• Title/Summary/Keyword: Detoxification.

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Inhibitory Effects of the Methanolic Fraction from Pueraria Radix on Hydrogen Peroxide-induced Lipid Peroxidation and Cadmium-induced Cytotoxicity (III) (갈근 메탄올분획의 과산화수소에 의해 유도된 지질과산화와 카드뮴에 대한 독성억제효과 (III))

  • Lim, Jin-A;Kim, Yun-Ha;Baek, Seung-Hwa
    • Journal of Physiology & Pathology in Korean Medicine
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    • v.20 no.6
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    • pp.1556-1560
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    • 2006
  • The effects of the methanol subfraction from Pueraria Radix on hydrogen peroxide-induced lipid peroxidation and cadmium-induced cytotoxicity were investigated in NIH 3T3 fibroblast cells. After the methanol subfraction treatment, the content of MDA induced by 600 ${\mu}g$ $H_2O_2$ significantly decreased in proportion to the subfraction concentrations as well as 50 ${\mu}M$ $CdCl_2$-induced cytotoxicity. Especially, 200 ${\mu}g/mL$ concentration of methanol subfraction was strongly shown inhibition of lipid peroxidation and detoxification of cadmium. These results suggest that the methanol subfraction from Pueraria Radix retains a potential antioxidant and protective effect against cadmium.

Quinone Reductase Inducer from Radish Leaf Cultivated in the Soil Containing Sulfur (유황시비처리가 열무의 Quinone Reductase 유도물질 생성에 미치는 영향)

  • 김경아;노치웅;최경락;황해준;최혜선
    • Journal of the Korean Society of Food Science and Nutrition
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    • v.33 no.6
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    • pp.946-950
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    • 2004
  • Young radishes which were grown in the soil containing sulfur increased quinine reductase (QR) activity in Hepa 1clc cells and isothiocyanate-like compound analyzed by HPLC. QR inducing activity was maximum in young radishes grown with 1,818 g/㎥ sulfur and was decreased when the soil was neutralized with lime mortar in order to improve a recovery. These results have suggested that consumption of young radishes, especially grown in the presence of sulfur, would prevent from cancer incidence through inducing detoxification enzymes and could have therapeutic effects for chemoprevention.

Transcriptome Analysis and Expression Profiling of Molecular Responses to Cd Toxicity in Morchella spongiola

  • Xu, Hongyan;Xie, Zhanling;Jiang, Hongchen;Guo, Jing;Meng, Qing;Zhao, Yuan;Wang, Xiaofang
    • Mycobiology
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    • v.49 no.4
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    • pp.421-433
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    • 2021
  • Morchella is a genus of fungi with the ability to concentrate Cd both in the fruit-body and mycelium. However, the molecular mechanisms conferring resistance to Cd stress in Morchella are unknown. Here, RNA-based transcriptomic sequencing was used to identify the genes and pathways involved in Cd tolerance in Morchella spongiola. 7444 differentially expressed genes (DEGs) were identified by cultivating M. spongiola in media containing 0.15, 0.90, or 1.50 mg/L Cd2+. The DEGs were divided into six sub-clusters based on their global expression profiles. GO enrichment analysis indicated that numerous DEGs were associated with catalytic activity, cell cycle control, and the ribosome. KEGG enrichment analysis showed that the main pathways under Cd stress were MAPK signaling, oxidative phosphorylation, pyruvate metabolism, and propanoate metabolism. In addition, several DEGs encoding ion transporters, enzymatic/non-enzymatic antioxidants, and transcription factors were identified. Based on these results, a preliminary gene regulatory network was firstly proposed to illustrate the molecular mechanisms of Cd detoxification in M. spongiola. These results provide valuable insights into the Cd tolerance mechanism of M. spongiola and constitute a robust foundation for further studies on detoxification mechanisms in macrofungi that could potentially lead to the development of new and improved fungal bioremediation strategies.

