 5), and reduced mRNA expression of pro-apoptotic genes (BCL2 antagonist/killer 1 and activation of caspase-3). Although the maturation and cleavage rates were similar in all groups, the total cell number per blastocyst and the percentage of apoptotic cells at the blastocyst stage were higher and lower, respectively, in the control and ICA-5 groups than in the aging group. Conclusion: ICA protects oocytes against damage during aging in vitro; therefore, it can be used to improve assisted reproductive technologies.

한우 체외수정란을 이용한 핵 이식배의 체외발달에 관한 연구 (In Vitro Development of Nuclear Transplantation Bovine Embryos Using In Vitro Fertilized Embryos of Korean Native Heifers)

  • 박충생;공일근;노규진;이효종;최상용
    • 한국가축번식학회지
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    • 제18권2호
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    • pp.113-119
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    • 1994
  • To improve nuclear transplantation(NT) efficiency and to produce a large scale genetically identical cloned calves, examined the in vitro development capacity after co-culture of bovine oviductal epithelial cells (BOEC) and granulosa cells in TCM-199 supplemented with 10% fetal calf serum (FCS) with early bovine embryos derived from in vitro matured fertilized(IVM-IVF) oocyte. In addition, the age dependence of IVM oocyte on electro-stimulation and the effective electric voltage on in ivtro development of bovine NT embryos were examined. The results obtained were summerized as follows; 1. The cleavage rates of IVM-IVF bovine embryos in co-culture with bovine oviductal epithelial cells and granulosa cells were not significantly different(P<0.05), but the developmental rate into morula and blastocyst stage were different showing 38.3 and 20.2%, respectively. 2. The activation (82.5%) and development in vitro(8.6%) into later embryo stages of the aging oocytes of 32 hours post-maturation (hpm) were significantly higher than those of 24 hpm at direct current (DC) voltage of 1.5kV/cm, 60$\mu$sec pulse duration and 1 pulse time. 3. The fusion rates of NT eggs of 32 hpm following to different DC voltages from range 0.75 to 1.5kV/cm were not differ, but the developmental rate into morula and blastocyst stages at DC voltages of 0.75 and 1.0kV/cm were higher(11.4 and 12.6%, respectively) than those of 1.5kV/cm(0%). From these results, it can be suggested the optimal culture system for in vitro culture of IVM-IVF bovine embryos is a co-culture system with BOEC in TCM-199 supplemented 10% FCS. The effective time and the DC voltage for activation, electrofusion and in vitro development of NT embryos derived from IVM-IVF bovine embryo are 32hpm and 0.75~1.0kV/cm. But to improve NT efficiency, the advanced research (cell cycle synchronization, micromanipulation, culture system, etc.) is needed.

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닭의 모체 연령에 따른 생산 배아의 염색체 이상 빈도 및 텔로미어 함량 분석 (Effect of Maternal Age on Chromosome Aberrations and Telomere Quantity in Chick Embryos)

  • 이수희;;손시환
    • 한국가금학회지
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    • 제36권4호
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    • pp.293-300
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    • 2009
  • 모체 출산 연령이 늦어짐에 따라 태아의 염색체 이상 빈도는 증가하는 것으로 알려져 있는데, 이는 난자의 노화에 따른 염색체의 비분리 현상의 증가 등이 주된 원인이다. 염색체 양 말단에 존재하는 텔로미어는 염색체의 안정성에 관여하고 세포분열이 진행됨으로써 이의 길이가 짧아져 노화의 지표로 활용되고 있다. 따라서 본 연구는 모체의 노화가 생산 배아에 미치는 영향을 알아보기 위하여 닭의 산란 연령별 배아의 염색체 이상 빈도와 이들의 텔로미어 함량을 분석하였다. 시험 분석은 20주령에서부터 70주령까지의 화이트 레그혼 종을 공시하고 10주 간격으로 생산된 수정란의 초기 배아에 대한 핵형 분석과 양적형광보인법(Q-FISH)을 이용한 모계 및 생산 배아의 텔로미어 함량을 분석하였다. 분석 결과, 초기 배아의 염색체 이상 빈도는 산란 연령에 따른 유의적인 차이가 있었는데, 산란 초기에 상대적으로 높은 염색체 이상 빈도를 보이다가 산란 중기에서 안정된 빈도를 유지하고, 후기부터 다시 이상 빈도가 증가하는 양상을 보여 모체의 노화가 태아의 염색체 이상 빈도에 영향을 미치는 것으로 나타났다. 개체의 텔로미어 함량은 연령이 증가함에 따라 점진적 감소 양상을 나타내는 반면, 모계 연령에 따른 생산 배아들의 텔로미어 함량은 연령 간에 차이가 없는 것으로 나타나 모체의 노화가 수정 배아의 텔로미어 함량에는 영향을 미치지 않는 것으로 보여진다. 이는 배란 후 수정이 된 배아는 초기 발생 과정 중 세포들의 reprograming이 일어나 텔로미어가 복구됨을 의미한다.

The Beneficial Effects of Ferulic Acid supplementation during In Vitro Maturation of Porcine Oocytes on Their Parthenogenetic Development

  • Lee, Kyung-Mi;Hyun, Sang-Hwan
    • 한국수정란이식학회지
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    • 제32권4호
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    • pp.257-265
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    • 2017
  • Ferulic Acid (FA) is a metabolite of phenylalanine and tyrosine, a phenolic compound commonly found in fruits and vegetables. Several studies have shown that FA has various functions such as antioxidant effect, prevention of cell damage from irradiation, protection from cell damage caused by oxygen deficiency, anti-inflammatory action, anti-aging action, liver protective effect and anti-cancer action. In this study, we investigated the maturation rate, intracellular glutathione (GSH) and reactive oxygen species (ROS) of porcine oocytes by adding FA to the in vitro maturation (IVM) medium and examined subsequent embryonic developmental competence at 5% oxygen through parthenogenesis. There is no significant difference between the control group ($0{\mu}M$) and treatment groups ($5{\mu}M$, $10{\mu}M$, $20{\mu}M$) on maturation rates. Intracellular GSH levels in oocyte treated with $5{\mu}M$ of FA significantly increased (P < 0.05), and $20{\mu}M$ of FA revealed significant decrease (P < 0.05) in intracellular ROS levels compared with the control group. Oocytes treated with FA exhibited significantly higher cleavage rates (79.01% vs 89.19%, 92.20%, 90.89%, respectively) than the control group. Oocytes treated with $10{\mu}M$ showed significantly higher blastocyst formation rates (28.3% vs 40.3%, respectively) after PA than the control group. Total cell numbers in blastocyst of $10{\mu}M$ FA displayed significantly higher (39.4 vs 51.9, respectively) than the control group. In conclusion, these results suggested that treatment with FA during IVM improved the developmental potential of porcine embryos by increasing intracellular GSH synthesis and reducing ROS levels. Also, there was an improvement of cleavage rate, blastocyst formation and total cell numbers in blastocysts. It might be associated with Keap1-Nrf2 pathway as an antioxidant regulate pathway that plays a crucial role in determining the sensitivity of cells to oxidative damages by regulating the basal and inducible expression of enzymes which is related to detoxification and anti-oxidative effects, stress response enzymes and/or proteins and ABC transporters.