• Title/Summary/Keyword: Oxidative

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Protective Effects of Jihwangeumja on Oxidative Stress-induced Injury of Human Umbilical Vein Endothelial Cells (혈관내피세포의 산화적 손상에 대한 지황음자의 방어기전 연구)

  • 정용준;장재호;이대용;이민구;전인철;정대영;이인;신선호;문병순
    • The Journal of Korean Medicine
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    • v.25 no.2
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    • pp.173-183
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    • 2004
  • Objectives : Oxidative stress can induce negative responses such as growth inhibition or cell death by necrosis or apoptosis due to the intensity of the oxidative stress, as well as positive responses such as cellular proliferation or activation. We examined the effect of Jihwangeumja on this process. Methods and Results : We analyzed the influence of oxidative stress and agents that modify its effect in human umbilical vein endothelial cell (HUVEC). Oxidative stress was induced by $B_2O_2$. With induced oxidative stress the results obtained indicate that it has a harmful effect over cell function and viability, and that this effect is dose and time dependent. When oxidative stress increased, Jihwangeumja reduced cell damage and had protective functions. $B_2O_2$, induced the apoptosis of HUVEC through the activation of intrinsic caspases pathway as well as mitochondrial dysfunction. A significant increase in cell survival was observed in culture cells with oxidative stress when they were treated with Jihwangeumja. Conclusions : These results suggest that Jihwangeumja may be potentially useful to treat HUVEC against oxidative damages mediated by modulation of caspase protease and mitochondrial dysfunction.

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Tetramethylpyrazine Protects Oxidative Stability and Gelation Property of Rabbit Myofibrillar Proteins

  • Wang, Jianping;Liu, Ning;Zhang, Feike
    • Food Science of Animal Resources
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    • v.39 no.4
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    • pp.623-631
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    • 2019
  • Tetramethylpyrazine (TMP), an alkaloid rich in Ligusticum wallichii and fermented products, possesses multiple pharmacological activities in antioxidant, antiinflammatory, and antibacterial. This study aimed to investigate the effect of TMP (15 mg/L) on the physicochemical and gelation properties of rabbit myofibrillar proteins (MPs) with/without oxidative stress. Results showed that compared to the control, oxidative stress to MPs decreased free thiol content, gel yield, whiteness, water-holding capacity, bounder water, immobilized water, and endogenous tryptophan fluorescence intensity, but increased surface hydrophobicity, dityrosine content, and free water content (p<0.01). Without oxidative stress, MPs treated with TMP increased free thiol content, whiteness, and bound water, but decreased dityrosine content and free water (p<0.05). Under oxidative conditions, all parameters were conversely affected by TMP (p<0.01). The results suggest that TMP can be an antioxidant to decrease the concern on oxidative deterioration during meat processing and storage by improving the oxidative stability, water retention, and gel forming property of rabbit MPs.

The anti-oxidative stress effect of antioxidants in the cell using DCFH-DA (DCFH-DA를 이용한 항산화제의 세포내 oxidative stress 억제 효과에 관한 연구)

