• Title/Summary/Keyword: fat oxidation

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The Effect of Docosahexanoic Acid-Rich Fish oil Added to Different Dietary Fats on Lipid Metabolism in Rat (종류가 다른 식용유지에 첨가된 고DHA(Docosahexaenoic Acid) 어유가 흰쥐의 지질대사에 미치는 영향)

  • 이경애
    • Journal of Nutrition and Health
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    • v.28 no.4
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    • pp.268-281
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    • 1995
  • This study was undertaken to elucidate the effect of DHA-rich fish oil (DHA-rich oil) added to different dietary fats on lipid metabolism. Rats were fed perilla oil, sesame oil and beef tallow with or without DHA-rich oil for 12 weeks. The weight gain was higher in groups with DHA-rich oil than that of groups without DHA-rich oil, with DHA-rich oil, while weight of epididymal fat pad was lower in perilla oil and beef tallow groups with DHA-rich oil. The contents of total lipid and triglyceride in plasma were not affected by dietary fat types, but that of total and HDL cholesterol in plasma were higher in sesame oil group than perilla oil and beef tallow groups without DHA-rich oil. The contents of total lipid, triglyceride, total cholesterol, HDL cholestrol and LDL cholesterol in plasma were decreased by DHL-rich oil addition. The contents of total lipid, total cholesterol and triglyceride in the liver were not affected by dietary fat type. The contents of total cholesterol and triglyceride in the liver were not affected by dietary fat type. The contents of total lipid and TG in liver were not affected by DHA-rich oil addition while hepatic cholesterol increased by DHA-rich oil addition. The activities of glucose 6-phosphate dehydrogenase and malic enzyme were highest in beef tallow group without DHA-rich oil and decreased by DHA-rich oil addition. Peroxisomal ${\beta}$-oxidation had an inverse relationship against the activities of lipogenic enzymes. In conclusion, dietary DHA-rich oil decreased fat accumulation and had hypolipidemic effect, especially in beef tallow group. Also groups with DHA-rich oil showed more hypolipidemic effect than perilla oil group. And DHA-rich oil addition to diets resulted in increasing dietary n-3/n-6 ratio. Therefore increase in n-3/n-6 ratio as well as dietary DHA were considered to be responsible for the hypolipidemic effect resulted from DHA-rich oil addition.

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Apolipoprotein H: a novel regulator of fat accumulation in duck myoblasts

  • Ziyi, Pan;Guoqing, Du;Guoyu, Li;Dongsheng, Wu;Xingyong, Chen;Zhaoyu, Geng
    • Journal of Animal Science and Technology
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    • v.64 no.6
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    • pp.1199-1214
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    • 2022
  • Apolipoprotein H (APOH) primarily engages in fat metabolism and inflammatory disease response. This study aimed to investigate the effects of APOH on fat synthesis in duck myoblasts (CS2s) by APOH overexpression and knockdown. CS2s overexpressing APOH showed enhanced triglyceride (TG) and cholesterol (CHOL) contents and elevated the mRNA and protein expression of AKT serine/threonine kinase 1 (AKT1), ELOVL fatty acid elongase 6 (ELOVL6), and acetyl-CoA carboxylase 1 (ACC1) while reducing the expression of protein kinase AMP-activated catalytic subunit alpha 1 (AMPK), peroxisome proliferator activated receptor gamma (PPARG), acyl-CoA synthetase long chain family member 1 (ACSL1), and lipoprotein lipase (LPL). The results showed that knockdown of APOH in CS2s reduced the content of TG and CHOL, reduced the expression of ACC1, ELOVL6, and AKT1, and increased the gene and protein expression of PPARG, LPL, ACSL1, and AMPK. Our results showed that APOH affected lipid deposition in myoblasts by inhibiting fatty acid beta-oxidation and promoting fatty acid biosynthesis by regulating the expression of the AKT/AMPK pathway. This study provides the necessary basic information for the role of APOH in fat accumulation in duck myoblasts for the first time and enables researchers to study the genes related to fat deposition in meat ducks in a new direction.

