• 제목/요약/키워드: Fatty acid metabolism

검색결과 562건 처리시간 0.018초

천연 암반 심해수 공급이 흰쥐의 면역반응 및 항산화 활성에 미치는 영향 (Effect of the Supply of Natural Water from Deep Sea Rock on the Immune Response and Antioxidant Activity in Rats)

  • 정수진;주은정;유지영;김윤경;조용진;윤병선;조진국;남기택;황성구
    • Journal of Animal Science and Technology
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    • 제48권2호
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    • pp.211-218
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    • 2006
  • 본 연구에서는 천연 암반심해수를 가축 음용수로 개발하고자 2.3% 염분을 함유하고, 칼륨(K), 마그네슘(Mg), 칼슘(Ca), 나트륨(Na), 철(Fe), 망간(Mn), 아연(Zn), 구리(Cu) 등의 광물질을 함유한 암반심해수를 0.5% 및 1%로 희석하여 흰쥐에 공급하며 면역 반응과 항산화 활성에 미치는 영향을 조사하였다. 공시동물로 Sprague Dawley종의 수컷 흰쥐 24마리를 6마리 씩 대조군과 3개의 처리군으로 임의 배치하고, 대조군은 정제수를 급여하였고 처리군은 각각 0.5% 암반심해수, 1% 암반심해수, 지장수를 공급하여 4주 동안 사육하였다. 실험 결과, 1%의 암반수의 경우가 증체량 및 사료섭취량, 사료효율이 우수한 것으로 나타났다. 총음수량은 대조군 보다 0.5% 암반심해수의 경우는 49%, 1% 암반심해수는 22.8%, 지장수는 40.5% 가량 더 많은 것으로 나타났다(p<0.05). 각 조직무게의 경우, 지장수군의 신장주위지방과 정소상체지방은 각각 32%, 25% 적은 것으로 나타났다(p<0.05). B 세포와 T 세포 자극능은 처리군중에서 0.5% 암반심해수 급여군이 가장 높아 대조군보다 44.7%와 207% 증가한 것으로 나타났다(p<0.05). 또 0.5% 암반심해수가 혈청 내 triglyceride는 4%, Free fatty acid는 4%, LDL- cholesterol은 45.9% 감소시키는 등 지질성분 변화에 가장 긍정적인 효과를 나타내었다. 항산화 활성의 경우 TBARS의 양은 0.5% 암반심해수는 21.8%, 1% 암반심해수는 34.7%, 지장수는 20.8% 정도 감소하였다. catalase 활성은 0.5% 암반심해수가 약 2.9배, 지장수가 약 1.6배 증가하였으며, Cu/Zn SOD 활성은 0.5% 암반심해수,가 약 1.5배, 1% 암반심해수가 약 1.7배 ,지장수가 약 1.2배 증가하였으며, MnSOD 활성은 모든 처리군이 대조군에 비해 약간 증가하였다. 이상의 결과로부터 가축에 0.5% 암반심해수의 급여는 LDL 콜레스테롤의 농도가 감소되고, 면역 활성 및 항산화효소 활성이 높아지는 등 고급 축산물생산의 음용수로 유익할 것으로 고찰되었다.

오적산가미방(五積散加味方)이 고지방식이 유도 비만쥐의 지질대사, 항산화계 및 전염증성 cytokine 생산에 미치는 영향 (Effects of Ojeoksangamibang on the Lipid Metabolism, Anti-oxidation and Concentration of Proinflammatory Cytokines in Rat Fed High Fat Diet)

