• Title/Summary/Keyword: Oxidative

Search Result 6,126, Processing Time 0.033 seconds

Antioxidant Effects of Gagam-jangwon-hwan(jiajianzhuangyuanwan) on Hydrogen Peroxide-Induced Oxidative Stress in PC 12 Cell Lines ($H_2O_2$로 유도된 산화적 스트레스에 대한 장원환가감방(壯元丸加減方)의 PC 12 cell 에서의 항산화 효과)

  • Park, Yong-Hoon;Son, Il-Hong;Lee, Sang-Won;Lim, Jung-Hyun;Kim, Tae-Heon;Lyu, Yeoung-Su;Kang, Hyung-Won
    • Journal of Oriental Neuropsychiatry
    • /
    • v.20 no.2
    • /
    • pp.19-29
    • /
    • 2009
  • Objectives : Antioxidant effects of Gagam-jangwonhwan(LMK01 and 02) water extract against $H_2O_2$-induced oxidative damage and cell death were investigated in rat pheochromocytoma line PC 12. Methods : The cells were treated with LMK01 and 02 water extract and $H_2O_2$, oxidative damage-inducing materials for 24 h. The cellular viability was assessed by WST-1 assay, oxidative damages of the cells by 8-OHdG quantitation, apoptosis by Hoechst 33342 staining assay and activity of antioxidant enzymes by catalase and glutathione peroxidase assay. Results : 1. LMK01 and LMK02 water extracts improved significantly cell viability in $H_2O_2$-treated groups than $H_2O_2$-alone treated cells 2, LMK02 suppressed significantly oxidative damage in $H_2O_2$-treated groups than $H_2O_2$-alone treated cells but LMK01 didn't. Meanwhile, difference of oxidative damages in conditions treated with LMK01 or LMK02 was not significant, 3. The $H_2O_2$ induced-apoptosis in PC 12 cell lines was inhibited effectively by LMK01 and LMK02, and especially the features of apoptosis were obviously reduced in LMK02-treated cells. 4. LMK01 and LMK02 increased significantly activities of both catalase and glutathione peroxidase than those of $H_2O_2$-alone treated group and moreover, LMK02 showed significantly higher activities than those of LMK01. Conclusions : As shown, LMK01 and LMK02 suppressed $H_2O_2$-induced oxidative damage and cell death in PC 12 cell effectively. And they increased activity of major antioxidant enzymes in PC 12 cell line. Therefore, this study suggests the possibility of clinical usage over oxidative stress-induced neurodegenerative disease such as Alzheimer's disease.

  • PDF

Ethanol Extract from Asparagus Cochinchinensis Attenuates Glutamate-Induced Oxidative Toxicity in HT22 Hippocampal Cells (HT22 해마세포의 oxidative toxicity에 대한 천문동 유래 에탄올추출물의 보호 효과)

  • Pak, Malk Eun;Choi, Byung Tae
    • Journal of Life Science
    • /
    • v.26 no.12
    • /
    • pp.1458-1465
    • /
    • 2016
  • We investigated the neuroprotective effect of an ethanol extract from Asparagus cochinchinensis (AC) against glutamate-induced toxicity in the HT22 hippocampal cell, which is an ideal in vitro model for oxidative stress. The neuroprotective effects of AC in HT22 cells were evaluated by analyzing cell viability, lactate dehydrogenase (LDH), flow cytometry for cell death types, reactive oxygen species (ROS), mitochondria membrane potential (MMP), and Western blot assays. In the cell death analysis, AC treatment resulted in significantly attenuated glutamate-induced loss of cell viability with a decrease in LDH release. AC treatment also reduced glutamate-induced apoptotic cell death. In the ROS and MMP analysis, AC treatment inhibited the elevation of intracellular ROS induced by glutamate exposure and the disruption of MMP. In oxidative stress-related proteins analysis, AC treatment inhibited the expression of poly ADP ribose polymerase and heme oxygenase-1 by glutamate. These results indicate that AC exerts a significant neuroprotective effect against glutamate-induced hippocampal damage by decreasing ROS production and stabilizing MMP. Thus, AC potentially provides a new strategy for the treatment of oxidative stress-related diseases.