  • 유영근;신미희;최종완
    • Journal of the Society of Cosmetic Scientists of Korea
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    • v.28 no.1
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    • pp.42-57
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    • 2002
  • 본 연구는 널리 알려져 있는 항산화제들의 세포 수준에서의 anti-oxidative stress 효과 및 그 기작을 알아보기 위한 연구이다. 연구에 사용한 항산화제로는 지용성인 retinol, $\alpha$-tocopherol, propyl gallate(PG) 및 butylated hydroxy toluene(BHT)과 수용성인 ascorbic acid, $\alpha$-glucosyl rutin 및 green tea extract를 사용하였으며 이들 항산화제들의 시간별 세포 생존율을 NR assay 로 측정한 후 적정 농도에서 DCFH-DA(2', 7'-dichlorofluorescin-diacetate) 를 이용하여 항산화제들의 anti-oxidative stress 억제 효과를 시간별로 측정하였다. 또한 이들 항산화제의 항산화 기작을 알아보기 위하여 NBT(Nitro-blue-tetrazolium) 및 DPPH(Diphenyl-picry-hydrazl)도 병행하여 실시하였다. Anti-oxidative stress 실험에서 지용성 항산화제들은 전반적으로 수용성 항산화제에 비하여 세포에 대한 독성이 상대적으로 강하여 retinol 의 경우에는 0.01%에서 oxidative stress 억제 효과를 관할할 수 있었으며 1 시간경과 후 측정시 53.1%의 억제 효과를 보여 주었다. PG 의 경우에는 0.1%에서 2 시간 경과 후 측정시 50%의 oxidative stress 억제 효과를 보여주었다. 수용성 항산화제인 green tea extract 및 $\alpha$-glucosyl rutin의 경우에는 1%에서 1시간 경과 후 측정시 각 각 51.6% 및 69.7%의 oxidative stress 억제 효과를 관찰할 수 있었다. 또한 시료처리 후 자외선 조사시 oxidative stress 억제 효과의 경우 수용성 항산화제인 ascorbic acid, $\alpha$-glucosyl rutin 및 green tea extract 와 지용성 항산화제 중에서는 $\delta$-tocopherol 에서만 oxidative stress 억제 효과가 관찰되었으나 자외선을 조사 하지 않았을 때 보다 약 20%-40%까지 억제 효과가 감소되었다. 그리고 PG 및 retinol 의 경우에는 자외선 조사시 독성이 증가하여 oxidative stress 억제 효과를 측정할 수 없었다. NBT실험에서 $\alpha$-glucosyl rutin, $\alpha$-tocopherol 및 PG 1%에서 70%이상의 superoxide anion 생성 억제 효과를 보였으며 DPPH 실험에서는 ascorbic acid 와 PG 1%에서 98%의 hydroxyl radical 생성 억제 효과를 보여 주었다. 본 실험을 통하여 BHT 를 제외하고 전반적으로 세포 수준에서의 oxidative stress 에 대한 억제 효과를 확인해 볼 수 있었으며 특히 수용성 항산화제들에서 두드러진 효과를 보여 주었다.

Antioxidant and Protective Effects of Palmul-tang on Ultraviolet B (UVB)-induced Damage in Human Keratinocytes (팔물탕의 항산화 효과와 자외선으로 유도된 각질형성세포 손상에 대한 보호효과)

  • Kim, Tae-Yeon;Bak, Jong-Phil
    • Journal of Society of Preventive Korean Medicine
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    • v.19 no.3
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    • pp.141-154
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    • 2015
  • Objective : In this paper, we investigated the anti-oxidative capacities and protective effects of water extract of palmul-tang (PMT) against Ultraviolet B(UVB)-induced oxidative damage in human keratinocytes(HaCaT). Method : To evaluate the anti-oxidative activities of PMT, we measured scavenging activities on 1,1-diphenyl-2-picrylhydrazyl(DPPH) radical, hydroxyl radical, hydrogen peroxide, superoxide anion, lipid peroxidation and reducing power of PMT. To give an oxidative stress to HaCaT cells, UVB was irradiated with $40mJ/cm^2$ to HaCaT cells. To detect the protective effects of PMT against UVB, we measured cell viability, apoptotic bodies and reactive oxygen species(ROS) generation. Results : PMT showed the anti-oxidative activities by scavenging DPPH radical, hydroxyl radical, hydrogen peroxide, superoxide anion, lipid peroxidation. Also PMT showed high reducing values. The UVB-induced oxidative conditions led to the cell apoptosis. However, treatment with PMT reduced oxidative stress conditions, including inhibition of cell apoptosis and expression of ROS. Conclusion : PMT had anti-oxidative activities and exhibited protective effects against UVB on HaCaT cells. PMT would be useful for the development of cosmetics treating UVB-induced skin aging.

