This study was carried out to investigate the effect of Opuntia ficus indica(prickly pear) pigment and sodium lactate on nitrite-reduced sausages. The a* value, total bacterial counts, pH, water holding capacity, texture analysis, sensory evaluation of sausages, body weight gain and blood glucose of rat for 4 weeks were not significantly different between the control and treatments. However, 2-thiobarbituric acid(TBA) values and cholesterol(total, LDL, HDL) and neutral fat of blood were significantly different between the control and treatments(P<0.05). TBA value was lower in control and cholesterol and neutral fat were lower in treatments. Among the treatments T2(30ppm of nitrite+2% of sodium lactate+0.2% Opuntia ficus indica pigment) was the most effective. In conclusions, this study suggested that T2 can reduce adding level of nitrite from 100 ppm to 30 ppm without any changes in color, shelf life and flavor of sausages. In addition, it had the effect on the reduction of cholesterol and neutral fat in blood.
The purpose of this study was to observe the influences of the water fluoride concentration on the growth changes, the histologic characteristics of osteoblast in the tibia of growing newborn rats by using electron microscopy and on the composition changes of bone matrix in those by using energy dispersive x-ray system (EDX). The water fluoride concentration was respectively 0 ppm (contrast group), 100 ppm (100 ppm group), 200 ppm (200 ppm group) and 300 ppm (300 ppm group). The results of the investigation by using electron microscopy were as followed. In contrast group, the traditional cuboidal osteoblasts were observed. In 100 ppm group, several reversal line, the newly formed osteoid by the strongly activated osteoblast and the well developed rough endoplasmic reticulum, mitochondria in cytoplasm of osteoblast were observed. Also, many secretory vesicle around cell membrane were observed and some fused with cell membrane released secretory granule out of cell. In 200 ppm group, the depressed osteoblasts were observed, mitochondria in cytoplasm were expanded and cristae shape in mitochondria were destroyed. Also, the ribosome at the surface of rough endoplasmic reticulum were not observed. In 300 ppm group, the adjacent osteoblasts with endosteum were irregularly arranged, the cell membrane were destroyed and organelles were flowed out of cell. On the other hand, the results of the investigation by using energy dispersive x-ray system were as followed. P and Ca concentrations in 100 ppm group were increased more than those in contrast group. But, in 200 and 300 ppm group were not increased more than those in 100 ppm group. Therefore, the activities of the osteoblasts were increased, the bone matrix were actively synthesized by the supplied water fluoride. But, the osteoblasts were destroyed, inhibited by the higher water fluoride concentration.
Pungent oils are fat sources that determine the taste, flavor, and satiety of foods. They are also energy sources and regulators of lipid metabolism in humans. The present study was performed to evaluate the effects of red pepper (Capsicum annuum L.) seed oil (RPO) and sancho (Zanthoxylum schinifolium) seed oil (SCO) as pungent oils on the lipid profiles of rats fed on hypercholesterolemic diets (0.12% cholesterol), as compared to common soybean oil (SBO). There were large differences in the n-6/n-3 fatty acid ratios of the experimental oils (SBO: 8.8, SCO: 1.2, RPO: 70.1). Serum cholesterol concentrations were higher in the RPO groups than in the other groups; whereas ratios of HDL-cholesterol/total cholesterol were lower in the RPO groups. On the other hand, liver cholesterol levels were markedly higher in the SCO groups than in the RPO groups, with the SBO groups having intermediate levels; these largely reflected cholesterol ester content differences in the rat livers. It is possible that the different serum cholesterol responses observed in the RPO and SCO groups might have been related to differences in the n-6/n-3 fatty acid ratio rather than the polyunsaturated fatty acids/saturated fatty acids ratio. Serum triacylglycerol concentrations were lower in the SCO groups as compared to the other groups. Overall, the results showed a hypocholesterolemic effect for sancho seed oil as compared to red pepper seed oil in rats fed diets containing 0.12% cholesterol.
Smilax china L. rhizome extract(SCE), called 'Tobokreung' in Korean traditional medicine was investigated the influence on heavy metal contents(particularly Pb, Cd, As, and Hg) in Sprague-Dawley rats for 3 weeks. The test groups were divided into 4 group, normal, control, and SCE feeding groups, SC1(13 mg/kg) and SC2(26 mg/kg), respectively. The three group except normal group, were fed heavy metal such as Pb, Cd, As, and Hg. Body weight gain and the weight of target organs (liver and kidney) were determined and had not shown significant differences. Pb, Cd, and As contents in the kidney of SCE feeding groups were tended to decrease after 3 weeks, and SC2 group showed remarkably decrease of them. In the liver, the 3 heavy metal contents except Cd of SC2 group, were decreased rather than that of control group. Pb contents in the serum and the hair of the SC2 group showed significantly decreasing. All the taken together, we investigated the effect of SCE on the 4 heavy metal contents in rats for 3 weeks, and found out that more dosage of SCE made lower heavy metal contents in vivo, for the first time.
