コンテンツへスキップ
Merck
  • Calcium-induced calcium release and gap junctions mediate large-scale calcium waves in olfactory ensheathing cells in situ.

Calcium-induced calcium release and gap junctions mediate large-scale calcium waves in olfactory ensheathing cells in situ.

Cell calcium (2015-06-21)
Maren Stavermann, Patrick Meuth, Michael Doengi, Anne Thyssen, Joachim W Deitmer, Christian Lohr
要旨

Olfactory ensheathing cells (OECs) are a specialised type of glial cells, supporting axon growth and guidance during development and regeneration of the olfactory nerve and the nerve layer of the olfactory bulb. We measured calcium signalling in OECs in olfactory bulb in-toto preparations using confocal and epifluorescence microscopy and the calcium indicator Fluo-4. We identified two subpopulations of olfactory bulb OECs: OECs in the outer sublamina of the nerve layer responded to purinergic neurotransmitters such as adenosine triphosphate with calcium transients, while OECs in the inner sublamina of the nerve layer did not respond to neurotransmitters. However, the latter generated spontaneous calcium waves that covered hundreds of cells. These calcium waves persisted in the presence of tetrodotoxin and in calcium-free saline, but were abolished after calcium store depletion with cyclopiazonic acid or inositol trisphosphate receptor blockage with 2-APB. Calcium waves could be triggered by laser photolysis of caged inositol trisphosphate. Blocking purinoceptors with PPADS had no effect on calcium wave propagation, whereas blocking gap junctions with carbenoxolone or meclofenamic acid entirely suppressed calcium waves. Increasing calcium buffer capacity in OECs with NP-EGTA ("caged" Ca(2+)) prevented calcium wave generation, and laser photolysis of NP-EGTA in a small group of OECs resulted in a calcium increase in the irradiated cells followed by a calcium wave. We conclude that calcium waves in OECs can be initiated by calcium-induced calcium release via InsP3 receptors and propagate through gap junctions, while purinergic signalling is not involved.

材料
製品番号
ブランド
製品内容

Sigma-Aldrich
ジメチルスルホキシド, Hybri-Max, sterile-filtered, BioReagent, suitable for hybridoma, ≥99.7%
Sigma-Aldrich
ジメチルスルホキシド, for molecular biology
Sigma-Aldrich
ジメチルスルホキシド, sterile-filtered, BioPerformance Certified, meets EP, USP testing specifications, suitable for hybridoma
Sigma-Aldrich
ジメチルスルホキシド, ≥99.5% (GC), suitable for plant cell culture
Sigma-Aldrich
エチレングリコール-ビス(2-アミノエチルエーテル)-N,N,N′,N′-四酢酸, for molecular biology, ≥97.0%
Sigma-Aldrich
2-アミノエチル ジフェニルボリナート, 97%
Sigma-Aldrich
ジメチルスルホキシド, BioUltra, for molecular biology, ≥99.5% (GC)
Sigma-Aldrich
カフェイン, anhydrous, 99%, FCC, FG
Sigma-Aldrich
ジメチルスルホキシド, PCR Reagent
Sigma-Aldrich
カフェイン, powder, ReagentPlus®
Sigma-Aldrich
ジメチルスルホキシド, anhydrous, ≥99.9%
Sigma-Aldrich
シクロピアゾン酸 from Penicillium cyclopium, ≥98% (HPLC), powder
Sigma-Aldrich
スルホローダミン101, Dye content ~95 %
Sigma-Aldrich
エチレングリコール-ビス(2-アミノエチルエーテル)-N,N,N′,N′-四酢酸, ≥97.0%
Sigma-Aldrich
ジメチルスルホキシド, meets EP testing specifications, meets USP testing specifications
Sigma-Aldrich
ジメチルスルホキシド, ≥99.5%
Sigma-Aldrich
カフェイン, Sigma Reference Standard, vial of 250 mg
Sigma-Aldrich
ジメチルスルホキシド, JIS special grade, ≥99.0%
Sigma-Aldrich
8-Octanoyloxypyrene-1,3,6-trisulfonic acid trisodium salt, suitable for fluorescence, ≥90% (HPCE)
Sigma-Aldrich
カフェイン, SAJ special grade, ≥98.5%
Sigma-Aldrich
N6-シクロペンチルアデノシン, solid
Sigma-Aldrich
ジメチルスルホキシド, Vetec, reagent grade, 99%
Sigma-Aldrich
エチレングリコール-ビス(2-アミノエチルエーテル)-N,N,N′,N′-四酢酸, BioXtra, ≥97 .0%
Sigma-Aldrich
カフェイン, meets USP testing specifications, anhydrous
Sigma-Aldrich
ジメチルスルホキシド, suitable for HPLC
Sigma-Aldrich
カフェイン, BioXtra
Sigma-Aldrich
ジメチルスルホキシド, SAJ first grade, ≥99.0%
Sigma-Aldrich
ジメチルスルホキシド, ≥99.0%, suitable for absorption spectrum analysis