• Title/Summary/Keyword: hydrogen peroxide$(H_2O_2)$

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Oxidative Stress and Apoptosis in Goldfish (Carassius auratus) Caused by Exposure to Different Concentrations of Micro-polystyrene

  • Li, Zhongze;Song, Jin Ah;Choi, Cheol Young
    • Ocean and Polar Research
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    • 제43권3호
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    • pp.141-148
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    • 2021
  • Microplastic contamination in waterbodies is a growing source of concern for researchers and other stakeholders. We investigated oxidative stress and toxicity in goldfish (Carassius auratus) in response to exposure to 1-㎛ diameter micro-polystyrene (MP) at concentrations of 0, 10, 100, and 1000 beads/mL (MP 0, MP 10, MP 100, and MP 1000 groups) for 7 d (at day 0, 1, 3, 5, and 7). We analyzed the survival rates; superoxide dismutase (SOD) and catalase (CAT) mRNA expression levels in the liver; SOD and CAT activity in the plasma; caspase-3 mRNA expression in the liver; and the levels of hydrogen peroxide (H2O2) in plasma. Terminal transferase dUTP nick end labeling (TUNEL) assays were also conducted to determine apoptosis levels in the liver. All fish in the MP 1000 group died by day 7 and the MP 100 group had a lower survival rate than the MP 10 and MP 0 groups. The mRNA expression as well as SOD, CAT, and caspase-3 activity levels were increased significantly with increases in MP concentration and exposure time. Finally, according to the TUNEL assay, more apoptosis was observed in the MP 1000 group at day 5 than in other groups. In summary, MP concentrations above 100 beads/mL caused death and oxidative stress to goldfish. We conclude that MP can cause oxidative stress and apoptosis in goldfish, which leads to death.

Effect of Treatment with Selected Plant Extracts on the Physiological and Biochemical Parameters of Rice Plants under Salt Stress

  • Hyun-Hwa Park;Pyae Pyae Win;Yong-In Kuk
    • 한국작물학회지
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    • 제69권1호
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    • pp.1-14
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    • 2024
  • High soil salinity is the most severe threat to global rice production as it causes a significant decline in rice yield. Here, we investigated the effects of various plant extracts on rice plant stress associated with high salinity. Additionally, we examined various physiological and biochemical parameters such as growth, photosynthetic activity, chlorophyll content, and lipid peroxidation - in rice plants after treatment with selected plant extracts under salt stress conditions. Of the 11 extracts tested, four - soybean leaf, soybean stem, moringa (Moringa oleifera), and Undaria pinnatifida extracts - were found to effectively reduce salt stress. A reduction of only 3-23% in shoot fresh weight was observed in rice plants under salt stress that were treated with these extracts, compared to the 43% reduction observed in plants that were exposed to stress but not given plant extract treatments (control plants). The effectiveness varied with the concentration of the plant extracts. Water content was higher in rice plants treated with the extracts than in the control plants after 6 d of salt stress, but not after 4 d of salt stress. Although photosynthetic efficiency (Fv/Fm), electron transport rate (ETR), and the content of pigments (chlorophyll and carotenoid) varied based on the types and levels of stress and the extracts that the rice plants were treated with, generally, photosynthetic efficiency and pigment content were higher in the treated rice compared to control plants. Reactive oxygen species (ROS), such as superoxide radicals, hydrogen peroxide (H2O2), and malondialdehyde (MDA), increased as the duration of stress increased. ROS and MDA levels were lower in the treated rice than in the control plants. Proline and soluble sugar accumulation also increased with the duration of the stress period. However, proline and soluble sugar accumulation were lower in the treated rice than in the control plants. Generally, the values of all the parameters investigated in this study were similar, regardless of the plant extract used to treat the rice plants. Thus, the extracts found to be effective can be used to alleviate the adverse effects of stress on rice crops associated with high-salinity soils.

