Kim, Dong-Jo;Seong, Kum-Soo;Kim, Dong-Won;Kim, Seong-Ruyong;Chang, Che-Chul
Journal of Ginseng Research
/
v.28
no.1
/
pp.5-10
/
2004
This study was carried out to investigate the effect of the active ingredients from ginseng on paraquat(PQ) toxicity. Oxidative stress was induced by intraperitreatneal injection of PQ at a single dose of 25 mg/kg. Saponin treated groups were given protopanaxadiol saponins(PPD) or protopanaxatriol saponins(PPT)(5 mg/kg, orally) per day for 1, 3, & 7 days. We also investigated the relationship between lipid peroxidation and ginseng saponins by measuring the levels of superoxide dismutase(SOD), catalase(CAT), glutathione peroxidase (GPx), reduced glutathione(GSH), malondialdehyde (MDA), and hydrogen peroxide(H$_2$O$_2$) in liver tissue. The activities of SOD, CAT, and GPx were generally high in the PPD group; the SOD activity on each day was the highest in the PPD group. The H$_2$O$_2$ content was the lowest in the PPD group. The GSH levels were significantly increased in the PPD. The levels of MDA(the end product of lipid peroxidation) were significantly lower in the red ginseng component groups than in the PQ group; the levels were especially low in the PPD groups. These results led us to conclude that the antioxidant effects of extracts from red ginseng prevent oxidative damage by direct antioxidant effects involving SOD, CAT, & GPx, and increasing the ability of the body to synthesize endogenous antioxidants.
Journal of the Korean Society of Food Science and Nutrition
/
v.24
no.5
/
pp.713-719
/
1995
These studies were carried out to investigate the effects of Puerariae radix catechins(PRC) administration on the biochemical parameters of liver function in liver of carbon tetrachloride(CCl4)-treated rats. Thirty six healthy Sprague-Dawley rats weighing about 120g were used for this experiment and divided intot he following 3 groups : normal control group(NCON), $CCl_4$ control group(CCON), PRC treated group(PRC). Fifty percent $CCl_4$ in oil was administered(I.P.) by 2ml per kg body weight two times a week for 3 weeks. PRC treated groups were administered orally at the leaves of 1% per day in distilled water for 8 weeks. Lipid hydroperoxides were analyzed by using chemiluminescence-high performance liquid chromatography(CL-HPLC) method as a phosphatidylcholine hydroperoxide value(PCOOH) in liver tissues. $CCl_4$ treatment significantly(p<0.05) resulted in an increase in GPT & GOT activities and liver hydroperoxide values comparing with those of the untreated control, while administration of PRC to the $CCl_4-treated$ rats significantly(p<0.001) decreased GPT & GOT activities and liver hydroperoxide value. Their ultrastructual changes of hepatocellular organelles were shown to clarify the morphologic nature of protective effects of PRC on hepatocytic injuries. $CCl_4$ treatment observed to change the ultrastructual nature of outer membrane of hepatocytes. However, the hepatic changes on PRC treatment to $CCl_4$ group was not found. PRC administration may inhibit the formatiion of liver lipid hydroperoxides in vivo and were very effective in recovering the liver function in $CCl_4-treated$ rats.
Enzymatic extracts were prepared from the blueberry (Vaccinium corymbosum L.) collected in Jeju, Korea. Five carbohydrases namely AMG, Celluclast, Termamyl, Ultraflo and Viscozyme, and five proteases namely Alcalase, Flavourzyme, Kojizyme, Neutrase and Protamex were used to prepare the enzymatic extracts. Antioxidant properties of each extracts were studied using stable 1,1-diphenyl 2-picrylhydrazyl (DPPH), reactive oxygen species (ROS), nitric oxide (NO) scavenging, metal chelating assays and lipid peroxidation inhibitory activity in hemoglobin-induced linoleic acid system. The phenolic content of all enzymatic extracts was in the range of 517.85-597.96 mg/100 g dried sample. DPPH and NO${\cdot}$scavenging, and metal chelating assays exhibited prominent activities. Viscozyme showed the highest DPPH activity $(0.046{\pm}0.002\;mg/mL)$ while AMG Showed the highest activity in NO${\cdot}$scavenging $(0.339{\pm}0.011\;mg/mL)$. All the extracts exhibited strong metal chelating activities. Blueberry enzymatic extracts also showed relatively good activity in hydrogen peroxide scavenging. AMG showed the highest lipid peroxidation inhibitory activity $(0.28{\pm}0.01\;mg/mL)$ in hemoglobin-induced linoleic acid system. In this results, the blueberry, which has potential antioxidant components, may be a good candidate as a natural antioxidant source.
