4.8 Article

Leptin in hippocampus mediates benefits of mild exercise by an antioxidant on neurogenesis and memory

出版社

NATL ACAD SCIENCES
DOI: 10.1073/pnas.1815197116

关键词

hippocampal leptin; mild exercise; astaxanthin; antioxidant; spatial memory

资金

  1. special funds for Education and Research from the Ministry of Education, Culture, Sports, Science, and Technology (MEXT) [1111501004]
  2. Japan Society for the Promotion of Science (JSPS) [HFH27016]
  3. KAKENHI [18H04081, 16H06405]
  4. Grants-in-Aid for Scientific Research [18H04081, 16H06405] Funding Source: KAKEN

向作者/读者索取更多资源

Regular exercise and dietary supplements with antioxidants each have the potential to improve cognitive function and attenuate cognitive decline, and, in some cases, they enhance each other. Our current results reveal that low-intensity exercise (mild exercise, ME) and the natural antioxidant carotenoid astaxanthin (AX) each have equivalent beneficial effects on hippocampal neurogenesis and memory function. We found that the enhancement by ME combined with AX in potentiating hippocampus-based plasticity and cognition is mediated by leptin (LEP) made and acting in the hippocampus. In assessing the combined effects upon wild-type (WT) mice undergoing ME with or without an AX diet for four weeks, we found that, when administrated alone, ME and AX separately enhanced neurogenesis and spatial memory, and when combined they were at least additive in their effects. DNA microarray and bioinformatics analyses revealed not only the up-regulation of an antioxidant gene, ABHD3, but also that the up-regulation of LEP gene expression in the hippocampus of WT mice with ME alone is further enhanced by AX. Together, they also increased hippocampal LEP (h-LEP) protein levels and enhanced spatial memory mediated through AKT/STAT3 signaling. AX treatment also has direct action on human neuroblastoma cell lines to increase cell viability associated with increased LEP expression. In LEP-deficient mice (ob/ob), chronic infusion of LEP into the lateral ventricles restored the synergy. Collectively, our findings suggest that not only h-LEP but also exogenous LEP mediates effects of ME on neural functions underlying memory, which is further enhanced by the antioxidant AX.

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