Antioxidant and Protective Effects of Leonurus sibiricus L. Extract on Ultraviolet B (UVB)-induced Damage in Human Keratinocytes (익모초 추출물의 항산화 효과와 자외선으로 유도된 각질형성세포 손상에 대한 보호효과)

  • Kim, Tae Yeon;Jang, Seon A;Chae, Yong Byung;Bak, Jong Phil
    • Korean Journal of Plant Resources
    • /
    • v.29 no.1
    • /
    • pp.11-19
    • /
    • 2016
  • In this study, we investigated the anti oxidative potential and protective effects of water extract of Leonurus sibiricus L. leaf (LSLW) against ultraviolet B (UVB)-induced oxidative damage in human keratinocytes (HaCaT cells). To evaluate the anti oxidative activity of LSLW, we measured DPPH radical, hydroxyl radical, hydrogen peroxide, superoxide anion scavenging activities, lipid peroxidation inhibition, and reducing power of LSLW. For induction of oxidative stress in HaCaT cells, the cells were irradiated with UVB at 40 mJ/㎠. To investigate the protective effects of LSLW against UVB, we measured cell viability and apoptotic bodies using annexin V staining. LSLW showed anti oxidative activities by scavenging DPPH radical, hydroxyl radical, hydrogen peroxide, superoxide anion and by reducing lipid peroxidation. In addition, LSLW showed high reducing values. The UVB-induced oxidative conditions led to cell apoptosis. However, treatment with LSLW ameliorated oxidative stress conditions, including inhibition of cell death, apoptotic body. Taken together, LSLW exhibited anti oxidative and protective effects against UVB-induced damage in HaCaT cells. Thus, LSLW could be useful for the development of cosmetics for UVB-induced skin aging.

Detection of Urinary 8-Hydroxyguanine Adduct as Exposure Biomarker for Oxidative Stress (산화적스트레스에 대한 노출척도로서 뇨중 8-Hydroxyguanine Adduct의 측정)

  • 유아선;김윤신;모인필;마응천;조명행
    • Toxicological Research
    • /
    • v.14 no.4
    • /
    • pp.515-523
    • /
    • 1998
  • Oxidative stress by reactive oxygen species (ROS) damages cellular DNA, RNA, proteins, lipids and others causing various diseases such as cancer, arthritis, and heart diseases. 8-Hydroxyguanine (8-OHG) is one of the products formed from DNA or RNA damaged by ROS. Since high amounts of 8-OHG can be excreted in urine, it may serve as a potential biomarker indicating the level of oxidative damage to nucleic acids. Residents in industrial area with severe air pollution are expected to be affected by higher level of oxidative stress from pollutants like polyaromatic hydrocarbons (PAHs), etc. Smokers are also expected to be damaged by higher level of oxidative stress from cigarette smoke components like PAHs than non-smokers. To examine if the determination of the urinary concentration of 8-OHG could be used as exposure biomarker for the oxidative stress caused by air-pollutants, this study was performed to determine and compare the urinary concentrations of 8-OHG in smokers and non-smokers, or non-polluted area residents and polluted area residents. Urine samples were collected and purified by a strong cation exchange and cellulose partition column, then analyzed by HPLC with electrochemical detector at 600 ㎷ potential. Concentrations of urinary 8-OHG in non-smokers and smokers of Seoul area college male students were determined as 15.12$\pm$9.68 (ng/mg creatinine) and 34.72$\pm$11.72 (ng/mg creatinine), respectively, showing significantly higher level of 8-OHG in smokers than in non-smokers. Urine samples of elementary school students were collected from Sokcho area, which is known to be non-polluted, and 3 representative polluted areas; Yocheon industrial area, Ulsan urban and Ulsan industrial area. The concentrations of 8-OHG in these samples were 12.42$\pm$8.27 (ng/ mg creatinine, Sokcho), 22.55$\pm$9.12 (ng/mg creatinine, Yocheon), 17.41$\pm$2.30 (ng/mg creatinine, Ulsan urban), 55.04$\pm$39.73 (ng/mg creatinine, Ulsan industrial). Thus, samples from polluted area tend to have higher level of 8-OHG and the levels of Yocheon and Ulsan industrial area were significantly higher than that of Sokcho area. The results indicate that the residents of polluted industrial area or smokers are more severely exposed to oxidative stress probably caused by air pollutants like PAHs. Thus, the determination of urinary 8-OHG concentration could be used as biomarker for the extent of body exposure to oxidative stress caused by various pollutants.

