[1] |
赵战朝, 孙绍梅, 薛承锐. 对肝脏迷走神经功能的研究[J]. 医学综述, 2004, 10(9): 549-551.
|
[2] |
Su TH, Huang LL, Zhang N, et al. FGF14 functions as a tumor suppressor through inhibiting PI3K/AKT/mTOR pathway in colorectal cancer[J]. J Cancer, 2020, 11(4): 819-825.
|
[3] |
Besse-Patin A, Jeromson S, Levesque-Damphousse P, et al. PGC1A regulates the IRS1: IRS2 ratio during fasting to influence hepatic metabolism downstream of insulin[J]. Proc Nati Acad Sci U S A, 2019, 116(10): 4285-4290.
|
[4] |
Tordoff MG, Novin D. Celiac vagotomy attenuates the ingestive responses to epinephrine and hypertonic saline but not insulin, 2-deoxy-D-glucose, or polyethylene glycol[J]. Physiol Behav, 1982, 29(4): 605-613.
|
[5] |
Wang PYT, Caspi L, Lam CKL, et al. Upper intestinal lipids trigger a gut-brain-liver axis to regulate glucose production[J]. Nature, 2008, 452(7190): 1012-1016.
|
[6] |
Krzysztof G, Bugajski A, Thor P. Electrical vagus nerve stimulation decreases food consumption and weight gain in rats fed a high-fat diet[J]. J Physiol Pharmacol, 2011, 62(6): 637-646.
|
[7] |
黄梅凤, 胡芳. 下丘脑黑皮质素系统对机体能量代谢的调控[J]. 临床与病理杂志, 2016, 36(6): 852-858.
|
[8] |
Warne JP, Foster MT, Horneman HF, et al. Hepatic branch vagotomy, like insulin replacement, promotes voluntary lard intake in streptozotocin-diabetic rats[J]. Endocrinology, 2007, 148 (7): 3288-3298.
|
[9] |
Lam TKT, Pocai A, Gutierrez-Juarez R, et al. Hypothalamic sensing of circulating fatty acids is required for glucose homeostasis[J]. Nat Med, 2005, 11(3): 320-327.
|
[10] |
Warne JP, Foster MT, Horneman HF, et al. The gastroduodenal branch of the common hepatic vagus regulates voluntary lard intake,fat deposition, and plasma metabolites in streptozotocin-diabetic rats[J]. Am J Physiol Endocrinol Metab, 2008, 294(1): E190-E200.
|
[11] |
梁泉, 薛承锐, 赵战朝, 等. 去肝脏胆碱能神经与大鼠肝细胞胰岛素信号转导关系的研究[J]. 中华肝胆外科杂志, 2004, 10(5): 333-336.
|
[12] |
剡海阔, 范小龙, 马勇江, 等. 神经对哺乳动物肝脏功能的调节[J]. 广东畜牧兽医科技, 2010, 35(4): 3-4.
|
[13] |
Dong PP, Hao FM, Dai SF, et al. Combination therapy eve and pac to induce apoptosis in cervical cancer cells by targeting PI3K/AKT/mTOR pathways[J]. J Recep Signal Transduct Res, 2018, 38(1): 83-88.
|
[14] |
Liu X, Niu Y, Yuan H, et al. AMPK binds toSestrinsand mediates the effect ofexerciseto increase insulin-sensitivity through autophagy[J]. Metabolism, 2015, 64(6): 658-665.
|
[15] |
Frias MA, Thoreen CC, Jaffe JD, et al. mSin1 is necessary for Akt/PKB phosphorylation and its isoforms define three distinct mTORC2s[J]. Curr Biol, 2006, 16(18): 1865-1870.
|
[16] |
Oh WJ, Jacinto E. mTOR complex 2 signaling and functions[J]. Cell Cycle, 2011, 10(14): 2305-2316.
|
[17] |
Gan X, Wang J, Su B, et al. Evidence for direct activation of mTORC2 kinase activity by phosphatidylinstitol 3,4,5-trisphosphate[J]. J Biol Chem, 2011, 286(13): 10998-11002.
|