본 연구는 열 스트레스 (heat stress, HS)에 노출된 브로일러에서 혼합 생균제의 급여가 혈 액 생체지표, 면역반응, 맹장 미생물 및 생산성에 미치는 영향을 조사하였다. 총 400마리의 브로일러 수 컷 (Ross 308)을 각각 100마리씩 4그룹, C (대조군, 실온 25℃), HS (열 스트레스 33℃), HSP (HS플 러스 혼합 생균제 500, 750 mg/kg) 그룹으로 배치하였다. 브로일러의 증체량, 사료섭취, 사료요구율 및 면역기관 무게는 HSP 그룹에서 HS 그룹과 비교했을 때 증가하였다. 혈액 IgG, lymphocytes 농도는 HS 그룹에서 HSP그룹과 비교했을 때 증가하였고, heterophil과 lymphocyte(H:L)비율, 코르티코스테론 농도 및 폐사율은 낮았다. 맹장의 Lactobacillus는 HS 그룹과 비교했을 때 HSP 그룹에서 증가하였으나 Escherichia coli (E. coli), coliform bacteria, aerobic bacteria는 낮아졌다. 본 연구결과는 열 스트레스 에 노출된 브로일러에게 B. subtilis, S. galilaeus 및 Sphingobacteriaceae등 3가지 균주가 포함된 혼합 생균제를 급여해주면 면역반응 증진, 미생물 균형을 유지해줌으로써 폐사율을 낮추고 생산성을 개선할 수 있음을 시사해준다.
본 연구는 열 스트레스 (heat stress, HS)에 노출된 산란계에서 혼합 생균제의 급여가 생산성, 계란품질, 면역반응, 맹장 미생물 및 분 암모니아에 미치는 효과를 조사하였다. 총 400마리의 50주령 Hy-Line brown 산란계를 무작위로 각각 100마리씩 4 그룹, C (대조군, 실온 25℃), HS (열 스트레스 33℃), HSP (HS 플러스 혼합 생균제 500, 750 mg/kg)로 배치하였다. 산란계의 생산성, 계란품질, 비장 무게, 혈액 IgG 및 lymphocyte 농도는 HSP 그룹에서 HS 그룹과 비교했을 때 증가하였고, 코르티코스테론, heterophil과 lymphocyte의 비율 (H:L) 및 폐사율은 유의하게 낮았다. Lactobacillus는 HSP 그룹에서 HS 그룹과 비교했을 때 증가하였으나 Escherichiacoli (E. coli), coliform bacteria 및 aerobic bacteria는 유의하게 낮았다. 분에서 암모니아 발생은 HS 그룹이 HSP 그룹에 비해서 유의하게 증가하였다. 결론적으로, 이러한 혼합 생균제가 여름철 산란계의 더위 피해를 방해주고 면역반응, 맹장 미생물 균형을 경유하여 생산성, 계란품질 및 계분으로부터 악취 발생을 줄이는 데 효율적인 영양전략이 될 수 있음을 나타낸다.
본 연구는 비만 모델동물 랫드에서 식이 내 오메가 6와 3 지방산 비율(n-6/n-3 0, 4:1, 15:1, 30:1)이 지질대사의 생화학적 메카니즘을 구명하였다. 혈액 중성지방은 대조군과 비교할 때 n-6/n-3 비율 4:1, 15;1, 30:1 처리군에서 22.21%, 총콜레스테롤 20.60%, LDL-C 52.96%, 혈당 15.71%, ALT 11.97%, AST 9.13%, 인슐린 37.57%, 렙틴 45.98% 낮아졌으나, HDL-C 28.38%, 인지질 80.39% 증가하였고, 특히 4:1 처리군에서 가장 큰 효과가 나타났다. 간 조직에서 SREPB-1α, SREPB-2 mRNA는 대조군과 비교할 때 n-6/n-3 비율 처리군에서 하향조절 하였으나 PPARs 그리고 지방조직의 LPL-mRNA는 상향조절 하였다. 간 조직에서 지방세포의 크기는 n-6/n-3 비율 30:1, 대조군, 15:1, 4:1 순서로 낮아졌고, 지방조직에서 지방세포의 크기는 대조군, 30:1, 15:1, 4:1 순서로 낮았다. 결과는 비만 모델동물 랫드에서 오메가 6와 오메가 3 지방산 비율, 특히 4:1을 함유하는 식이를 급여하면 혈액 유해 지질, 간 기능 효소, 렙틴, 인슐린, 간과 지방조직의 유전자 발현 조절을 통하여 건강을 유지할 수 있다는 새로운 사실을 발견하였다.
