Literature DB >> 29361177

Development, characterization, and in vitro-in vivo evaluation of polymeric nanoparticles containing miconazole and farnesol for treatment of vulvovaginal candidiasis.

Adelaide Fernandes Costa1, Deize Evangelista Araujo2, Mirlane Santos Cabral2, Isabella Teles Brito1, Liliana Borges de Menezes Leite1, Maristela Pereira2, Andre Correa Amaral1.   

Abstract

Vulvovaginal candidiasis (VVC) is caused mainly by the opportunistic fungus Candida albicans, and its yeast to hyphae transition is considered a major virulence factor. Farnesol is a molecule that inhibits yeast to hyphae transition. The increased incidence of VVC has influenced a need for developing new therapeutic strategies. The objective was to develop a mucoadhesive nanostructured system composed of miconazole and farnesol co-encapsulated within chitosan nanoparticles. The miconazole presented a minimal inhibitory concentration (MIC) of 1 μg/ml against C. albicans. The farnesol was capable of inhibiting yeast to hyphae transition at levels greater or equal to 300 μM. The combination of miconazole and farnesol showed no change in miconazole MIC. Chitosan nanoparticles containing miconazole and farnesol were prepared by ionic gelation and showed favorable characteristics for use on mucous membranes. They showed size variation and polydispersion index (PDI) after 30 days, but the efficiency of drug encapsulation was maintained. Regarding toxicity in cultured fibroblasts (BALB/c 3T3) the nanoparticles were considered nontoxic. The nanoparticles showed antifungal activity against the C. albicans strain used with MICs of 2.5 μg/ml and 2 μg/ml for nanoparticles containing miconazole or miconazole/farnesol, respectively. Nanoparticles containing farnesol inhibited yeast to hyphae transition at concentrations greater than or equal to 240 μM. The in vivo antifungal activity was assessed in the murine model for VVC. The results suggested that chitosan nanoparticles containing miconazole and farnesol were effective at inhibiting fungal proliferation. Additionally, chitosan nanoparticles containing farnesol were capable of decreasing the pathogenicity of infection, demonstrated through the absence of inflammation.

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Year:  2019        PMID: 29361177     DOI: 10.1093/mmy/myx155

Source DB:  PubMed          Journal:  Med Mycol        ISSN: 1369-3786            Impact factor:   4.076


  7 in total

1.  Investigation of thiosemicarbazide free or within chitosan nanoparticles in a murine model of vulvovaginal candidiasis.

Authors:  Deize Evangelista Araújo; Amanda Alves de Oliveira; Mirlane Dos Santos Cabral; Adelaide Fernandes Costa; Bárbara Carolina Silva; Lívia do Carmo Silva; Liliana Borges de Menezes; Célia Maria de Almeida Soares; Andre Correa Amaral; Maristela Pereira
Journal:  Braz J Microbiol       Date:  2020-07-08       Impact factor: 2.476

Review 2.  Multiple Roles of Chitosan in Mucosal Drug Delivery: An Updated Review.

Authors:  Paola Mura; Francesca Maestrelli; Marzia Cirri; Natascia Mennini
Journal:  Mar Drugs       Date:  2022-05-20       Impact factor: 6.085

Review 3.  The Expanded Role of Chitosan in Localized Antimicrobial Therapy.

Authors:  Lisa Myrseth Hemmingsen; Nataša Škalko-Basnet; May Wenche Jøraholmen
Journal:  Mar Drugs       Date:  2021-12-08       Impact factor: 5.118

4.  Transcriptional Profiling of the Candida auris Response to Exogenous Farnesol Exposure.

Authors:  Ágnes Jakab; Noémi Balla; Ágota Ragyák; Fruzsina Nagy; Fruzsina Kovács; Zsófi Sajtos; Zoltán Tóth; Andrew M Borman; István Pócsi; Edina Baranyai; László Majoros; Renátó Kovács
Journal:  mSphere       Date:  2021-10-13       Impact factor: 4.389

5.  HPLC Method Validated for Quantification of Fluconazole Co-Encapsulated with Propolis Within Chitosan Nanoparticles.

Authors:  Jacqueline Teixeira da Silva; Matheus Gabriel de Oliveira; José Realino de Paula; Suzana Ferreira Alves; Flavio Pellegrini; Andre Correa Amaral
Journal:  Indian J Microbiol       Date:  2021-06-16

6.  RAFT-Derived Polymethacrylates as a Superior Treatment for Recurrent Vulvovaginal Candidiasis by Targeting Biotic Biofilms and Persister Cells.

Authors:  Xueqing Wu; Sisi Zhang; Xinxin Xu; Laien Shen; Boyun Xu; Wenzhen Qu; Wenyi Zhuang; Katherine Locock; Margaret Deighton; Yue Qu
Journal:  Front Microbiol       Date:  2019-11-07       Impact factor: 5.640

Review 7.  Therapies and Vaccines Based on Nanoparticles for the Treatment of Systemic Fungal Infections.

Authors:  Brenda Kischkel; Suélen A Rossi; Samuel R Santos; Joshua D Nosanchuk; Luiz R Travassos; Carlos P Taborda
Journal:  Front Cell Infect Microbiol       Date:  2020-09-03       Impact factor: 5.293

  7 in total

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