Arsenic Detoxification by As(III)-Oxidizing Bacteria: A Proposition for Sustainable Environmental Management

  • Shamayita Basu;Samir Kumar Mukherjee;Sk Tofajjen Hossain
    • Microbiology and Biotechnology Letters
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    • v.51 no.1
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    • pp.1-9
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    • 2023
  • Arsenic (As), which is ubiquitous throughout the environment, represents a major environmental threat at higher concentration and poses a global public health concern in certain geographic areas. Most of the conventional arsenic remediation techniques that are currently in use have certain limitations. This situation necessitates a potential remediation strategy, and in this regard bioremediation technology is increasingly important. Being the oldest representativse of life on Earth, microbes have developed various strategies to cope with hostile environments containing different toxic metals or metalloids including As. Such conditions prompted the evolution of numerous genetic systems that have enabled many microbes to utilize this metalloid in their metabolic activities. Therefore, within a certain scope bacterial isolates could be helpful for sustainable management of As-contamination. Research interest in microbial As(III) oxidation has increased recently, as oxidation of As(III) to less hazardous As(V) is viewed as a strategy to ameliorate its adverse impact. In this review, the novelty of As(III) oxidation is highlighted and the implication of As(III)-oxidizing microbes in environmental management and their prospects are also discussed. Moreover, future exploitation of As(III)-oxidizing bacteria, as potential plant growth-promoting bacteria, may add agronomic importance to their widespread utilization in managing soil quality and yield output of major field crops, in addition to reducing As accumulation and toxicity in crops.

Effects on Tensile Strength and Elasticity after Treatment with Glutaraldehyde, Solvent, Decellularization and Detoxification in Fresh Bovine Pericardium (소의 심낭 고정에서 용매 처치, 무세포화 혹은 항독성화 처치가 조직의 장력 및 신장도에 미치는 영향)

  • Jang, Woo Sung;Kim, Yong Jin;Kim, Soo Hwan
    • Journal of Chest Surgery
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    • v.43 no.1
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    • pp.1-10
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    • 2010
  • Background: Bioprosthetic materials have been made using glutaraldehyde fixation of porcine or bovine pericardium during cardiovascular surgery. But these bioprostheses have the problems of calcification and mechanical failure. We determined changes in tensile strength and elasticity of pericardium after glutaraldehyde, solvent, decellularization and detoxification. Material and Method: Tissues were allocated to four groups: glutaraldehyde with and without solvent, decellularization, and detoxification. We studied tensile strength and strain on tissues. We measured the tensile strength of fresh pericardium stretched in six directions (with 5 mm width), and % strain, which we calculated from the breaking point when we pulled the pericardium in two directions. Result: Tensile strength was reduced when we used the usual concentrated glutaraldehyde fixation (n=83, $MPa=11.47{\pm}5.40$, p=0.006), but there was no change when we used solvent. Elasticity was increased after glutaraldehyde fixation (n=83, strain $(%)=24.55{\pm}9.81$, p=0.00), but there was no change after solvent. After decellularization of pericardium, the tensile strength was generally reduced. The decrease in tensile strength after concentrated glutaraldehyde fixation for a long time was significantly greater less than after concentrated solvent (p=0.01, p=0.00). After detoxification, the differences in strength and strain were not significant. Conclusion: After glutaraldehyde treatment of pericardium there is no loss in tensile strength (even though we did the glutaraldehyde, solvent and detoxification treatments LOGIC IS UNCLEAR). Also, these treatments had a tendency to increase elasticity. Although post-treatment decellularization led to a significant loss in strength, this effect could be attenuated using a low concentration of solvent or hypertonic solution.

Contamination and Detoxification of Aflatoxins (아플라톡신 오염 및 저감화 방안)

  • Cho, So-Yean;Kang, In-Ho;Shim, Young-Hoon;Yang, Dong-Hyug;Oh, Seh-Wook;Lee, Byung-Hee;Hyeon, Seong-Ye;Chang, Seung-Yeup;Jeong, Choon-Sik;Lee, Yong-Soo;Kim, Young-Shik;Kang, Shin-Jung
    • Korean Journal of Pharmacognosy
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    • v.38 no.3 s.150
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    • pp.205-216
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    • 2007
  • South Korea is the representative consumption country of herbal medicines and most of herbal medicines circulating in Korea have been importing from the developing countries of Southeast Asia such as China, Vietnam, Indonesia and so forth. Domestic hygiene and safety are continuously proposed because herbal medicines which are circulating have the possibility could remain contaminants or residues. Physicochemical contaminants such as heavy metals, persistent organic pollutants, radionucleosides, microbial toxins, biological contaminants such as microorganisms and animals, agrochemical residues such as pesticides, substances used for fumigation, antiviral agents, and solvent residues are classified as major contaminants and residues in herbal medicines from 2005 September WHO.$^{1)}$ Currently our administration have established a permission standard and the inspection criteria against the heavy metal, the residual pesticides and a residual sulfur dioxide. Furthermore our administration is continuously monitoring and conducting researches for the policies and their scientific ground against herbal medicines. But the appearances or discoveries of the harmful new species due to environmental and industrial developments are becoming social problems. Therefore it may be necessary to continuously consider and investigate regarding hereupon. Recently, the contamination of the mycotoxins against foods such as cereals, nuts and the powdered red pepper have developed and started became problematic issue, and possibility of contamination against the herbal medicine is proposed. And since populations who are using the herbal medicines very limited to several nations, recognition and researches about contamination of mycotoxins in herbal medicines are very insufficient. Therefore it will be need to more focus on the international regulation of quality control and safety for herbal medicines. Now on, we are going to introduce the importance, occurrence, characteristic properties, World-wide research trends and detoxification of aflatoxins, which is known as the most potent mutagen, carcinogen and teratogen mycotoxins.

