Literature DB >> 23660249

Mechanical modulation of nascent stem cell lineage commitment in tissue engineering scaffolds.

Min Jae Song1, David Dean, Melissa L Knothe Tate.   

Abstract

Taking inspiration from tissue morphogenesis in utero, this study tests the concept of using tissue engineering scaffolds as delivery devices to modulate emergent structure-function relationships at early stages of tissue genesis. We report on the use of a combined computational fluid dynamics (CFD) modeling, advanced manufacturing methods, and experimental fluid mechanics (micro-piv and strain mapping) for the prospective design of tissue engineering scaffold geometries that deliver spatially resolved mechanical cues to stem cells seeded within. When subjected to a constant magnitude global flow regime, the local scaffold geometry dictates the magnitudes of mechanical stresses and strains experienced by a given cell, and in a spatially resolved fashion, similar to patterning during morphogenesis. In addition, early markers of mesenchymal stem cell lineage commitment relate significantly to the local mechanical environment of the cell. Finally, by plotting the range of stress-strain states for all data corresponding to nascent cell lineage commitment (95% CI), we begin to "map the mechanome", defining stress-strain states most conducive to targeted cell fates. In sum, we provide a library of reference mechanical cues that can be delivered to cells seeded on tissue engineering scaffolds to guide target tissue phenotypes in a temporally and spatially resolved manner. Knowledge of these effects allows for prospective scaffold design optimization using virtual models prior to prototyping and clinical implementation. Finally, this approach enables the development of next generation scaffolds cum delivery devices for genesis of complex tissues with heterogenous properties, e.g., organs, joints or interface tissues such as growth plates.
Copyright © 2013 Elsevier Ltd. All rights reserved.

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Year:  2013        PMID: 23660249      PMCID: PMC4216563          DOI: 10.1016/j.biomaterials.2013.04.023

Source DB:  PubMed          Journal:  Biomaterials        ISSN: 0142-9612            Impact factor:   12.479


  56 in total

1.  Development of an indirect stereolithography technology for scaffold fabrication with a wide range of biomaterial selectivity.

Authors:  Hyun-Wook Kang; Dong-Woo Cho
Journal:  Tissue Eng Part C Methods       Date:  2012-04-27       Impact factor: 3.056

2.  Potential effect of geometry on wall shear stress distribution across scaffold surfaces.

Authors:  Ronald A Gutierrez; Eric T Crumpler
Journal:  Ann Biomed Eng       Date:  2007-10-25       Impact factor: 3.934

3.  Design of tissue engineering scaffolds as delivery devices for mechanical and mechanically modulated signals.

Authors:  Eric J Anderson; Melissa L Knothe Tate
Journal:  Tissue Eng       Date:  2007-10

4.  Computational modelling of the mechanical environment of osteogenesis within a polylactic acid-calcium phosphate glass scaffold.

Authors:  Jean-Louis Milan; Josep A Planell; Damien Lacroix
Journal:  Biomaterials       Date:  2009-05-28       Impact factor: 12.479

5.  Darcian permeability constant as indicator for shear stresses in regular scaffold systems for tissue engineering.

Authors:  Petra Vossenberg; G A Higuera; G van Straten; C A van Blitterswijk; A J B van Boxtel
Journal:  Biomech Model Mechanobiol       Date:  2009-04-10

6.  Fabrication of PU/PEGMA crosslinked hybrid scaffolds by in situ UV photopolymerization favoring human endothelial cells growth for vascular tissue engineering.

Authors:  Heyun Wang; Yakai Feng; Bo An; Wencheng Zhang; Minglin Sun; Zichen Fang; Wenjie Yuan; Massuri Khan
Journal:  J Mater Sci Mater Med       Date:  2012-03-20       Impact factor: 3.896

7.  Solid-supported lipid bilayers to drive stem cell fate and tissue architecture using periosteum derived progenitor cells.

Authors:  Sarah F Evans; Denitsa Docheva; Anja Bernecker; Céline Colnot; Ralf P Richter; Melissa L Knothe Tate
Journal:  Biomaterials       Date:  2012-12-11       Impact factor: 12.479

8.  Primitive erythropoiesis from mesodermal precursors expressing VE-cadherin, PECAM-1, Tie2, endoglin, and CD34 in the mouse embryo.