Potential in vitro Protective Effect of Quercetin, Catechin, Caffeic Acid and Phytic Acid against Ethanol-Induced Oxidative Stress in SK-Hep-1 Cells

  • Lee, Ki-Mo;Kang, Hyung-Sik;Yun, Chul-Ho;Kwak, Hahn-Shik
    • Biomolecules & Therapeutics
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    • v.20 no.5
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    • pp.492-498
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    • 2012
  • Phytochemicals have been known to exhibit potent antioxidant activity. This study examined cytoprotective effects of phytochemicals including quercetin, catechin, caffeic acid, and phytic acid against oxidative damage in SK-Hep-1 cells induced by the oxidative and non-oxidative metabolism of ethanol. Exposure of the cells to excess ethanol resulted in a significant increase in cytotoxicity, reactive oxygen species (ROS) production, lipid hydroperoxide (LPO), and antioxidant enzyme activity. Excess ethanol also caused a reduction in mitochondrial membrane potential (MMP) and the quantity of reduced glutathione (GSH). Co-treatment of cells with ethanol and quercetin, catechin, caffeic acid and phytic acid significantly inhibited oxidative ethanol metabolism-induced cytotoxicity by blocking ROS production. When the cells were treated with ethanol after pretreatment of 4-methylpyrazole (4-MP), increased cytotoxicity, ROS production, antioxidant enzyme activity, and loss of MMP were observed. The addition of quercetin, catechin, caffeic acid and phytic acid to these cells showed suppression of non-oxidative ethanol metabolism-induced cytotoxicity, similar to oxidative ethanol metabolism. These results suggest that quercetin, catechin, caffeic acid and phytic acid have protective effects against ethanol metabolism-induced oxidative insult in SK-Hep-1 cells by blocking ROS production and elevating antioxidant potentials.

Buddleja officinalis prevents the normal cells from oxidative damage via antioxidant activity

  • Hong, Se-Chul;Jeong, Jin-Boo;Jeong, Hyung-Jin
    • Korean Journal of Plant Resources
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    • v.21 no.6
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    • pp.449-456
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    • 2008
  • The flowers of Buddleja officinalis are used to treat sore and damaged eyes, a condition which is similar to skin wounds. However, whether it has any protective effect on oxidative DNA damage and cell death induced by hydroxyl radical remains unclear. In this study, we evaluated the protective effects of the extracts against oxidative DNA and cell damage caused by hydroxyl radical. DPPH radical, hydroxyl radical, hydrogen peroxide and intracellular ROS scavenging assay, and $Fe^{2+}$ chelating assay were used to evaluate the antioxidant properties. phi X 174 RF I plasmid DNA and intracellular DNA migration assay were used to evaluate the protective effect against oxidative DNA damage. Lastly, MTT assay and lipid peroxidation assay were used to evaluate the protective effect against oxidative cell damage. It was found to prevent intracellular DNA and the normal cells from oxidative damage caused by hydroxyl radical via antioxidant activities. These results suggest that Buddleja officinalis may exert the inhibitory effect on ROS-induced carcinogenesis by blocking oxidative DNA damage and cell death.

Negative Role of wblA in Response to Oxidative Stress in Streptomyces coelicolor

  • Kim, Jin-Su;Lee, Han-Na;Kim, Pil;Lee, Heung-Shick;Kim, Eung-Soo
    • Journal of Microbiology and Biotechnology
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    • v.22 no.6
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    • pp.736-741
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    • 2012
  • In this study, we analyzed the oxidative stress response of wblA ($\underline{w}$hi$\underline{B}$-$\underline{l}$ike gene $\underline{A}$, SCO3579), which was previously shown to be a global antibiotic down-regulator in Streptomyces coelicolor. Ever since a WblA ortholog named WhcA in Corynebacterium glutamicum was found to play a negative role in the oxidative stress response, S. coelicolor wblA has been proposed to have a similar effect. A wblA-deletion mutant exhibited a less sensitive response to oxidative stress induced by diamide present in solid plate culture. Using real-time RT-PCR analysis, we also compared the transcription levels of oxidative stress-related genes, including sodF, sodF2, sodN, trxB, and trxB2, between S. coelicolor wild type and a wblA-deletion mutant in the presence or absence of oxidative stress. Target genes were expressed higher in the wblA-deletion mutant compared with wild type, both in the absence and presence of oxidative stress. Moreover, expression of these target genes in S. coelicolor wild type was stimulated only in the presence of oxidative stress, suggesting that WblA plays a negative role in the oxidative stress response of S. coelicolor, similar to that of C. glutamicum WhcA, through the transcriptional regulation of oxidative stress-related genes.

