Literature DB >> 29236898

In vitro analysis of a local polymeric device as an alternative for systemic antibiotics in Dentistry.

Talita Girio Carnaval1, Flávia Gonçalves2, Marcelo Munhóes Romano1, Luiz Henrique Catalani2, Marcia Alves Pinto Mayer3, Victor Elias Arana-Chávez4, Alexander Cassandri Nishida4, Thais Claudino Lage1, Carlos Eduardo Francci4, Carlos Alberto Adde1.   

Abstract

The development of a biodegradable material with antimicrobial properties for local applications is required in the prevention and treatment of infectious diseases. The objective of this study was to produce blends of poly-L-lactide acid (PLLA) synthetic polymer associated with several antimicrobials, as an alternative in the prevention and treatment of infections, as well as to evaluate its cytotoxicity, release of antimicrobials and inhibit bacteria growth. Blends of PLLA added with 20% Amoxicillin, Metronidazole, Clindamycin or Azithromicyn were used to produce Films (F) or Meshs (M) by casting and electrospinning methods, respectively. Standardized discs of the films and meshs were stored in buffer solutions (pH 5 or 7.4) and aliquots were analyzed by high performance chromatography (HPLC) during 168 hours. Cytotoxicity on human gingival fibroblasts was tested after 24, 48 and 72h by MTT reaction. The antimicrobial capacity was determined against P. gingivalis and S. pyogenes. The specimens were weighed after 3 and 6 months of storage for degradation analysis. SEM was performed to control interfaces and degradation. Antimicrobials presented a continuous and exponential drug release. Analysis showed that both M and F were able to inhibit S. pyogenes and P. gingivalis growth, indicating the release of active antimicrobial agents. The products were not toxic to the fibroblasts. Amoxicillin-film showed more degradation than PLLA at both pHs (p < 0.05), whereas Azithromycin-meshes were more degraded than PLLA at pH 7.4 (p < 0.05). PLLA association with antimicrobials is biocompatible and may represent a potential tool for the local delivery of antimicrobials.

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Year:  2017        PMID: 29236898     DOI: 10.1590/1807-3107BOR-2017.vol31.0092

Source DB:  PubMed          Journal:  Braz Oral Res        ISSN: 1806-8324


  2 in total

Review 1.  Trends in polymeric electrospun fibers and their use as oral biomaterials.

Authors:  Agnes B Meireles; Daniella K Corrêa; João Vw da Silveira; Ana Lg Millás; Edison Bittencourt; Gustavo Ea de Brito-Melo; Libardo A González-Torres
Journal:  Exp Biol Med (Maywood)       Date:  2018-05

2.  Engineering of Injectable Antibiotic-laden Fibrous Microparticles Gelatin Methacryloyl Hydrogel for Endodontic Infection Ablation.

Authors:  Juliana S Ribeiro; Eliseu A Münchow; Ester A F Bordini; Nathalie S Rodrigues; Nileshkumar Dubey; Hajime Sasaki; John C Fenno; Steven Schwendeman; Marco C Bottino
Journal:  Int J Mol Sci       Date:  2022-01-16       Impact factor: 5.923

  2 in total

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