  • PDF

Green perilla leaf extract ameliorates long-term oxidative stress induced by a high-fat diet in aging mice

  • Edward, Olivet Chiamaka;Thomas, Shalom Sara;Cha, Kyung-Ok;Jung, Hyun-Ah;Han, Anna;Cha, Youn-Soo
    • Nutrition Research and Practice
    • /
    • v.16 no.5
    • /
    • pp.549-564
    • /
    • 2022
  • BACKGROUND/OBJECTIVES: Oxidative stress is caused by an imbalance between harmful free radicals and antioxidants. Long-term oxidative stress can lead to an "exhausted" status of antioxidant defense system triggering development of metabolic syndrome and chronic inflammation. Green perilla (Perilla frutescens) is commonly used in Asian cuisines and traditional medicine in southeast Asia. Green perilla possesses numerous beneficial effects including anti-inflammatory and antioxidant functions. To investigate the potentials of green perilla leaf extract (PE) on oxidative stress, we induced oxidative stress by high-fat diet (HFD) in aging mice. MATERIALS/METHODS: C57BL/6J male mice were fed HFD continuously for 53 weeks. Then, mice were divided into three groups for 12 weeks: a normal diet fed reference group (NDcon), high-fat diet fed group (HDcon), and high-fat diet PE treated group (HDPE, 400 mg/kg of body weight). Biochemical analyses of serum and liver tissues were performed to assess metabolic and inflammatory damage and oxidative status. Hepatic gene expression of oxidative stress and inflammation related enzymes were evaluated by quantitative real-time polymerase chain reaction (qRT-PCR). RESULTS: PE improved hepatopathology. PE also improved the lipid profiles and antioxidant enzymes, including hepatic glutathione peroxidase (GPx) and superoxide dismutase (SOD) and catalase (CAT) in serum and liver. Hepatic gene expressions of antioxidant and anti-inflammatory related enzymes, such as SOD-1, CAT, interleukin 4 (IL-4) and nuclear factor erythroid 2-related factor (Nrf2) were significantly enhanced by PE. PE also reduced the levels of hydrogen peroxide (H2O2) and malondialdehyde (MDA) in the serum and liver; moreover, PE suppressed hepatic gene expression involved in pro-inflammatory response; Cyclooxygenase-2 (COX-2), nitric oxide synthase (NOS), interleukin 1 beta (IL-1β), and interleukin 6 (IL-6). CONCLUSIONS: This research opens opportunities for further investigations of PE as a functional food and possible anti-aging agent due to its attenuative effects against oxidative stress, resulting from HFD and aging in the future.

Gossypin Protects Primary Cultured Rat Cortical Cells from Oxidative Stress- and $\beta$-Amyloid-Induced Toxicity

  • Yoon, Injae;Lee, Kwang-Heun;Choi, Jungsook
    • Archives of Pharmacal Research
    • /
    • v.27 no.4
    • /
    • pp.454-459
    • /
    • 2004
  • The present study investigated the effects of gossypin, 3,3',4',5,7,8-hexahydroxyflavone 8-glucoside, on the toxicity induced by oxidative stress or $\beta$-amyloid ($A_{\beta}$) in primary cultured rat cortical cells. The antioxidant properties of gossypin were also evaluated by cell-free assays. Gossypin was found to inhibit the oxidative neuronal damage induced by xanthinelxanthine oxidase or by a glutathione depleting agent, D,L-buthionine (S,R)-sulfoximine. In addition, gossypin significantly attenuated the neurotoxicity induced by $A_{{\beta}(25-35)}$. Furthermore, gossypin dramatically inhibited lipid peroxidation initiated by $Fe^{2+}$ and ascorbic acid in rat brain homogenates. It also exhibited potent radical scavenging activity generated from 1 ,1-diphenyl-2-picrylhydrazyl. These results indicate that gossypin exerts neuroprotective effects in the cultured cortical cells by inhibiting oxidative stress- and $A_{\beta}$-induced toxicity, and that the antioxidant properties of gossypin may contribute to its neuroprotective actions.

