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Optimized Electrophoretic Deposition of Chitosan/Mesoporous Glass Nanoparticles with Gentamicin on Titanium Implants: Enhancing Hemocompatibility and Antibacterial Activity.
Uicich, Florencia C; Merlo, Julieta L; Redersdorff, Ingrid E; Herrera Seitz, María K; Pastore, Juan I; Ballarre, Josefina.
Affiliation
  • Uicich FC; Material's Science and Technology Research Institute (INTEMA), UNMdP-CONICET, Av. Colón 10850, 7600 Mar del Plata, Argentina.
  • Merlo JL; Material's Science and Technology Research Institute (INTEMA), UNMdP-CONICET, Av. Colón 10850, 7600 Mar del Plata, Argentina.
  • Redersdorff IE; Biological Investigations Institute (IIB), UNMdP-CONICET, Déan Funes 3240 4° floor, 7600 Mar del Plata, Argentina.
  • Herrera Seitz MK; Biological Investigations Institute (IIB), UNMdP-CONICET, Déan Funes 3240 4° floor, 7600 Mar del Plata, Argentina.
  • Pastore JI; Scientific and Technological Investigations in Electronics Institute (ICyTE), UNMdP-CONICET, Av. Juan B. Justo 4302, 7600 Mar del Plata, Argentina.
  • Ballarre J; Material's Science and Technology Research Institute (INTEMA), UNMdP-CONICET, Av. Colón 10850, 7600 Mar del Plata, Argentina.
ACS Appl Bio Mater ; 7(7): 4642-4653, 2024 Jul 15.
Article in En | MEDLINE | ID: mdl-38967050
ABSTRACT
Titanium-based implants have long been studied and used for applications in bone tissue engineering, thanks to their outstanding mechanical properties and appropriate biocompatibility. However, many implants struggle with osseointegration and attachment and can be vulnerable to the development of infections. In this work, we have developed a composite coating via electrophoretic deposition, which is both bioactive and antibacterial. Mesoporous bioactive glass particles with gentamicin were electrophoretically deposited onto a titanium substrate. In order to validate the hypothesis that the quantity of particles in the coatings is sufficiently high and uniform in each deposition process, an easy-to-use image processing algorithm was designed to minimize human dependence and ensure reproducible results. The addition of loaded mesoporous particles did not affect the good adhesion of the coating to the substrate although roughness was clearly enhanced. After 7 days of immersion, the composite coatings were almost dissolved and released, but phosphate-related compounds started to nucleate at the surface. With a simple and low-cost technique like electrophoretic deposition, and optimized stir and suspension times, we were able to synthesize a hemocompatible coating that significantly improves the antibacterial activity when compared to the bare substrate for both Gram-positive and Gram-negative bacteria.
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Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: Particle Size / Surface Properties / Titanium / Materials Testing / Gentamicins / Chitosan / Electrophoresis / Nanoparticles / Glass / Anti-Bacterial Agents Limits: Humans Language: En Journal: ACS Appl Bio Mater Year: 2024 Document type: Article Affiliation country: Argentina Country of publication: Estados Unidos

Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: Particle Size / Surface Properties / Titanium / Materials Testing / Gentamicins / Chitosan / Electrophoresis / Nanoparticles / Glass / Anti-Bacterial Agents Limits: Humans Language: En Journal: ACS Appl Bio Mater Year: 2024 Document type: Article Affiliation country: Argentina Country of publication: Estados Unidos