[1] LEVIN B E,DUNN-MEYNELL A A,ROUTH V H.Brain glucose sensing and body energy homeostasis:role in obesity and diabetes[J].American Journal of Physiology:Regulatory,Integrative and Comparative Physiology,1999,276(5):R1223-R1231.
[2] FROMENTIN G,DARCEL N,CHAUMONTET C,et al.Peripheral and central mechanisms involved in the control of food intake by dietary amino acids and proteins[J].Nutrition Research Reviews,2012,25(1):29-39.

[3] HEELEY N,BLOUET C.Central amino acid sensing in the control of feeding behavior[J].Frontiers in Endocrinology,2016,7:148.
[4] TSURUGIZAWA T,UNEYAMA H,TORII K.Brain amino acid sensing[J].Diabetes,Obesity and Metabolism,2014,16(Suppl 1):41-48.
[5] LENARD N R,BERTHOUD H R.Central and peripheral regulation of food intake and physical activity:pathways and genes[J].Obesity,2008,16(Suppl.3):S11-S22.
[6] OBICI S,FENG Z H,MORGAN K,et al.Central administration of oleic acid inhibits glucose production and food intake[J].Diabetes,2002,51(2):271-275.

[7] MAGNAN C,LEVIN B E,LUQUET S.Brain lipid sensing and the neural control of energy balance[J].Molecular and Cellular Endocrinology,2015,418:3-8.
[8] BROOKS L,VIARDOT A,TSAKMAKI A,et al.Fermentable carbohydrate stimulates FFAR2-dependent colonic PYY cell expansion to increase satiety[J].Molecular Metabolism,2017,6(1):48-60.

[9] RONVEAUX C C,DE LARTIGUE G,RAYBOULD H E.Ability of GLP-1 to decrease food intake is dependent on nutritional status[J].Physiology & Behavior,2014,135:222-229.
[10] BATTERHAM R L,COWLEY M A,SMALL C J,et al.Gut hormone PYY3-36 physiologically inhibits food intake[J].Nature,2002,418(6898):650-654.

[11] STADLBAUER U,WOODS S C,LANGHANS W,et al.PYY3-36:beyond food intake[J].Frontiers in Neuroendocrinology,2015,38:1-11.
[12] GOSWAMI C,IWASAKI Y,YADA T.Short-chain fatty acids suppress food intake by activating vagal afferent neurons[J].The Journal of Nutritional Biochemistry,2018,57:130-135.
[13] FROST G,SLEETH M L,SAHURI-ARISOYLU M,et al.The short-chain fatty acid acetate reduces appetite via a central homeostatic mechanism[J].Nature Communications,2014,5:3611.
[14] LI Z,YI C X,KATIRAEI S,KOOIJMAN S,et al.Butyrate reduces appetite and activates brown adipose tissue via the gut-brain neural circuit[J].Gut,2017,67(7):1269-1279.
[15] LE GALL M,GALLOIS M,SÈVE B,et al.Comparative effect of orally administered sodium butyrate before or after weaning on growth and several indices of gastrointestinal biology of piglets[J].British Journal of Nutrition,2009,102(9):1285-1296.

[16] MURPHY K G,BLOOM S R.Gut hormones and the regulation of energy homeostasis[J].Nature,2006,444(7121):854-859.

[17] BIAGI G,PIVA A,MOSCHINI M,et al.Performance,intestinal microflora,and wall morphology of weanling pigs fed sodium butyrate[J].Journal of Animal Science,2007,85(5):1184-1191.

[18] 耿春银,孟庆翔,张敏,等.中链脂肪酸对动物生长性能的影响及可能机制[J].饲料工业,2014,35(17):27-31.
[19] JAMBOR DE SOUSA U L,ARNOLD M,LANGHANS W,et al.Caprylic acid infusion acts in the liver to decrease food intake in rats[J].Physiology & Behavior,2006,87(2):388-395.

[20] 向娜娜.不同脂肪酸对下丘脑N38细胞AgRP表达和分泌的影响及其信号通路[D].硕士学位论文.广州:华南农业大学,2016:12-54.
[21] FRIEDMAN M I,EDENS N K,RAMIREZ I.Differential effects of medium-and long-chain triglycerides on food intake of normal and diabetic rats[J].Physiology & Behavior,1983,31(6):851-855.

[22] 陈晨.中链脂肪酸对断奶仔猪生产性能、肠道形态结构和微生物菌群的影响[D].硕士学位论文.南京:南京农业大学,2015:7-8.
[23] SCHWARTZ G J,FU J,ASTARITA G,et al.The lipid messenger OEA links dietary fat intake to satiety[J].Cell Metabolism,2008,8(4):281-288.

[24] MENNELLA I,SAVARESE M,FERRACANE R,et al.Oleic acid content of a meal promotes oleoylethanolamide response and reduces subsequent energy intake in humans[J].Food & Function,2015,6(1):204-210.
[25] YANG Z H,TAKEO J,KATAYAMA M.Oral administration of omega-7 palmitoleic acid induces satiety and the release of appetite-related hormones in male rats[J].Appetite,2013,65:1-7.
[26] VANDERMEERSCHEN-DOIZÉ F,PAQUAY R.Effects of continuous long-term intravenous infusion of long-chain fatty acids on feeding behaviour and blood components of adult sheep[J].Appetite,1984,5(2):137-146.