Sour cherry ameliorates hepatic lipid synthesis in high-fat diet-induced obese mice via activation of adenosine monophosphate-activated protein kinase signaling

  • Songhee Ahn;Minseo Kim;Hyun-Sook Kim
    • Journal of Nutrition and Health
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    • v.56 no.6
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    • pp.641-654
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    • 2023
  • Purpose: Sour cherry (Prunus cerasus L.) contains abounding phytochemicals, such as polyphenols and anthocyanins, and has antioxidative effects. Adenosine monophosphate-activated protein kinase (AMPK) is a crucial regulator in enhancing the lipid metabolism. This study hypothesized that the intake of sour cherry affects AMPK signaling. Therefore, this study examined whether sour cherry regulates AMPK to balance the hepatic lipid metabolism and exert ameliorating effects. Methods: Male C57BL/6J mice had obesity induced with a 45% fat diet. The mice were divided into four groups: control (CON), high-fat diet (HFD), low percentage sour cherry powder (LSC), and high percentage sour cherry powder (HSC). The mice in the sour cherry groups were fed 1% sour cherry or 5% sour cherry in their respective diets for 12 weeks. Results: The body weight, visceral fat weight, and lipid droplet size significantly decreased in the treatment groups. The serum and hepatic triglyceride and total cholesterol levels improved significantly in the HSC group. The low-density lipoprotein cholesterol levels were also reduced significantly, whereas the high-density lipoprotein cholesterol levels were increased significantly in both treatment groups. The sterol regulator binding protein-1c and fatty acid synthase expression levels as fatty acid synthesis-related enzymes were significantly lower in the treatment groups than in the high-fat diet group. Furthermore, the adipose triglyceride lipase and hormone-sensitive lipase expression levels as lipolytic enzyme activity and AMPK/acetyl-CoA carboxylase/carnitine palmitoyltransferase-1 as fatty acid β-oxidation-related pathway were upregulated significantly in both sour cherry groups. Conclusions: These results show that sour cherry intake improves hepatic lipid synthesis and chronic diseases by activating AMPK signaling. Therefore, this study suggests that phytochemical-rich sour cherry can be developed as a healthy functional food.

Effect of long-term high-fat diet and fasting on energy metabolic substrates utilization in resting rats

  • Jeon, Yerim;Kim, Jisu;Hwang, Hyejung;Suh, Heajung;Lim, Kiwon
    • Korean Journal of Exercise Nutrition
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    • v.15 no.4
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    • pp.163-171
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    • 2011
  • The effects of a high-fat diet and fasting on resting energy expenditure and energy substrate utilization were examined using the method of measuring whole body energy metabolism and oxygen uptake. Eight 4-week old male Sprague-Dawley rats were used for the high-fat diet experiment. Energy metabolism was measured using acrylic metabolic chambers over 24 hours. After 1-week of preliminary feeding, 4 rats were fed a chow diet, whereas the remaining 4 rats were fed a high-fat diet (HF) ad libitum, which contained 40% (w/w, calorie base 60%) more fat than that in the chow diet. The flow rate to measure energy metabolism inside the chamber was controlled at a mean of 3.5 L/min, and five chambers were subjected to measurement. One of the five chambers was used to correct errors by measuring the atmosphere. As a result of 5 weeks of control diet and high-fat diet feeding, body weight of the high-fat diet group tended to increase more than that in the control diet fed group, but the difference was not significant. Oxygen uptake and carbon dioxide production changed as time went on over the 24 hr. The respiratory exchange ratio also changed during the 24 hr, and the difference between the groups was significant. The control group showed significantly more carbohydrate oxidation than that of the high-fat diet fed group. A fasting experiment was conducted using six 7-week old Sprague-Dawley male rats. Energy metabolism measurements were performed using the same method as that used in the high-fat diet experiment; resting metabolism was measured prior to fasting, and a fasting condition began from 9:00 am the next day for 3 days to calculate energy metabolism. Both body weight and 24-hour oxygen uptake decreased significantly as a result of 3-day fasting. Total oxygen uptake in the first day decreased, and declined significantly on day 3 of fasting. Total 24-hour carbon dioxide production decreased significantly over the 3 days. The mean 24-hour respiratory exchange ratio decreased significantly. Additionally, energy expenditure during the dark period (20:00-08:00), which is the active period for rats, decreased significantly with fasting, whereas energy expenditure during the light period (08:00-20:00) did not increase by fasting.

