Literature DB >> 27388559

Human mesenchymal stromal cell-enhanced osteogenic differentiation by contact interaction with polyethylene terephthalate nanogratings.

Sara Antonini1, Sandro Meucci, Paolo Parchi, Simone Pacini, Marina Montali, Andrea Poggetti, Michele Lisanti, Marco Cecchini.   

Abstract

Among the very large number of polymeric materials that have been proposed in the field of orthopedics, polyethylene terephthalate (PET) is one of the most attractive thanks to its flexibility, thermal resistance, mechanical strength and durability. Several studies have been proposed that interface nano- or micro-structured surfaces with mesenchymal stromal cells (MSCs), demonstrating the potential of this technology for promoting osteogenesis. All these studies were carried out on biomaterials other than PET, which remains almost uninvestigated in terms of cell shaping, alignment and differentiation. Here, we study the effect of PET 350-depth nanogratings (NGs) with a ridge and lateral groove size of 500 nm (T1) or 1 μm (T2), on bone marrow-derived human MSC (hMSC) differentiation in relation to the osteogenic fate. We demonstrate that these substrates, especially T2, can promote the osteogenic phenotype more efficiently than standard flat surfaces and that this effect is more marked if cells are cultured in osteogenic medium than in basal medium. Finally, we show that the shape and disposition of calcium hydroxyapatite granules on the different substrates was influenced by the substrate symmetry, being more elongated and spatially organized on NGs than on flat surfaces.

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Year:  2016        PMID: 27388559     DOI: 10.1088/1748-6041/11/4/045003

Source DB:  PubMed          Journal:  Biomed Mater        ISSN: 1748-6041            Impact factor:   3.715


  7 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

2.  Nanoscale Surface Topography Reduces Focal Adhesions and Cell Stiffness by Enhancing Integrin Endocytosis.

Authors:  Xiao Li; Lasse H Klausen; Wei Zhang; Zeinab Jahed; Ching-Ting Tsai; Thomas L Li; Bianxiao Cui
Journal:  Nano Lett       Date:  2021-08-04       Impact factor: 12.262

3.  Nanotopography Induced Human Bone Marrow Mesangiogenic Progenitor Cells (MPCs) to Mesenchymal Stromal Cells (MSCs) Transition.

Authors:  Sara Antonini; Marina Montali; Emanuela Jacchetti; Sandro Meucci; Paolo D Parchi; Serena Barachini; Francesca M Panvini; Simone Pacini; Iacopo Petrini; Marco Cecchini
Journal:  Front Cell Dev Biol       Date:  2016-12-20

Review 4.  Current approaches for modulation of the nanoscale interface in the regulation of cell behavior.

Authors:  Hannah Donnelly; Matthew J Dalby; Manuel Salmeron-Sanchez; Paula E Sweeten
Journal:  Nanomedicine       Date:  2017-05-26       Impact factor: 5.307

5.  Anterior Cruciate Ligament Reconstruction with LARS Artificial Ligament-Clinical Results after a Long-Term Follow-Up.

Authors:  Paolo Domenico Parchi; Gianluca Ciapini; Carlo Paglialunga; Michele Giuntoli; Carmine Picece; Fabio Chiellini; Michele Lisanti; Michelangelo Scaglione
Journal:  Joints       Date:  2018-05-23

Review 6.  Therapeutic Mesenchymal Stem/Stromal Cells: Value, Challenges and Optimization.

Authors:  Mehdi Najar; Rahma Melki; Ferial Khalife; Laurence Lagneaux; Fatima Bouhtit; Douaa Moussa Agha; Hassan Fahmi; Philippe Lewalle; Mohammad Fayyad-Kazan; Makram Merimi
Journal:  Front Cell Dev Biol       Date:  2022-01-14

7.  Assessing the combined effect of surface topography and substrate rigidity in human bone marrow stem cell cultures.

Authors:  Sofia Ribeiro; Eugenia Pugliese; Stefanie H Korntner; Emanuel M Fernandes; Manuela E Gomes; Rui L Reis; Alan O'Riordan; Yves Bayon; Dimitrios I Zeugolis
Journal:  Eng Life Sci       Date:  2022-09-13       Impact factor: 3.405

  7 in total

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