Literature DB >> 23451935

Influence of nanohelical shape and periodicity on stem cell fate.

Rajat K Das1, Omar F Zouani, Christine Labrugère, Reiko Oda, Marie-Christine Durrieu.   

Abstract

Microenvironments such as protein composition, physical features, geometry, and elasticity play important roles in stem cell lineage specification. The components of the extracellular matrix are known to subsequently assemble into fibrillar networks in vivo with defined periodicity. However, the effect of the most critical parameter, which involves the periodicity of these fibrillar networks, on the stem cell fate is not yet investigated. Here, we show the effect of synthetic fibrillar networks patterned with nanometric periodicities, using bottom-up approaches, on the response of stem cells. We have used helical organic nanoribbons based on self-assemblies of Gemini-type amphiphiles to access chiral silica nanoribbons with two different shapes and periodicities (twisted ribbons and helical ribbons) from the same native self-assembled organic nanostructure. We demonstrate the covalent grafting of these silica nanoribbons onto activated glass substrates and the influence of this programmed isotropically oriented matrix to direct the commitment of human mesenchymal stem cells (hMSCs) into osteoblast lineage in vitro, free of osteogenic-inducing media. The specific periodicity of 63 nm (±5 nm) with helical ribbon shape induces specific cell adhesion through the fibrillar focal adhesion formation and leads to stem cell commitment into osteoblast lineage. In contrast, the matrix of periodicity 100 nm (±15 nm) with twisted ribbon shape does not lead to osteoblast commitment. The inhibition of non-muscle myosin II with blebbistatin is sufficient to block this osteoblast commitment on helical nanoribbon matrix, demonstrating that stem cells interpret the nanohelical shape and periodicity environment physically. These results indicate that hMSCs could interpret nanohelical shape and periodicity in the same way they sense microenvironment elasticity. This provides a promising tool to promote hMSC osteogenic capacity, which can be exploited in a 3D scaffold for bone tissue engineering.

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Year:  2013        PMID: 23451935     DOI: 10.1021/nn4001325

Source DB:  PubMed          Journal:  ACS Nano        ISSN: 1936-0851            Impact factor:   15.881


  18 in total

1.  Stress-stiffening-mediated stem-cell commitment switch in soft responsive hydrogels.

Authors:  Rajat K Das; Veronika Gocheva; Roel Hammink; Omar F Zouani; Alan E Rowan
Journal:  Nat Mater       Date:  2015-11-30       Impact factor: 43.841

Review 2.  Physical, Spatial, and Molecular Aspects of Extracellular Matrix of In Vivo Niches and Artificial Scaffolds Relevant to Stem Cells Research.

Authors:  Maria Akhmanova; Egor Osidak; Sergey Domogatsky; Sergey Rodin; Anna Domogatskaya
Journal:  Stem Cells Int       Date:  2015-08-16       Impact factor: 5.443

3.  Nanotopographical Surfaces for Stem Cell Fate Control: Engineering Mechanobiology from the Bottom.

Authors:  Weiqiang Chen; Yue Shao; Xiang Li; Gang Zhao; Jianping Fu
Journal:  Nano Today       Date:  2014-12-01       Impact factor: 20.722

4.  Mitigating Human IAPP Amyloidogenesis In Vivo with Chiral Silica Nanoribbons.

Authors:  Ava Faridi; Yunxiang Sun; Yutaka Okazaki; Guotao Peng; Jie Gao; Aleksandr Kakinen; Pouya Faridi; Mei Zhao; Ibrahim Javed; Anthony W Purcell; Thomas P Davis; Sijie Lin; Reiko Oda; Feng Ding; Pu Chun Ke
Journal:  Small       Date:  2018-10-07       Impact factor: 13.281

Review 5.  Harnessing nanotopography and integrin-matrix interactions to influence stem cell fate.

Authors:  Matthew J Dalby; Nikolaj Gadegaard; Richard O C Oreffo
Journal:  Nat Mater       Date:  2014-06       Impact factor: 43.841

Review 6.  Regulation of integrin and growth factor signaling in biomaterials for osteodifferentiation.

Authors:  Qiang Wei; Theresa L M Pohl; Anja Seckinger; Joachim P Spatz; Elisabetta A Cavalcanti-Adam
Journal:  Beilstein J Org Chem       Date:  2015-05-13       Impact factor: 2.883

7.  RGD surface functionalization of the hydrophilic acrylic intraocular lens material to control posterior capsular opacification.

Authors:  Yi-Shiang Huang; Virginie Bertrand; Dimitriya Bozukova; Christophe Pagnoulle; Christine Labrugère; Edwin De Pauw; Marie-Claire De Pauw-Gillet; Marie-Christine Durrieu
Journal:  PLoS One       Date:  2014-12-11       Impact factor: 3.240

Review 8.  Mesenchymal Stem Cell Fate: Applying Biomaterials for Control of Stem Cell Behavior.

Authors:  Hilary J Anderson; Jugal Kishore Sahoo; Rein V Ulijn; Matthew J Dalby
Journal:  Front Bioeng Biotechnol       Date:  2016-05-13

9.  Cell contractility arising from topography and shear flow determines human mesenchymal stem cell fate.

Authors:  Surabhi Sonam; Sharvari R Sathe; Evelyn K F Yim; Michael P Sheetz; Chwee Teck Lim
Journal:  Sci Rep       Date:  2016-02-16       Impact factor: 4.379

10.  Macrochirality of Self-Assembled and Co-assembled Supramolecular Structures of a Pair of Enantiomeric Peptides.

Authors:  Zhen Guo; Yongshun Song; Yujiao Wang; Tingyuan Tan; Yuwen Ji; Guangxu Zhang; Jun Hu; Yi Zhang
Journal:  Front Mol Biosci       Date:  2021-06-23
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