Degradation of Fat, Oil, and Grease (FOGs) by Lipase-Producing Bacterium Pseudomonas sp. Strain D2D3

  • Shon, Ho-Kyong;Tian, Dan;Kwon, Dae-Young;Jin, Chang-Suk;Lee, Tae-Jong;Chung, Wook-Jin
    • Journal of Microbiology and Biotechnology
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    • v.12 no.4
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    • pp.583-591
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    • 2002
  • Biodegradation of fat, oil, and grease (FOGs) plays an Important role in wastewater management and water pollution control. However, many industrial food-processing and food restaurants generate FOG-containing waste waters for which there Is no acceptable technology for their pretreatment. To solve these problems, this study evaluated the feasibility of effective FOG-degrading microorganisms on the biodegradation of olive oil and FOG-containing wastewater. Twenty-two strains capable of degrading FOGs were isolated from five FOG-contaminated sites for the evaluation of their FOG degradation capabilities. Among twenty-two strains tested, the lipase-producing Pseudomonas sp. strain D2D3 was selected for actual FOG wastewater treatment. Its biodegradability was performed at 3$0^{\circ}C$ and pH 8. The extent of FOG removal efficiency was varied for each FOG tested, being the highest for olive oil and animal fat (94.5% and 94.4%), and the lowest for safflower oil (62%). The addition of organic nitrogen sources such as yeast extract, soytone, and peptone enhanced the removal efficiency of FOGs, but the addition of the inorganic nitrogen nutrients such as $NH_4$Cl and $(NH_4)_2SO_4$ did not increase. The $KH_2PO_4$ sources in 0.25% to 0.5% concentrations showed more than 90% degradability. As a result, the main pathway for the oxidation of fatty acids results in the removal of two carbon atoms as acetyl-CoA with each reaction sequence: $\beta$-oxidation. Its lipase activity showed 38.5 U/g DCW using the optimal media after 9 h. Real wastewater and FOGs were used for determining the removal efficiency by using Pseudomonas sp. strain D2D3 bioadditive. The degradation by Pseudomonas sp. strain D2D3 was 41% higher than that of the naturally occurring bacteria. This result indicated that the use of isolated Pseudomonas sp. strain D2D3 in a bioaugmentating grease trap or other processes might possibly be sufficient to acclimate biological processes for degrading FOGs.

Effect of aerobic exercise on peroxisome proliferator-activated receptor α anti-inflammatory in white adipose tissue (백색지방조직에서 peroxisome proliferator-activated receptor α 항염증에 대한 유산소 운동의 영향)

  • Sun-Hyo Jeong
    • Journal of the Korean Applied Science and Technology
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    • v.40 no.1
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    • pp.1-12
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    • 2023
  • It was investigated whether a combination of PPARα activator fenofibrate and swimming exercise (H/F/S) would have a beneficial synergistic effect on improving inflammation of white adipose tissue compared to the single prescription of fenofibrate (H/F) and swimming exercise (H/S) in male mice that fed high fat diet. The body weight, weight of white adipose tissue and total cholesterol levels in the serum increased in mice-fed high fat diets (H) compared to mice-fed low fat diets (L). Compared to H, both H/F and H/S decreased these. These levels reduced by fenofibrate were more effectively reduced by the combination of fenofibrate and swimming exercise (H/F/S). As a result of examining the expression of inflammatory cytokines genes and fatty acid oxidation genes in white adipose tissue, H increased compared to L, both H/F and H/S decreased compared to H, and H/F/S decreased further compared to H/F. Thus, this study revealed that the combination of fenofibrate and swimming exercise in male mice fed high-fat diet suppresses inflammation of white adipose tissue caused by obesity through promoted fatty acid oxidation more effectively than the fenofibrate alone, and suggested a practical way to improve inflammation of adipose tissue caused by obesity.

