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Radiopaque and Biocompatible PMMA Bone Cement Triggered by Nano Tantalum Carbide and Its Osteogenic Performance

delete2024-08-06
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PRE
AI
T
Tong-Guang Xu
J
Jiaxu Shi
H
H. Jerry Qi
S
Song Chen
刘斌 (Bin Li) *
张峰 cover
张峰 (Feng Zhang) *
贺竞辉 (Jinghui He) *
DOI:10.1021/acsbiomaterials.4c00552delete
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Abstract

Abstract

En 中文
Poly(methyl methacrylate) (PMMA) bone cements have been widely used in orthopedics; thanks to their excellent mechanical properties, biocompatibility, and chemical stability. Barium sulfate and zirconia are usually added into PMMA bone cement to enhance the X-ray radiopacity, while the mechanical strength, radiopacity, and biocompatibility are not well improved. In this study, an insoluble and corrosion-resistant ceramic, tantalum carbide (TaC), was added into the PMMA bone cement as radiopacifies, significantly improving the mechanical, radiopaque, biocompatibility, and osteogenic performance of bone cement. The TaC-PMMA bone cement with varied TaC contents exhibits compressive strength over 100 MPa, higher than that of the commercial 30% BaSO4-PMMA bone cement. Intriguingly, when the TaC content reaches 20%, the radiopacity is equivalent to the commercial bone cement with 30% of BaSO4 in PMMA. The cytotoxicity and osteogenic performance indicate that the incorporation of TaC not only enhances the osteogenic properties of PMMA but also does not reduce cell viability. This study suggests that TaC could be a superior and multifunctional radio-pacifier for PMMA bone cement, offering a promising avenue for improving patient outcomes in orthopedic applications.
Keywords:
TaC-PMMA
mechanical strength
vertebroplasty
cytotoxicity
sheep vertebrae

Journal

A
ACS Biomaterials Science and Engineering
IF:
5.5
Papers:
4.8K
Citations:
2.1W

Organization

S
soochow university - china
Scholars:
5.1W
Papers: 3.5W
Citations: 82