• 제목/요약/키워드: hypoxia

검색결과 825건 처리시간 0.026초

저산소 조건하에서 맥류 유묘의 근생장 및 혐기발효 효소의 반응 (Effects of Hypoxia on Root Growth and Anaerobic Fermentative Enzymes in Winter Cereal Seedlings)

  • 박명렬;임정현;유남희;권인숙;김정곤;최경구;윤성중
    • 한국작물학회지
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    • 제50권6호
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    • pp.400-405
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    • 2005
  • 본 연구에서는 맥류 습해의 원인인 과습에 의한 근권의 산소부족이 맥류 뿌리의 생장 및 혐기 발효대사 효소(alcohol dehydrogenase, ADH; lactate dehydrogenase, LDH)에 미치는 영향을 조사하였다. 양액재배를 이용하여 1.5엽기 맥류 유묘에 용존산소 1.5-2 ppm 정도의 혐기처리를 1, 3, 5, 7일간 실시하였다. 혐기조건에서 뿌리의 생장은 모든 맥종에서 감소하였으며, 감소정도는 내습성이 낮은 보리가 내습성이 높은 밀과 호밀보다 낮았다. 정상조건에서 ADH 활성은 보리가 LDH 활성은 호밀이 가장 높았으나 두 효소 모두 맥종 간의 차이는 크지 않았다. 혐기처리에 의해 ADH와 LDH 활성은 모든 맥종에서 공통적으로 증가하였으며 증가 정도는 호밀과 밀에서 가장 높았고 보리에서 가장 낮았다. 혐기조건에서 이들 효소의 활성증가는 모든 맥종에서 유사하게 항시발현 동위효소의 증가 및 새로운 동위효소의 발현유도에 의해 나타났다. 혐기조건에서 ADH와 LDH 활성 증가 정도는 맥종의 재해저항성과 정의 상관관계가 인정되었다. 이러한 결과는 맥류의 내습성에 혐기 발효계 효소가 관여하고 있음을 의미하는 것으로 판단된다.

저산소 환경에 대한 전체 유전자 발현 반응에서 미토콘드리아 호흡계의 연루 (Whole-genome Transcriptional Responses to Hypoxia in Respiration-proficient and Respiration-deficient Yeasts: Implication of the Mitochondrial Respiratory Chain in Oxygen-regulated Gene Expression)

  • 이보영;이종환;변준호;우동균
    • 생명과학회지
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    • 제26권10호
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    • pp.1137-1152
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    • 2016
  • 세포는 다양한 인체 질환에 관련되어 있는 저산소 환경을 인지하고 반응하며 적응한다. 저산소 상태에 적응하기 위해서는 hypoxic 유전자의 발현을 증가시키고 aerobic 유전자의 발현을 감소시키는 유전자 발현 조절이 필요하다. 최근 연구에서 미토콘드리아 호흡계가 이러한 유전자 발현 조절에 관여됨이 밝혀지고 있다. 본 연구에서는 호흡이 가능한 곰팡이(Saccharomyces cerevisiae)와 호흡이 불가능한 돌연변이 곰팡이를 실험대상으로 하여 미토콘드리아 호흡계가 저산소 환경에서 유전자 발현 조절에 관여됨을 DNA microarray 기법을 이용하여 전체 유전자를 대상으로 조사하였다. 산소 농도가 감소함에 반응하여 많은 유전자의 발현에 변화가 있었으며, 이러한 차별적인 발현 양상을 보이는 유전자는 여러 그룹으로 분류할 수 있었다. 대부분의 hypoxic 그리고 aerobic 유전자는 저산소 상태에 적응하는 발현 양상을 위해서는 미토콘드리아 호흡계가 필요하였다. 그러나 일부 hypoxic 그리고 aerobic 유전자는 미토콘드리아 호흡계와 무관하게 저산소 상태에 적응하는 발현 양상을 보였다. 이러한 결과는 미토콘드리아 호흡계가 저산소 환경에 적응하는 유전자 발현 조절에 필요하며, 또한 여러 기전을 통하여 이러한 유전자 발현 조절에 관여함을 제시한다. 또한 microarray 실험 결과에서 도출된 산소 농도에 대해 차별적인 발현을 보이는 유전자에 대하여 gene ontology 및 promoter 분석을 수행하였고 이러한 추가 분석 결과는 산소에 의해 조절되는 유전자와 함께 세포가 저산소 환경에 적응하는 기작을 이해하는 데 유용한 자료가 될 것으로 기대된다.

