Membrane breakdown in acute and chronic neurodegeneration: focus on choline-containing phospholipids

被引:265
作者
Klein, J [1 ]
机构
[1] Johannes Gutenberg Univ Mainz, Dept Pharmacol, D-55101 Mainz, Germany
关键词
membrane breakdown; phospholipids; phospholipase A(2); phosphatidylcholine; glycerophosphocholine; choline;
D O I
10.1007/s007020070051
中图分类号
R74 [神经病学与精神病学];
学科分类号
摘要
Breakdown of cellular membranes is a characteristic feature of neuronal degeneration in acute (stroke) and chronic (senile dementia) neurological disorders. The present review summarizes recent experimental and clinical work which concentrated on changes of choline-containing phospholipids as indicators of neuronal membrane breakdown. Experimental studies identified glutamate release, calcium influx, and activation of cellular phospholipase A(2) (PLA(2)) as important steps initiating membrane breakdown in cultured neurons or brain slices under hypoxic or ischemic conditions. Proton NMR studies have shown an elevation of choline-containing compounds in the brain of Alzheimer patients while neurochemical studies in post mortem-brain demonstrated increases of the catabolic metabolite, glycerophosphocholine, an indicator of PLA(2) activation. In contrast, studies of cerebrospinal fluid, phosphorus NMR studies, and measurements of phospholipases in post mortem Alzheimer brain gave ambiguous results which may be explained by methodical limitations. The finding that, in experimental studies, choline was a rate-limiting factor for phospholipid biosynthesis has stimulated clinical studies aimed at counteracting phospholipid breakdown, e.g. by combinations of choline and cytidine. Future experimental approaches should clarify whether loss of membrane phospholipids is cause or consequence of the neurodegenerative disease process.
引用
收藏
页码:1027 / 1063
页数:37
相关论文
共 231 条
[1]   MAMMALIAN CALCIUM-INDEPENDENT PHOSPHOLIPASE A(2) [J].
ACKERMANN, EJ ;
DENNIS, EA .
BIOCHIMICA ET BIOPHYSICA ACTA-LIPIDS AND LIPID METABOLISM, 1995, 1259 (02) :125-136
[2]  
Allen DD, 1997, NEUROSCI LETT, V234, P71
[3]   EFFECTS OF EXTRACELLULAR CHOLINE CONCENTRATION AND K+ DEPOLARIZATION ON CHOLINE KINASE AND CHOLINE-ACETYLTRANSFERASE ACTIVITIES IN SUPERIOR CERVICAL SYMPATHETIC-GANGLIA EXCISED FROM RATS [J].
ANDO, M ;
IWATA, M ;
TAKAHAMA, K ;
NAGATA, Y .
JOURNAL OF NEUROCHEMISTRY, 1987, 48 (05) :1448-1453
[4]   ARTERIOVENOUS DIFFERENCE OF CHOLINE ACROSS BRAIN OF MAN [J].
AQUILONIUS, SM ;
CEDER, G ;
LYINGTUNELL, U ;
MALMLUND, HO ;
SCHUBERTH, J .
BRAIN RESEARCH, 1975, 99 (02) :430-433
[5]  
Araki W, 1998, J NEUROSCI RES, V51, P667, DOI 10.1002/(SICI)1097-4547(19980315)51:6<667::AID-JNR1>3.3.CO
[6]  
2-L
[7]   β-amyloid peptides as direct cholinergic neuromodulators:: a missing link? [J].
Auld, DS ;
Kar, S ;
Quirion, R .
TRENDS IN NEUROSCIENCES, 1998, 21 (01) :43-49
[8]   Differential effect of CDP-choline on brain cytosolic choline levels in younger and older subjects as measured by proton magnetic resonance spectroscopy [J].
Babb, SM ;
Appelmans, KE ;
Renshaw, PF ;
Wurtman, RJ ;
Cohen, BM .
PSYCHOPHARMACOLOGY, 1996, 127 (02) :88-94
[9]   Regulation and inhibition of phospholipase A2 [J].
Balsinde, J ;
Balboa, MA ;
Insel, PA ;
Dennis, EA .
ANNUAL REVIEW OF PHARMACOLOGY AND TOXICOLOGY, 1999, 39 :175-189
[10]  
BARANY M, 1985, LANCET, V1, P517