Enhanced Ca2+ Entry and Tyrosine Phosphorylation Mediate Nanostructure-Induced Endothelial Proliferation

Joint Authors

Schernthaner, Michaela
Leitinger, Gerd
Wolinski, Heimo
Kohlwein, Sepp D.
Reisinger, Bettina
Barb, Ruxandra-A.
Graier, Wolfgang F.
Groschner, Klaus
Heitz, Johannes

Source

Journal of Nanomaterials

Issue

Vol. 2013, Issue 2013 (31 Dec. 2013), pp.1-10, 10 p.

Publisher

Hindawi Publishing Corporation

Publication Date

2013-11-12

Country of Publication

Egypt

No. of Pages

10

Main Subjects

Chemistry
Civil Engineering

Abstract EN

Nanostructured substrates have been recognized to initiate transcriptional programs promoting cell proliferation.

Specifically β-catenin has been identified as transcriptional regulator, activated by adhesion to nanostructures.

We set out to identify processes responsible for nanostructure-induced endothelial β-catenin signaling.

Transmission electron microscopy (TEM) of cell contacts to differently sized polyethylene terephthalate (PET) surface structures (ripples with 250 to 300 nm and walls with 1.5 µm periodicity) revealed different patterns of cell-substrate interactions.

Cell adhesion to ripples occurred exclusively on ripple peaks, while cells were attached to walls continuously.

The Src kinase inhibitor PP2 was active only in cells grown on ripples, while the Abl inhibitors dasatinib and imatinib suppressed β-catenin translocation on both structures.

Moreover, Gd3+ sensitive Ca2+ entry was observed in response to mechanical stimulation or Ca2+ store depletion exclusively in cells grown on ripples.

Both PP2 and Gd3+ suppressed β-catenin nuclear translocation along with proliferation in cells grown on ripples but not on walls.

Our results suggest that adhesion of endothelial cells to ripple structured PET induces highly specific, interface topology-dependent changes in cellular signalling, characterized by promotion of Gd3+-sensitive Ca2+ entry and Src/Abl activation.

We propose that these signaling events are crucially involved in nanostructure-induced promotion of cell proliferation.

American Psychological Association (APA)

Schernthaner, Michaela& Leitinger, Gerd& Wolinski, Heimo& Kohlwein, Sepp D.& Reisinger, Bettina& Barb, Ruxandra-A.…[et al.]. 2013. Enhanced Ca2+ Entry and Tyrosine Phosphorylation Mediate Nanostructure-Induced Endothelial Proliferation. Journal of Nanomaterials،Vol. 2013, no. 2013, pp.1-10.
https://search.emarefa.net/detail/BIM-1031325

Modern Language Association (MLA)

Schernthaner, Michaela…[et al.]. Enhanced Ca2+ Entry and Tyrosine Phosphorylation Mediate Nanostructure-Induced Endothelial Proliferation. Journal of Nanomaterials No. 2013 (2013), pp.1-10.
https://search.emarefa.net/detail/BIM-1031325

American Medical Association (AMA)

Schernthaner, Michaela& Leitinger, Gerd& Wolinski, Heimo& Kohlwein, Sepp D.& Reisinger, Bettina& Barb, Ruxandra-A.…[et al.]. Enhanced Ca2+ Entry and Tyrosine Phosphorylation Mediate Nanostructure-Induced Endothelial Proliferation. Journal of Nanomaterials. 2013. Vol. 2013, no. 2013, pp.1-10.
https://search.emarefa.net/detail/BIM-1031325

Data Type

Journal Articles

Language

English

Notes

Includes bibliographical references

Record ID

BIM-1031325