  • 공인표;박원형;차윤엽
    • 한방재활의학과학회지
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    • 제21권4호
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    • pp.23-40
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    • 2011
  • Objectives: This study was designed to examine the effects of extracts of Ojeoksangamibang($W{\check{u}}j\bar{i}s\check{a}nji\bar{a}w\grave{e}if\bar{a}ng$) on the lipid lowering, anti-oxidation and concentration of proinflammatory cytokines and was investigated on hyperlipidemic rats. Methods: Male rats weighing $182.39{\pm}4.71g$ were fed high fat diet for 8 weeks and 36 rats(above 400 g) were divided into 4 groups. Each of 9 rats was divided a control group and experimental groups. We fed a control group of rats a basal diet and administered normal saline(100 mg/kg, 1 time/1 day) for 4 weeks. And we fed each experimental group of rats basal diet and administered an extract of Ojeoksangamibang($W{\check{u}}j\bar{i}s\check{a}nji\bar{a}w\grave{e}if\bar{a}ng$) extracts(100 mg/kg, 200mg/kg, 300 mg/kg, 300 mg/kg, 1 time/1 day) for 4 weeks. At the end of the experiment, the rats were sacrificed to determine their chemical composition. We measured lipid of plasma and liver, concentration of proinflmmatory cytokines, anti-oxidative activity and $TNF-{\alpha}$, Apo-B, Apo-E and leptin gene expression. Results: 1. Concentration of plasma free fatty(FFA) showed no significant difference in all the treatment groups. Concentration of plasma triglyceride(TG) showed a significant decrement in the 300 mg/kg in Ojeoksangamibang($W{\check{u}}j\bar{i}s\check{a}nji\bar{a}w\grave{e}if\bar{a}ng$) groups than that of control group. 2. Concentration of plasma total cholesterol showed a significant decrement in the 200 and 300 mg/kg in Ojeoksangamibang($W{\check{u}}j\bar{i}s\check{a}nji\bar{a}w\grave{e}if\bar{a}ng$) groups than that of control group. Concentration of plasma low density lipoprotein(LDL)-cholesterol showed a Significant decrement in the 300 mg/kg in Ojeoksangamibang($W{\check{u}}j\bar{i}s\check{a}nji\bar{a}w\grave{e}if\bar{a}ng$) groups than that of control group. Concentration of plasma high density lipoprotein(HDL)-cholesterol showed a significant increment in the 300 mg/kg in Ojeoksangamibang($W{\check{u}}j\bar{i}s\check{a}nji\bar{a}w\grave{e}if\bar{a}ng$) group. 3. Concentration of liver total cholesterol showed a tendence to decrease in Ojeoksangamibang($W{\check{u}}j\bar{i}s\check{a}nji\bar{a}w\grave{e}if\bar{a}ng$) groups. Concentration of liver TG showed a significant decrement in all Ojeoksangamibang groups than that of control group. 4. Concentration of plasma and liver thiobarbituric acid reactive substance(TBARS) showed a tendence to decrease in Ojeoksangamibang($W{\check{u}}j\bar{i}s\check{a}nji\bar{a}w\grave{e}if\bar{a}ng$) groups. 5. The values of glutathione peroxidase(GSH-Px), superoxide dismutase(SOD) and catalase(CAT) activity showed a significant increment in all Ojeoksangamibang($W{\check{u}}j\bar{i}s\check{a}nji\bar{a}w\grave{e}if\bar{a}ng$) groups than that of control group. 6. The values of plasma aspartate aminotransferase(AST) and alanine aminotransferase(ALT) activity showed no significant different in all treatment group. 7. Concentration of plasma $interleukin(IL)-1{beta}$ showed no significant difference in all the treatment groups. Concentration of plasma IL-6 showed a significant decrement in the 300 mg/kg in Ojeoksangamibang($W{\check{u}}j\bar{i}s\check{a}nji\bar{a}w\grave{e}if\bar{a}ng$) group than that of control group. Concentration of plasma tumor necrosis $factor-{\alpha}(TNF-{\alpha})$ a siginifant decrement in the 200 and 300 mg/kg in Ojeoksangamibang($W{\check{u}}j\bar{i}s\check{a}nji\bar{a}w\grave{e}if\bar{a}ng$) group than that of control group. However the concentration of plasma IL-10 in the 300 mg/kg Ojeoksangamibang($W{\check{u}}j\bar{i}s\check{a}nji\bar{a}w\grave{e}if\bar{a}ng$) groups showed a significant increment than that of control group. 9. In the analysis of reverse transcription-polymerase chain reaction(RT-PCR), gene expression of $TNF-{\alpha}$, Apo-B and Apo-E in the Ojeoksangamibang($W{\check{u}}j\bar{i}s\check{a}nji\bar{a}w\grave{e}if\bar{a}ng$) groups showed a lower expression than that of control group. However the gene expression of leptin showed no difference in the treatment groups. 10. The ratio of $TNF-{\alpha}$, Apo-B, and Apo-E per ${\beta}-actin$ expression in the Ojeoksangamibang($W{\check{u}}j\bar{i}s\check{a}nji\bar{a}w\grave{e}if\bar{a}ng$) groups showed a significant decrement than that of control group. However The ratio of leptin expression per ${\beta}-actin$ expression showed no significant difference among all the treatment groups. Conclusions: According to above results, in lowering lipid effect, anti-oxidation and control of pro-inflammatory cytokines production, Ojeoksangamibang($W{\check{u}}j\bar{i}s\check{a}nji\bar{a}w\grave{e}if\bar{a}ng$) gives effect.