Effect of Fresh Garlic on Lipid Oxidation and Microbiological Changes of Pork Patties during Refrigerated Storage

  • Park, Sung Yong;Chin, Koo Bok
    • Food Science of Animal Resources
    • /
    • v.34 no.5
    • /
    • pp.638-646
    • /
    • 2014
  • The effects of two levels (1.4 vs 2.8%) of fresh garlic on lipid oxidation and microbial growth in pork patties were evaluated. Hunter color (L, a, b), pH, thiobarbituric acid reactive substances (TBARS), oxidative volatile compounds, total bacteria and Enterobacteriaceae in the pork patties with or without fresh garlic were measured during storage at $4^{\circ}C$. Addition of fresh garlic decreased redness (a), while increased pH and yellowness (b) values of the fresh pork patties were observed, regardless of the levels added. The TBARS values of the pork patties were increased with the addition of fresh garlic (p<0.05). Similar results were observed in oxidative volatile compounds. A total of 13 volatile compounds were detected in the patties (5 sulfur-containing compounds, including allyl mercaptan, allyl methyl sulfide, diallyl sulfide, methyl-(E)-propenyl-disulfide, and diallyl disulfide, and the 8 other oxidative compounds, including 1-pentanol, hexanal, 1-hexanol, heptanal, (E)-2-heptenal, 1-octen-3-ol, (E)-2-octenal and nonanal). Fresh garlic accelerated development of oxidative products in the pork patties, especially hexanal and the total oxidative volatile compounds. However, the addition of 1.4 and 2.8% of fresh garlic inhibited the growth of total bacteria and Enterobacteriaceae, indicating low total bacterial counts and Enterobacteriaceae than the controls.

Free radical scavenging effect and protective activity from oxidative stress of broccoli flowers and sprouts (Broccoli flower와 Broccoli sprout의 라디칼 소거능 및 산화적 스트레스 개선 효과)

  • Kim, Hyun-Young;Lee, Young-A;Cho, Eun-Ju
    • Korean Journal of Agricultural Science
    • /
    • v.39 no.1
    • /
    • pp.81-86
    • /
    • 2012
  • In this study, the antioxidative effect and protective potential against oxidative damage of extract and fractions from broccoli were investigated under in vitro and cellular system. The methanol (MeOH) extracts of broccoli flowers and sprouts were partitioned as dichloromethane, n-butanol (BuOH) and aqueous fractions. The comparison of antioxidative effect of broccoli flowers and sprouts showed that broccoli sprouts exerted the more effective protective activity from 2,2'-azobis (2-aminopropane) dihydrochloride (AAPH)-induced oxidative stress in LLC-$PK_1$ porcine renal epithelial cell. In addition, the extract and fractions from broccoli sprouts showed strong scavenging effect of 1,1-diphenyl-2-picrylhydrazyl radical and the BuOH fraction exerted the strongest activity. Therefore, the BuOH fraction was evaluated as the most active fraction with strong radical scavenging activity among the fractions of broccoli flowers and sprouts. The present study suggests the antioxidative potential against free radical-induced oxidative damage of flowers and sprouts of broccoli. In addition, the BuOH fraction of broccoli is considered as the active fraction with antioxidative effect.

A Nudix Hydrolase Protein, Ysa1, Regulates Oxidative Stress Response and Antifungal Drug Susceptibility in Cryptococcus neoformans

  • Lee, Kyung-Tae;Kwon, Hyojeong;Lee, Dohyun;Bahn, Yong-Sun
    • Mycobiology
    • /
    • v.42 no.1
    • /
    • pp.52-58
    • /
    • 2014
  • A nucleoside diphosphate-linked moiety X (Nudix) hydrolase-like gene, YSA1, has been identified as one of the gromwell plant extract-responsive genes in Cryptococcus neoformans. Ysa1 is known to control intracellular concentrations of ADP-ribose or O-acetyl-ADP-ribose, and has diverse biological functions, including the response to oxidative stress in the ascomycete yeast, Saccharomyces cerevisiae. In this study, we characterized the role of YSA1 in the stress response and adaptation of the basidiomycete yeast, C. neoformans. We constructed three independent deletion mutants for YSA1, and analyzed their mutant phenotypes. We found that ysa1 mutants did not show increased sensitivity to reactive oxygen species-producing oxidative damage agents, such as hydrogen peroxide and menadione, but exhibited increased sensitivity to diamide, which is a thiol-specific oxidant. Ysa1 was dispensable for the response to most environmental stresses, such as genotoxic, osmotic, and endoplasmic reticulum stress. In conclusion, modulation of YSA1 may regulate the cellular response and adaptation of C. neoformans to certain oxidative stresses and contribute to the evolution of antifungal drug resistance.