A technique for slicing the rat cochlea around the onset of hearing

被引:31
作者
Jagger, DJ
Robertson, D
Housley, GD
机构
[1] Univ Auckland, Fac Med & Hlth Sci, Dept Physiol, Mol Physiol Lab, Auckland, New Zealand
[2] Univ Western Australia, Dept Physiol, Perth, WA, Australia
关键词
cochlea; slice; hair cells; infrared microscopy; reissner's membrane; spiral ganglion; auditory neurons vestibular; pluronic gel; biocytin;
D O I
10.1016/S0165-0270(00)00322-8
中图分类号
Q5 [生物化学];
学科分类号
071010 ; 081704 ;
摘要
The cochlea presents a considerable challenge to the study of sound transduction and auditory neurotransmission. This arises from the location of the sensory, supporting and secretory epithelia, and primary auditory neurons within a complex ossified spiral structure comprised of three separate fluid-filled chambers. We have developed a novel cochlear slice preparation, which provides access to the highly differentiated tissues while retaining structural integrity and cell viability. Our technique for slicing the cochlea and imaging tissue structure facilitates the study of peripheral auditory signaling in situ. The preparation was developed in the neonatal rat (postnatal days 4-14) and is based on the use of vibrating blade microtome slicing after perfusing the perilymphatic compartments with chilled Pluronic F127 NF, a block copolymer gel. This material is liquid when cold, and sets when warmed to room temperature, stabilizing the cochlear fluid-filled compartments and thereby supporting the cochlear partition during slicing. Slices (150-300 mum) of neonatal rat cochlea, imaged using infrared videomicroscopy, allow tight-seal voltage clamp recordings from a variety of cell types. Recordings obtained from primary auditory neurons, hair cells, supporting cells, and Reissner's membrane epithelial cells verify the viability of the tissues in the preparation. Data includes novel evidence for glutamatergic and purinergic co-transmission by primary auditory neurons. The preparation has considerable potential in a range of molecular physiological applications requiring cell-specific targeting with retention of cell connectivity. (C) 2000 Elsevier Science B.V. All rights reserved.
引用
收藏
页码:77 / 86
页数:10
相关论文
共 37 条
[1]   IONIC BASIS OF MEMBRANE-POTENTIAL IN OUTER HAIR-CELLS OF GUINEA-PIG COCHLEA [J].
ASHMORE, JF ;
MEECH, RW .
NATURE, 1986, 322 (6077) :368-371
[2]  
Ashmore Jonathan F., 1994, Current Opinion in Neurobiology, V4, P503, DOI 10.1016/0959-4388(94)90050-7
[3]  
Becker DL, 1999, DEV GENET, V24, P33, DOI 10.1002/(SICI)1520-6408(1999)24:1/2<33::AID-DVG5>3.0.CO
[4]  
2-F
[5]   NEUROFILAMENT ANTIBODIES AND SPIRAL GANGLION NEURONS OF THE MAMMALIAN COCHLEA [J].
BERGLUND, AM ;
RYUGO, DK .
JOURNAL OF COMPARATIVE NEUROLOGY, 1991, 306 (03) :393-408
[6]   Gene expression of P2X-receptors in the developing inner ear of the rat [J].
Brändle, U ;
Zenner, HP ;
Ruppersberg, JP .
NEUROSCIENCE LETTERS, 1999, 273 (02) :105-108
[7]  
CODY AR, 1987, J PHYSIOL-LONDON, V383, P551
[8]  
DALLOS P, 1985, J NEUROSCI, V5, P1591
[9]   HIGH-FREQUENCY MOTILITY OF OUTER HAIR-CELLS AND THE COCHLEAR AMPLIFIER [J].
DALLOS, P ;
EVANS, BN .
SCIENCE, 1995, 267 (5206) :2006-2009
[10]   Morphology of the unfixed cochlea [J].
Edge, RM ;
Evans, BN ;
Pearce, M ;
Richter, CP ;
Hu, X ;
Dallos, P .
HEARING RESEARCH, 1998, 124 (1-2) :1-16