TY - JOUR
T1 - Advancing the Spontaneous Hypertensive Rat Model of Attention Deficit/Hyperactivity Disorder
AU - Kantak, K. M.
AU - Singh, T.
AU - Kerstetter, K. A.
AU - Dembro, K. A.
AU - Mutebi, M. M.
AU - Harvey, R. C.
AU - Deschepper, C. F.
AU - Dwoskin, L. P.
PY - 2008/4
Y1 - 2008/4
N2 - To advance the spontaneous hypertensive rat (SHR) model of attention deficit/hyperactivity disorder (ADHD), experiments examined the SHR in tasks recognized to assess functioning of the prefrontal cortex or dorsal striatal. Tasks included odor-delayed win-shift (nonspatial working and reference memory), win-stay (habit learning), and attentional set-shifting (attention and behavioral flexibility). In Experiment 1, the SHR strain was compared with Wistar-Kyoto (WKY) and Wistar-Kyoto Hypertensive (WKHT) strains on the first 2 tasks. In Experiment 2, oral methylphenidate (1.5 mg/kg) and vehicle (water) were evaluated on all 3 tasks in SHR and WKY strains. Results demonstrated that the SHR made significantly more errors in the odor-delayed win-shift, win-stay, and attentional set-shifting tasks compared with the WKY. Similar performances in the WKY and WKHT indicated that deficits observed in the SHR were not related solely to hypertension. Treating the SHR with methylphenidate eliminated strain differences in all 3 tasks. These findings provide evidence that the SHR is a valid model for studying ADHD-associated neurocognitive deficits. Moreover, the current behavioral approach is appropriate to assess novel medications developed to target ADHD-associated neurocognitive deficits.
AB - To advance the spontaneous hypertensive rat (SHR) model of attention deficit/hyperactivity disorder (ADHD), experiments examined the SHR in tasks recognized to assess functioning of the prefrontal cortex or dorsal striatal. Tasks included odor-delayed win-shift (nonspatial working and reference memory), win-stay (habit learning), and attentional set-shifting (attention and behavioral flexibility). In Experiment 1, the SHR strain was compared with Wistar-Kyoto (WKY) and Wistar-Kyoto Hypertensive (WKHT) strains on the first 2 tasks. In Experiment 2, oral methylphenidate (1.5 mg/kg) and vehicle (water) were evaluated on all 3 tasks in SHR and WKY strains. Results demonstrated that the SHR made significantly more errors in the odor-delayed win-shift, win-stay, and attentional set-shifting tasks compared with the WKY. Similar performances in the WKY and WKHT indicated that deficits observed in the SHR were not related solely to hypertension. Treating the SHR with methylphenidate eliminated strain differences in all 3 tasks. These findings provide evidence that the SHR is a valid model for studying ADHD-associated neurocognitive deficits. Moreover, the current behavioral approach is appropriate to assess novel medications developed to target ADHD-associated neurocognitive deficits.
KW - SHR
KW - WKHT
KW - WKY
KW - attentional set-shifting
KW - habit leaning
KW - methylphenidate
KW - nonspatial working memory
UR - https://www.scopus.com/pages/publications/43449136161
UR - https://www.scopus.com/pages/publications/43449136161#tab=citedBy
U2 - 10.1037/0735-7044.122.2.340
DO - 10.1037/0735-7044.122.2.340
M3 - Article
C2 - 18410173
AN - SCOPUS:43449136161
SN - 0735-7044
VL - 122
SP - 340
EP - 357
JO - Behavioral Neuroscience
JF - Behavioral Neuroscience
IS - 2
ER -