가미지황환이 저산소성 신경세포 손상에 미치는 영향 (Influence of Kamijihwang-hwan on the Hypoxic Damage of Cultured Cerebral Neurons from mouse and SK-N-MC cells)

  • 백은경;주성민;김근중;김대근;강정호;이영찬;이준;김영목;전병훈
    • 동의생리병리학회지
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    • 제17권4호
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    • pp.1082-1091
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    • 2003
  • To elucidate the neuroprotective effect of Kamijihwang-hwan(KSH) on nerve cells damaged by hypoxia, the cytotoxic effects of exposure to hypoxia were determined by XTT, NR, MTT and SRB asssay. The activity of catalase and SOD was measured by spectrophometry, and TNF-α and PKC activity was measured after exposure to hypoxia and treatment of Kamijihwang-hwan(KSH) water extract(KJHWE). Also the neuroprotective effect of KJHWE was researched for the elucidation of neuroprotective mechanism. The results were as follows ; Hypoxia decreased cell viability measured by XTT, NR assay when cultured cerebral neurons were exposed to 95% N2/5% CO₂ for 2~26 minutes in these cultures and KJHWE inhibited the decrease of cell viability. H₂O₂ treatment decreased cell viability measured by MTT, and SRB assay when cultured cerebral neurons were exposed to 1-80 uM for 6 hours, but KJHWE inhibited the decrease of cell viability. Hypoxia decreased catalase and SOD activity, and also TNF-α and PKC activity in these cultured cerebral neurons, but KJHWE inhibited the decrease of the catalase and SOD activity in these cultures. Hypoxia triggered the apoptosis via caspase activation and internucleosomal DNA fragmentation. Also hypoxia stimulate the release of cytochrome c form mitochondria. KJHWE inhibited the apoptosis via caspase activation induced by hypoxia. From these results, it can be suggested that brain ischemia model induced hypoxia showed neurotoxity on cultured mouse cerebral neurons, and the KJHWE has the neuroprotective effect in blocking the neurotoxity induced by hypoxia in cultured mouse cerebral neurons.

둥근성게 (Strongylocentrotus nudus)의 수정과 초기 배발생에 미치는 빈산소의 영향 (Effects of Hypoxia on the Fertilization and Early Development of Sea Urchin, Strongylocentrotus nudus)

  • 이건섭;황진익;정영재;김동균;모상현;장만;이택견
    • 한국산학기술학회논문지
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    • 제13권8호
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    • pp.3785-3791
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    • 2012
  • 용존산소란 수생생물의 생장을 조절하는 가장 중요한 요소 중의 하나이다. 일반적으로 빈산소란 2.8 mg $O_2/L$ (91.4 mM과 동량) 이하의 용존산소로 정의된다. 따라서 빈산소 해역은 해양생태계에서 심각한 문제를 야기할 수 있다. 본 연구에서는 성게에 대한 빈산소의 배아독성 (수정 및 배발생률) 영향을 연구하기 위하여 둥근성게 (Strongylocentrotus nudus)를 용존산소 7.6 mg $O_2/L$ (normoxia)과 1.8 mg $O_2/L$ (hypoxia)에서 2일, $15^{\circ}C$ 및 33 ‰에 노출하였다. 또한 빈산소에 노출된 성게에서의 스트레스 관련유전자인 HSP70과 항산화 관련 유전자인 glutathione reductase의 발현을 immunoblotting assay와 RT-PCR을 통하여 확인하였다. 연구결과 배발생률이 현저하게 감소하였다. 분자분석 결과 빈산소에 노출된 성게가 정상상태의 성게에 비해 HSP70 단백질은 약 5.5배 glutathione reductase는 약 2.79배 증가하였다. 본 연구의 결과는 빈산소가 성게의 비정상적 배발생을 유도하며, 스트레스와 항산화 반응을 유발할 수 있음을 추측케 한다.