[27] AHN D U,SELL J L,JO C,et al.Effect of dietary conjugated linoleic acid on the quality characteristics of chicken eggs during refrigerated storage[J].Poultry Science,1999,78(6):922-928.

[28] SZYMCZYK B,PISULEWSKI P M.Effects of dietary conjugated linoleic acid on fatty acid composition and cholesterol content of hen egg yolks[J].British Journal of Nutrition,2003,90(1):93-99.

[29] COCCURELLO R,CAPRIOLI A,BELLANTUONO S,et al.Effects of the increase in neuronal fatty acids availability on food intake and satiety in mice[J].Psychopharmacology,2010,210(1):85-95.

[30] HRYHORCZUK C,SHENG Z Y,DÉCARIE-SPAIN L,et al.Oleic acid in the ventral tegmental area inhibits feeding,food reward,and dopamine tone[J].Neuropsychopharmacology,2018,43(3):607-616.

[31] HARVEY J,MCKAY N G,WALKER K S,et al.Essential role of phosphoinositide 3-kinase in leptin-induced K
ATP channel activation in the rat CRI-G1 insulinoma cell line[J].The Journal of Biological Chemistry,2000,275(7):4660-4669.

[32] SPANSWICK D,SMITH M A,MIRSHAMSI S,et al.Insulin activates ATP-sensitive K
+ channels in hypothalamic neurons of lean,but not obese rats[J].Nature Neuroscience,2000,3(8):757-758.

[33] LOFTUS T M,JAWORSKY D E,FREHYWOT G L,et al.Reduced food intake and body weight in mice treated with fatty acid synthase inhibitors[J].Science,2000,288(5475):2379-2381.

[34] OBICI S,FENG Z H,ARDUINI A,et al.Inhibition of hypothalamic carnitine palmitoyltransferase-1 decreases food intake and glucose production[J].Nature Medicine,2003,9(6):756-761.

[35] GRIBBLE F M,PROKS P,CORKEY B E,et al.Mechanism of cloned ATP-sensitive potassium channel activation by oleoyl-CoA[J].The Journal of Biological Chemistry,1998,273(41):26383-26387.

[36] CHENG L C,YU Y H,ZHANG Q S,et al.Arachidonic acid impairs hypothalamic leptin signaling and hepatic energy homeostasis in mice[J].Molecular and cellular Endocrinology,2015,412:12-18.
[37] LIN S,THOMAS T C,STORLIEN L H,et al.Development of high fat diet-induced obesity and leptin resistance in C57Bl/6J mice[J].International Journal of Obesity,2000,24(5):639-646.

[38] YU Y H,WU Y Z,SZABO A,et al.Teasaponin reduces inflammation and central leptin resistance in diet-induced obese male mice[J].Endocrinology,2013,154(9):3130-3140.

[39] CHENG L C,YU Y H,SZABO A,et al.Palmitic acid induces central leptin resistance and impairs hepatic glucose and lipid metabolism in male mice[J].The Journal of Nutritional Biochemistry,2015,26(5):541-548.

[40] MOON M L,JOESTING J J,LAWSON M A,et al.The saturated fatty acid,palmitic acid,induces anxiety-like behavior in mice[J].Metabolism,2014,63(9):1131-1140.

[41] BENOIT S C,KEMP C J,ELIAS C F,et al.Palmitic acid mediates hypothalamic insulin resistance by altering PKC-θ subcellular localization in rodents[J].The Journal of Clinical Investigation,2009,119(9):2577-2589.

[42] MORTON G J,GELLING R W,NISWENDER K D,et al.Leptin regulates insulin sensitivity via phosphatidylinositol-3-OH kinase signaling in mediobasal hypothalamic neurons[J].Cell Metabolism,2005,2(6):411-420.

[43] KIM M S,PAK Y K,JANG P G,et al.Role of hypothalamic Foxo1 in the regulation of food intake and energy homeostasis[J].Nature Neuroscience,2006,9(7):901-906.

[44] WANG S B,XIANG N N,YANG L S,et al.Linoleic acid and stearic acid elicit opposite effects on AgRP expression and secretion via TLR4-dependent signaling pathways in immortalized hypothalamic N38 cells[J].Biochemical and Biophysical Research Communications,2016,471(4):566-571.

[45] LEE S A,WHENHAM N,BEDFORD M R.Review on docosahexaenoic acid in poultry and swine nutrition:consequence of enriched animal products on performance and health characteristics[J].Animal Nutrition,2019,5(1):11-21.

[46] LUISE D,MOTTA V,SALVARANI C,et al.Long-term administration of formic acid to weaners:influence on intestinal microbiota,immunity parameters and growth performance[J].Animal Feed Science and Technology,2017,232:160-168.