Glucose Oxidase에 의(依)한 건조용(乾燥用) 난백(卵白)의 효소적(酵素的) 탈당(脫糖) (Enzymatic Desugarization of Egg White for Drying with Glucose Oxidase)

  • 송광택;오홍록;권순기;이봉덕
    • 농업과학연구
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    • 제11권2호
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    • pp.223-232
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    • 1984
  • Glucose oxidase에 의(依)한 건조용(乾燥用) 난백(卵白)의 탈당반응(脫糖反應)에 미치는 영향(影響)을 구명(究明)하기 위(爲)하여 난백중(卵白中)의 glucose함량(含量) 측정법(測定法)과 효소(酵素)의 활성(活性)에 미치는 최적조건(最適條件)을 검토(檢討)하였으며 효소(酵素)의 농도(濃度), pH, 온도(溫度) 및 효소(酵素)의 공급(供給)에 의(依)한 난백(卵白)의 탈당속도(脫糖速度)와 난백(卵白)의 기포력(氣泡力)을 조사(調査)한 결과(結果)는 다음과 같다. 1. Dianisidine법(法)은 glucose $100{\mu}g$ 범위내에서의 glucose 정량법(定量法)으로 적합하다고 인정(認定)되었다. 2. Glucose oxidase활성(活性)의 glucose에 대(對)한 최적(最適)pH는 약(約) 5.0 부근이었으며, pH안정성(安定性)은 pH 4.0~5.5의 범위에서 $50^{\circ}C$로 30분(分) 처리(處理)했을 때 안정(安定)했다. 3. Glucose에 대(對)한 glucose oxidase 반응(反應)의 최적온도(最適온度)는 약(約) $20^{\circ}C$ 부근이었으며, 그 활성(活性)은 $50^{\circ}C$까지 안정(安定)하였다. 4. Glucose oxidase에 의(依)한 난백(卵白)의 탈당(脫糖)은 효소농도(酵素濃度), pH 및 산소(酸素)의 공급(供給)등에 의(依)하여 영향(影響)을 받았으며, 0.1% 효소농도(酵素濃度), pH 7.0, $26^{\circ}C$ 및 30% $H_2O_2$ 5.0ml의 반응조건(反應條件)에서 탈당(脫糖)은 10시간(時間)이 소요되었다. 5. 공시(供試) 난백(卵白)의 기포력(氣泡力)은 90.0ml(control)에서 103.4ml(trypsin+glucose oxidase)의 범위였으며, 단백질분해효소(蛋白質分解酵素)로 처리(處理)했을 때 대조구(對照區)에 비(比)해 기포안정성(氣泡安定性)이 낮았다.

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Physiological Response of Young Seedlings from Five Accessions of Diospyros L. under Salinity Stress

  • Wei, Ping;Yang, Yong;Fang, Ming;Wang, Fei;Chen, Hejie
    • 원예과학기술지
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    • 제34권4호
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    • pp.564-577
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    • 2016
  • Salinity stress limits plant cultivation in many areas worldwide; however, persimmon (Diospyros spp.) has high tolerance to salt. Five accessions of Diospyros [three of Diospyros lotus (accession numbers 824, 846, and 847); one of Diospyros kaki var. sylvestris (869); and one of Diospyros virginiana (844)] were chosen for analysis of salinity stress. We compared the effects of salt stress on plant growth, relative water content (RWC), malondialdehyde (MDA), electrolyte leakage (EL), hydrogen peroxide content ($H_2O_2$), and antioxidative enzyme activities (superoxide dismutase, SOD; catalase, CAT; peroxidase, POD; and ascorbate peroxidase, APX) in leaves of healthy potted seedlings from each of the five accessions after salt treatment for 25 days. Salt stress affected the growth of plants in all five accessions, with all three D. lotus accessions showing the most severe effect. Salt stress increased membrane lipid peroxidation in all accessions, but a stronger increase was observed in the three D. lotus accessions. Moreover, accumulation of $H_2O_2$ was faster in salt-sensitive D. lotus compared to salt-tolerant D. virginiana 844. The activities of all antioxidant enzymes increased in D. virginiana 844 and in D. kaki var. sylvestris 869; the activities of SOD, CAT, and APX were at similar levels in D. virginiana 844 and D. kaki var. sylvestris 869, but POD activity was stimulated to a greater extent in D. virginiana 844. The activities of all antioxidant enzymes (except POD) decreased in D. lotus 824 and increased (except for SOD) in D.lotus 846. The activities of SOD and APX decreased in D. lotus 847, whereas POD and CAT activities both increased. Relative water content decreased significantly in D. lotus. No significant changes in lipid peroxidation or relevant antioxidant parameters were detected in any of the accessions in controls treated with 0.0% NaCl. D. virginiana 844 had higher antioxidant capacity in response to salinity compared to other persimmon rootstocks. These results indicate that changes of these key physiological variables are related to salinity resistance in different accessions of persimmon.

