A new culturing strategy optimises Drosophila primary cell cultures for structural and functional analyses

被引:44
作者
Küppers-Munther, B
Letzkus, JJ
Lüer, K
Technau, G
Schmidt, H
Prokop, A
机构
[1] Johannes Gutenberg Univ Mainz, Inst Genet, D-55128 Mainz, Germany
[2] Max Planck Inst Brain Res, D-60528 Frankfurt, Germany
关键词
cell lineage; neural stem cells; cell cultures; synapse formation; synaptic activity; action potentials; plasticity; FM dyes;
D O I
10.1016/j.ydbio.2004.01.038
中图分类号
Q [生物科学];
学科分类号
07 [理学]; 0710 [生物学]; 09 [农学];
摘要
Neurons in primary cell cultures provide important experimental possibilities complementing or substituting those in the nervous system. However, Drosophila primary cell cultures have unfortunate limitations: they lack either a range of naturally occurring cell types, or of mature physiological properties. Here, we demonstrate a strategy which supports both aspects integrated in one culture: Initial culturing in conventional serum-supplemented Schneider's medium (SM20K) guarantees acquisition of all properties known from 30 years of work on cell type-specific differentiation in this medium. Through subsequent shift to newly developed active Schneider's medium (SMactive), neurons adopt additional mature properties like the ability to carry out plastic morphological changes, neurotransmitter expression and electrical activity. We introduce long-term FM-dye measurements as a tool for Drosophila primary cell cultures demonstrating the presence of increased, action potential-dependent synaptic activity in SMactive. This is confirmed by patch-clamp recordings, which in addition show that SMactive-cultured neurons display different spiking patterns. Furthermore, we demonstrate that transmission can be evoked in SMactive cultures, revealing the existence of synaptic plasticity. Thus, these culture conditions support developmental, structural and physiological properties known or expected from the nervous system, enhancing possibilities for future experiments complementing or substituting those in nervous systems of Drosophila. (C) 2004 Elsevier Inc. All rights reserved.
引用
收藏
页码:459 / 478
页数:20
相关论文
共 88 条
[1]
wishful thinking encodes a BMP type II receptor that regulates synaptic growth in Drosophila [J].
Aberle, H ;
Haghighi, AP ;
Fetter, RD ;
McCabe, BD ;
Magalhaes, TR ;
Goodman, CS .
NEURON, 2002, 33 (04) :545-558
[2]
Assembly of presynaptic active zones from cytoplasmic transport packets [J].
Ahmari, SE ;
Buchanan, J ;
Smith, SJ .
NATURE NEUROSCIENCE, 2000, 3 (05) :445-451
[3]
Quantitative morphological analysis of embryonic cockroach (Periplaneta americana) brain neurons developing in vitro [J].
Angevin, V ;
Salecker, I ;
Vaillant, C ;
Le Guen, J ;
Branchereau, P ;
Tiaho, F ;
Van Eyseren, I ;
Pichon, Y .
CELL AND TISSUE RESEARCH, 2000, 299 (01) :129-143
[4]
Postsynaptic expression of tetanus toxin light chain blocks synaptogenesis in Drosophila [J].
Baines, RA ;
Robinson, SG ;
Fujioka, M ;
Jaynes, JB ;
Bate, M .
CURRENT BIOLOGY, 1999, 9 (21) :1267-1270
[5]
Baines RA, 1998, J NEUROSCI, V18, P4673
[6]
A Drosophila neurexin is required for septate junction and blood-nerve barrier formation and function [J].
Baumgartner, S ;
Littleton, JT ;
Broadie, K ;
Bhat, MA ;
Harbecke, R ;
Lengyel, JA ;
ChiquetEhrismann, R ;
Prokop, A ;
Bellen, HJ .
CELL, 1996, 87 (06) :1059-1068
[7]
Differential involvement of Ca2+ channels in survival and neurite outgrowth of cultured embryonic cockroach brain neurons [J].
Benquet, P ;
Le Guen, J ;
Pichon, Y ;
Tiaho, F .
JOURNAL OF NEUROPHYSIOLOGY, 2002, 88 (03) :1475-1490
[8]
Bhat KM, 1998, INT J DEV BIOL, V42, P127
[9]
The embryonic central nervous system lineages of Drosophila melanogaster .1. Neuroblast lineages derived from the ventral half of the neuroectoderm [J].
Bossing, T ;
Udolph, G ;
Doe, CQ ;
Technau, GM .
DEVELOPMENTAL BIOLOGY, 1996, 179 (01) :41-64
[10]
BOSSING T, 1994, DEVELOPMENT, V120, P1895