Publication: 3D Biomimetic Porous Titanium (Ti6Al4V ELI) Scaffolds for Large Bone Critical Defect Reconstruction: An Experimental Study in Sheep
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Identifiers
Date
2020-08-11
Authors
Crovace, Alberto Maria
Lacitignola, Luca
Forleo, Donato Monopoli
Staffieri, Francesco
Francioso, Edda
Di Meo, Antonio
Becerra, José
Crovace, Antonio
Santos-Ruiz, Leonor
Advisors
Journal Title
Journal ISSN
Volume Title
Publisher
MDPI
Abstract
The main goal in the treatment of large bone defects is to guarantee a rapid loading of the affected limb. In this paper, the authors proposed a new reconstructive technique that proved to be suitable to reach this purpose through the use of a custom-made biomimetic porous titanium scaffold. An in vivo study was undertaken where a complete critical defect was experimentally created in the diaphysis of the right tibia of twelve sheep and replaced with a five-centimeter porous scaffold of electron beam melting (EBM)-sintered titanium alloy (EBM group n = 6) or a porous hydroxyapatite scaffold (CONTROL group, n = 6). After surgery, the sheep were allowed to move freely in the barns. The outcome was monitored for up to 12 months by periodical X-ray and clinical examination. All animals in the CONTROL group were euthanized for humane reasons within the first month after surgery due to the onset of plate bending due to mechanical overload. Nine months after surgery, X-ray imaging showed the complete integration of the titanium implant in the tibia diaphysis and remodeling of the periosteal callus, with a well-defined cortical bone. At 12 months, sheep were euthanized, and the tibia were harvested and subjected to histological analysis. This showed bone tissue formations with bone trabeculae bridging titanium trabeculae, evidencing an optimal tissue-metal interaction. Our results show that EBM-sintered titanium devices, if used to repair critical bone defects in a large animal model, can guarantee immediate body weight-bearing, a rapid functional recovery, and a good osseointegration. The porous hydroxyapatite scaffolds proved to be not suitable in this model of large bone defect due to their known poor mechanical properties.
Description
MeSH Terms
Medical Subject Headings::Organisms::Eukaryota::Animals::Chordata::Vertebrates::Mammals::Artiodactyla::Ruminants::Sheep
Medical Subject Headings::Organisms::Eukaryota::Animals
Medical Subject Headings::Chemicals and Drugs::Inorganic Chemicals::Metals::Alloys
Medical Subject Headings::Phenomena and Processes::Musculoskeletal and Neural Physiological Phenomena::Musculoskeletal Physiological Phenomena::Musculoskeletal Physiological Processes::Bone Remodeling::Bone Regeneration::Osseointegration
Medical Subject Headings::Phenomena and Processes::Physical Phenomena::Mechanical Phenomena::Porosity
Medical Subject Headings::Anatomy::Musculoskeletal System::Skeleton::Bone and Bones::Diaphyses
Medical Subject Headings::Anatomy::Musculoskeletal System::Skeleton::Bone and Bones::Bones of Lower Extremity::Leg Bones::Tibia
Medical Subject Headings::Chemicals and Drugs::Inorganic Chemicals::Acids::Acids, Noncarboxylic::Phosphorus Acids::Phosphoric Acids::Phosphates::Calcium Phosphates::Apatites::Hydroxyapatites::Durapatite
Medical Subject Headings::Disciplines and Occupations::Natural Science Disciplines::Biological Science Disciplines::Biotechnology::Biomimetics
Medical Subject Headings::Phenomena and Processes::Physical Phenomena::Magnetic Phenomena::Electromagnetic Phenomena::Electromagnetic Radiation::X-Rays
Medical Subject Headings::Phenomena and Processes::Physical Phenomena::Elementary Particles::Electrons
Medical Subject Headings::Psychiatry and Psychology::Behavior and Behavior Mechanisms::Motivation::Goals
Medical Subject Headings::Diseases::Pathological Conditions, Signs and Symptoms::Signs and Symptoms::Body Weight
Medical Subject Headings::Diseases::Wounds and Injuries::Fractures, Bone
Medical Subject Headings::Analytical, Diagnostic and Therapeutic Techniques and Equipment::Equipment and Supplies::Prostheses and Implants
Medical Subject Headings::Organisms::Eukaryota::Animals
Medical Subject Headings::Chemicals and Drugs::Inorganic Chemicals::Metals::Alloys
Medical Subject Headings::Phenomena and Processes::Musculoskeletal and Neural Physiological Phenomena::Musculoskeletal Physiological Phenomena::Musculoskeletal Physiological Processes::Bone Remodeling::Bone Regeneration::Osseointegration
Medical Subject Headings::Phenomena and Processes::Physical Phenomena::Mechanical Phenomena::Porosity
Medical Subject Headings::Anatomy::Musculoskeletal System::Skeleton::Bone and Bones::Diaphyses
Medical Subject Headings::Anatomy::Musculoskeletal System::Skeleton::Bone and Bones::Bones of Lower Extremity::Leg Bones::Tibia
Medical Subject Headings::Chemicals and Drugs::Inorganic Chemicals::Acids::Acids, Noncarboxylic::Phosphorus Acids::Phosphoric Acids::Phosphates::Calcium Phosphates::Apatites::Hydroxyapatites::Durapatite
Medical Subject Headings::Disciplines and Occupations::Natural Science Disciplines::Biological Science Disciplines::Biotechnology::Biomimetics
Medical Subject Headings::Phenomena and Processes::Physical Phenomena::Magnetic Phenomena::Electromagnetic Phenomena::Electromagnetic Radiation::X-Rays
Medical Subject Headings::Phenomena and Processes::Physical Phenomena::Elementary Particles::Electrons
Medical Subject Headings::Psychiatry and Psychology::Behavior and Behavior Mechanisms::Motivation::Goals
Medical Subject Headings::Diseases::Pathological Conditions, Signs and Symptoms::Signs and Symptoms::Body Weight
Medical Subject Headings::Diseases::Wounds and Injuries::Fractures, Bone
Medical Subject Headings::Analytical, Diagnostic and Therapeutic Techniques and Equipment::Equipment and Supplies::Prostheses and Implants
DeCS Terms
CIE Terms
Keywords
Bone, Bone fracture, Bone repair, Metal endo-implant, Titanium alloy, Additive manufacturing, EBM (electron beam melting), Biomechanics, Critical-size bone defect, Sheep, Animal model, Osseointegration, Huesos, Fracturas óseas, Titanio, Biomecánica, Ovinos, Modelos animales, Oseointegración, Prótesis e implantes
Citation
Crovace AM, Lacitignola L, Forleo DM, Staffieri F, Francioso E, Di Meo A, et al. 3D Biomimetic Porous Titanium (Ti6Al4V ELI) Scaffolds for Large Bone Critical Defect Reconstruction: An Experimental Study in Sheep. Animals. 2020 Aug 11;10(8):1389