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This video demonstrates the functional analysis of an arteriolar endothelial tube isolated from a mouse brain. It outlines the steps for measuring intracellular calcium levels and membrane potential, both at baseline and in response to pharmacological stimulation.
All procedures involving animal samples have been reviewed and approved by the appropriate animal ethical review committee.
1. Materials and equipment
NOTE: See the Table of Materials for all reagents and materials required for this protocol. In addition, manuals and websites associated with the respective vendors can also be consulted as needed.
2. Solutions and drugs
3. Utilization of arteriolar endothelial tubes for the examination of cellular physiology
NOTE: Isolated and secured arteriolar endothelial tubes can be used for intracellular recordings of [Ca2+]i dynamics and Vm using photometry and sharp electrode electrophysiology, respectively, as previously illustrated (Figure 1). [Ca2+]i and Vm can be measured as separate or combined experimental variables (Figure 1). However, arteriolar endothelial tubes are more delicate than arterial endothelium, and experimentation time should not exceed 1 h.
Once the endothelial resting Vm is stable (−30 to −40 mV), apply the desired pharmacological agents per experimental objective (Figure 1C).
Figure 1: Application of endothelial tube for physiological examination of pathways related to blood flow regulation. (A) A sharp electrode (purple arrow) is positioned in a cell of an endothelial tube focused in the data acquisition window for photometry. (B) Representative recording of intracellular Ca2+ using Fura-2 photometry in response to MT...
Name Company Catalog Number Comments Amplifiers Molecular Devices, Sunnyvale, CA, USA Axoclamp 2B & Axoclamp 900A Audible baseline monitors Ampol US LLC, Sarasota, FL, USA BM-A-TM Bath Chiller (Isotemp 500LCU) ThermoFisher Scientific 13874647 Borosilicate glass capillaries (Pinning) Warner Instruments G150T-6 Borosilicate glass capillaries (Sharp Electrodes) Warner Instruments GC100F-10 BSA: Bovine Serum Albumin Sigma A7906 CaCl2: Calcium Chloride Sigma 223506 DMSO: Dimethyl Sulfoxide Sigma D8418 Flow Control Valve Warner Instruments FR-50 Fluorescence system interface, ARC lamp & power supply, hyperswitch and PMT Molecular Devices, Sunnyvale, CA, USA IonOptix Systems Function Generator EZ Digital, Seoul, South Korea FG-8002 Fura-2 AM dye Invitrogen, Carlsbad, CA, USA F14185 Glucose Sigma-Aldrich (St. Louis, MO, USA) G7021 HCl: Hydrochloric Acid ThermoFisher Scientific (Pittsburgh, PA, USA) A466250 Headstages Molecular Devices HS-2A & HS-9A HEPES: (4-(2-hydroxyethyl)-1-piperazineethanesulfonic acid) Sigma H4034 Inline Solution Heater Warner Instruments SH-27B KCl: Potassium Chloride Sigma P9541 MgCl2: Magnesium Chloride Sigma M2670 Microforge Narishige, East Meadow, NY, USA MF-900 Micromanipulator Siskiyou MX10 Micropipette puller (digital) Sutter Instruments, Novato, CA, USA P-97 or P-1000 Microscope (Nikon-inverted) Nikon Instruments Inc, Melville, NY, USA Ts2 Microscope (Nikon-inverted) Nikon Instruments Inc Eclipse TS100 Microscope objectives Nikon Instruments Inc 20X (S-Fluor) and 40X (Plan Fluor) Microscope platform (anodized aluminum; diameter, 7.8 cm) Warner Instruments PM6 or PH6 Microscope Stage (Aluminum) Siskiyou, Grants Pass, OR, USA 8090P MTA: 2-Methylthioadenosine diphosphate trisodium salt Tocris 1624 NaCl: Sodium Chloride Sigma S7653 NaOH: Sodium Hydroxide Sigma S8045 Oscilloscope Tektronix, Beaverton, Oregon, USA TDS 2024B Phase contrast objectives Nikon Instruments Inc (Ph1 DL; 10X & 20X) Plexiglas superfusion chamber Warner Instruments, Camden, CT, USA RC-27 Stereomicroscopes Zeiss, NY, USA Stemi 2000 & 2000-C Syringe filter (0.22 µm) ThermoFisher Scientific 722-2520 Temperature Controller (Dual Channel) Warner Instruments TC-344B or C Valve Control System Warner Instruments VC-6 Vibration Isolation Table Technical Manufacturing, Peabody, MA, USA Micro-g
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