Hypoxic Microenvironmental Control of Stress Protein and Erythropoietin Gene Expression

  • Beak, Sun-Hee;Han, Mi-Young;Lee, Seung-Hoon;Choi, Eun-Mi;Park, Young-Mee
    • BMB Reports
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    • 제32권2호
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    • pp.112-118
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    • 1999
  • The presence of hypoxic cells in solid tumors has long been considered a problem in cancer treatment such as in radiation therapy or treatment with some anticancer drugs. It has been suggested that hypoxic cells are involved in the development of a more aggressive phenotype and contribute to metastasis. In this study, as an attempt to understand how tumor cells adapt to hypoxic stress, we investigated the regulation of the hypoxia-induced expression of proteins that control essential processes of tumor cell survival and angiogenesis. We first examined whether hypoxia induces stress protein gene expression of murine solid tumor RIF cells. We also examined hypoxia-induced changes in angiogenic gene expression in these cells. Finally, we investigated the association of the elevated levels of stress proteins with the regulation of hypoxia-induced angiogenic gene expression. Results demonstrated that hypoxia induced the expression of the erythropoietin (EPO) gene and at least two major members of stress proteins, heat shock protein 70 (HSP70) and 25 (HSP25) in RIF tumor cells. Evidence that the expression of EPO gene was greatly potentiated in TR cells suggested that the elevated levels of HSPs may play an important role in the regulation of the hypoxia-induced EPO gene expression. One of the RIF variant cell lines, TR, displays elevated levels of HSPs constitutively. Taken together, our results suggest that a hypoxic tumor microenvironment may promote the survival and malignant progression of the tumor cells by temporarily increasing the level of stress proteins and expressing angiogenic genes. We suspect that stress proteins may be associated with the increase of the angiogenic potential of tumor cells under hypoxia.

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청폐사간탕(淸肺瀉肝湯)과 단미(單味)들이 Hypoxia-Reoxygenation에 의해 손상받은 Mouse Neuroblastoma 2a Cells에 미치는 영향(影響) (The effects of Chungpesagan-Tang and herbs on Mouse neuroblastoma 2a cells damaged by hypoxia-reoxygenation)

  • 문하경;김종우;강철훈;황의완
    • 동의신경정신과학회지
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    • 제16권2호
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    • pp.89-112
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    • 2005
  • Object : This study was designed to assess effect of Chungpesagan-Tang and herbs on Mouse neuroblastoma 2a cells damaged by hypoxia-reoxygenation. Method : Mouse neuroblastoma 2a (N2a) cells were measured by MTT assay and LDH assay after 48h hypoxia and 6h reoxygenation. Mouse neuroblastoma 2a (N2a) cells were treated by Chungpesagan-Tang and herbs. Result : In MTT assay of hypoxia all of herbs were almost ineffective and Hubak was a little effective. 2. In MTT assay of reoxygenation most of herbs were not effective. But Hubak was some effective. 3. In LDH assay of hypoxia all of herbs were effective. Especially Chungpesagan-Tang were equally effective on all of concentration. 4. In LDH assay of reoxygenation all of herbs were generally effective. Especially Chungpesagan-Tang and Baekji were highly effective and Kilkyung was also effective on low concentration. 5, The herbs were generally effective on LDH assay of hypoxia and reoxygenation. Conclusion : The results suggest that Chungpesagan-Tang and all of herbs may have protective effect on condition of oxidative stress and can be applied on the development of a new medicine for neurodegenerative disease like dementia.