Rats(Sprague-Dawley) were randomly assigned to the following four groups, control, exercise only, exercise and the intake of DNA, exercise, and the intake of DNA plus crude catechin. 0.4% of DNA from salmon egg and 0.1% crude catechins from Puerariae thunbergiana roots were fed to the rats. The exercise group was exercised in a treadmill at 20 m/min speed for 6 wks. Body weight and body fat weight of 4 groups were investigated, and the body fat composition and antioxidant activity were evaluated by measuring the weight of organs and biochemical test. After 6 wks, body weight did not show any significant differences among those 4 groups, but body fat weight in exercised groups was significantly decreased. The weight of liver, epididymal adipose tissue(E.A.T) and perirenal adipose tissue(P.A.T) were significantly decreased in groups of exercise only, exercise and the intake of DNA, exercise and the intake of DNA plus crude catechin(p<0.05). Phospholipid, cholesterol and triglyceride levels of serum were decreased by exercise, but HDL-cholesterol level of serum was significantly increased(p<0.05). GOT, GPT and glucose levels in serum were slightly decreased by crude catechin, but serum NEFA levels were significantly increased by crude catechin(p<0.05). Results indicated that excercise with the intake of crude catechin would be helpful for the functional development of the compositions in blood lipid.
Restoration of the blood flow after a period of ischemia is accompanied by generation of toxic oxygen radicals. This phenomenon may account for the occurrence of reperfusion-mediated tissue injury in ischemic hearts. In in vitro studies, although oxygen radicals can be generated from a variety of sources, including xanthine oxidase system, activated leucocytes, mitochondria and others, the most important source and mechanism of oxygen radical production in the post-ischemic reperfused hearts is unclear. In the present study, we tested the hypothesis that the respiratory chain of mitochondria might be an important source of oxygen radicals which are responsible for the development of the reperfusion injury of ischemic hearts. Langendorff-perfused, isolated rat hearts were subjected to 30 min of global ischemia at $37^{\circ}C$, followed by reperfusion. Amytal, a reversible inhibitor of mitochondrial respiration, was employed to assess the mitochondrial contributions to the development of the reperfusion injury. Intact mitochonria were isolated from the control and the post-ischemic reperfused hearts. Mitochondrial oxygen radical generation was measured by chemiluminescence method and the oxidative tissue damage was estimated by measuring a lipid peroxidation product, malondialdehyde(MDA). To evaluate the extent of the reperfusion injury, post-ischemic functional recovery and lactate dehydrogenase(LDH) release were assessed and compared in Amytal-treated and -untreated hearts. Upon reperfusion of the ischemic hearts, MDA release into the coronary effluent was markedly increased. MDA content of mitochondria isolated from the post-ischemic reperfused hearts was increased to 152% of preischemic value, whereas minimal change was observed in extramitochondrial fraction. The generation of superoxide anion was increased about twice in mitochondria from the reperfused hearts than in those from the control hearts. Amytal inhibited the mitochondrial superoxide generation significantly and also suppressed MDA production in the reperfused hearts. Additionally, Amytal prevented the contractile dysfunction and the increased release of LDH observed in the reperfused hearts. In conclusion, these results indicate that the respiratory chain of mitochondria may be an important source of oxygen radical formation in post-ischemic reperfused hearts, and that oxygen radicals originating from the mitochondria may contribute to the development of myocardial reperfusion injury.
We have recently demonstrated that the fluoroquinolone antibacterial DW-116 caused a significant developmental toxicity in rats. The present study was conducted to determine whether the development toxicity induced by DW-116 treatment was the result of malnutrition fro reduced food intake or the direct effects of test chemical on conceptuses. The test chemical was administered by gavage to pregnant rats from gestational days 6 through 16 at dose levels of 0 and 500 mg/kg/day. A pair-feeding study was also performed in which the pregnant rats received the same amount of diet consumed by the DW-116-treated pregnant rats. All dams were subjected to caesarean section on day 20 of gestation and their fetuses were examined for examined for external, visceral, and skeletal abnormalities. In this treatment group, the maternal toxicities included increased abnormal clinical signs, decreased maternal body weight, suppressed body weight gain during treatment and posttreatment periods, and reduced food intake. The significant developmental toxicities included increased fetal deaths, decreased live fetuses, reduced fetal body weight and placental weight, increased incidence of fetal abnormalities, and increased fetal ossification delay. In this pair-fed group, however, slight maternal toxicities including decreased body weight and suppressed body weight gain during treatment period were observed in comparison with the control group, and minimal development toxicities including reduced fetal and placental weights and increased fetal ossification delay were found. The number of fetal deaths and live fetuses, and the incidences of malformed fetuses and litters with affected fetuses were comparable to the control values. Based on the results, it could be concluded that the development toxicity observed in the treatment group is attributable to the direct effects of Dw-116 treatment, but not to the maternal malnutrition from reduced food consumption during pregnancy.