Oxidative stress on anaerobes

  • Takeuchi, Toru;Shi, Minyi;Kato, Naoki;Watanabe, Kunitomo;Morimoto, Kanehisa
    • Journal of Photoscience
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    • v.9 no.2
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    • pp.142-145
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    • 2002
  • A strict anaerobe, Prevotella melaninogenica is highly sensitive to oxidative stress. Oxidative stress such as exposure to oxygen or addition of hydrogen peroxide, increased 8-hydroxydeoxyguanosine (80HdG), a typical of oxidative DNA damage, and decreased the bacterial cell survival rate. We could detect the generation of reactive oxygen species in P. melaninogenica after exposure to oxygen. UVA irradiation also increased 80HdG in the bacterium. On the other hand, such oxidative stress did not increase 80HdG in a facultative anaerobe. These findings suggest that P. melaninogenica is a suitable material to study the biological effects of oxidative stress, to evaluate antioxidants, and to study the effects of oxygen or reactive oxygen species on molecular evolution.

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Schisandra Chinensis Inhibits Oxidative DNA Damage and Lipid Peroxidation Via Antioxidant Activity

  • Jeong, Jin-Boo;Jeong, Hyung-Jin
    • Korean Journal of Plant Resources
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    • v.22 no.3
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    • pp.195-202
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    • 2009
  • Schisandra chinensis have been traditionally used in Asia for the treatment of dyspnea, cough, mouth dryness, spontaneous diaphoresis, nocturnal diaphoresis, nocturnal emission, dysentery, insomnia and amnesia. The purpose of this study is to evaluate the protective effects of Schisandra chinensis on oxidative DNA damage and lipid peroxidation induced by ROS in non cellular and cellular system. DPPH radical, hydroxyl radical and hydrogen peroxide scavenging assay were used to measure the antioxidant activities. Phi X-174RF I plasmid DNA cleavage assay and intracellular DNA migration assay were used to evaluate the protective effect on oxidative DNA damage. MTT assay and lipid peroxidation assay were used for evaluating the protective effect on oxidative cell damage. It was found to scavenge DPPH radical, hydrogen peroxide and hydroxyl radical and it inhibited oxidative DNA damage, lipid peroxidation and cell death induced by hydroxyl radical. These data indicate that Schisandra chinensis possesses a spectrum of antioxidant and DNA-protective properties

Buckwheat Extract Increases Resistance to Oxidative Stress and Lifespan in Caenorhabditis elegans (꼬마선충에서 메밀 추출물에 의한 산화성 스트레스 저항성 증가 및 수명 연장 효과)

  • Kim, Chul Kyu;Park, Sang Kyu
    • Korean Journal of Medicinal Crop Science
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    • v.21 no.1
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    • pp.1-6
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    • 2013
  • Buckwheat (Fagopyrum esculentum) has been known for having strong anti-oxidant, anti-mutagenic, and anti-carcinogenic activities. The free radical theory of aging, also known as the oxidative stress theory of aging, claims that cellular oxidative damage accumulated with time is a major causal factor of aging. In the present study, we investigated the effect of buckwheat extracts on resistance to oxidative stress and aging using Caenorhabditis elegans as a model system. Survival under an oxidative-stress condition induced by paraquat increased markedly following 500mg/L buckwheat extracts treatment, suggesting lower cellular oxidative damage by buckwheat extracts. A lifespan assay also revealed that treatment of buckwheat extracts significantly extended both the mean and maximum lifespan in C. elegans. Interestingly, this lifespan-extension by buckwheat extracts was not accompanied by reduced fertility. These findings suggest that buckwheat extracts can confer longevity phenotype to C. elegans through its strong anti-oxidant activity and support the aging theory which emphasizes a pivotal role of oxidative stress during aging.