Endocannabinoid signaling in rat somatosensory cortex:: Laminar differences and involvement of specific interneuron types

被引:264
作者
Bodor, AL
Katona, I
Nyíri, G
Mackie, K
Ledent, C
Hájos, N
Freund, TF
机构
[1] Hungarian Acad Sci, Inst Expt Med, Dept Cellular & Network Neurobiol, H-1083 Budapest, Hungary
[2] Univ Washington, Dept Anesthesiol, Seattle, WA 98195 USA
[3] Univ Washington, Dept Physiol, Seattle, WA 98195 USA
[4] Univ Washington, Dept Biophys, Seattle, WA 98195 USA
[5] Free Univ Brussels, Inst Rech Interdisciplinaire Biol Humaine & Mol, B-1070 Brussels, Belgium
关键词
cholecystokinin; DSI; GABA; interneurons; parvalbumin; retrograde signaling;
D O I
10.1523/JNEUROSCI.0442-05.2005
中图分类号
Q189 [神经科学];
学科分类号
071006 ;
摘要
Endocannabinoid-mediated retrograde signaling exerts powerful control over synaptic transmission in many brain areas. However, in the neocortex, the precise laminar, cellular, and subcellular localization of the type 1 cannabinoid receptor (CB1) as well as its function has been elusive. Here we combined multiple immunolabeling with whole-cell recordings to investigate the morpho-functional characteristics of cannabinoid signaling in rat somatosensory cortex. Immunostaining for CB1 revealed axonal and somatic labeling with striking layer specificity: a high density of CB1-positive fibers was seen in layers II-III, in layer VI, and in upper layer V, whereas other layers had sparse (layer IV) or hardly any (layer I) staining. Membrane staining for CB1 was only found in axon terminals, all of which contained GABA and formed symmetric synapses. Double immunostaining also revealed that CB1-positive cells formed two neurochemically distinct subpopulations: two-thirds were cholecystokinin positive and one-third expressed calbindin, each subserving specific inhibitory functions in cortical networks. In addition, cannabinoid sensitivity of GABAergic input showed striking layer specificity, as revealed by both electrophysiological and anatomical experiments. We found a unique population of large pyramidal neurons in layer VB that received much less perisomatic innervation from CB1-expressing GABAergic axon terminals and, accordingly, showed no depolarization-induced suppression of inhibition, unlike pyramidal cells in layer II, and a population of small pyramidal cells in layer V. This suggests that inhibitory control of pyramidal cells involved in intracortical or corticostriatal processing is fine-tuned by activity-dependent endocannabinoid signaling, whereas inhibition of pyramidal cells relaying cortical information to lower subcortical effector centers often lacks this plasticity.
引用
收藏
页码:6845 / 6856
页数:12
相关论文
共 53 条
[1]  
Alger BE, 2002, PROG NEUROBIOL, V68, P247
[2]   Long-lasting self-inhibition of neocortical interneurons mediated by endocannabinoids [J].
Bacci, A ;
Huguenard, JR ;
Prince, DA .
NATURE, 2004, 431 (7006) :312-316
[3]   CALCIUM-BINDING PROTEIN DISTRIBUTION IN THE RAT-BRAIN [J].
BAIMBRIDGE, KG ;
MILLER, JJ ;
PARKES, CO .
BRAIN RESEARCH, 1982, 239 (02) :519-525
[4]   IMPORTANCE OF FIXATION IN IMMUNOHISTOCHEMISTRY - USE OF FORMALDEHYDE SOLUTIONS AT VARIABLE PH FOR THE LOCALIZATION OF TYROSINE-HYDROXYLASE [J].
BEROD, A ;
HARTMAN, BK ;
PUJOL, JF .
JOURNAL OF HISTOCHEMISTRY & CYTOCHEMISTRY, 1981, 29 (07) :844-850
[5]   Endocannabinoids facilitate the induction of LTP in the hippocampus [J].
Carlson, G ;
Wang, Y ;
Alger, BE .
NATURE NEUROSCIENCE, 2002, 5 (08) :723-724
[6]  
Cauli B, 1997, J NEUROSCI, V17, P3894
[7]   PARVALBUMIN IN MOST GAMMA-AMINOBUTYRIC-ACID CONTAINING NEURONS OF THE RAT CEREBRAL-CORTEX [J].
CELIO, MR .
SCIENCE, 1986, 231 (4741) :995-997
[8]   SYNCHRONIZATION OF NEURONAL-ACTIVITY IN HIPPOCAMPUS BY INDIVIDUAL GABAERGIC INTERNEURONS [J].
COBB, SR ;
BUHL, EH ;
HALASY, K ;
PAULSEN, O ;
SOMOGYI, P .
NATURE, 1995, 378 (6552) :75-78
[9]   The endocannabinoid system and its therapeutic exploitation [J].
Di Marzo, V ;
Bifulco, M ;
De Petrocellis, L .
NATURE REVIEWS DRUG DISCOVERY, 2004, 3 (09) :771-784
[10]   Endocannabinoid-mediated short-term synaptic plasticity: depolarization-induced suppression of inhibition (DSI) and depolarization-induced suppression of excitation (DSE) [J].
Diana, MA ;
Marty, A .
BRITISH JOURNAL OF PHARMACOLOGY, 2004, 142 (01) :9-19