Paraquat 유도 산화적 스트레스에 대한 홍삼 사포닌의 항산화 효과 (Antioxidative Effects of Red Ginseng Saponins on Paraquat-induced Oxidative Stress)

  • 김동조;성금수;김동원;고성룡;장재철
    • Journal of Ginseng Research
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    • 제28권1호
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    • pp.5-10
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    • 2004
  • 본 연구에서는 PQ의 독성과 홍삼 성분의 항산화 활성성분을 알아보기 위해 생쥐를 이용하여 PQ 투여 후 총 사포닌, PPD, PPT성분을 1, 3, 7일간 경구 투여한 후, 간 조직에서의 SOD, CAT GPx의 활성과 GSH, MDA 및 과산화수소 함량등을 측정 비교함으로써 홍삼의 항산화활성 성분이 PQ 독성에 대한 회복 작용 그리고 지질과산화와의 상호 관련성을 검토하였다. 항산화 효소인 SOD, CAT GPx활성도는 전반적으로 PPD계가 높았고, SOD 활성은 PPD 투석군에서 전일에 걸쳐 가장 높은 활성을 보였다. 과산화수소의 함량은 PQ 투여군 기준으로 PPD 투여군에서 가장 낮은 결과를 보였다. 자유 라디칼에 의해 생성된 지질과산화의 최종산물인 MDA의 함량은 사포닌 투여군에서 유의성 있게 감소하였으며, 특히 PPD에서 다른 투여군들에 비해 현저한 함량 감소를 보였다. 이와 같이 사포닌의 항산화효과는 SOD, CAT및 GPx와 같은 항산화 효소의 직접적인 작용과 홍삼의 특정 성분들이 생체 내에서 내인성 항산화 물질의 합성능력을 강화시킴으로서 산화적 손상에 대한 회복작용을 향상시키는 결과로 생각된다.

Antimelanogenesis and skin-protective activities of Panax ginseng calyx ethanol extract

  • Lee, Jeong-Oog;Kim, Eunji;Kim, Ji Hye;Hong, Yo Han;Kim, Han Gyung;Jeong, Deok;Kim, Juewon;Kim, Su Hwan;Park, Chanwoong;Seo, Dae Bang;Son, Young-Jin;Han, Sang Yun;Cho, Jae Youl
    • Journal of Ginseng Research
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    • 제42권3호
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    • pp.389-399
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    • 2018
  • Background: The antioxidant effects of Panax ginseng have been reported in several articles; however, little is known about the antimelanogenesis effect, skin-protective effect, and cellular mechanism of Panax ginseng, especially of P. ginseng calyx. To understand how an ethanol extract of P. ginseng berry calyx (Pg-C-EE) exerts skin-protective effects, we studied its activities in activated melanocytes and reactive oxygen species (ROS)-induced keratinocytes. Methods: To confirm the antimelanogenesis effect of Pg-C-EE, we analyzed melanin synthesis and secretion and messenger RNA and protein expression levels of related genes. Ultraviolet B (UVB) and hydrogen peroxide ($H_2O_2$) were used to induce cell damage by ROS generation. To examine whether this damage is inhibited by Pg-C-EE, we performed cell viability assays and gene expression and transcriptional activation analyses. Results: Pg-C-EE inhibited melanin synthesis and secretion by blocking activator protein 1 regulatory enzymes such as p38, extracellular signal-regulated kinases (ERKs), and cyclic adenosine mono-phosphate response element-binding protein. Pg-C-EE also suppressed ROS generation induced by $H_2O_2$ and UVB. Treatment with Pg-C-EE decreased the expression of matrix metalloproteinases, mitogen-activated protein kinases, and hyaluronidases and increased the cell survival rate. Conclusion: These results suggest that Pg-C-EE may have antimelanogenesis properties and skin-protective properties through regulation of activator protein 1 and cyclic adenosine monophosphate response element-binding protein signaling. Pg-C-EE may be used as a skin-improving agent, with moisture retention and whitening effects.

지방유래 줄기세포의 생존능 향상을 위한 CEACAM 6의 생물학적 기능에 대한 연구 (Biological Function of Carcinoembryonic Antigen-Related Cell Adhesion Molecule 6 for the Enhancement of Adipose-Derived Stem Cell Survival against Oxidative Stress)

