Method Article

Isolation of Sensory Neurons of Aplysia californica for Patch Clamp Recordings of Glutamatergic Currents

DOI:

10.3791/50543

⸱

July 10th, 2013

In This Article

Summary

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We describe the dissection of the nervous system of the marine sea hare Aplysia after anesthesia, the isolation of neurons for short term-tissue culture, and recordings of single cell ion currents via the patch clamp technique.

Abstract

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The marine gastropod mollusk Aplysia californica has a venerable history as a model of nervous system function, with particular significance in studies of learning and memory. The typical preparations for such studies are ones in which the sensory and motoneurons are left intact in a minimally dissected animal, or a technically elaborate neuronal co-culture of individual sensory and motoneurons. Less common is the isolated neuronal preparation in which small clusters of nominally homogeneous neurons are dissociated into single cells in short term culture. Such isolated cells are useful for the biophysical characterization of ion currents using patch clamp techniques, and targeted modulation of these conductances. A protocol for preparing such cultures is described. The protocol takes advantage of the easily identifiable glutamatergic sensory neurons of the pleural and buccal ganglia, and describes their dissociation and minimal maintenance in culture for several days without serum.

Introduction

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The marine opistobranch mollusk, Aplysia, has been a useful neurobiological model for many decades. It is best known as a model of habituation and classical conditioning 7, 8. Studies on learning and memory in this model won the Nobel Prize for Physiology or Medicine in 2000 for Eric R. Kandel, in a prize he shared with Arvid Carlsson and Paul Greengard 10. Studies involving electrical recordings from reduced preparations, in which elements of the nervous system of this invertebrate are dissected from the animal with nerves and muscles left attached, have helped elucidate the roles of individual neurons in Aplysia. Identificatio....

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Protocol

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1. Cell Preparation

  1. On Day 1, weigh and anesthetize animal.
    1. Weigh a 30 g-1 kg animal. Anesthetize in 5-10 animal volumes of 1:1 seawater:isotonic MgCl . 6H20 for 1 hr with aeration such as an electric aquarium air pump with attached airstone.
  2. Prepare dissection supplies.
    1. Assemble clean dissection tray with stainless steel straight pins, such as fabric pins. Assemble several Petri dishes containing artificial seawater (ASW; see Tables 1 and 3) + penicillin/ streptomycin (P/S).
    2. Have ready a low power microscope. Have clean dissection instruments ready, suc....

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Results

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The locations of the sensory neurons within the ganglia that are targeted in this protocol, the BSC and PVC neurons are shown in Figure 1. The BSC neurons are located in 2 symmetrical oval clusters on the ventral side of the buccal ganglion, the surface that faces away from the buccal mass in the intact ganglion (Figure 1A). The PVC neurons form bilateral, V-shaped clusters that wrap around the dorsal surface of the pleural ganglion toward the central axis (Figure 1B). T.......

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Discussion

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The dissociation techniques described here yield sensory neuron cultures containing 50-100 isolated neurons interspersed with small numbers of glia and other unidentified cells. The most critical steps in the protocol are the time the ganglia remain in enzyme solution, and flicking, the dissociation of the digested cell clusters to break apart the cluster into individual cells. Enzyme digestion (step 1.8) must be optimized at the available temperature. At 23 °C with slow shaking, 13 hr is sufficient for digest.......

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Disclosures

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The authors declare that they have no competing financial interests.

Acknowledgements

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Funded by NIH P40 OD010952, the Korein Foundation, a University of Miami Fellowship to SLC and a Maytag fellowship to ATK. The authors gratefully acknowledge the staff of the National Resource for Aplysia, as well as Lauren Simonitis and Hannah Peck, who provided micrographs for a figure.

....

