Guided bone regeneration by the development of alendronate sodium loaded in-situ gel and membrane formulations

Biocompatible materials applied in guided bone regeneration are needed to prevent leakage caused by the invasion of peripheral epithelium. The aim of this study is to develop a thermosensitive in situ gel system containing alendronate sodium loaded PLGA nanoparticles and alendronate sodium loaded me...

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Published inEuropean journal of pharmaceutical sciences Vol. 155; p. 105561
Main Authors Öz, Umut Can, Toptaş, Mete, Küçüktürkmen, Berrin, Devrim, Burcu, Saka, Ongun Mehmet, Deveci, Mehmet Salih, Bilgili, Hasan, Ünsal, Elif, Bozkır, Asuman
Format Journal Article
LanguageEnglish
Published Elsevier B.V 01.12.2020
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Summary:Biocompatible materials applied in guided bone regeneration are needed to prevent leakage caused by the invasion of peripheral epithelium. The aim of this study is to develop a thermosensitive in situ gel system containing alendronate sodium loaded PLGA nanoparticles and alendronate sodium loaded membranes for guided bone regeneration. Thermosensitive Pluronic F127 gel system was preferred to prevent soft tissue migration to the defect site and prolong the residence time of the nanoparticles in this region. In situ gel system was combined with membrane formulation to enhance bone regenaration activity. Efficacy of combination system was investigated by implanting in 0.5 × 0.5 cm critical size defect in tibia of New Zealand female rabbits. According to the histopathological results, fibroblast formations were found at defect area after 6 weeks of post implantation. In contrast, treatment with the combination of in-situ gel containing nanoparticles with membrane provided woven bone formation with mature bone after 4 weeks of post implantation. As a results, the combination of in-situ gel formulation containing alendronate sodium-loaded nanoparticles with membrane formulation could be effectively applided for guided bone regeneration. [Display omitted]
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ISSN:0928-0987
1879-0720
DOI:10.1016/j.ejps.2020.105561