Training specificity, graft development and graft-mediated functional recovery in a rodent model of Huntington's disease

被引:36
作者
Döbrössy, MD [1 ]
Dunnett, SB [1 ]
机构
[1] Cardiff Univ, Sch Biosci, Brain Repair Grp, Cardiff CF10 3US, Wales
关键词
transplantation; striatum; plasticity; training; Huntington's disease;
D O I
10.1016/j.neuroscience.2005.01.016
中图分类号
Q189 [神经科学];
学科分类号
071006 ;
摘要
Neuronal function and morphology are affected by the environment and the behavioral experience. Here we report on the effects of differential training protocols on the development and the functional recovery mediated by intrastriatal striatal grafts. Rats were trained exclusively on the left or the right paw to perform on the skilled staircase task before being lesioned unilaterally in the dorsal striatum with quinolinic acid. E15 whole ganglionic eminence suspension grafts were implanted into the lesioned striatum. Subsequent testing probed unilateral performance of the affected contralateral paw, as well as bilateral performance. The grafted animals were initially as impaired as the lesioned, but partially recovered their performance with additional training. Grafted animals with appropriate previous experience initially performed better on the staircase test, but the advantage was transient. Furthermore, the grafted animals performed better with their affected paw under forced choice than under conditions when both paws were simultaneously probed. Improvements of the grafted animals were also observed on tests of forelimb akinesia and asymmetry. Morphological data suggest that the training conditions influenced the development specifically of striatal-like, but not of non-striatal like, neurones within the grafts. The grafts were smaller containing less striatal-like neurones in animals that were trained on the contralateral side prior to lesioning and grafting. The results support the hypothesis that unilateral training sensitizes the striatum that subserves the motor learning, leading to exacerbated excitotoxic lesions and to an environment less conducive for graft development. (c) 2005 IBRO. Published by Elsevier Ltd. All rights reserved.
引用
收藏
页码:543 / 552
页数:10
相关论文
共 48 条
[1]   ESTIMATION OF NUCLEAR POPULATION FROM MICROTOME SECTIONS [J].
ABERCROMBIE, M .
ANATOMICAL RECORD, 1946, 94 (02) :239-247
[2]   DOPAMINERGIC GRAFTS IMPLANTED INTO THE NEONATAL OR ADULT STRIATUM - COMPARATIVE EFFECTS ON ROTATION AND PAW REACHING DEFICITS INDUCED BY SUBSEQUENT UNILATERAL NIGROSTRIATAL LESIONS IN ADULTHOOD [J].
ABROUS, DN ;
TORRES, EM ;
DUNNETT, SB .
NEUROSCIENCE, 1993, 54 (03) :657-668
[3]   The potential for circuit reconstruction by expanded neural precursor cells explored through porcine xenografts in a rat model of Parkinson's disease [J].
Armstrong, RJE ;
Hurelbrink, CB ;
Tyers, P ;
Ratcliffe, EL ;
Richards, A ;
Dunnett, SB ;
Rosser, AE ;
Barker, RA .
EXPERIMENTAL NEUROLOGY, 2002, 175 (01) :98-111
[4]   Motor and cognitive improvements in patients with Huntington's disease after neural transplantation [J].
Bachoud-Lévi, A ;
Rémy, P ;
Nguyen, JP ;
Brugières, P ;
Lefaucheur, JP ;
Bourdet, C ;
Baudic, S ;
Gaura, V ;
Maison, P ;
Haddad, B ;
Boissé, MF ;
Grandmougin, T ;
Jény, R ;
Bartolomeo, P ;
Dalla Barba, G ;
Degos, JD ;
Lisovoski, F ;
Ergis, AM ;
Pailhous, E ;
Cesaro, P ;
Hantraye, P ;
Peschanski, M .
LANCET, 2000, 356 (9246) :1975-1979
[5]   Fetal neural grafts for Huntington's disease:: A prospective view [J].
Bachoud-Lévi, AC ;
Hantraye, P ;
Peschanski, M .
MOVEMENT DISORDERS, 2002, 17 (03) :439-444
[6]   MECHANISMS OF ACTION OF INTRACEREBRAL NEURAL IMPLANTS - STUDIES ON NIGRAL AND STRIATAL GRAFTS TO THE LESIONED STRIATUM [J].
BJORKLUND, A ;
LINDVALL, O ;
ISACSON, O ;
BRUNDIN, P ;
WICTORIN, K ;
STRECKER, RE ;
CLARKE, DJ ;
DUNNETT, SB .
TRENDS IN NEUROSCIENCES, 1987, 10 (12) :509-516
[7]   FUNCTIONAL REACTIVATION OF THE DEAFFERENTED NEOSTRIATUM BY NIGRAL TRANSPLANTS [J].
BJORKLUND, A ;
STENEVI, U ;
DUNNETT, SB ;
IVERSEN, SD .
NATURE, 1981, 289 (5797) :497-499
[8]   Movement-related glutamate levels in rat hippocampus, striatum, and sensorimotor cortex [J].
Bland, ST ;
Gonzales, RA ;
Schallert, T .
NEUROSCIENCE LETTERS, 1999, 277 (02) :119-122
[9]   Early exclusive use of the affected forelimb after moderate transient focal ischemia in rats - Functional and anatomic outcome [J].
Bland, ST ;
Schallert, T ;
Strong, R ;
Aronowski, J ;
Grotta, JC .
STROKE, 2000, 31 (05) :1144-1151
[10]   Behavioural recovery following striatal transplantation: effects of postoperative training and P-zone volume [J].
Brasted, PJ ;
Watts, C ;
Torres, EM ;
Robbins, TW ;
Dunnett, SB .
EXPERIMENTAL BRAIN RESEARCH, 1999, 128 (04) :535-538