Journal of the Korean Society of Food Science and Nutrition
/
v.31
no.3
/
pp.500-505
/
2002
Many studies have shown that hyperglycemia leads to an increase of lipid peroxidation in diabetic patients and animals, reflecting a rise reactive oxygen species production. It is increasingly recognized that brain is another site of diabetic organ damage. Accordingly, this study was to investigate the effect of dandelion on oxygen free radical generating and scavenging system of brain in streptozotocin (STZ)-induced diabetic rats. Male Wistar rats were divided into diabetic (control) and diabetic-dandelion supplemented groups. Dandelion was supplemented for 4 weeks with dandelion leaf and root powder (DLP, DRP) or dandelion leaf and root water extract (DLW, DRW) based on 11.4 g of raw dandelion/kg diet. Diabetes was induced by single injection STZ (55 mg/kg B.W., i.p.)in a citrate buffer. Oxygen free radical generating enzymes, cytochrome P-450, amino-pyrine N-demethylase, aniline hydroxylase and xanthine oxidase, were lowered in dandelion supplemented-groups compared to the control group. Superoxide dismutase, catalase and gluthathione peroxidase activities of brain were also lower in dandelion leaf and root supplemented-group than in the control group, whereas glutathione S-transferase activity and gluthathione content were increased in dandelion supplemented-groups compared to the control group. With regard to the lipid peroxidation products, the malondialdehyde content of brain was lower in dandelion supplemented groups. Therefore, it could be suggested that powder and water extract of dandelion leaf or root are beneficial in preventing diabetic complication from lipid peroxidation and free radical in brain of diabetic rat brain.
In this study we investigated that the mountain-cultivated ginseng into persimmon vinegar fused material on blood lipids and anti-oxidant capacity in rats. A 4-year-old mountain-cultivated ginseng was ripened with 4-year-matured persimmon vinegar, and then it was diluted 5 times and orally administerd to rats. The rats were divided into a control group (CON), a persimmon vinegar group (PV) and a mountain-cultivated ginseng + persimmon vinegar fusion material group (MPV). The body weight was found to be low in MPV, and amount of the stored fats were also low in PV and MPV. Blood lipids were found to be low in PV and MPV compared to the CON. HDL-C (high density lipoprotein cholesterol) was found to be significantly high in these two groups. Liver Cu,Zn-SOD (superoxide dismutase) and GPx (glutathione peroxidase) were CON < PV < MPV, in sequence, with significance. Especially, it was the highest in MPV. Liver MDA (malondialdehyde) concent was MPV < PV, CON, in sequence, with significance. These results suggested that the fusion material lowers blood lipids and enhance anti-oxidant capacity. We carefully thought that it might be used effectively as a health food.
Cha Jae-Young;Jun Bang-Sil;Lee Chi-Hyeoung;Yooi Ki-Soo;Moon Jae-Chul;Cho Young-Su
Journal of Life Science
/
v.15
no.5
s.72
/
pp.809-818
/
2005
The effects of fermented chaga mushroom (Inonotus obliquus) on the concentrations of serum glucose, insulin, lipids and lipid peroxidation in streptozotocin (STZ)-induced diabetic rats were investigated. Rats were fed a semisynthetic diet supplemented with 50 g/kg chaga mushroom powder (the CM group) and fermented chaga mushroom powder (the FCM group), and no supplemented (the control group) for 3 weeks. The polysaccharide concentrations were CM by $42.9\%$ and FCM by $ 39.1\%$, and the total polyphenol concentrations were CM by $ 0.80\%$ and FCM by $0.91\%$. Feed intakes and water consumption, serum glucose, insulin, triglyceride, and blood urea nitrogen concentrations were significantly lower in the FCM group than in both the CM and control groups. The activities of AST and ALT were also significantly lower in the FCM group than in the control group. No significant differences were detected with regard to the serum cholesterol and creatinine concentrations among the experimental groups. Lipid peroxidations in hepatic homogenate, microsomal and mitochondrial subcellular and pancreas were significantly lowered by the administration of FCM in the STZ-diabetic rats. Hepatic glutathione concentrations, which is closely associated with antioxidant system, was significantly higher in the FCM group than in the control group, indicating a marked effect of FCM administration on the endogenous antioxidant system. However, CM treatment showed a moderate antioxidative activity in the STZ-diabetic rats. Our results indicate that fermented chaga mushroom exert hypoglycemic and antioxidative effects in type 1 diabetes mellitus.
This study was performed to measure the mutagenicity of fish by cooking and storage. Mutagenicity of the fish extract was measured by Ames test(Salmonella typhimurium reversion assay with TA 100) in vitro and by micro-nucleus test in vivo. The fish samples screened in this study were white fish(Trichiurus, Croaker, Salted Croaker) and red fish(Saury pike, Mackerel, Yellowtail, Salmon). The number of revertants of red fish were significantly higher than that of white fish. And the mutagenicity of mackerel was higher than other red fish, so followed experiment was made by using the extract of mackerel. Mutagenicity of the samples cooked on microwave oven was the lowest, whereas there was no significant difference between the samples cooked on gas grill and the ones on electric grill. In the presence of S9 mixture, the methanol extract of mackerel showed 2∼4 times high values of mutagenicity in comparison with the extract without S9. The extract of mackerel cooked with various vegetable juices showed inhibitory effects on the mutagenicity in the order of green tea, ginger, and radish. Also, the number of revertants was increased in the stored samples. Mutagenicity of the samples stored in the refrigerator was higher than that of the freezer. In micronucleus test, the methanol extract treated with vegetable juice inhibited micro-nucleus formation in bone marrow by cyclophosphamide in the order of ginger, green tea, and radish. In TBA test, there was a tendency that TBA values were increased as the storage time increased. Also, the rancidity of sample were stored in the refrigerator was higher value than sample stored in the freezer. Samples cooked on microwave oven showed the highest value in rancidity. When the antioxidant effect of vegetable juice was measured by electron donating ability(EDA) of mackerel cooked with vegetable juice to DPPH, the samples treated with onion showed the highest value of EDA(%), and the samples treated with green tea, ginger and cabbage also showed the antioxidant effect.
