Use my Search Websuite to scan PubMed, PMCentral, Journal Hosts and Journal Archives, FullText.
Kick-your-searchterm to multiple Engines kick-your-query now !>
A dictionary by aggregated review articles of nephrology, medicine and the life sciences
Your one-stop-run pathway from word to the immediate pdf of peer-reviewed on-topic knowledge.

suck abstract from ncbi


10.1038/srep33277

http://scihub22266oqcxt.onion/10.1038/srep33277
suck pdf from google scholar
C5018837!5018837!27615159
unlimited free pdf from europmc27615159    free
PDF from PMC    free
html from PMC    free

suck abstract from ncbi

pmid27615159      Sci+Rep 2016 ; 6 (ä): ä
Nephropedia Template TP

gab.com Text

Twit Text FOAVip

Twit Text #

English Wikipedia


  • Regulation of cell-cell fusion by nanotopography #MMPMID27615159
  • Padmanabhan J; Augelli MJ; Cheung B; Kinser ER; Cleary B; Kumar P; Wang R; Sawyer AJ; Li R; Schwarz UD; Schroers J; Kyriakides TR
  • Sci Rep 2016[]; 6 (ä): ä PMID27615159show ga
  • Cell-cell fusion is fundamental to a multitude of biological processes ranging from cell differentiation and embryogenesis to cancer metastasis and biomaterial-tissue interactions. Fusogenic cells are exposed to biochemical and biophysical factors, which could potentially alter cell behavior. While biochemical inducers of fusion such as cytokines and kinases have been identified, little is known about the biophysical regulation of cell-cell fusion. Here, we designed experiments to examine cell-cell fusion using bulk metallic glass (BMG) nanorod arrays with varying biophysical cues, i.e. nanotopography and stiffness. Through independent variation of stiffness and topography, we found that nanotopography constitutes the primary biophysical cue that can override biochemical signals to attenuate fusion. Specifically, nanotopography restricts cytoskeletal remodeling-associated signaling, which leads to reduced fusion. This finding expands our fundamental understanding of the nanoscale biophysical regulation of cell fusion and can be exploited in biomaterials design to induce desirable biomaterial-tissue interactions.
  • ä


  • DeepDyve
  • Pubget Overpricing
  • suck abstract from ncbi

    Linkout box