본 연구는 고지혈증 모델동물 랫드에서 n-6/n-3가 서로 다른 식이를 급여하였을 때 혈액지질의 대사적 분할에 미치는 작용 메카니즘을 생체 모니터링 기법으로 구명하였다. 총 glycerolipids의 간에서 대사된 cholesteryl 14C-oleate 비율은 n-6/n-3 비율 4:1, 15:1, 30:1, 대조군 순서로 낮았다(p<0.05). 인지질 분비량은 대조군과 비교할 때 n-6/n-3 비율 4:1, 15:1, 30:1 순서로 높았다(p<0.05). 중성지방 분비량은 대조군과 비교할 때 n-6/n-3 비율 4:1, 15:1, 30:1 순서로 특히, 4:1 처리군에서 낮았다(p<0.05). 총 glycerolipid에 대한 인지질의 분할 비율은 n-6/n-3 비율 4:1, 15:1, 30:1, 대조군 순서로 높았다(p<0.05). 간으로부터 중성지방 분할 비율(%)은 대조군 82.25%와 비교할 때 n-6/n-3 비율 4:1, 15:1, 30:1에서 각각 72.99, 75.93, 78.12%로써 n-6/n-3 비율이 증가할수록 높아졌다(p<0.05). 인지질 분할 비율(%)은 대조군 11.04%와 비교할 때 n-6/n-3 비율 4:1, 15:1, 30:1에서 각각 25.15, 18.87, 18.15%로써 n-6/n-3 비율이 증가할수록 낮아졌다(p<0.05).
본 연구는 차세대 랫드에서 오메가 6(n-6)와 오메가 3(n-3) 지방산 비율이 서로 다른 식이 (0, 1.2:1, 8:1, 19:1)의 섭취가 간에서 새롭게 합성․분비되는 glycerolipid의 대사적 분할에 관한 메카니즘을 구명하였다. 그 방법으로써 경정맥 캐뉼라를 부착한 랫드에서 생체모니터링 기법을 이용하였다. glycerolipid 대사에 의한 산화로써 나타난 14CO2 배출율 범위는 8:1 이하 그룹에서 7.05-20.17%로 나 타났으며 대조구에서 가장 낮았다(p<0.05). 총 glycerolipid는 대조구가 가장 높았으며 19:1, 8;1, 1.2:1 그룹의 순서로 높았다(p<0.05). 중성지방 분비량은 대조구와 비교할 때 1.2:1, 8:1, 19:1 그룹의 순서로 각각 36.35, 20.93, 13.72% 감소하였다(p<0.05). 총 glycerolipid에 대한 인지질의 분할 비율은 대조구와 비교할 때 1.2:1, 8:1, 19:1 그룹의 순서로 각각 1.38, 1.29, 1.17배 높았다(p<0.05). 총 glycerolipid에 대한 14CO2 생성비율은 대조구와 비교할 때 1.2:1, 8:1, 19:1 그룹의 순서로 각각 1.61, 1.52, 1.29배 높았다(p<0.05).
본 연구는 Bacillus subtilis를 포함하는 3개의 균주를 지렁이 분변토에 접종하여 제조한 생균제인 분변토 발효사료가 육계의 사양성적 및 닭고기 품질에 미치는 영향을 조사하기 위하여 수행하였다. 육계 240마리를 4개의 처리구로 완전임의 배치하였다. 실험 처리구는 대조구, Lactobacillus fermentum으로 제 조된 상업용 생균제 (CP) 0.2%, 분변토 발효사료 0.3% (FECF3), 분변토 발효사료 0.5% (FECF5)로 구분하였다. 평균 체중 증가량, 흉선, 비장, F낭의 무게는 대조구, CP 처리구와 비교할 때 FECF 처리구가 높았다. 혈액 IgG 함량은 대조구, CP 처리구와 비교할 때 FECF 처리구가 증가하였다. 맹장 Lactobacillus는 대조구, CP 처리구와 비교할 때 FECF 처리구가 높았으나 Escherichia, Salmonella, Coliform bacteria 및 total aerobic bacteria는 FECF 처리구가 낮았다. 닭고기의 보수력은 대조구, CP 처리구와 비교할 때 FECF 처리구가 높았다. 닭고기 n-6/n-3 지방산의 비율은 대조구, CP 처리구와 비교할 때 FECF 처리구가 낮게 나타났다.
