4.7 Article

Liposome-modified titanium surface: A strategy to locally deliver bioactive molecules

Journal

COLLOIDS AND SURFACES B-BIOINTERFACES
Volume 158, Issue -, Pages 387-396

Publisher

ELSEVIER SCIENCE BV
DOI: 10.1016/j.colsurfb.2017.07.007

Keywords

Titanium; Liposomes; Supported vesicular layers; Covalently bonded vesicular layers; Surface-mediated drug delivery; MG63 cells

Funding

  1. PRIN

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Titanium and its alloys are widely employed materials for implants in orthopedic or dental surgery due to their mechanical properties, resistance to corrosion and osseointegration capability. However adverse reactions at the tissue/implant interface may occur, which limit the success of the osseointegration process. Therefore, different strategies have to be used to overcome these drawbacks. In this work, we developed two different liposome-based coatings on titanium surfaces as drug or bioactive molecule deposits for dental/orthopedic implant applications. The first one is a supported vesicular layer (SVL), obtained by liposome adhesion on passivated Ti surface, the second one is a covalently bonded vesicular layer (CBVL) grafted on properly functionalized Ti. Photoluminescence spectroscopy and atomic force microscopy investigations demonstrated the effective anchoring of intact liposomes in both systems. Cytotoxicity assays, performed after 48 h, showed a MG63 cell viability higher than 75% and 70% on SVLs and CBVLs, respectively. Scanning electron microscopy investigation revealed numerous and spread MG63 cells after 48 h on SVL modified Ti surface and a lower cell adhesion on samples coated with CBVL. The cellular uptake capability of liposome content was proved by fluorescence microscopy using carboxyfluorescein loaded SVLs and CBVLs. Finally, we demonstrated that these liposome-modified Ti surfaces were able to deliver a model bioactive molecule (phosphatidylserine) to adherent cells, confirming the potentiality of developed systems in bone related prosthetic applications. (C) 2017 Elsevier B.V. All rights reserved.

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