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Anaplerotic Triheptanoin Diet Enhances Mitochondrial Substrate Use to Remodel the Metabolome and Improve Lifespan, Motor Function, and Sociability in MeCP2-Null Mice

  • Park, Min Jung
  • Aja, Susan
  • Li, Qun
  • Degano, Alicia L.
  • Penati, Judith
  • Zhuo, Justin
  • Roe, Charles R.
  • Ronnett, Gabriele V.
  • 2014-10
  • Park, Min Jung. (2014-10). Anaplerotic Triheptanoin Diet Enhances Mitochondrial Substrate Use to Remodel the Metabolome and Improve Lifespan, Motor Function, and Sociability in MeCP2-Null Mice. PLoS ONE, 9(10). doi: 10.1371/journal.pone.0109527
  • Public Library of Science
  • View : 797
  • Download : 118

Increasing Fatty Acid Oxidation Remodels the Hypothalamic Neurometabolome to Mitigate Stress and Inflammation

  • McFadden, Joseph W.
  • Aja, Susan
  • Li, Qun
  • Bandaru, Veera V. R.
  • Kim, Eun Kyoung
  • Haughey, Norman J.
  • Kuhajda, Francis P.
  • Ronnett, Gabriele V.
  • 2014-12
  • McFadden, Joseph W. (2014-12). Increasing Fatty Acid Oxidation Remodels the Hypothalamic Neurometabolome to Mitigate Stress and Inflammation. PLoS ONE, 9(12). doi: 10.1371/journal.pone.0115642
  • Public Library of Science
  • View : 741
  • Download : 131
  • Degano, Alicia L.
  • Park, Min Jung
  • Penati, Judith
  • Li, Qun
  • Ronnett, Gabriele V.
  • 2014-03
  • Degano, Alicia L. (2014-03). MeCP2 is required for activity-dependent refinement of olfactory circuits. Molecular and Cellular Neuroscience, 59, 63–75. doi: 10.1016/j.mcn.2014.01.005
  • Academic Press Inc.
  • View : 737
  • Download : 0
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