Journal of the Korean Society of Food Science and Nutrition
/
v.44
no.10
/
pp.1422-1430
/
2015
This study was conducted to determine the effect of fermented water extracts from Ligularia fischeri (LAF) on reduction of hepatotoxicity induced by D-galactosamine (D-GalN) in rats. In this experiment, male Sprague-Dawley rats were used as experimental animals, which were divided into eight groups: normal group, D-GalN-treated group (control), D-GalN and non-fermented water extracts from Ligularia fischeri (LA)-treated groups [100, 200, and 400 mg/kg BW (body weight)], and D-GalN and LAF-treated groups (100, 200, and 400 mg/kg BW). ${\gamma}$-Glutamyl transferase, aspartate aminotransferase, alanine aminotransferase, and lactate dehydrogenase activities in serum of the D-GalN and LAF-treated groups decreased significantly compared to those of the control group (P<0.05). The high density lipoprotein-cholesterol levels of the D-GalN and LAF-treated groups increased significantly compared to those of the control group (P<0.05). The low density lipoprotein-cholesterol and triglyceride levels of the D-GalN and LAF-treated groups decreased significantly compared to those of the control group (P<0.05). The atherogenic index values of the D-GalN and LAF-treated groups decreased significantly compared to those of the control group (P<0.05), and their high density lipoprotein cholesterol by total cholesterol ratio increased significantly in these groups (P<0.05). Superoxide dismutase activity of liver tissues were enhanced significantly (P<0.05) in the D-GalN and LAF-treated groups compared to that of the control group (P<0.05), whereas their malondialdehyde content decreased significantly in these groups (P<0.05). The histopathological observations revealed apoptotic cells and mild portal inflammation in liver tissues of the D-GalN and LAF-treated groups. Taken together, these results demonstrate that LAF may improve plasma lipid profile and alleviate hepatic damage.
KANG Jin-Hoon;BYUN Han-Seok;LEE Yong-Woo;KIM Seon-Bong;PARK Young-Ho
Korean Journal of Fisheries and Aquatic Sciences
/
v.20
no.3
/
pp.213-218
/
1987
The DNA damage mechanism by fish oil peroxidation was investigated through the model system of a DNA-mackerel lipid at $37^{\circ}C$. Mackerel lipid peroxidation products induced a great DNA damage with the increment of its concentration, and such DNA damage in all systems examined occurred below $100millieq{\cdot}/kg$ in POV (peroxide value) Singlet oxygen $(^1O_2)$ and superoxide anion${\cdot}O_2^-$ greatly participated in the DNA damage during peroxidation of mackerel lipid, while hydrogen peroxide$(H_2O_2)$ and hydroxyl radical $({\cdot}OH)$ did little show the DNA damage. From the results of the addition of several active oxygen scavengers to the DNA-lipid systems, singlet oxygen ana superoxide anion greatly affected to the increase of POV ana to the DNA damage by mackerel lipid peroxidation, respectively. It indicates that there was a close relationship between the effects of active oxygens in the mackerel lipid peroxidation and its DNA damage mechanism.
This study was conducted to investigate the effects of Opuntia humifusa supplementation on lipid peroxidation and superoxide dismutase (SOD) protein expression at resting state in various organs of rats fed a high-fat diet. Sixteen Sprague-Dawley male rats, 6 weeks of age, were randomly divided into two groups: a control diet group (CG, n=8) and an experimental diet group (EG, n=8). They were given a high-fat diet (CG) or a diet supplemented with 5% of O. humifusa (EG) for 8 weeks. The results showed that the malondialdehyde (MDA) levels of the kidney and the liver were significantly lower in the EG group than in the CG group (p<0.01). In addition, the MDA levels in the skeletal muscle of the EG group tended to be lower than those in the CG group, but this difference was not significant. The Cu, Zn-SOD protein expression in the kidney of the EG group was significantly increased compared with that of the CG group (p<0.01). The Mn-SOD protein expression in the skeletal muscle of the EG group was significantly increased compared with that of the CG group (p<0.01). These results suggest that O. humifusa supplementation has antioxidative properties, which are exerted in a specific organ manner, and that it inhibits the action of lipid peroxidation and the expression of SOD in rats fed a high-fat diet.
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