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January 1, 2008Annals of Medicine750 citationsOpen Access

A review of rapid prototyping techniques for tissue engineering purposes

SPSanna PeltolaVTT Technical Research Centre of FinlandFMFerry P.W. MelchelsUniversity of South AustraliaDGDirk W. GrijpmaInstitute of Bioengineering Technologies (United States)

Key Points

  • This review examines rapid prototyping techniques for their application in tissue engineering, focusing on scaffold production.
  • Analyzed various rapid prototyping techniques for manufacturing scaffolds from CAD designs.
  • Discussed the impact of micro- and nanometer details on scaffold properties and cell adhesion.
  • Explored the customization of scaffolds based on patient-specific data from medical scans.
  • Identified advantages of rapid prototyping in creating complex scaffold geometries and improved mechanical properties.
  • Noted that scaffold porosity can be controlled for desired structural integrity.
  • Highlighted the need for future RP machine developments tailored to tissue engineering needs.

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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Cite This Study

Peltola et al. (2008) studied this question.

synapsesocial.com/papers/69deaac740ea065679558fachttps://doi.org/10.1080/07853890701881788
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