Autophagy Modulation by Lanthionine Ketimine Ethyl Ester Improves Long-Term Outcome after Central Fluid Percussion Injury in the Mouse

作者: Kenneth Hensley , Aleksandra Poteshkina , Ming F. Johnson , Pirooz Eslami , S. Prasad Gabbita

DOI: 10.1089/NEU.2015.4196

关键词: Diffuse axonal injuryTraumatic brain injuryAxonPharmacologyAutophagyBiologyAxoplasmic transportIn vivoAtrophyPathologyLanthionine Ketimine

摘要: Abstract Diffuse axonal injury is recognized as a progressive and long-term consequence of traumatic brain injury. Axonal can have sustained negative consequences on neuronal functions such anterograde retrograde transport cellular processes autophagy that depend cytoarchitecture axon integrity. These changes lead to somatic atrophy an inability repair promote plasticity. Obstruction the autophagic process has been noted after injury, rapamycin, drug used stimulate autophagy, demonstrated positive effects in models. The optimization drugs beneficial without side could be attenuate improved outcome. Lanthionine ketimine ethyl ester, bioavailable derivative natural sulfur amino acid metabolite, both vitro vivo. Thirty minutes moderate central fluid percussion throughout ...

参考文章(86)
P. Xu, M. Das, J. Reilly, R. J. Davis, JNK regulates FoxO-dependent autophagy in neurons. Genes & Development. ,vol. 25, pp. 310- 322 ,(2011) , 10.1101/GAD.1984311
JA Mortimer, CM Van Duijn, V Chandra, Laura Fratiglioni, AB Graves, A Heyman, AF Jorm, Emre Kokmen, K Kondo, WA Rocca, SL Shalat, H Soininen, None, Head Trauma as a Risk Factor for Alzheimer's Disease: A Collaborative Re-Analysis of Case-Control Studies International Journal of Epidemiology. ,vol. 20, pp. 28- 35 ,(1991) , 10.1093/IJE/20.SUPPLEMENT_2.S28
C. Edward Dixon, Bruce G. Lyeth, John T. Povlishock, Robert L. Findling, Robert J. Hamm, Anthony Marmarou, Harold F. Young, Ronald L. Hayes, A fluid percussion model of experimental brain injury in the rat Journal of Neurosurgery. ,vol. 67, pp. 110- 119 ,(1987) , 10.3171/JNS.1987.67.1.0110
J. E. Shaw, R. K. Herman, Wei Li, Analysis of the Caenorhabditis elegans axonal guidance and outgrowth gene unc-33. Genetics. ,vol. 132, pp. 675- 689 ,(1992) , 10.1093/GENETICS/132.3.675
Ruben K. Dagda, Salvatore J. Cherra, Scott M. Kulich, Anurag Tandon, David Park, Charleen T. Chu, Loss of PINK1 Function Promotes Mitophagy through Effects on Oxidative Stress and Mitochondrial Fission Journal of Biological Chemistry. ,vol. 284, pp. 13843- 13855 ,(2009) , 10.1074/JBC.M808515200
Derek Narendra, Atsushi Tanaka, Der-Fen Suen, Richard J. Youle, Parkin is recruited selectively to impaired mitochondria and promotes their autophagy Journal of Cell Biology. ,vol. 183, pp. 795- 803 ,(2008) , 10.1083/JCB.200809125
D. J. Klionsky, M. A. Lynch-Day, K. Mao, K. Wang, M. Zhao, The Role of Autophagy in Parkinson’s Disease Cold Spring Harbor Perspectives in Medicine. ,vol. 2, ,(2012) , 10.1101/CSHPERSPECT.A009357
Gary G. Chiang, Robert T. Abraham, Phosphorylation of mammalian target of rapamycin (mTOR) at Ser-2448 is mediated by p70S6 kinase. Journal of Biological Chemistry. ,vol. 280, pp. 25485- 25490 ,(2005) , 10.1074/JBC.M501707200
Victoria E. Johnson, William Stewart, Douglas H. Smith, Axonal Pathology in Traumatic Brain Injury Experimental Neurology. ,vol. 246, pp. 35- 43 ,(2013) , 10.1016/J.EXPNEUROL.2012.01.013