본 연구는 열 스트레스 하에서 오리사료 내 대사에너지(ME) 수준이 오리의 간, 십이지장 융 모, 미생물, 유전자 조절에 미치는 영향을 조사하였다. 총 240마리의 육용 오리 채리밸리(Anas platyrhynchos)를 4처리구로 완전임의배치 한 후 42일 동안 사육하였다. 처리구는 ME 2900 kcal/kg, ME 3000 kcal/kg, ME 3100 kcal/kg 및 ME 3200 kcal/kg로 구분하였다. 간 조직은 처리구 사이의 차이가 없었고, 십이지장 융모 및 창자샘 길이는 ME 3000과 비교할 때 2900은 10.58% 감소하였으나 3100, 3200과의 사이에 차이는 없었다. 맹장 Latobacillus는 ME 3000과 비교할 때 2900은 9.47% 감 소하였으나 3100, 3200은 각각 2.52, 3.24% 증가하였다. Total aerobic bacteria, E. coli, Coliform bacteria는 ME 3000과 비교할 때 2900은 증가하였으나 3100, 3200은 차이가 나타나지 않았다. 간에서 HSP (heat shock proteins)-mRNA 중 HSP 90-α는 ME 3000과 비교할 때 2900은 48.60% 감소하였 으며 3100, 3200은 차이가 없거나 증가하였다.
본 연구의 목표는 분변토로부터 분리한 Bacillus subtilis외 2종의 복합 생균제를 이용하여 제 조한 발효사료가 산란계 생산성, 계란품질 및 양계장 악취저감에 미치는 효과를 조사하는 것이었다. 산 란계 240마리를 4개의 처리구로 구분하여 완전임의 배치하였다. 실험 처리구는 대조구, 분변토발효사료 0.3, 0.5% (FECF3, FECF5), 일반생균제 0.2% (CP)로 구분하였다. 산란율은 일반사료를 섭취한 대조구 와 비교할 때 FECF 처리구는 유의하게 높았으나 CP 처리구는 차이가 없었다. 호우유닛, 난각두께, 파 란강도, 난황색 지수 및 농후난백 높이는 대조구와 비교할 때 FECF 처리구가 증가하였으나 CP 처리구 와 차이는 없었다. 계란의 n-3 함량은 대조구와 비교할 때 FECF 처리구가 높았으나 n-6/n-3 비율은 낮았으며 CP 처리구와의 차이는 없었다. 계분을 실온에서 5일간 방치 후 암모니아 발생량은 대조구와 비교할 때 CP와 FECF 처리구가 낮았다.
본 연구는 차세대 랫드에서 혈액 지질 감소에 관한 식이 내 오메가 6와 3 지방산 비율의 생 화학적 메카니즘을 조사하였다. 실험처리군은 오메가 6:오메가 3비율 0 (대조구), 1:1, 8:1, 19:1로 구 분하였다. 혈액 중성지방, 총콜레스테롤, 저밀도지질단백질(LDL-C), aspartate aminotransferase (AST), alanine aminotransferase (ALT), glucose의 수준은 오메가 6:오메가 3 비율 1:1 그룹에서 가장 낮았다. 혈액 고밀도지질단백질(HDL-C), 인지질의 수준은 오메가 6:오메가 3 비율 1:1 그룹이 가장 높았다. HMG-CoA reductase activity는 전체 저리구 가운데 오메가 6:오메가 3 비율 1:1, 8:1 그룹에서 가장 강하게 억제되었으나 분을 통한 스테롤의 배설량은 촉진되었다. 혈액 오메가 6:오메가 3 비율은 섭취한 식이 내 오메가 6:오메가 3 비율 증가에 따른 농도 의존적으로 감소하였다. 본 연구결과는 부모 세대로 부터 차세대 랫드에 이르기까지 오메가 6:오메가 3 비율이 8:1 이하로 낮아진 식이를 섭취하면 영양소 대사작용 활성화 메카니즘에 의한 혈액 중 유해지질 감소, 간 기능 유지 및 성장을 자극한다는 새로운 사실을 나타낸다.
