Literature DB >> 24039146

Generation of spatially aligned collagen fiber networks through microtransfer molding.

Nisarga Naik1, Jeffrey Caves, Elliot L Chaikof, Mark G Allen.   

Abstract

The unique biomechanical properties of native tissue are governed by the organization and composition of integrated collagen and elastin networks. An approach for fabricating spatially aligned, fiber-reinforced composites with adjustable collagen fiber dimensions, layouts, and distribution within an elastin-like protein matrix yielding a biocomposite with controllable mechanical responses is reported. Microtransfer molding is employed for the fabrication of hollow and solid collagen fibers with straight or crimped fiber geometries. Collagen fibers (width: 2-50 μm, thickness: 300 nm to 3 μm) exhibit a Young's modulus of 126 ± 61 MPa and an ultimate tensile strength of 7 ± 3.2 MPa. As fiber networks within composite structures, straight fiber layouts display orthotropic responses with Young's modulus ranging from 0.95 ± 0.35 to 10.4 ± 0.5 MPa and tensile strength from 0.22 ± 0.08 to 0.87 ± 0.5 MPa with increasing fraction of collagen fibers (1-10%, v/v). In contrast, composites based on crimped fiber layouts exhibit strain-dependent stiffness with an increase in Young's modulus from 0.7 ± 0.14 MPa to 3.15 ± 0.49 MPa, at a specific transition strain. Through controlling the microstructure of engineered collagen fiber networks, a facile means is established to control macroscale mechanical responses of composite protein-based materials.
© 2013 WILEY-VCH Verlag GmbH & Co. KGaA, Weinheim.

Entities:  

Keywords:  bio-MEMS; collagen microfibers; elastin-mimetic protein polymer; fiber reinforced composite

Mesh:

Substances:

Year:  2013        PMID: 24039146      PMCID: PMC3938984          DOI: 10.1002/adhm.201300112

Source DB:  PubMed          Journal:  Adv Healthc Mater        ISSN: 2192-2640            Impact factor:   9.933


  33 in total

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2.  Electrospinning collagen and elastin: preliminary vascular tissue engineering.

Authors:  Eugene D Boland; Jamil A Matthews; Kristin J Pawlowski; David G Simpson; Gary E Wnek; Gary L Bowlin
Journal:  Front Biosci       Date:  2004-05-01

3.  A digital micro-mirror device-based system for the microfabrication of complex, spatially patterned tissue engineering scaffolds.

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Journal:  J Biomed Mater Res A       Date:  2006-05       Impact factor: 4.396

4.  Visualization of flow-aligned type I collagen self-assembly in tunable pH gradients.

Authors:  Sarah Köster; Jennie B Leach; Bernd Struth; Thomas Pfohl; Joyce Y Wong
Journal:  Langmuir       Date:  2007-01-16       Impact factor: 3.882

5.  Electro-spinning of pure collagen nano-fibres - just an expensive way to make gelatin?

Authors:  Dimitrios I Zeugolis; Shih T Khew; Elijah S Y Yew; Andrew K Ekaputra; Yen W Tong; Lin-Yue L Yung; Dietmar W Hutmacher; Colin Sheppard; Michael Raghunath
Journal:  Biomaterials       Date:  2008-03-03       Impact factor: 12.479

6.  Fibrillogenesis in continuously spun synthetic collagen fiber.

Authors:  Jeffrey M Caves; Vivek A Kumar; Jing Wen; Wanxing Cui; Adam Martinez; Robert Apkarian; Julie E Coats; Keith Berland; Elliot L Chaikof
Journal:  J Biomed Mater Res B Appl Biomater       Date:  2010-04       Impact factor: 3.368

7.  Immunogenicity of collagenous implants.

Authors:  K R Meade; F H Silver
Journal:  Biomaterials       Date:  1990-04       Impact factor: 12.479

8.  Microcrimped collagen fiber-elastin composites.

Authors:  Jeffrey M Caves; Vivek A Kumar; Wenjun Xu; Nisarga Naik; Mark G Allen; Elliot L Chaikof
Journal:  Adv Mater       Date:  2010-05-11       Impact factor: 30.849

9.  Laser-layered microfabrication of spatially patterned functionalized tissue-engineering scaffolds.

Authors:  Gazell Mapili; Yi Lu; Shaochen Chen; Krishnendu Roy
Journal:  J Biomed Mater Res B Appl Biomater       Date:  2005-11       Impact factor: 3.368

10.  In vivo cellular repopulation of tubular elastin scaffolds mediated by basic fibroblast growth factor.

Authors:  Aditee Kurane; Dan T Simionescu; Narendra R Vyavahare
Journal:  Biomaterials       Date:  2007-02-25       Impact factor: 12.479

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  5 in total

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Journal:  J Mech Phys Solids       Date:  2016-05       Impact factor: 5.471

2.  Producing Collagen Micro-stripes with Aligned Fibers for Cell Migration Assays.

Authors:  Danahe Mohammed; Gaspard Pardon; Marie Versaevel; Céline Bruyère; Laura Alaimo; Marine Luciano; Eléonore Vercruysse; Beth L Pruitt; Sylvain Gabriele
Journal:  Cell Mol Bioeng       Date:  2019-09-25       Impact factor: 2.321

3.  Soft network composite materials with deterministic and bio-inspired designs.

Authors:  Kyung-In Jang; Ha Uk Chung; Sheng Xu; Chi Hwan Lee; Haiwen Luan; Jaewoong Jeong; Huanyu Cheng; Gwang-Tae Kim; Sang Youn Han; Jung Woo Lee; Jeonghyun Kim; Moongee Cho; Fuxing Miao; Yiyuan Yang; Han Na Jung; Matthew Flavin; Howard Liu; Gil Woo Kong; Ki Jun Yu; Sang Il Rhee; Jeahoon Chung; Byunggik Kim; Jean Won Kwak; Myoung Hee Yun; Jin Young Kim; Young Min Song; Ungyu Paik; Yihui Zhang; Yonggang Huang; John A Rogers
Journal:  Nat Commun       Date:  2015-03-18       Impact factor: 14.919

4.  Second-harmonic generation imaging of collagen in ancient bone.

Authors:  B Thomas; D McIntosh; T Fildes; L Smith; F Hargrave; M Islam; T Thompson; R Layfield; D Scott; B Shaw; C L Burrell; S Gonzalez; S Taylor
Journal:  Bone Rep       Date:  2017-11-01

5.  Microfabricated intracortical extracellular matrix-microelectrodes for improving neural interfaces.

Authors:  Wen Shen; Suradip Das; Flavia Vitale; Andrew Richardson; Akshay Ananthakrishnan; Laura A Struzyna; Daniel P Brown; Naixin Song; Murari Ramkumar; Timothy Lucas; D Kacy Cullen; Brian Litt; Mark G Allen
Journal:  Microsyst Nanoeng       Date:  2018-09-24       Impact factor: 7.127

  5 in total

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