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  3. Can Polyether Ether Ketone Dethrone Titanium as the Choice Implant Material for Metastatic Spine Tumor Surgery?

Can Polyether Ether Ketone Dethrone Titanium as the Choice Implant Material for Metastatic Spine Tumor Surgery?

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DOI
10.48350/164080
Publisher DOI
10.1016/j.wneu.2021.01.059
PubMed ID
33508491
Abstract
Instrumentation during metastatic spine tumor surgery (MSTS) provides stability to the spinal column in patients with pathologic fracture or iatrogenic instability produced while undergoing extensive decompression. Titanium is the current implant material of choice in MSTS. However, it hinders radiotherapy planning and generates artifacts, with magnetic resonance imaging and computed tomography scans used for postoperative evaluation of tumor recurrence and/or complications. The high modulus of elasticity of titanium (110 GPa) results in stress shielding, which may lead to construct failure at the bone-implant interface. Polyether ether ketone (PEEK), a thermoplastic polymer, is an emerging alternative to titanium for use in MSTS. The modulus of elasticity of PEEK (3.6 GPa) is close to that of cortical bone (17-21 GPa), resulting in minimal stress shielding. Its radiolucent and nonmetallic properties cause minimal interference with magnetic resonance imaging and computed tomography scans. PEEK also causes low-dose perturbation for radiotherapy planning. However, PEEK has reduced bioactivity with bone and lacks sufficient rigidity to be used as rods in MSTS. The reduced bioactivity of PEEK may be addressed by 1) surface modification (introducing porosity or bioactive coating with hydroxyapatite [HA] or titanium) and 2) forming composites with HA/titanium. The mechanical properties of PEEK may be improved by forming composites with HA or carbon fiber. Despite these modifications, all PEEK and PEEK-based implants are difficult to handle and contour intraoperatively. Our review provides a comprehensive overview of PEEK and modified PEEK implants, with a description of their properties and limitations, potentially serving as a basis for their future development and use in MSTS.
Date Issued
2021-04
Publication Type
Article
Subject(s)
600 Technology > 610 Medicine & health
Subjects
Carbon fiber Implants Neoplasm metastasis Polyether ether ketone Spine Surgery Titanium alloy
Language(s)
en
Author(s)
Kumar, Naresh
Ramakrishnan, Sridharan Alathur
Lopez, Keith Gerard
Madhu, Sirisha
Ramos, Miguel Rafael D
Fuh, Jerry Ying Hsi
Hallinan, James
Nolan, Colum P
Benneker, Lorin Michael  
Orthopädie Sonnenhof KLG  
Universitätsklinik für Orthopädische Chirurgie und Traumatologie  
Vellayappan, Balamurugan A
Additional Credits
Orthopädie Sonnenhof KLG  
Universitätsklinik für Orthopädische Chirurgie und Traumatologie  
Journal
World neurosurgery
Publisher
Elsevier
ISSN
1878-8750
Access(Rights)
restricted
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