Literature DB >> 25919423

Nanoengineered Polystyrene Surfaces with Nanopore Array Pattern Alters Cytoskeleton Organization and Enhances Induction of Neural Differentiation of Human Adipose-Derived Stem Cells.

Ae Ryang Jung1, Richard Y Kim1, Hyung Woo Kim2, Kshitiz Raj Shrestha1, Seung Hwan Jeon1, Kyoung Je Cha2, Yong Hyun Park1, Dong Sung Kim2, Ji Youl Lee1.   

Abstract

Human adipose-derived stem cells (hADSCs) can differentiate into various cell types depending on chemical and topographical cues. One topographical cue recently noted to be successful in inducing differentiation is the nanoengineered polystyrene surface containing nanopore array-patterned substrate (NP substrate), which is designed to mimic the nanoscale topographical features of the extracellular matrix. In this study, efficacies of NP and flat substrates in inducing neural differentiation of hADSCs were examined by comparing their substrate-cell adhesion rates, filopodia growth, nuclei elongation, and expression of neural-specific markers. The polystyrene nano Petri dishes containing NP substrates were fabricated by a nano injection molding process using a nickel electroformed nano-mold insert (Diameter: 200 nm. Depth of pore: 500 nm. Center-to-center distance: 500 nm). Cytoskeleton and filopodia structures were observed by scanning electron microscopy and F-actin staining, while cell adhesion was tested by vinculin staining after 24 and 48 h of seeding. Expression of neural specific markers was examined by real-time quantitative polymerase chain reaction and immunocytochemistry. Results showed that NP substrates lead to greater substrate-cell adhesion, filopodia growth, nuclei elongation, and expression of neural specific markers compared to flat substrates. These results not only show the advantages of NP substrates, but they also suggest that further study into cell-substrate interactions may yield great benefits for biomaterial engineering.

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Year:  2015        PMID: 25919423     DOI: 10.1089/ten.TEA.2014.0346

Source DB:  PubMed          Journal:  Tissue Eng Part A        ISSN: 1937-3341            Impact factor:   3.845


  6 in total

1.  Dynamic Manipulation of Cell Membrane Curvature by Light-Driven Reshaping of Azopolymer.

Authors:  Selene De Martino; Wei Zhang; Lasse Klausen; Hsin-Ya Lou; Xiao Li; Felix S Alfonso; Silvia Cavalli; Paolo A Netti; Francesca Santoro; Bianxiao Cui
Journal:  Nano Lett       Date:  2019-12-19       Impact factor: 11.189

Review 2.  Adipose Stem Cell Translational Applications: From Bench-to-Bedside.

Authors:  Chiara Argentati; Francesco Morena; Martina Bazzucchi; Ilaria Armentano; Carla Emiliani; Sabata Martino
Journal:  Int J Mol Sci       Date:  2018-11-05       Impact factor: 5.923

Review 3.  Fabrication and Applications of Micro/Nanostructured Devices for Tissue Engineering.

Authors:  Tania Limongi; Luca Tirinato; Francesca Pagliari; Andrea Giugni; Marco Allione; Gerardo Perozziello; Patrizio Candeloro; Enzo Di Fabrizio
Journal:  Nanomicro Lett       Date:  2016-08-31

Review 4.  Physiologically based microenvironment for in vitro neural differentiation of adipose-derived stem cells.

Authors:  Adriana Carol Eleonora Graziano; Rosanna Avola; Vincenzo Perciavalle; Ferdinando Nicoletti; Gianluca Cicala; Marinella Coco; Venera Cardile
Journal:  World J Stem Cells       Date:  2018-03-26       Impact factor: 5.326

5.  Nanoscaled and microscaled parallel topography promotes tenogenic differentiation of ASC and neotendon formation in vitro.

Authors:  Kaili Zhou; Bei Feng; Wenbo Wang; Ting Jiang; Yongkang Jiang; Wenjie Zhang; Guangdong Zhou; Yilin Cao; Wei Liu
Journal:  Int J Nanomedicine       Date:  2018-07-04

6.  Exploring Cell Surface-Nanopillar Interactions with 3D Super-Resolution Microscopy.

Authors:  Anish R Roy; Wei Zhang; Zeinab Jahed; Ching-Ting Tsai; Bianxiao Cui; W E Moerner
Journal:  ACS Nano       Date:  2021-09-28       Impact factor: 15.881

  6 in total

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