Comparison of Hepatic Detoxification activity and reducing Serum Alcohol concentration of Hovenia dulsis $T_{HUNB}$ and Alnus japonica Steud. (헛개나무와 오리나무 추출물의 간 해독작용 및 체내 알콜 분해능 비교)

  • An, Sang-Wook;Kim, Young-Gil;Kim, Min-Hae;Lee, Byung-Ik;Lee, Sang-Ho;Kwon, Hyuk-Il;Hwang, Baik;Lee, Hyeon-Yong
    • Korean Journal of Medicinal Crop Science
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    • v.7 no.4
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    • pp.263-268
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    • 1999
  • It was found that the level of alcohol concentration in both mouse and human sera can be significantly decreased up to 42% by oral administration of the mixtures of the extracts of Hovenia dulcis THUNB and Alnus japonica Steud. A single treatment of extract from Hovenia dulcis reduced the serum alcohol concentration to 32%, compared to 13% in treating the extract of Alnus japonica. Similar patterns were observed in enhancing alcohol dehydrogenase (ADH) and glutathion-S-transferase (GST) activity in the liver. The inhibition of cathepsin activity was also greatly reduced by administrating the mixture of both extracts : however, the extract of Alnus japonica did not affect the acitivity of cathepsin. It was concluded that the mixture of both extracts had synergic effect on reducing serum alcohol concentration and improving the detoxification process due to alcohol administration in the liver.

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Quantification of Karanjin, Tannin and Trypsin Inhibitors in Raw and Detoxified Expeller and Solvent Extracted Karanj (Pongamia glabra) Cake

  • Panda, A.K.;Sastry, V.R.B.;Kumar, A.;Saha, S.K.
    • Asian-Australasian Journal of Animal Sciences
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    • v.19 no.12
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    • pp.1776-1783
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    • 2006
  • Despite being a rich source of protein (28-34%), karanj (Pongamia glabra) cake is found to be bitter in taste and toxic in nature owing to the presence of flavonoid (karanjin), tannin and trypsin inhibitor, thereby restricting its safe inclusion in poultry rations. Feeding of karanj cake at higher levels (>10%) adversely affected the growth performance of poultry due to the presence of these toxic factors. Therefore, efforts were made to detoxify karanj cake by various physico-chemical methods such as dry heat, water washing, pressure cooking, alkali and acid treatments and microbiological treatment with Sacchraromyces cerevisiae (strain S-49). The level of residual karanjin in raw and variously processed cake was quantified by high performance liquid chromatography and tannin and trypsin inhibitor was quantified by titrametric and colorimetric methods, respectively. The karanjin, tannin and trypsin inhibitor levels in such solvent and expeller pressed karanj cake were 0.132, 3.766 and 6.550 and 0.324, 3.172 and 8.513%, respectively. Pressure-cooking of solvent extracted karanj cake (SKC) substantially reduced the karanjin content at a cake:water ratio of 1:0.5 with 30-minute cooking. Among chemical methods, 1.5% (w/w) NaOH was very effective in reducing the karanjin content. $Ca(OH)_2$ treatment was also equally effective in karanjin reduction, but at a higher concentration of 3.0% (w/w). A similar trend was noticed with respect to treatment of expeller pressed karanj cake (EKC). Pressure cooking of EKC was effective in reducing the karanjin level of the cake. Among chemical methods alkali treatment [2% (w/w) NaOH] substantially reduced the karanjin levels of the cake. Other methods such as water washing, dry heat, HCl, glacial acetic acid, urea-ammoniation, combined acid and alkali, and microbiological treatments marginally reduced the karanjin concentration of SKC and EKC. Treatment of both SKC and EKC with 1.5% and 2.0% NaOH (w/w) was the most effective method in reducing the tannin content. Among the various methods of detoxification, dry heat, pressure cooking and microbiological treatment with Saccharomyces cerevisiae were substantially effective in reducing the trypsin inhibitor activity in both SKC and EKC. Based on reduction in karanjin, in addition to tannin and trypsin inhibitor activity, detoxification of SKC with either 1.5% NaOH or 3% $Ca(OH)_2$, w/w) and with 2% NaOH were more effective. Despite the effectiveness of pressure cooking in reducing the karanjin content, it could not be recommended for detoxification because of the practical difficulties in adopting the technology as well as for economic considerations.

