Literature DB >> 18428020

A review of rapid prototyping techniques for tissue engineering purposes.

Sanna M Peltola1, Ferry P W Melchels, Dirk W Grijpma, Minna Kellomäki.   

Abstract

Rapid prototyping (RP) is a common name for several techniques, which read in data from computer-aided design (CAD) drawings and manufacture automatically three-dimensional objects layer-by-layer according to the virtual design. The utilization of RP in tissue engineering enables the production of three-dimensional scaffolds with complex geometries and very fine structures. Adding micro- and nanometer details into the scaffolds improves the mechanical properties of the scaffold and ensures better cell adhesion to the scaffold surface. Thus, tissue engineering constructs can be customized according to the data acquired from the medical scans to match the each patient's individual needs. In addition RP enables the control of the scaffold porosity making it possible to fabricate applications with desired structural integrity. Unfortunately, every RP process has its own unique disadvantages in building tissue engineering scaffolds. Hence, the future research should be focused on the development of RP machines designed specifically for fabrication of tissue engineering scaffolds, although RP methods already can serve as a link between tissue and engineering.

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Year:  2008        PMID: 18428020     DOI: 10.1080/07853890701881788

Source DB:  PubMed          Journal:  Ann Med        ISSN: 0785-3890            Impact factor:   4.709


  100 in total

1.  3D printing based on imaging data: review of medical applications.

Authors:  F Rengier; A Mehndiratta; H von Tengg-Kobligk; C M Zechmann; R Unterhinninghofen; H-U Kauczor; F L Giesel
Journal:  Int J Comput Assist Radiol Surg       Date:  2010-05-15       Impact factor: 2.924

2.  Customized Ca-P/PHBV nanocomposite scaffolds for bone tissue engineering: design, fabrication, surface modification and sustained release of growth factor.

Authors:  Bin Duan; Min Wang
Journal:  J R Soc Interface       Date:  2010-05-26       Impact factor: 4.118

3.  Laser-based three-dimensional multiscale micropatterning of biocompatible hydrogels for customized tissue engineering scaffolds.

Authors:  Matthew B Applegate; Jeannine Coburn; Benjamin P Partlow; Jodie E Moreau; Jessica P Mondia; Benedetto Marelli; David L Kaplan; Fiorenzo G Omenetto
Journal:  Proc Natl Acad Sci U S A       Date:  2015-09-15       Impact factor: 11.205

4.  3D fibre deposition and stereolithography techniques for the design of multifunctional nanocomposite magnetic scaffolds.

Authors:  Roberto De Santis; Ugo D'Amora; Teresa Russo; Alfredo Ronca; Antonio Gloria; Luigi Ambrosio
Journal:  J Mater Sci Mater Med       Date:  2015-09-29       Impact factor: 3.896

5.  Applications of three-dimensional printing technology in the cardiovascular field.

Authors:  Di Shi; Kai Liu; Xin Zhang; Hang Liao; Xiaoping Chen
Journal:  Intern Emerg Med       Date:  2015-07-29       Impact factor: 3.397

Review 6.  Gene-modified stem cells combined with rapid prototyping techniques: a novel strategy for periodontal regeneration.

Authors:  Huixia He; Junkai Cao; Dongsheng Wang; Bing Gu; Hong Guo; Hongchen Liu
Journal:  Stem Cell Rev Rep       Date:  2010-03       Impact factor: 5.739

7.  Maxillofacial reconstruction using custom-made artificial bones fabricated by inkjet printing technology.

Authors:  Hideto Saijo; Kazuyo Igawa; Yuki Kanno; Yoshiyuki Mori; Kayoko Kondo; Koutaro Shimizu; Shigeki Suzuki; Daichi Chikazu; Mitsuki Iino; Masahiro Anzai; Nobuo Sasaki; Ung-il Chung; Tsuyoshi Takato
Journal:  J Artif Organs       Date:  2009-09-19       Impact factor: 1.731

Review 8.  Scaffold translation: barriers between concept and clinic.

Authors:  Scott J Hollister; William L Murphy
Journal:  Tissue Eng Part B Rev       Date:  2011-09-21       Impact factor: 6.389

9.  Continuous Digital Light Processing (cDLP): Highly Accurate Additive Manufacturing of Tissue Engineered Bone Scaffolds.

Authors:  David Dean; Wallace Jonathan; Ali Siblani; Martha O Wang; Kyobum Kim; Antonios G Mikos; John P Fisher
Journal:  Virtual Phys Prototyp       Date:  2012-04-12

10.  Fabrication and biocompatibility of nano non-stoichiometric apatite and poly(epsilon-caprolactone) composite scaffold by using prototyping controlled process.

Authors:  Liang Ye; Xinchen Zeng; Haojiang Li; Yi Ai
Journal:  J Mater Sci Mater Med       Date:  2009-09-27       Impact factor: 3.896

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