MICROSCOPIC OBSERVATIONS OF FAT TRANSLOCATION IN THE TISSUE OF YELLOW CORVENIA DURING SALTING AND DRYING ("굴비" 제조과정중의 지방의 이동에 대한 조직학적 관찰)

  • PYEUN Jae-Hyeung;LEE Eung-Ho
    • Korean Journal of Fisheries and Aquatic Sciences
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    • v.1 no.2
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    • pp.63-71
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    • 1968
  • Salted and dried yellow corvenia(Pseudosciaena manchurica), so called 'Gul-bi', is one of nation-widely consuming fish foo::ls. It is suitable for a long term preservation and its pro-duce is also a great deal on sea food processing in this country. The texture of 'Gul-bi', however, have often appeared to be a delicate factor for the quality of the product. The loss or dislocation of fat in the tissue of the fish resulted by salting and drying is believed to profoundly relate to the texture of product. In this paper, the tissue of yellow corvenia and movement of fat were microscopically observed before salting, immediately after salting, and after drying and the results observed in the tissues dry salted, brine salted, and brine salted with the addition of BHA were compared. The cross section of yellow corvenia muscle showed that a distinctive border by connective tissue between white and red muscle could not be seen in general, and red muscle was surrounded by hypodermic fatty tissues. In the tissue of fresh yellow corvenia, the fat was mainly distributed in hypodermic fat layer which located under the corium while rarely distributed in white muscle. It was found that some parts of the fat in the tissue were permeated into intermuscular tissue passing through the connective tissues during salting. The result Was the same in both dry-salting and brine-salting tissue. However, the fat translocated into intermuscular tissues disappeared during drying process in the salted without BHA tissues whereas in BHA added tissue. This result suggested that BHA may take a role of multiple effect in translocation of fat in tissues as well as in retarding oxidation. In an advanced stage of salted and dehydration, the muscle fibers were ajoined together and then limits between muscle fibers already became indistinguishable. And the migrated fat into intermuscular tissue aggregated around the connective tissue and are apt to gradually to flow out from the muscular system through these tissues.

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Anticancer(AC)-Functional Kimchi Exhibits Antiobesity Effects in Differentiated 3T3-L1 Adipocytes

  • Park, Eui-Seong;Lee, Seung-Min;Lim, Yaung-lee;Park, Kun-Young
    • CELLMED
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    • v.8 no.3
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    • pp.11.1-11.6
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    • 2018
  • In vitro anti-obesity effects of anti-cancer (AC) functional kimchi in differentiated 3T3-L1 adipocytes were studied. We constructed three experimental groups: Control, standardized kimchi (SK), and AC functional kimchi (A-FK) that included active ingredients and Lactobacillus plantarum. Kimchi extracts did not show any cytotoxicity in pre-adipocytes in the concentration range of 1 - 5 mg/mL. A-FK significantly reduced fat droplet formation and absorbance in differentiated 3T3-L1 adipocytes, as shown by Oil red O staining, compared to Control and SK (P < 0.05). SK and A-FK reduced adipo-/lipogenesis related genes such as $C/EBP{\alpha}$, SREBP-1, LPL, and $LXR{\alpha}$ compared to Control (P < 0.05). Especially, A-FK more greatly reduced SREBP-1 and LPL compared to SK (P < 0.05). A-FK up-regulated the ${\beta}$-oxidation related gene CPT-1c and down-regulated the pro-inflammatory cytokine IL-6 compared to Control (P < 0.05). Based on the results, A-FK exhibited anti-obesity effects by inhibiting fat droplet formation and adipo-/lipogenesis related genes by regulating the ${\beta}$-oxidation related gene CPT-1c and pro-inflammatory cytokine IL-6. In previous studies, A-FK kimchi already exhibited a strong anti-cancer effect. These results indicate that A-FK increased anti-obesity activity in this model system due to its functional ingredients and anti-cancer functionality.

