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A review on antibacterial biomaterials in biomedical applications: from materials perspective to bioinks design

Pahlevanzadeh, Farnoosh and Setayeshmehr, Mohsen and Bakhsheshi Rad, Hamid Reza and Emadi, Rahmatollah and Kharaziha, Mahshid and Poursamar, Ali and Ismail, Ahmad Fauzi and Sharif, Safian and Chen, Xiongbiao and Berto, Filippo (2022) A review on antibacterial biomaterials in biomedical applications: from materials perspective to bioinks design. Polymers, 14 (11). pp. 1-35. ISSN 2073-4360

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Official URL: http://dx.doi.org/10.3390/polym14112238

Abstract

In tissue engineering, three-dimensional (3D) printing is an emerging approach to produc-ing functioning tissue constructs to repair wounds and repair or replace sick tissue/organs. It allows for precise control of materials and other components in the tissue constructs in an automated way, potentially permitting great throughput production. An ink made using one or multiple biomaterials can be 3D printed into tissue constructs by the printing process; though promising in tissue engineer-ing, the printed constructs have also been reported to have the ability to lead to the emergence of unforeseen illnesses and failure due to biomaterial-related infections. Numerous approaches and/or strategies have been developed to combat biomaterial-related infections, and among them, natural biomaterials, surface treatment of biomaterials, and incorporating inorganic agents have been widely employed for the construct fabrication by 3D printing. Despite various attempts to synthesize and/or optimize the inks for 3D printing, the incidence of infection in the implanted tissue constructs remains one of the most significant issues. For the first time, here we present an overview of inks with antibac-terial properties for 3D printing, focusing on the principles and strategies to accomplish biomaterials with anti-infective properties, and the synthesis of metallic ion-containing ink, chitosan-containing inks, and other antibacterial inks. Related discussions regarding the mechanics of biofilm formation and antibacterial performance are also presented, along with future perspectives of the importance of developing printable inks.

Item Type:Article
Uncontrolled Keywords:3D printing, antibacterial properties, chitosan, metallic ions
Subjects:Q Science > Q Science (General)
T Technology > TJ Mechanical engineering and machinery
Divisions:Science
ID Code:103838
Deposited By: Yanti Mohd Shah
Deposited On:01 Dec 2023 02:06
Last Modified:01 Dec 2023 02:06

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