Effect of various admixtures on selected mechanical properties of medium viscosity bone cements: pt. 1 - α/β tricalcium phosphate (TCP).

Opis bibliograficzny

Effect of various admixtures on selected mechanical properties of medium viscosity bone cements: pt. 1 - α/β tricalcium phosphate (TCP). [AUT. KORESP.] ROBERT KARPIŃSKI, [AUT.] JAKUB SZABELSKI, PRZEMYSŁAW KRAKOWSKI, JÓZEF JONAK, KATARZYNA FALKOWICZ, MARIUSZ JOJCZUK, ADAM NOGALSKI, AGATA PRZEKORA. Compos. Struct. [online] 2024 vol. 343 [art. nr] 118306, s. 1-12, bibliogr. poz. 97, [przeglądany 25 czerwca 2024]. Dostępny w: https://www.sciencedirect.com/science/article/pii/S0263822324004343. DOI: 10.1016/j.compstruct.2024.118306
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Szczegóły publikacji

Źródło:
Composite Structures [online] 2024 vol. 343, [art. nr] 118306, s. 1-12, bibliogr. poz. 97.
Rok: 2024
Język: angielski
Charakter formalny: Artykuł w czasopiśmie
Typ MNiSW/MEiN: Praca Oryginalna

Streszczenia

Every year millions of people around the world suffer from joint and bone diseases and require orthopaedic surgery. Owing to its unique properties such as biocompatibility and ability to bond bones with orthopaedic implants, poly methyl-methacrylate (PMMA) is among the most widely used polymer composites for bone cements in orthopaedic and trauma surgery. On the other hand, this material is characterized by low mechanical properties, which can lead to accelerated implant loosening in aggressive environments, such as the human body. Over the years, researchers have studied PMMA, especially its failure mechanism. Various additives to PMMA have been proposed to enhance the mechanical properties of this material. This study investigated the effect of mixing PMMA with α-TCP (PMMA/α-TCP bone cement composite) and β-TCP (PMMA/β-TCP bone cement composite) on its mechanical properties. The study was conducted on commercially available PMMA (Haraeus Palamed) mixed with α-TCP and β-TCP in different concentrations. TCP has bacteriostatic properties and, as a bone compatible material, it stimulates bone regeneration and bone ingrowth, which highly increases the survival rate of PMMA bonding. However, the addition of particles to PMMA can affect mechanical properties of bone cements. In this study, the effects of 0, 1, 2, 3, 5, 8 and 10% dry mass concentration of TCP in bone cement on the mechanical properties of PMMA were investigated. Samples were subjected to compressive loading. This loading mode is typical of the human body after joint prosthesis implantation. The analysis involved comparing selected mechanical parameters of samples prepared according to manufacturer’s instructions and of samples prepared with the addition of α-TCP and β-TCP. Results demonstrated that the addition of β-TCP, whose crystals are triangular, did not affect the mechanical properties of PMMA. On the other hand, the addition of more than 3% dry mass α-TCP, the inner structure of which is hexagonal, led to a slight yet significant decrease in the compressive strength of PMMA.

Identyfikatory

BPP ID: (27, 100634) wydawnictwo ciągłe #100634

Metryki

140,00
Punkty MNiSW/MEiN
7,100
Impact Factor
Q1
SCOPUS
0
Punktacja wewnętrzna

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Punkty i sloty autorów

AutorDyscyplinaPkD / PkDAutSlot
Jojczuk Mariusz, dr hab. n. med. i n. o zdr.nauki medyczne35,00000,2500
Krakowski Przemysław, dr hab. n. med. i n. o zdr.nauki medyczne35,00000,2500
Nogalski Adam, prof. dr hab.nauki medyczne35,00000,2500
Przekora-Kuśmierz Agata, prof. dr hab. n. farm.nauki medyczne35,00000,2500

Punkty i sloty dyscyplin

DyscyplinaPkD / PkDAutSlot
nauki medyczne140,00001,0000

Informacje dodatkowe

Zewnętrzna baza danych:Web of Science
Scopus
Rekord utworzony:25 czerwca 2024 12:58
Ostatnia aktualizacja:17 października 2025 13:10