The objective of the research was to identify the presence of adiponectin receptors and to study adiponectin action on glucose uptake and growth in mouse mammary epithelial cells. These cells expressed adiponectin receptors, AdipoR1 and AdipoR2. Insulin (10 ng/ml) or insulin like growth factor-I (IGF-I, 10 ng/ml) alone did not alter the degree of AdipoR1 and AdipoR2 genes expression from 0 to 4 h incubation. Prolactin (10 ng/ml) or epidermal growth factor (EGF, 10 ng/ml) alone also did not induce the two genes’ mRNA in the incubation time. Adiponectin (1 μg/ml) alone or pre-incubation of insulin alone (100 ng/ml) for 2 h prior to adiponectin stimulation did not increase 2-deoxy-D-glucose,[1,2-3H] uptake but adiponectin+pre-incubation of insulin significantly increased glucose uptake compare to control (p<0.05). In a similar way, insulin alone or pre-incubation of adiponectin alone (2 h) did not increase glucose uptake but insulin+pre-incubation of adiponectin increased glucose uptake compare to control (p<0.05). Insulin sensitization for 2 h prior to adiponectin stimulation tended to increase glucose uptake response by the following adiponectin stimulation showing small interaction effect between insulin and adiponectin (p<0.1). However, adiponectin sensitization for 2 hours prior to insulin stimulation did not shown interaction effect between adiponectin and insulin (p>0.1). The glucose uptake by both of hormones seems to be not interactive but additive (p<0.05). Adiponectin in the presence of 2% FBS decreased DNA synthesis of mammary epithelia (p<0.05). AICAR (100 or 200 μM), AMPK activator, decreased mammary epithelial cell growth in the presence of 2% FBS. These results indicate that adiponectin pathway has inhibitory effect on mammary epithelial cell growth.
The effects of different feeding times, using a diet containing 800 ppm betaine, on production, blood profile, and the short-chain fatty acid (SCFA), was investigated using 240 Cherry Valley (Anas platyrhynchos) meat ducks exposed to a scorching heat wave. The animals were randomly assigned to four groups, each of which was replicated three times with twenty ducks per replicate. The experimental period was 42 days for each group. Four groups were assigned into C (heat wave control group without betaine), T1 (ad libitum group fed a diet containing 800 ppm betaine), T2 (diet-restricted group fed twice daily between 05:00-10:00 and 17:00-20:00, using a diet containing 800 ppm betaine), and T3 (night-restricted group, fed from 17:00-10:00, with a diet containing 800 ppm betaine). At 42 days, body weight increased in order of T2, T1, T3 compared to the heat wave control group although. However, these differences were not found between the groups of T1 and T3. The heat wave control group, provided an ad libitum diet without betaine (C), showed an elevated feed conversion ratio compared to the groups fed a diet containing betaine. However, these differences were not found between the groups of T1, T2 and T3. RBC and platelet profiles except for PLT and MPV showed statistically significant differences between study groups fed a diet containing betaine. T2 presented significantly higher blood electrolytes Na+ and Cl- than the other groups. T2 also showed a blood gas level that was generally higher than the other groups. Total SCFA, acetic acid and propionic acid concentration has been the increasing trend in T2, but butyric acid, isobutyric acid and valeric acid concentration has been the decreasing trend in T2 compared to the other groups. It is concluded that the feeding-restricted group, fed two times daily between 05:00-10:00 and 17:00-20:00, with a diet containing 800 ppm betaine may improve growth performance in meat ducks exposed to a scorching heat wave.