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The optimal model of reperfusion injury in vitro using H9c2 transformed cardiac myoblasts

  • Son, Euncheol;Lee, Dongju;Woo, Chul-Woong;Kim, Young-Hoon
    • The Korean Journal of Physiology and Pharmacology
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    • 제24권2호
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    • pp.173-183
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    • 2020
  • An in vitro model for ischemia/reperfusion injury has not been well-established. We hypothesized that this failure may be caused by serum deprivation, the use of glutamine-containing media, and absence of acidosis. Cell viability of H9c2 cells was significantly decreased by serum deprivation. In this condition, reperfusion damage was not observed even after simulating severe ischemia. However, when cells were cultured under 10% dialyzed FBS, cell viability was less affected compared to cells cultured under serum deprivation and reperfusion damage was observed after hypoxia for 24 h. Reperfusion damage after glucose or glutamine deprivation under hypoxia was not significantly different from that after hypoxia only. However, with both glucose and glutamine deprivation, reperfusion damage was significantly increased. After hypoxia with lactic acidosis, reperfusion damage was comparable with that after hypoxia with glucose and glutamine deprivation. Although high-passage H9c2 cells were more resistant to reperfusion damage than low-passage cells, reperfusion damage was observed especially after hypoxia and acidosis with glucose and glutamine deprivation. Cell death induced by reperfusion after hypoxia with acidosis was not prevented by apoptosis, autophagy, or necroptosis inhibitors, but significantly decreased by ferrostatin-1, a ferroptosis inhibitor, and deferoxamine, an iron chelator. These data suggested that in our SIR model, cell death due to reperfusion injury is likely to occur via ferroptosis, which is related with ischemia/reperfusion-induced cell death in vivo. In conclusion, we established an optimal reperfusion injury model, in which ferroptotic cell death occurred by hypoxia and acidosis with or without glucose/glutamine deprivation under 10% dialyzed FBS.

Wheatgrass extract inhibits hypoxia-inducible factor-1-mediated epithelial-mesenchymal transition in A549 cells

  • Do, Nam Yong;Shin, Hyun-Jae;Lee, Ji-Eun
    • Nutrition Research and Practice
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    • 제11권2호
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    • pp.83-89
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    • 2017
  • BACKGROUND/OBJECTIVES: Epithelial-mesenchymal transition (EMT) is involved in not only cancer development and metastasis but also non-cancerous conditions. Hypoxia is one of the proposed critical factors contributing to formation of chronic rhinosinusitis or nasal polyposis. Wheatgrass (Triticum aestivum) has antioxidant, anti-aging, and anti-inflammatory effects. In this study, we analyzed whether wheatgrass has an inhibitory effect on the EMT process in airway epithelial cells. MATERIALS/METHODS: A549 human lung adenocarcinoma cells were incubated in hypoxic conditions ($CO_2$ 5%/$O_2$ 1%) for 24 h in the presence of different concentrations of wheatgrass extract (50, 75, 100, and $150{\mu}g/mL$) and changes in expression of epithelial or mesenchymal markers were evaluated by immunoblotting and immunofluorescence. Accordingly, associated EMT-related transcriptional factors, Snail and Smad, were also evaluated. RESULTS: Hypoxia increased expression of N-cadherin and reduced expression of E-cadherin. Mechanistically, E-cadherin levels were recovered during hypoxia by silencing hypoxia inducible factor (HIF)-$1{\alpha}$ or administering wheatgrass extract. Wheatgrass inhibited the hypoxia-mediated EMT by reducing the expression of phosphorylated Smad3 (pSmad3) and Snail. It suppressed the hypoxia-mediated EMT processes of airway epithelial cells via HIF-$1{\alpha}$ and the pSmad3 signaling pathway. CONCLUSION: These results suggest that wheatgrass has potential as a therapeutic or supplementary agent for HIF-1-related diseases.