Authors:  Masatsugu Ema; Tomomasa Yokomizo; Asami Wakamatsu; Tsumoru Terunuma; Masayuki Yamamoto; Satoru Takahashi
Journal:  Blood       Date:  2006-08-22       Impact factor: 22.113

Review 9.  Hematopoietic stem cell emergence in the conceptus and the role of Runx1.

Authors:  Gemma Swiers; Marella de Bruijn; Nancy A Speck
Journal:  Int J Dev Biol       Date:  2010       Impact factor: 2.203

10.  In situ spatiotemporal mapping of flow fields around seeded stem cells at the subcellular length scale.

Authors:  Min Jae Song; David Dean; Melissa L Knothe Tate
Journal:  PLoS One       Date:  2010-09-17       Impact factor: 3.240

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  15 in total

Review 1.  Periosteum mechanobiology and mechanistic insights for regenerative medicine.

Authors:  Melissa L Knothe Tate; Nicole Y C Yu; Iman Jalilian; André F Pereira; Ulf R Knothe
Journal:  Bonekey Rep       Date:  2016-11-30

2.  Emergence of Form from Function - Mechanical Engineering Approaches to Probe the Role of Stem Cell Mechanoadaptation in Sealing Cell Fate.

Authors:  Melissa L Knothe Tate; Peter W Gunning; Vittorio Sansalone
Journal:  Bioarchitecture       Date:  2016-10-14

Review 3.  Regenerative orthopaedics: in vitro, in vivo...in silico.

Authors:  Liesbet Geris
Journal:  Int Orthop       Date:  2014-07-02       Impact factor: 3.075

4.  Translating Periosteum's Regenerative Power: Insights From Quantitative Analysis of Tissue Genesis With a Periosteum Substitute Implant.

Authors:  Shannon R Moore; Céline Heu; Nicole Y C Yu; Renee M Whan; Ulf R Knothe; Stefan Milz; Melissa L Knothe Tate
Journal:  Stem Cells Transl Med       Date:  2016-07-27       Impact factor: 6.940

Review 5.  Biomechanics and mechanobiology in functional tissue engineering.

Authors:  Farshid Guilak; David L Butler; Steven A Goldstein; Frank P T Baaijens
Journal:  J Biomech       Date:  2014-04-26       Impact factor: 2.712

6.  4-D Flow Control in Porous Scaffolds: Toward a Next Generation of Bioreactors.

Authors:  Khalid Youssef; Nanette N Jarenwattananon; Brian J Archer; Julia Mack; M Luisa Iruela-Arispe; Louis-S Bouchard
Journal:  IEEE Trans Biomed Eng       Date:  2016-03-02       Impact factor: 4.538

7.  Mapping the Mechanome-A Protocol for Simultaneous Live Imaging and Quantitative Analysis of Cell Mechanoadaptation and Ingression.

Authors:  Vina D L Putra; Iman Jalilian; Madeline Campbell; Kate Poole; Renee Whan; Florence Tomasetig; Melissa L Knothe Tate
Journal:  Bio Protoc       Date:  2019-12-05

Review 8.  Mechanomics: an emerging field between biology and biomechanics.

Authors:  Jiawen Wang; Dongyuan Lü; Debin Mao; Mian Long
Journal:  Protein Cell       Date:  2014-04-23       Impact factor: 14.870

9.  Immersed Boundary Models for Quantifying Flow-Induced Mechanical Stimuli on Stem Cells Seeded on 3D Scaffolds in Perfusion Bioreactors.

Authors:  Yann Guyot; Bart Smeets; Tim Odenthal; Ramesh Subramani; Frank P Luyten; Herman Ramon; Ioannis Papantoniou; Liesbet Geris
Journal:  PLoS Comput Biol       Date:  2016-09-22       Impact factor: 4.475

10.  2D µ-Particle Image Velocimetry and Computational Fluid Dynamics Study Within a 3D Porous Scaffold.

Authors:  A Campos Marin; T Grossi; E Bianchi; G Dubini; D Lacroix
Journal:  Ann Biomed Eng       Date:  2016-12-12       Impact factor: 3.934

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