This study investigated the pharmacodynamics of betaine on the blood profile and short chain fatty acid levels in meat ducks exposed to heat wave. 400 heads of Cherry valley (Anasplatyrhynchos) meat ducks were completely randomized to 5 treatments (4 repetitions each), and were raised for 42 days. They were grouped into T1 (heat wave control group without betaine), T2 (betaine 400 ppm), T3 (betaine 800 ppm), T4 (betaine 1200 ppm), and T5 (normal control group without betaine). Compared to T1, the betaine addition groups showed higher body weight gain at shipment, with T3 showing the highest significant difference. For hematological indictors measured (red blood cells and platelets), the betaine addition groups showed significantly higher values than the heat wave control group. The pH of the former was lower but their electrolytes (K+, P+, and Cl-) were significantly higher compared to the latter. For blood gas concentration, the former showed a significantly higher value than the latter. For the total short chain fatty acids, acetic acid, and propionic acid, the betaine addition groups and group fed broiler-high temperature diet showed higher values than the heat wave control group. On the other hand, the former showed significantly lower values in butyric acid, isobutyric acid, valeric acid, and isovaleric acid than the latter group. These results suggest that betaine has the pharmacodynamics that mediate heat stress, via the maintenance and control of the blood profile, osmotic pressure, gas concentration, and short chain fatty acid, of meat ducks under heat wave.
본 연구는 고콜레스테롤 식이를 섭취한 랫드에서 파리유충 에탄올추출물(Ethanolic extract of fly maggot, EM)의 경구투여가 혈액 지질감소에 미치는 영향을 조사하였다. Sprague-Dawley 수컷 랫드를 이용하여 4 처리구(EM 투여량; 대조군=0, 5.0, 7.0, 9.0 mg/100 g 체중)로 구분해서 6주 동안 진행하였다. EM 투여군은 대조군과 비교할 때 혈청 중성지방, 총콜레스테롤, LDL-C가 유의하게 낮았다 (p<0.05). HMG-CoA reductase activity는 대조군과 비교할 때 EM 투여군에서 낮았으나 총스테롤, 중성스테롤 및 담즙산 배설량은 EM 투여군에서 유의하게 높았다(p<0.05). EM의 혈액 콜레스테롤 감소와 관련한 생물학적 작용기작을 규명하기 위해서 고콜레스테롤 식이를 섭취한 랫드에서 유도된 생체유전자 sterol response element binding proteins (SREBPs) 및 the peroxisome proliferator-activated receptors (PPARα) 발현을 측정하였다. EM은 고콜레스테롤 식이를 공급받은 랫드의 간에서 SREBP-1α, SREBP-2 mRNA 발현을 억압함과 동시에 PPARα mRNA 발현을 촉진시키는 것으로 나타났다 (p<0.05). 본 연구의 결과는 파리유충 에탄올추출물이 고콜레스테롤 식이를 섭취한 랫드에서 지질대사와 관련한 생화학적 매개변수 및 유전자발현 조절을 통하여 혈액 콜레스테롤을 낮춘다는 새로운 사실을 발견하였다.
This experiment evaluated the interaction effect of extreme heat diet(EHD), inverse lighting, and cool water on the growth performance of broiler chickens under extreme heat stress. There were 4 experimental groups (T1: EHD 1, 10:00-19:00 dark, 19:00-10:00 light, cold water 9℃; T2: EHD 2, 10:00-19:00 dark, 19:00-10:00 light, cold water 9℃; T3: EHD 1, 09:00-18:00 dark, 18:00-09:00 light, cold water 14℃; T4: EHD 2, 09:00-18:00 dark, 18:00-09:00 light, cold water 14℃), each group composed of 25 broilers and the experiment was repeated 3 times. EHD 1 contained soybean oil, molasses, methionine and lysine. EHD 2 contained all nutrients of EHD 1 and vitamin C additionally. As a result, T1 and T2 displayed higher body weight increase and diet intake compared to T3 and T4 (p<0.05). The weights of their liver and gizzard were similar but the weights of the thymus and bursa F were higher for T1 and T2 compared to that of T3 and T4 (p<0.05). It was observed that T1 and T2 displayed higher concentrations of blood triglyceride, total cholesterol, HDL-C and blood sugar compared to that of T3 and T4 but LDL-C level was higher for T3 and T4 compared to that of T1 and T2 (p<0.05). T1 and T2 displayed higher levels of immunity substances such as IgG, IgA and IgM compared to T3 and T4 but the blood level of corticosterone displayed to be lower for T1 and T2 compared to T3 and T4 (p<0.05). The T1 and T2 contained a higher amount of fecal lactobacillus compared to that of T3 and T4 but the T3 and T4 contained a higher amount of fecal E. coli, total aerobic bacteria, coliform bacteria compared o that of T1 and T2 (p<0.05). T1 and T2 displayed higher concentrations of cecal acetic acid, ropionic acid and total short chain fatty acids compared to T3 and T4 but T3 and T4 displayed igher concentrations of butyric acid, isobutyric acid, valeric acid and isovaleric acid compared to T1 and T2 (p<0.05). These results have been observed that broiler chickens exposed to extreme eat stress with feeding EHD, inverse lighting and cold water would improve blood lipid, and elevate the production of immunity substance, beneficial microorganisms, and short chain fatty acids. This provision would also reduce the blood sugar consumption rate as energy sources and these effects will improve the growth performance of the broilers exposed to extreme heat.