Effects of Red Ginseng on Neonatal Hypoxia-induced Hyperacitivity Phenotype in Rats

  • Kim, Hee-Jin;Joo, So-Hyun;Choi, In-Ha;Kim, Pitna;Kim, Min-Kyoung;Park, Seung-Hwa;Cheong, Jae-Hoon;Shin, Chan-Young
    • Journal of Ginseng Research
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    • 제34권1호
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    • pp.8-16
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    • 2010
  • Attention deficit hyperactivity disorder (ADHD) affects 4-12% of chool-age children worldwide and is characterized by three core symptoms: hyperactivity, inattention, and impulsivity. Although standard pharmacological treatments, such as methylphenidate and atomoxetine, are available, concerns about drug-induced psychological and cardiovascular problems, as well as growth retardation and sleep disturbances, highlight the continuing need for new therapeutic interventions. Using a neonatal hypoxia-induced hyperactivity model in rats, the potential positive role that oral administration of red ginseng extract may have in relation to the hyperactive phenotype was investigated. Hypoxia was induced in 2-day-old male Sprague-Dawley (SD) rat pups by placing them in a nitrogen chamber for 15 min. The neonatal hypoxia-induced rats showed a significant increase in hyperactivity phenotype, such as increased movement duration, movement distance, and rearing frequency, which was determined by monitoring their spontaneous locomotor activity using the Ethovision video tracking system. One week of oral treatment with red ginseng extract decreased the hyperactivity phenotype of the neonatal hypoxia-induced rats and increased the locomotor activity of the control rats. In the neonatal hypoxia-induced rats, expression of the norepinephrine transporter in the forebrain was increased, and red ginseng treatment partially prevented its up-regulation, while increasing its level in the control rats. Taken together, these results suggest that red ginseng extract decreased the neonatal hypoxia-induced hyperactivity phenotype, although it increased locomotor activity in normal animals.

Molecular characterization and expression of suppressor of cytokine signaling (SOCS) 1, 2 and 3 under acute hypoxia and reoxygenation in pufferfish, Takifugu fasciatus

  • Wang, Dan;Wen, Xin;Zhang, Xinyu;Hu, Yadong;Li, Xinru;Zhu, Wenxu;Wang, Tao;Yin, Shaowu
    • Genes and Genomics
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    • 제40권11호
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    • pp.1225-1235
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    • 2018
  • Hypoxia seriously affects the innate immune system of fish. However, the roles of suppressor of cytokine signaling (SOCS), pivotal anti-inflammatory genes, in response to hypoxia/reoxygenation remain largely unexplored. The primary objective of this study was to elucidate the function of SOCS genes under acute hypoxia and reoxygenation in pufferfish (Takifugu fasciatus). In the present study, SOCS1, 2 and 3 were identified in T. fasciatus referred to as TfSOCS1, 2 and 3. Then, qRT-PCR and western blot analysis were employed to assess their expressions at both the mRNA and protein levels. Tissue distribution demonstrated that the three SOCS genes were predominantly distributed in gill, brain and liver. Under hypoxia challenge ($1.63{\pm}0.2mg/L$ DO for 2, 4, 6 and 8 h), the expressions of TfSOCS1 and 3 in brain and liver at the mRNA and protein levels were significantly decreased, while their expressions showed an opposite trend in gill. Different from the expressions of TfSOCS1 and 3, the expression of TfSOCS2 was inhibited in gill, along with its increased expression in brain and liver. After normoxic recovery ($7.0{\pm}0.3mg/L$ of DO for 4 and 12 h), most of TfSOCS genes were significantly altered at R4 (reoxygenation for 4 h) and returned to the normal level at R12 (reoxygenation for 12 h). SOCS genes played vital roles in response to hypoxia/reoxygenation challenge. Our findings greatly strengthened the relation between innate immune and hypoxia stress in T. fasciatus.