| Literature DB >> 27848138 |
Fatme Seval Ismail1,2, Zahra Moinfar3,4, Nora Prochnow3, Hannes Dambach3, Daniel Hinkerohe3, Claus Gert Haase5, Eckart Förster3, Pedro Michael Faustmann3,4.
Abstract
Gap junctions (GJs) in astrocytes and glioma cells are important channels for cell-to-cell communication that contribute to homo- and heterocellular coupling. According to recent studies, heterocellular gap-junctional communication (H-GJC) between glioma cells and their surrounding environment enhances glioma progression. Therefore, we developed a new in vitro model to examine H-GJC between glioma cells, astrocytes and microglia. Consequently, F98 rat glioma cells were double-labeled with GJ-impermeable (CM-DiI) and GJ-permeable dye (calcein AM) and were seeded on unlabeled astrocyte-microglia co-cultures. Dual whole cell voltage clamp recordings were carried out on selected cell pairs to characterize the functional properties of H-GJC in vitro. The expression of four types of connexins (Cxs), including Cx32, Cx36, Cx43 and Cx45, and microglial phenotypes were analyzed by immunocytochemistry. The H-GJC between glioma cells and astrocytes/microglia increased after a longer incubation period with a higher number of glioma cells. We provided evidence for the direct GJ coupling of microglia and glioma cells under native in vitro conditions. In addition, we exploited this model to evaluate H-GJC after incubation with levetiracetam (LEV) and/or dexamethasone (DEX). Previous in vitro studies suggest that LEV and DEX are frequently used to control seizure and edema in glioma. Our findings showed that LEV and/or DEX decrease the number of heterocellular coupled cells significantly. In conclusion, our newly developed model demonstrated H-GJC between glioma cells and both astrocytes and microglia. The reduced H-GJC by LEV and DEX suggests a potential effect of both drugs on glioma progression.Entities:
Keywords: Astrocytes; Dexamethasone; Glioma; Heterocellular gap junctions; Levetiracetam; Microglia
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Year: 2016 PMID: 27848138 PMCID: PMC5350227 DOI: 10.1007/s11060-016-2324-5
Source DB: PubMed Journal: J Neurooncol ISSN: 0167-594X Impact factor: 4.130
Fig. 1Heterocellular coupling of F98 glioma cell line with astrocytes/microglia. a Significant difference of H-GJC in cultures with high (40,000) and low (4000) F98 cells after 5 or 24 h incubation. b, c H-GJC between F98 glioma cells and astrocytes/microglia was decreased significantly under LEV and/or DEX. Data were collected by at least four independent experiments and tested with Kruskal-Wallis and Dunn’s post hoc test, *p < 0.05, **p < 0.01, ***p < 0.001. LEV levetiracetam, DEX dexamethasone, HCI heterocellular coupling index (number of recipient astrocytes/microglia per one F98 tumor cell), 1 DEX 1 μM + LEV 50 µg/ml, 2 DEX 10 μM + LEV 100 µg/ml. Units for 50 and 100 LEV in b are not indicated (µg/ml). d–f Reduced heterocellular coupling after incubation of the astrocyte-microglia-F98 cultures with DEX and/or LEV is demonstrated by immunocytochemistry. Functional H-GJC is visualized by transfer of calcein from CM-DiI-labeled F98 donor cells to unlabeled recipient astrocytes/microglia. Cell nuclei were detected by applying DAPI. Calcein: green, CM-DiI: red, Cx43 (not in all pictures visible): pink, DAPI: blue, merged picture
Fig. 2Homo- and heterocellular gap junction (H-GJC)-based coupling properties characterized in dual whole cell patch clamp recordings in the voltage clamp mode. a Sample pair of F98 glioma cells (F98). b Amoeboid microglia (MG) coupled to an F98 glioma (F98) cell during recording. c, d Corresponding trans-junctional current responses of the sample pairs in a and b following stepwise holding potential depolarization from −120 to +20 mV condition (each 10 mV increment; 25 s pulse duration) while the neighbor (b) was kept at −60 mV
Fig. 3H-GJC between F98 cells and microglia in the cultures of astrocyte-microlgia-F98 cells. Microglial cells were marked with Iba1. Functional H-GJC is visualized by transfer of calcein from CM-DiI-labeled donor cells to unlabeled recipient astrocytes and microglia. Cell nuclei were detected by applying DAPI. Note that F98 cells express Iba1. a Calcein green. b CM-DiI red. c Iba1 pink. d DAPI blue, merged picture