  • 고은영;유지은;정세화;김평환
    • 대한임상검사과학회지
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    • 제51권4호
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    • pp.475-483
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    • 2019
  • 세포기반 치료제에 사용되는 줄기세포는 재생능력과 다양한 세포로의 분화능력으로 인해 재생 의학 분야에서 광범위하게 관심을 끌었으며, 많은 불치병에 적용된다. 하지만, 이러한 줄기세포는 여전히 치료 전 세포증식 및 질병 투여부위에서의 낮은 생존률로 인해 충분한 치료효과가 나타나지 않는 단점이 있다. 이것을 해결하고자, 우리는 세포부착능과 항세포자살 기능을 가지고 있는 carcinoembryonic antigen (CEA) gene family의 하나인 CEACAM 6를 사용하였다. 이것을 줄기세포에 적용 전, 먼저 세포별로 이 단백질이 발현되는지를 확인하였고, 이 유전자가 발현되는 벡터를 줄기세포에 삽입시키기 위한 최적 조건을 선정하였다. 그 후, 도입된 CEACAM 6발현벡터로부터 줄기세포에서 이 유전자가 발현되는지를 확인하였다. 그리고 인체투여 시 발생되는 산화적 스트레스와 유사한 조건에서의 이 유전자의 기능을 평가하기 위해 과산화수소(H2O2)를 처리하였다. 산화적 스트레스 조건하에서 CEACAM 6가 발현되는 줄기세포는 그렇지 않은 세포에 비해 세포의 생존률이 현저히 증가하는 것을 확인하였다. 이를 통해, 이 CEACAM 6는 줄기세포의 치료효능과 세포증식을 강화시킬 수 있는 다른 선택지로서의 가능성이 있음을 확인하였다.

SK-N-SH 신경세포내 항산화 효과와 p38 인산화 억제에 의한 곤드레, 누룩치 그리고 산마늘의 신경 보호 효과 (Neuroprotective Effects of Cirsium setidens, Pleurospermum kamtschaticumin, and Allium victorials Based on Antioxidant and p38 Phosphorylation Inhibitory Activities in SK-N-SH Neuronal Cells)

  • 정미자;박용일;권기한
    • 한국식품영양과학회지
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    • 제44권3호
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    • pp.347-355
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    • 2015
  • 신경계 질환은 산화적 스트레스에 의한 신경세포 손상에 의해 발생하는 것이 하나의 기전으로 알려져 있다. 본 연구는 $H_2O_2$에 의해 유도된 산화적 스트레스에 대항하여 곤드레(Cirsium setidens, CS), 누룩치(Pleurospermum kamtschaticumin, PK) 그리고 산마늘(Allium victorials, AV)의 뇌신경 보호 효과 및 그 기전에 대한 것이다. CS와 AV 처리는 대조군과 비교하여 $400{\mu}g/mL$까지 인간의 신경세포주인 SK-N-SH 세포에 대해 세포독성이 없었다. 산화적 유도자인 $H_2O_2$를 SK-N-SH 세포에 처리하였을 때 세포사멸 및 활성산소종(ROS) 생산이 현저하게 증가하였으나 CS 또는 AV 처리에 의해 산화적 스트레스에 의해 증가된 세포사멸과 ROS 생산이 현저하게 감소하였다. 실험한 산채 중에 CS와 PK가 AV보다 더 강한 DPPH 라디칼 소거 작용이 있었으나 PK는 대조군과 비교하여 SK-N-SH 세포를 사멸시키는 강한 세포독성을 가지고 있었다. CS는 AV보다 산화적 스트레스에 대항하여 세포사멸 및 ROS 생성에 더 높은 저해적 영향력을 보여주었다. 따라서 계속되는 실험에는 CS를 사용하였다. CS의 순차적 용매 분획물들인 헥산, 클로로포름, 에틸아세테이트, 부탄올 및 물 분획물들(CS-HE, CS-CH, CS-EA, CS-BU, CS-AQ)은 산화적 스트레스에 대항하여 SK-N-SH 세포사멸 및 세포내 ROS 생성을 억제하였다. CS-EA는 5개의 분획물들 중 가장 강한 DPPH 라디칼 소거작용 및 세포내 ROS 소거 활성을 가지고 있었고, 가장 강한 뇌신경세포 보호 효과를 가지고 있었다. CS-EA는 산화적 스트레스에 의해 증가된 세포자멸사(apoptosis)의 신호전달 경로에 관여하는 p38의 인산화를 저해함으로써 활성화되는 것을 약화시켰다. 이 결과들은 CS-EA가 뇌신경세포에서 항산화 효과 및 p38 인산화 억제에 의한 뇌신경 보호 효과를 나타낼 것이라 제안하였다.

