Cellular mechanisms involved in the stenosis and obliteration of the cerebral aqueduct of hyh mutant mice developing congenital hydrocephalus

被引:76
作者
Wagner, C
Batiz, LF
Rodríguez, S
Jiménez, AJ
Páez, P
Tomé, M
Pérez-Fígares, JM
Rodríguez, EM
机构
[1] Univ Austral Chile, Fac Med, Inst Histol & Patol, Valdivia, Chile
[2] Univ Malaga, Fac Ciencias, Dept Biol Celular & Genet, E-29071 Malaga, Spain
关键词
aqueductal obliteration; congenital hydrocephalus; ependymal defect; ependymal denudation; glycoprotein defect; hyh mouse; macrophages;
D O I
10.1093/jnen/62.10.1019
中图分类号
R74 [神经病学与精神病学];
学科分类号
摘要
Two phases may be recognized in the development of congenital hydrocephalus in the hyh mutant mouse. During embryonic life the detachment of the ventral ependyma is followed by a moderate hydrocephalus. During the first postnatal week the cerebral aqueduct becomes obliterated and a severe hydrocephalus develops. The aim of the present investigation was to elucidate the cellular phenomena occurring at the site of aqueduct obliteration and the probable participation of the subcommissural organ in this process. Electron microscopy, immunocytochemistry, and lectin histochemistry were used to investigate the aqueduct of normal and hydrocephalic hyh mice from embryonic day 14 (E-14) to postnatal day 7 (PN-7). In the normal hyh mouse, the aqueduct is an irregularly shaped cavity with 3 distinct regions (rostral, middle, and caudal) lined by various types of ependyma. In the hydrocephalic mouse, these 3 regions behave differently; the rostral end becomes stenosed, the middle third dilates, and the caudal end obliterates. The findings indicate that the following sequence of events lead to hydrocephalus: 1) denudation of the ventral ependyma (embryonic life); 2) denudation of dorsal ependyma and failure of the subcommissural organ to form Reissner fiber (first postnatal week); 3) obliteration of distal end of aqueduct; and 4) severe hydrocephalus. No evidence was obtained that NCAM is involved in the detachment of ependymal cells. The process of ependymal denudation would involve alterations of the surface sialoglycoproteins of the ependymal cells and the interaction of the latter with macrophages.
引用
收藏
页码:1019 / 1040
页数:22
相关论文
共 51 条
[1]   Cellular and molecular mechanisms of senescent erythrocyte phagocytosis by macrophages. A review [J].
Bratosin, D ;
Mazurier, J ;
Tissier, JP ;
Estaquier, J ;
Huart, JJ ;
Ameisen, JC ;
Aminoff, D ;
Montreuil, J .
BIOCHIMIE, 1998, 80 (02) :173-195
[2]   HYDROCEPHALUS WITH HOP GAIT (HYH) - A NEW MUTATION ON CHROMOSOME-7 IN THE MOUSE [J].
BRONSON, RT ;
LANE, PW .
DEVELOPMENTAL BRAIN RESEARCH, 1990, 54 (01) :131-136
[3]   NEUROPATHOLOGY OF CONGENITAL HYDROCEPHALUS IN THE SUMS NP MOUSE [J].
BRUNI, JE ;
DELBIGIO, MR ;
CARDOSO, ER ;
PERSAUD, TVN .
ACTA NEUROCHIRURGICA, 1988, 92 (1-4) :118-122
[4]   ALTERATIONS OF THE SUBCOMMISSURAL ORGAN IN THE HYDROCEPHALIC HUMAN FETAL BRAIN [J].
CASTANEYRAPERDOMO, A ;
MEYER, G ;
CARMONACALERO, E ;
BANUELOSPINEDA, J ;
MENDEZMEDINA, R ;
ORMAZABALRAMOS, C ;
FERRESTORRES, R .
DEVELOPMENTAL BRAIN RESEARCH, 1994, 79 (02) :316-320
[5]  
CIFUENTES M, 1994, EXP BRAIN RES, V98, P431
[6]   Disruption of the mouse L1 gene leads to malformations of the nervous system [J].
Dahme, M ;
Bartsch, U ;
Martini, R ;
Anliker, B ;
Schachner, M ;
Mantei, N .
NATURE GENETICS, 1997, 17 (03) :346-349
[7]  
Demyanenko GP, 1999, J NEUROSCI, V19, P4907
[8]  
FLOR W J, 1979, Scanning Electron Microscopy, P47
[9]   L1 knockout mice show dilated ventricles, vermis hypoplasia and impaired exploration patterns [J].
Fransen, E ;
D'Hooge, R ;
Van Camp, G ;
Verhoye, M ;
Sijbers, J ;
Reyniers, E ;
Soriano, P ;
Kamiguchi, H ;
Willemsen, R ;
Koekkoek, SKE ;
De Zeeuw, CI ;
De Deyn, PP ;
Van der Linden, A ;
Lemmon, V ;
Kooy, RF ;
Willems, PJ .
HUMAN MOLECULAR GENETICS, 1998, 7 (06) :999-1009