The multi-origin of obesity and its associated diseases made it’s a complex area of biomedical science research and severe health disorder. From the 1970s to onwards this health problem turned to an epidemic without having any report of declining yet and it created a red alert to the health sector. Meanwhile, many animal models have been developed to study the lethal effect of obesity. In consequence, many drugs, therapies and strategies have already been adopted based on the findings of those animal models. However, many complicated things based on molecular and generic mechanism has not been clarified to the date. Thus, it is important to develop a need based animal model for the better understanding and strategic planning to eliminate/avoid the obesity disorder. Therefore, the present review would unveil the pros and cons of presently established animal models for obesity research. In addition, it would indicate the required turning direction for further obesity and obesity based disease research.
The aim of this study was to evaluate the biological mechanism of orally administered fly maggot ethanol extracts (EM) on hypocholesterolemic in rats fed a high-cholesterol diet. SDS male rats were divided into four groups (EM dose control=0, 5.0, 7.0, and 9.0 mg/100 g BW) and were treated for 6 weeks. EM groups revealed a significant reduction in serum triglyceride, total cholesterol, and low-density lipoprotein-cholesterol when compared with the control group. HMG-CoA reductase activity in EM groups were significantly lower than those of the control group, but total sterol, neutral sterol, and bile acid excretion were significantly increased in EM groups when compared with the control group. It was discovered that EM suppress the expression of SREBP-1⍺ and SREBP-2 mRNA in the liver tissues of high-cholesterol diet fed rats, while simultaneously increasing the expression of PPAR⍺ mRNA. This finding indicates that EM has a hypocholesterolemic effects in rats fed a high-cholesterol diet, by regulating cholesterol metabolism-related biochemical parameters and SREBP-1⍺ SREPB-2 and PPAR⍺ gene expression.
This study was carried out to investigate the effects of feeding the broilers that are exposed to extreme heat stress by control of inverse lighting times with night restricted feeding of extreme heat diet(EHD1, 2: extreme heat diet) containing different amount of soy oil, molasses, amino acids and vitamin C on short chain fatty acid and blood lipid profile. 300 broiler chickens(Abaica strain) were randomized into four dietary treatment groups according to a randomized block design on the day they were hatched. The four dietary treatment groups were: T1(EHD 1, 10:00~19:00 Dark, 19:00〜10:00 Light), T2(EHD 2, 10:00〜19:00 Dark, 19:00〜 10:00 Light), T3(EHD 1, 09:00〜18:00 Dark, 18:00〜09:00 Light), T4(EHD 2, 09:00〜18:00 Dark, 18:00~09:00 Light). The body weight gain of the broilers was highest in T2, and high in order T1, T4, T3(p<0.05). Weights of the lymphoid organ, thymus and bursa of Fabricius were high in T1, T2 as compared to T3, T4 but spleen was lower in T4 than T1, T2, T3(p<0.05). Blood triglyceride, total cholesterol and glucose were higher in T1, T2 than T3, T4(p<0.05). LDL-C was high in orderT4, T3, T2, T1 but HDL-C showed the opposite trend(p<0.05). Blood concentrations of IgG, IgG and IgM were higher in T1, T2 than inT3, T4, but the corticosterone concentration decreased significantly in them. In T1 and T2, Lactobacillus in the feces increased, but total aerobic bacteria, E.coli, coliform bacteria was decreased rather significantly, compared with those in T3 and T4(p<0.05). Concentrations of acetic acid, propionic acid and total SCFA in cecum were high in order T2, T1, T3, T4, but butyric acid, isobutyric acid, valeric acid, isovaleric acid were lower in T1, T2 than in T3, T4 (p<0.05).