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Materials

List of materials used in this article
NameCompanyCatalog NumberComments
Artificial seawater ASWSigma-Aldrichassorted(mM): 417 NaCl, 10 KCl, 10 CaCl2 (2 H2O), 5MgCl2 (6H2O), 15 HEPES-NaOH, pH 7.6
Intracellular solutionSigmaassorted(mM): 450 KCl, 2.9 CaCl2 (2 H2O), 2.5 MgCl2 (6 H2O), 5 Na2ATP, 10 EGTA, and 40 HEPES-KOH, pH 7.4
Poly-D-lysineSigmaP6407 
penicillin/streptomycin added to ASW at 1:100Lonzo Walkersville, Inc.17-603E5,000 Units/ml penicillin plus 5,000 mg/ml streptomycin
Neutral dispase IIRoche Diagnostics10165859001 
hyaluronidaseSigma-AldrichH4272 
collagenase type XISigma-AldrichC9407 
L-Glutamate (L-Glu)Sigma-Aldrich49601-100G 
D-Aspartate (D-Asp)Sigma-Aldrich11200-10G 
N-methyl-D-aspartate (NMDA)Biomol100002-268 
L-AspSigmaA6683-25G 
alpha-amino-3-hydroxyl-5-methyl-4-isoxazole-propionic acid (AMPA)SigmaA6816-5MG 
L-Glu R antagonistsvariousvarious 
agar 
kynurenateSigma-Aldrich61250 
APVSigma-AldrichA5282 
DL-2-Amino-5-phosphonopentanoic acid (NMDAR antagonist) 
2-propanolVWRSPBDH1133 
Chloriding solutionSigmaassorted25 g FeCl3 + 25 ml concentrated HCl + 50 ml H2O
Sylgard silicone 2-part polymerWorld Precision Instruments (WPI)SYL184Provides pin-out surface for small dissection dishes
0-40x zoom magnification microscope for dissectionsWild 
Techniquip 150 Watts Fiber Optic IlluminatorMicrooptics of FloridaTQ FOI-150 
RotoMix 50800 orbital mixer 
Nikon Diaphot inverted phase-contrast microscope with 4x, 20x (optional) & 40x objectivesSR Research Ltd.Eyelink II 
Tektronix digital oscilloscopeSR Research Ltd. 
pClamp 10 data acquisition and analysis softwareMolecular Devices 
PC with Windows XP or higher operating systemPC SolutionsThinkserver with solid state hard drives (80GB) and low noise monitors
Flaming/Brown P87 micropipette pullerSutter Instruments, Novato, CA 
Axon Instruments Axopatch 200B clamp amplifier with a capacitance compensation range of 1-1000 pF; preamplifierMolecular Devices, Sunnyvale, CA 
Axon instruments electrode holder assembly for Axopatch 200B preamplifierMolecular Devices, Sunnyvale, CACV203BU 
Digidata 1200 A/D converterMolecular Devices, Sunnyvale, CA 
Picospritzer, powered by N2 adjustable for pressure and durationParker Hannifin, Cleveland, OH 
TMC Micro-G Vibration isolation tableAmetek 
Faraday cagecustom manufacture
Burleigh Piezoelectric Clamshell MicromanipulatorsBurleigh Instruments; Thorlabspresently PCS-5000; -6000 series + mounts
Narishige M-152 manual manipulators (for perfusion system and picospritzer)Narishige USA 
Filament pipette glass,1.5 mm OD, 0.84 mm ID -WPI1B150-3 
3 inch length 
Ag/AgCl half cellWPIEP4 
15 ml centrifuge tubes, 35-2097 BD Falcon* Centrifuge TubesVWRSP21008-918 
Angled ScissorsFine Science Tools15006-09 
Dumostar Fine forcepsFine Science Tools11295-00 
35 mm falcon tissue culture dishesVWRSP25382-064 
falcon 150 x 25 mm tissue culture dishes; 1013VWRSP1013also can be made into small dissection dishes with sylgard
sylgardWPISYL184 
animal dissection trayvarious 
15 ml centrifuge tubes, 35-2097 BD FalconVWRSP21008-918For 6-bore gravity-fed perfusion system
Aluminum clips with screw hole endshardware storeFor perfusion system
23 gauge needles (manually file off points)VWRSPFor perfusion system
Polyethylene tubing 0.022"ID x 0.042"OD; 427411Becton-DickinsonFor perfusion system
H-7 pipette stand/holder for microcap perfusion arrayNarishige USAFor perfusion system
one-way valvesFor perfusion system
Drummond Microcaps 1 μlVWRSPFor perfusion system
18 gauge needles for suction (filed off points) 
Polyethylene tubingCole Parmer4.27436E+11 
fine dissection pinsFine Science Tools26002-20 
capillary tubesKimble 71900-100fire-polished and U-shaped in a Bunsen burner flame and filled with 3% agar in ECS
modeling claycraft store 
dish holder for microscope stage with isolated ground bathCustom manufacture
pasteur pipettesVWRSP14672-412 
pipette bulbsVWRSP53283-911 
acrodisk syringe filtersVWRSP28144-040 
thick-walled 1.5 mm diameter borosilicate filament glassWPI1B150F-3 
High purity nitrogen cylinder and bifurcating regulator 

Tables 1-3. Lists of Reagents, Materials, and Equipment.

References

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  1. Buttner, N., Siegelbaum, S. A. Antagonistic modulation of a hyperpolarization-activated Cl(-) current in Aplysia sensory neurons by SCP(B) and FMRFamide. J. Neurophysiol. 90 (2), 586-598 (2003).
  2. Byrne, J. H., Castellucci, V. F., Kandel, E. R.

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Tags

Sensory Neuron IsolationAplysia CalifornicaPatch Clamp RecordingsGlutamatergic CurrentsGanglion DissectionEnzymatic DigestionCell DissociationCulture Dish PreparationVoltage ClampingNeural Culture Maintenance

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