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A poly-δ-decalactone (PDL) based nanoemulgel for topical delivery of ketoconazole and eugenol against Candida albicans

Tutkimustuotos: LehtiartikkeliArtikkeliTieteellinenvertaisarvioitu

12 Sitaatiot (Scopus)
163 Lataukset (Pure)

Abstrakti

This study aimed to investigate the potential of poly-δ-decalactone (PDL) and a block copolymer (methoxy-poly(ethylene glycol)-b-poly-δ-decalactone (mPEG-b-PDL)) in the topical delivery of ketoconazole (KTZ) and eugenol (EUG) against Candida albicans. The nanoemulsion (NE) was studied for its significant factors and was optimized using the design of experiments (DOE) methodologies. A simple robust nanoprecipitation method was employed to successfully produce a nanoemulsion (KTZ-EUG-NE). The spherical globules exhibited rough surfaces, explaining the adsorption of mPEG-b-PDL onto PDL. The sustained drug release effects were governed by the amorphous nature of PDL. KTZ-EUG-NE was further used to develop a 1% w/v Carbopol-940-based nanoemulgel (KTZ-EUG-NE gel). The optimal rheological and spreadability properties of the developed nanoemulgel explain the ease of topical applications. Ex vivo permeation and retention studies confirmed the accumulation of KTZ-EUG-NE at different layers of the skin when applied topically. The cytotoxicity of the developed NE in human keratinocyte (HaCaT) cells demonstrated the utility of this newly explored nanocarrier in reducing the cell toxicity of KTZ. The higher antifungal activities of KTZ-EUG-NE at 19.23-fold lower concentrations for planktonic growth and 4-fold lower concentrations for biofilm formation than coarse drugs explain the effectiveness of the developed NE.

AlkuperäiskieliEnglanti
Sivut5322-5336
JulkaisuNanoscale Advances
Vuosikerta6
Numero21
DOI - pysyväislinkit
TilaJulkaistu - 2 elok. 2024
OKM-julkaisutyyppiA1 Julkaistu artikkeli, soviteltu

Rahoitus

This research was partly funded by the Business Finland Research-to-Business project Jasmine PRO (1609/31/2021). The authors would like to acknowledge the National Institute of Pharmaceutical Education & Research (NIPER) Guwahati (Department of Pharmaceuticals, Ministry of Chemicals and Fertilizers, India) for extending facilities during this manuscript writing. Dr Gulbake would like to thank the Science and Engineering Research Board (SERB), (EEQ/2022/000950) New Delhi, India, for extending facilities to write the manuscript. Author RC would like to acknowledge DST-INSPIRE for providing him with fellowship. This study is part of the activities of the \u00C5AU Foundation (S\u00C5A) funded Centre of Excellence in Research \u201CMaterials-driven solutions for combating antimicrobial resistance (MADNESS)\u201D and to the strategic research profiling area \u201CSolutions for Health\u201D at \u00C5bo Akademi University. The authors would like to acknowledge CIF and NECBH, IIT-Guwahati (BT/NER/143/SP44675/2023) for providing TEM and AFM facilities. The authors also would like to acknowledge Dr Jagdish Kumar Balani (Veterinary officer) for extending research facilities for the ex vivo permeation studies.

YK:n kestävän kehityksen tavoitteet

Tämä tuotos edistää seuraavia kestävän kehityksen tavoitteita:

  1. SDG 3 – Hyvä terveys ja hyvinvointi
    SDG 3 – Hyvä terveys ja hyvinvointi
  2. SDG 6 – Puhdas vesi ja puhtaanapito
    SDG 6 – Puhdas vesi ja puhtaanapito
  3. SDG 12 – Vastuullinen kulutus ja tuotanto
    SDG 12 – Vastuullinen kulutus ja tuotanto
  4. SDG 15 – Maanpäällinen elämä
    SDG 15 – Maanpäällinen elämä

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