The effects of cheonggukjang (CK) on the weight gains, serum and hepatic lipids levels were investigated in adult female rats fed the cholesterol diets. Sprague-Dawley strain rats were given four different types of diet for 4 weeks, respectively: a normal diet, a control diet (10% fat + 0.5% cholesterol), a 5% or 10% CK diets (control diet + 5% or 10% CK powder). The body weights, food intake and food efficiency ratios, and the uterine fat pad weights of 5% CK and 10% CK groups were more significantly decreased than those of the control group. The liver cholesterol and triglyceride levels were significantly lower of the 10% CK group than those of the control group. The concentrations of serum triglyceride, total cholesterol, LDL+VLDL-cholesterol, and atherogenic index ratios were significantly decreased in the 10% CK group compared with those in the control group. The HDL-cholesterol/total-cholesterol ratios was significantly increased in the 10% CK group compared with those in the control group. The fecal total lipid excretion of the 5% and 10% CK groups were more increased than those in the control group. These results showed that the 10% cheonggukjang feeding decreased the triglyceride, total cholesterol, LDL+VLDL-cholesterol and atherogenic index ratios in serum as well as the triglyceride and cholesterol in liver, and increased the HDL-cholesterol/total-cholesterol ratio in serum.
Park, Young Mi;Lim, Jae Hwan;Lee, Jong Eun;Seo, Eul Won
Journal of Life Science
/
v.25
no.5
/
pp.539-547
/
2015
This study aimed to investigate the protective effect of Semisulcospira libertina extract on liver injury induced by D-galactosamine in rats. After the administration of S. libertina extract, the local fat degeneration and infiltration of inflammatory cells in liver tissues were significantly decreased and peripheral hemorrhages around portal triads and central necrosis around central veins were found to be protective. The elevated levels of plasma ALT, AST, and LDH, the ALP activation lipid peroxidation, and the lipid contents of a damaged liver were recovered in experimental rats administrated with S. libertina extract, suggesting its role in blood enzyme activation and lipid content restoration within damaged rat liver tissues. Moreover, the expression rate of TNF-α, which accelerates inflammation and induces tissue damage and necrosis, was significantly decreased. In addition, the activities of antioxidant enzymes were more effectively upregulated compared to those of the control group induced hepatotoxicity. All data showed that S. libertina extract has a preventive role against liver damages, such as inflammation and tissue necrosis, as instigated with D-galactosamine by improving the activities of blood enzymes and antioxidant enzymes and modulating the expression of inflammation factor, suggest S. libertina extract is an effective medicinal resource for the restoration of hepatotoxicity.
The purpose of this study was to investigate the biological effect of obesity-induced oxidative damage on neurogenesis and early protein expression. Obesity was induced I thirty 4-week old male Sprague-Dawley rats through a high fat diet for 15 weeks. After one week of environmental adaptation, the rats were divided into 2 groups: high fat diet sedentary group (HDS, n=15) and high fat diet training group (HDT, n=15). Exercise training was performed 5 times a week for 8 weeks, with mild-intensity treadmill running for weeks 1-4 and moderate-intensity treadmill running for weeks 5-8. After the 8 week training period, we analyzed lipid profiles, serum 8-hydroxyguanosine (8-OHdG), liver tissue malondialdehyde (MDA) related to oxidative damage factors, nerve growth factor (NGF), brain derived neurotrophic factor (BDNF), c-fos, c-jun, and extracellular signal regulated kinase (Erk) in the hippocampus. The results of this study are as follows. There were differences between HDS and HDT in triglyceride (TG) and total cholesterol (TC) (p<0.05). In high density lipoprotein (HDL-c), the HDT was higher than HDS after treadmill training (p<0.05). In 8-OHdG, the HDT was lower than HDS after treadmill training (p<0.05). Genetic expressions of c-jun, BDNF and MDA in the HDT were higher than in the HDS after treadmill training in hippocampus (p<0.05). Therefore, we conclude that 8 weeks of treadmill training can improve imbalanced lipid profiles, reduce oxidative damage, and activate neurogenesis in obese rats.
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