Javascript must be enabled to continue!
Scaffold Library for Tissue Engineering: A Geometric Evaluation
View through CrossRef
Tissue engineering scaffold is a biological substitute that aims to restore, to maintain, or to improve tissue functions. Currently available manufacturing technology, that is, additive manufacturing is essentially applied to fabricate the scaffold according to the predefined computer aided design (CAD) model. To develop scaffold CAD libraries, the polyhedrons could be used in the scaffold libraries development. In this present study, one hundred and nineteen polyhedron models were evaluated according to the established criteria. The proposed criteria included considerations on geometry, manufacturing feasibility, and mechanical strength of these polyhedrons. CAD and finite element (FE) method were employed as tools in evaluation. The result of evaluation revealed that the close-cellular scaffold included truncated octahedron, rhombicuboctahedron, and rhombitruncated cuboctahedron. In addition, the suitable polyhedrons for using as open-cellular scaffold libraries included hexahedron, truncated octahedron, truncated hexahedron, cuboctahedron, rhombicuboctahedron, and rhombitruncated cuboctahedron. However, not all pore size to beam thickness ratios (PO : BT) were good for making the open-cellular scaffold. The PO : BT ratio of each library, generating the enclosed pore inside the scaffold, was excluded to avoid the impossibility of material removal after the fabrication. The close-cellular libraries presented the constant porosity which is irrespective to the different pore sizes. The relationship between PO : BT ratio and porosity of open-cellular scaffold libraries was displayed in the form of Logistic Power function. The possibility of merging two different types of libraries to produce the composite structure was geometrically evaluated in terms of the intersection index and was mechanically evaluated by means of FE analysis to observe the stress level. The couples of polyhedrons presenting low intersection index and high stress level were excluded. Good couples for producing the reinforced scaffold were hexahedron-truncated hexahedron and cuboctahedron-rhombitruncated cuboctahedron.
Title: Scaffold Library for Tissue Engineering: A Geometric Evaluation
Description:
Tissue engineering scaffold is a biological substitute that aims to restore, to maintain, or to improve tissue functions.
Currently available manufacturing technology, that is, additive manufacturing is essentially applied to fabricate the scaffold according to the predefined computer aided design (CAD) model.
To develop scaffold CAD libraries, the polyhedrons could be used in the scaffold libraries development.
In this present study, one hundred and nineteen polyhedron models were evaluated according to the established criteria.
The proposed criteria included considerations on geometry, manufacturing feasibility, and mechanical strength of these polyhedrons.
CAD and finite element (FE) method were employed as tools in evaluation.
The result of evaluation revealed that the close-cellular scaffold included truncated octahedron, rhombicuboctahedron, and rhombitruncated cuboctahedron.
In addition, the suitable polyhedrons for using as open-cellular scaffold libraries included hexahedron, truncated octahedron, truncated hexahedron, cuboctahedron, rhombicuboctahedron, and rhombitruncated cuboctahedron.
However, not all pore size to beam thickness ratios (PO : BT) were good for making the open-cellular scaffold.
The PO : BT ratio of each library, generating the enclosed pore inside the scaffold, was excluded to avoid the impossibility of material removal after the fabrication.
The close-cellular libraries presented the constant porosity which is irrespective to the different pore sizes.
The relationship between PO : BT ratio and porosity of open-cellular scaffold libraries was displayed in the form of Logistic Power function.
The possibility of merging two different types of libraries to produce the composite structure was geometrically evaluated in terms of the intersection index and was mechanically evaluated by means of FE analysis to observe the stress level.
The couples of polyhedrons presenting low intersection index and high stress level were excluded.
Good couples for producing the reinforced scaffold were hexahedron-truncated hexahedron and cuboctahedron-rhombitruncated cuboctahedron.
Related Results
Synthesis and Investigation into Apatite-forming Ability of Hydroxyapatite/Chitosan-based Scaffold
Synthesis and Investigation into Apatite-forming Ability of Hydroxyapatite/Chitosan-based Scaffold
In this study, porous scaffolds were fabricated using inorganic material-hydroxyapatite and chitosan for bone-tissue engineering. The combination of hydroxyapatite and chitosan may...
MG-63 cells proliferation following various types of mechanical stimulation on cells by auxetic hybrid scaffolds
MG-63 cells proliferation following various types of mechanical stimulation on cells by auxetic hybrid scaffolds
Abstract
Background
Mechanical properties and cyto-compatibility of a composite scaffold which possessed negative (−) Poi...
Development of a polymer/ceramic composite scaffold for bone tissue engineering
Development of a polymer/ceramic composite scaffold for bone tissue engineering
The current gold standard for traumatic bone injury is autograft. Harvesting this graft material requires additional surgery, leading to potential complications and added pain and ...
Preparation and Characterization of a Multilayer Biomimetic Scaffold for Bone Tissue Engineering
Preparation and Characterization of a Multilayer Biomimetic Scaffold for Bone Tissue Engineering
In scaffold based bone tissue engineering, both the pore size and the mechanical properties of the scaffold are of great importance. However, an increase in pore size is generally ...
Biomimetic gradient scaffold of collagen–hydroxyapatite for osteochondral regeneration
Biomimetic gradient scaffold of collagen–hydroxyapatite for osteochondral regeneration
Osteochondral defects remain a major clinical challenge mainly due to the combined damage to the articular cartilage and the underlying bone, and the interface between the two tiss...
Evaluation of the Effective Diffusivity of a Freeform Fabricated Scaffold Using Computational Simulation
Evaluation of the Effective Diffusivity of a Freeform Fabricated Scaffold Using Computational Simulation
In scaffold-based tissue engineering, sufficient oxygen and nutrient supply into cells within a scaffold is essential to increase cell viability and the proliferation rate. General...
Collagen-Glycosaminoglycan Coprecipitate and Photochemically Cross-Linked Collagen for Disk Replacement
Collagen-Glycosaminoglycan Coprecipitate and Photochemically Cross-Linked Collagen for Disk Replacement
Introduction
Traditional treatments of severe disk degeneration such as discectomy were not satisfactory. Recent research focuses on deve...