This study report that the gamma linolenic acid content of pork is higher in finishing pigs fed diets containing hemp seed oil, evening primrose oil or borage oil as the sources of gamma linolenic acid. Thirty six three crossing swines (Landrace×Yorkshire×Duroc), 80 kg of body weight, were randomly separated into four treatment groups with three pens per treatment and three animals per pen. The finishing swines were fed the experimental diets for 35 days until they reached the market weight of 110 kg. The animals were assigned to the four experimental diets: control diet containing 5.00% tallow, T1 containing 5.00% hemp seed oil(hemp seed oil 40 : soybean oil 60), T2 containing 5.00% evening primrose oil(primrose oil 40 : soybean oil 60), T3 containing 5.00% borage oil(borage oil 40 : soybean oil 60). The plasma triacylglycerol and total cholesterol content of the swine in the gamma fatty acids-fed groups were significantly(p<0.05) lower than those in the control group. No gamma linolenic acid was detected in the plasma of the control group, while the level of gamma linolenic acid treatment groups was significantly(p<0.05) higher than the control in the order of T3, T2 and T1. Moreover, the level of gamma linolenic acid increased with increasing number of feeding days. There was a significant difference between the treatment groups (p<0.05). There was a difference in the amount of saturated fatty acid and polyunsaturated fatty acid accumulated in the pork according to the treatment groups or the parts of the pork meat. The level of n-3 fatty acid of pork was highest in T1, which had been fed the hemp seed oil, followed in order by T3 and T2(p<0.05). The content of gamma linolenic acid in pork was highest in T3, which had been fed the borage oil, followed in order by T2 and T1(p<0.05). In particular, the level of gamma linolenic acid in pork increased in the order of the back fat, pork belly, ham and loin.
This study demonstrates that pork cholesterol levels are reduced in finishing swine fed β-cyclodextrin (βCD). The study subjects were 120 swine fed their respective chow diets containing 0, 5, 7, or 10% βCD for 35 consecutive days. Plasma total lipids, triglyceride and total cholesterol of the βCD- treated group were significantly lower than those of the control group (p<0.05). The levels of plasma lipid were significantly decreased by 63.22 mg, 73.98 mg, and 82.12 mg in the finishing swine group fed βCD at 5%, 7%, and 10% , respectively, compared to those in the control group (p<0.05). When 5, 7, and 10% βCD was administered to finishing swine, the triacylglyceride levels were decreased by 56.24 mg, 55.48 mg, and 60.02 mg, and total cholesterol concentration was reduced by 25.05 mg, 27.17 mg, and 30.19 mg, respectively, compared to those in the control group (p<0.05). Excretion of total steroid significantly (p<0.05) increased with increase of βCD supplementation. The cholesterol levels of swine back fat, belly, loin, and ham were significantly decreased with increase of βCD supplementation (p<0.05). The pork cholesterol was significantly (p<0.05) reduced by 15.31% in the βCD-treated group, compared to that of the control group. These results suggest that feeding βCD to finishing swine may produce novel functional pork with low cholesterol levels.
This study examined the effects of different levels of evening primrose oil(EPO) on the accumulation of γ-fatty acids in broiler meat. Six hundred one-day-old male chicks (Ross strain) from commercial broilers were divided randomly into 6 groups × 4 repeat pens. The broilers were fed experimental diets containing 4.0% tallow(control), 0.5% EPO, 0.7% mixed oil(EPO 70 : soy bean oil 30), 1.5% EPO, 3.0% EPO or 4.0% EPO for 35 days. There was a significant difference in body weight gain between the control and treatment groups except for the 0.5% EPO group (p<0.05). There was a significant difference in the percentage of thigh and breast weight against the carcass weight between control and treatment groups except for the 0.5% EPO group in the thigh and 0.5% EPO and 4.0% EPO groups in the breast weight (p<0.05). The saturated fatty acid levels of the skin and breast muscle lipid of the broilers fed diets containing EPO were significantly lower than that of the control group (p<0.05), while the level of unsaturated fatty acid was significantly higher than that of the control group (p<0.05). The γ-fatty acid(GLA, gamma-linolenic acid, 18:3n-6) level was particularly higher in the chicken meat lipids from the broilers fed EPO than in the control group (p< 0.05). This shows that feeding EPO to chicks can produce novel functional broiler meat that is enriched in gamma-linolenic acid.