Suppression of Hepatic Lipogenic Enzyme by Dietary Fish Oil In Rat Hepatocarcinogenesis

  • Kim, Hye-Kyeong;Choi, Hay-Mie;,
    • Toxicological Research
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    • v.14 no.3
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    • pp.285-291
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    • 1998
  • This study was designed to examine the effects of polyundaturated fatty acid(PUFA) from different sourecs on hepatic lipogenic enzyme and peroxisomal ${\beta}$-oxidation in murine hepatocarcinogenesis initiated by diethylnitrodamine (DEN). Male Sprague-Dawley rats were fed one of three diets containing 10%(w/w)fat; fish oil-corn oil blended(FO), corn oil-beef tallow-fish oil blended(CF), or corn oil-beef tallow-perilla oil blended (CP), from the gestation period. At 10 weeks, animals were received a single inraperitoneal injection of DEN (200mg/kg body weight), were subjected to two-thirds partial hepatectomy 3 weeks later and were sacrificed 8 weeks after DEN initiation. The areas of placental glutathione S-transferase (GST-P) positive foci were significantly smaller in rats fed fish oil containing diets (FO and CF) than those fed CP diet. Fish oil feeding significantly decreased th activities of lipogenic enzyme. Rats fed fish oil containing diets (FO, CF) exhibited the lower fatty acid synthase (FAS) activity than those fed CP diet and FAS activity was positively correlated with areas of GSP-P positivie foci. Glucose-6-phophate dehydrogenase activity was the lowest and peroxisomal ${\beta}$-oxidation was stimulated in rats fed FO diet compared to other groups. It was also found that serum cholesterol was decreased in FO group. Therefore, the preventive effect against hepatocarcinogenesis and hypolipidemic effect of fish oil can be explained partly by suppression of the hepatic lipogenesis and by increase of peroxisomal ${\beta}$-oxidation.

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A Study on Blood Lipid Levels, Nutrient Intakes, and Oxidation and Inflammation Markers of Overweight and Obese Adults according to Blood Cholesterol Levels in Korea (과체중 이상 성인에서 혈중 콜레스테롤 수준에 따른 영양소 섭취량, 혈중 산화 및 염증 관련 지표에 관한 연구)

  • Yeon, Jee-Young;Kim, Mi-Hyun
    • The Korean Journal of Food And Nutrition
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    • v.24 no.1
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    • pp.1-11
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    • 2011
  • This study was designed to investigate the relationships among blood lipid levels, nutrient intakes, oxidation and inflammation markers of overweight adults(23$\leq$BMI<25) and obese(BMI$\geq$25) in Korea. The subjects were classified as control, borderline hyperlipidemia. and hyperlipidemia groups based on The Korean Guidelines of Hyperlipidemia Treatment for the Prevention of Atherosclerosis. The study was conducted through questionnaires, anthropometric checkups, 2-days of 24 hr recalls, and blood biomarker analyses. Systolic blood pressure(SBP) was significantly increased in the hyperlipidemia group(p=0.0464). Intakes of nutrients were not significantly different among the three groups. Blood oxidized-LDL levels were significantly increased in the hyperlipidemia group(p<0.0001). Blood triglyceride(TG) levels were positively associated with BMI(p=0.0498), SBP(p=0.0158), and diastolic blood pressure(DBP; p=0.0076). Blood total cholesterol levels were positively associated with SBP(p=0.0005), and blood HDL-cholesterol levels were negatively associated with body fat (p=0.0408). Blood LDL-cholesterol levels were negatively associated with height(p=0.0207), and blood VLDL-cholesterol levels were positively associated with SBP(p=0.0011) and DBP(p=0.0490). Intakes of protein(p=0.0257) and dietary fiber (p=0.0094) were positively associated with blood HDL-cholesterol levels. Frap levels were positively associated with TG levels(p=0.0001) and VLDL-cholesterol levels(p=0.0077). Oxidized-LDL levels were positively associated with LDL-cholesterol levels(p=0.0135). These results suggest that oxidation and inflammation markers may be related to hypercholesterolemia progress, and dietary fiber intake may play a role in preventing hyperlipidemia in overweight and obese adults.