|
  
- 积分
- 0
- 威望
- 0
- 包包
- 3465
|

Gallagher has noted before that a subset of older rats maintain learning abilities equivalent to those of young rats. Learning involves the modification of synaptic strength: connections are strengthened via long-term potentiation (LTP) and weakened via long-term depression (LTD). When thinking of learning, says Kirkwood, "most people put the emphasis on LTP, but I have an appreciation for what makes things weaker." When forming a new memory, "making stronger and making them weaker must be equally balanced."4 E' N( X0 M( f- p3 V7 s. Z
" E/ O& v$ [, XLTD comes in two flavors, one dependent on and another independent of NMDA receptors (NMDARs). The Baltimore group found that NMDAR-LTD declined with age, but there was no difference between old rats that were either smart or befuddled. But the old and smart rats showed far more non–NMDAR-LTD than either the young rats or the old and befuddled rats.
9 P9 T- l5 Y+ q) v9 p+ w$ b+ M7 E) }; u# W4 C, V& z
Thus it appears that some aging rats successfully switch from NMDAR-LTD to non–NMDAR-LTD. This switch is a smart strategy, because NMDAR-LTD can cause excitotoxicity, so decoupling from NMDARs with age "could be a way of managing excitotoxicity," says Kirkwood. Once the non-NMDAR pathway is better characterized, it may make a better target than the NMDAR pathway for enhancing brain functioning in the elderly.& A( B' r4 Q2 d( `; P1 l
; K/ Y& A' e% `; F2 H3 W% }
Reference:
1 l8 h, c( g6 ]- ~, A3 m! ?4 }- F# A4 A
Lee, H.-K., et al. 2005. Nat. Neurosci. doi:10.1038/nn1586.(S ome rats, and humans, are better than ) |
|