AI Article Synopsis

  • The study investigates how aerobic exercise affects brain health, particularly focusing on neurogenesis (the birth of new neurons) and cognitive performance in mice.
  • It reveals that exercise enhances blood vessel density in specific areas of the brain (dentate gyrus and striatum) and improves cognitive tasks (like navigating a maze) in one strain of mice (C57BL/6J), while another strain (B6D2F1/J) showed increased neurogenesis but not blood vessel density.
  • The findings indicate that the cognitive benefits of exercise may be linked to this increased vascular density and that new neurons play a significant role in the brain's response to exercise, particularly in high-activity situations.

Article Abstract

The discovery that aerobic exercise increases adult hippocampal neurogenesis and can enhance cognitive performance holds promise as a model for regenerative medicine. This study adds two new pieces of information to the rapidly growing field. First, we tested whether exercise increases vascular density in the granular layer of the dentate gyrus, whole hippocampus, and striatum in C57BL/6J mice known to display procognitive effects of exercise. Second, we determined the extent to which new neurons from exercise participate in the acute neuronal response to high levels of running in B6D2F1/J (F1 hybrid of C57BL/6J female by DBA/2J male). Mice were housed with or without a running wheel for 50 days (runner vs. sedentary). The first 10 days, they received daily injections of BrdU to label dividing cells. The last 10 days, mice were tested for performance on the Morris water maze and rotarod and then euthanized to measure neurogenesis, c-Fos induction from running and vascular density. In C57BL/6J, exercise increased neurogenesis, density of blood vessels in the dentate gyrus and striatum (but not whole hippocampus), and enhanced performance on the water maze and rotarod. In B6D2F1/J, exercise also increased hippocampal neurogenesis but not vascular density in the granular layer. Improvement on the water maze from exercise was marginal, and no gain was seen for rotarod, possibly because of a ceiling effect. Running increased the number of c-Fos positive neurons in the granular layer by fivefold, and level of running was strongly correlated with c-Fos within 90 min before euthanasia. In runners, approximately 3.3% (+/-0.008 S.E.) of BrdU-positive neurons in the middle of the granule layer displayed c-Fos when compared with 0.8% (+/-0.001) of BrdU-negative neurons. Results suggest that procognitive effects of exercise are associated with increased vascular density in the dentate gyrus and striatum in C57BL/6J mice, and that new neurons from exercise preferentially function in the neuronal response to running in B6D2F1/J.

Download full-text PDF

Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC2791165PMC
http://dx.doi.org/10.1002/hipo.20543DOI Listing

Publication Analysis

Top Keywords

dentate gyrus
16
vascular density
16
granular layer
12
water maze
12
exercise
10
exercise increases
8
hippocampal neurogenesis
8
density granular
8
striatum c57bl/6j
8
c57bl/6j mice
8

Similar Publications

Want AI Summaries of new PubMed Abstracts delivered to your In-box?

Enter search terms and have AI summaries delivered each week - change queries or unsubscribe any time!