알루미늄 블랙 드로스로부터 산화 환원반응을 이용한 고순도 알파 알루미나의 제조 (Preparation of High Purity α-Alumina from Aluminum Black Dross by Redox Reaction)

  • 신의섭;안응모;이수정;오오츠키 치카라;김윤종;조성백
    • 한국재료학회지
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    • 제22권9호
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    • pp.445-449
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    • 2012
  • We investigate the effects of redox reaction on preparation of high purity ${\alpha}$-alumina from selectively ground aluminum dross. Preparation procedure of the ${\alpha}$-alumina from the aluminum dross has four steps: i) selective crushing and grinding, ii) leaching process, iii) redox reaction, and iv) precipitation reaction under controlled pH. Aluminum dross supplied from a smelter was ground to separate metallic aluminum. After the separation, the recovered particles were treated with hydrochloric acid(HCl) to leach aluminum as aluminum chloride solution. Then, the aluminum chloride solution was applied to a redox reaction with hydrogen peroxide($H_2O_2$). The pH value of the solution was controlled by addition of ammonia to obtain aluminum hydroxide and to remove other impurities. Then, the obtained aluminum hydroxide was dried at $60^{\circ}C$ and heat-treated at $1300^{\circ}C$ to form ${\alpha}$-alumina. Aluminum dross was found to contain a complex mixture of aluminum metal, aluminum oxide, aluminum nitride, and spinel compounds. Regardless of introduction of the redox reaction, both of the sintered products are composed mainly of ${\alpha}$-alumina. There were fewer impurities in the solution subject to the redox reaction than there were in the solution that was not subject to the redox reaction. The impurities were precipitated by pH control with ammonia solution, and then removed. We can obtain aluminum hydroxide with high purity through control of pH after the redox reaction. Thus, pH control brings a synthesis of ${\alpha}$-alumina with fewer impurities after the redox reaction. Consequently, high purity ${\alpha}$-alumina from aluminum dross can be fabricated through the process by redox reaction.

Growth Characteristic, Mono-strain Mass Culture and Antioxidant Effects of Two Benthic Diatoms Amphora coffeaeformis and Achnanthes longipes from Korea

  • Abu Affan, Md.;Karawita, Rohan;Jeon, You-Jin;Lee, Joon-Baek;Kang, Do-Hyung;Park, Heung-Sik
    • 한국해양바이오학회지
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    • 제2권3호
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    • pp.174-186
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    • 2007
  • Amphora coffeaeformis and Achnanthes longipes are commonly found as dominant benthic microalgae in Jeju coastal water throughout the year. In order to investigate pharmaceutical uses of these diatoms, each single species was isolated with micropipette under phase contrast microscope and subcultured with synthetic seawater media which was enriched with F/2 media, trace metal solution and $Na_2SiO_3$). Growth characteristics of these species were also determined with different combination of salinity, nutrients concentration and temperature. Thereafter, mass culture of each species was done based on the maximum growth condition. Biomass was collected after two weeks of mass culture and freeze dried for antioxidant study. The antioxidant properties of different fractions (n-hexane, chloroform and ethylacetate) obtained by solvent fractionation of 80% methanolic extract of two microalgae were investigated for free radical, reactive oxygen species scavenging (Super oxide, Hydrogen peroxide, Hydroxyl radical and Nitric oxide), metal chelating and lipid peroxidation inhibition activities. All fractions of A. longipes showed higher $DPPH^{\cdot}$ (free radical) scavenging activities (n-hexane: 89.0%, Chloroform: 76.0%, Ethylacetate: 66.0%, Methanol: 90.6% and aqueous residue: 63.0%). N-hexane fraction of A. longipes showed significantly higher activity (49.0%) on nitric-oxide. Ethylacetate fraction of A. longipes and aqueous residue of A. coffeaeformis exhibited 64.0% and 75.6% metal chelating activity which was higher than commercial antioxidants (${\alpha}$-tocopherol: 18.0% and BHT: 16.0%). The n-hexane fraction of A. coffeaeformis had 67.5% activity on $DPPH^{\cdot}$. Chloroform and n-hexane fractions of A. coffeaeformis exhibited 46.2% and 47.6% $H_2O_2$ scavenging effects which were closely similar to commercial antioxidants (${\alpha}$-tocopherol: 49.2% and BHT: 58.6%). Chloroform and ethylacetate fractions of A. longipes and fraction of n-hexane and chloroform of A. coffeaeformis showed better lipid peroxidation activities than ${\alpha}$-tocopherol. These data suggest that both organic and aqueous fractions have good antioxidative compounds with different antioxidant properties.

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