Heterologous Expression of Fission Yeast Heavy Metal Transporter, SpHMT-1, Confer Tolerance to Cadmium in Cytosolic Phytochelatin-Deficient Saccharomyces cerevisiae (분열효모 SpHMT1을 세포질 파이토킬레이트를 생성하지 않는 효모에서 발현으로 인한 카드뮴에 대한 저항성 증가)

  • Lee, Sang-Man
    • Journal of Life Science
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    • v.19 no.12
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    • pp.1685-1689
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    • 2009
  • Phytochelatins (PCs) are small polypeptides synthesized by PC synthase (PCS). They are present in various living organisms including plants, fission yeast, and some animals. The presumed function of PCs is the sequestration of cytosolic toxic heavy metals like cadmium (Cd) into the vacuoles via vacuolar membrane localized heavy metal tolerance factor 1 (HMT-1). HMT-1 was first identified in fission yeast (SpHMT-1), and later in Caenorhabdtis (CeHMT-1). Recently, its homolog has also been found in PC-deficient Drosophila (DmHMT-1), and this homolog has been shown to be involved in Cd detoxification, as confirmed by the heterologous expression of DmHMT-1 in fission yeast. Therefore, the dependence of HMT-1 on PC in Cd detoxification should be re-evaluated. I heterologously expressed SpHMT-1 in cytosolic PC-deficient yeast, Saccharomycea cerevisiae, to understand the dependence of HMT-1 on PC. Yeast cells expressing SpHMT-1 showed increased tolerance to Cd compared with control cells. This result indicates that SpHMT-1 is not strictly correlated with PC production on its function. Moreover, yeast cells expressing SpHMT-1 showed increased tolerance to exogenously applied glutathione (GSH) compared with control cells, and the tolerance to Cd was further increased by exogenously applied GSH, while tolerance in control cells was not. These results indicate that the function of SpHMT-1 in Cd detoxification does not depend on PCs only, and suggest that SpHMT-1 may sequester cytosolic GSH-Cd complexes into the vacuole.

Solar Detoxification of Trichloroethylene in Waste Water with Slurry Batchtype Photoreactor (Slurry batch형 광화학 반응기를 이용한 폐수 내의 Trichlroethylene의 분해)

  • Lee, Tai-K.;Kim, Dong-H.;Cho, Sug-H.;Auh, Chung-Moo
    • Solar Energy
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    • v.12 no.3
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    • pp.10-20
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    • 1992
  • In this experiment, photochemical reaction has been applied to destroy TCE in water phase. The main target of this work is to investigate the technical feasibility of large scale of solar detoxification reactor for water treatment. The results have revealed that solar detoxification utilizing photon energy from the sun is the most attractive process to decompose organic toxins in water phase at room temperature. The detailed results from this work are as follows; (1) The highest conversion ratio of TCE was obtained by using $TiO_2$, annatase as a photocatalyst among $TiO_2$ anatase, $TiO_2$ rutile and $V_2O_5$ under the same experimental condition. The anatase crystal structure was confirmed with XRD analysis, and its surface area was 7.748 $m^2/g$ from the BET-$N_2$ measurement (2) 0.1 wt% of $TiO_2$ anatase has been adopted as optimal quantity for batch slurry reactor at this experimental conditions. (3) The effect of hydrogen peroxide on the conversion of TCE was investigated. Its optimal quantity was 0.06 vol. % under this experimental conditions. (4) The effect of oxygen on the conversion of TCE also was studied by controlling the head space in photoreactor. Results indicated that sufficient amount of oxygen should be supplied to accomplish the highest conversion rate of TCE in water phase.

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