Karaya/Gellan-Gum-Based Bilayer Films Containing 3,3′-Diindolylmethane-Loaded Nanocapsules: A Promising Alternative to Melanoma Topical Treatment

Author:

Reolon Jéssica Brandão1,Saccol Camila Parcianello1ORCID,Osmari Bárbara Felin1,Oliveira Daiane Britto de1,Prado Vinicius Costa1,Cabral Fernanda Licker2,da Rosa Lucas Saldanha3,Rechia Giancarlo Cervo4,Leal Daniela Bitencourt Rosa2ORCID,Cruz Letícia1ORCID

Affiliation:

1. Laboratório de Tecnologia Farmacêutica, Programa de Pós-Graduação em Ciências Farmacêuticas, Centro de Ciências da Saúde, Universidade Federal de Santa Maria, Santa Maria 97105-900, RS, Brazil

2. Laboratório de Imunobiologia Experimental e Aplicada, Centro de Ciências da Saúde, Departamento de Microbiologia e Parasitologia, Universidade Federal de Santa Maria, Santa Maria 97105-9000, RS, Brazil

3. Laboratório de Biomateriais, Centro de Ciências da Saúde, Departamento de Odontologia Restauradora, Universidade Federal de Santa Maria, Santa Maria 97015-372, RS, Brazil

4. Escola de Medicina, Universidade Franciscana, Santa Maria 97010-030, RS, Brazil

Abstract

This study aimed to incorporate nanocapsules containing 3,3′-diindolylmethane (DIM) with antitumor activity into a bilayer film of karaya and gellan gums for use in topical melanoma therapy. Nanocarriers and films were prepared by interfacial deposition of the preformed polymer and solvent casting methods, respectively. Incorporating DIM into nanocapsules increased its antitumor potential against human melanoma cells (A-375) (IC50 > 24.00 µg/mL free DIM × 2.89 µg/mL nanocapsules). The films were transparent, hydrophilic (θ < 90°), had homogeneous thickness and weight, and had a DIM content of 106 µg/cm2. Radical ABTS+ scavenger assay showed that the DIM films presented promising antioxidant action. Remarkably, the films showed selective bioadhesive potential on the karaya gum side. Considering the mechanical analyses, the nanotechnology-based films presented appropriate behavior for cutaneous application and controlled DIM release profile, which could increase the residence time on the application site. Furthermore, the nanofilms were found to increase the permeation of DIM into the epidermis, where melanoma develops. Lastly, the films were non-hemolytic (hemolysis test) and non-irritant (HET-CAM assay). In summary, the combination of karaya and gellan gum in bilayer films that contain nanoencapsulated DIM has demonstrated potential in the topical treatment of melanoma and could serve as a viable option for administering DIM for cutaneous melanoma therapy.

Funder

Fundação para Amparo da Pesquisa no Rio Grande do Sul

Publisher

MDPI AG

Subject

Pharmaceutical Science

Reference93 articles.

1. Recent Successes and Future Directions in Immunotherapy of Cutaneous Melanoma;Sadozai;Front. Immunol.,2017

2. Phytochemicals for the Prevention of Photocarcinogenesis;Oca;Int. J. Lab. Hematol.,2016

3. Cutaneous Melanoma: From Pathogenesis to Therapy (Review);Leonardi;Int. J. Oncol.,2018

4. Nanotechnology-Based Drug Delivery Systems for Melanoma Antitumoral Therapy: A Review;Rigon;Biomed Res. Int.,2015

5. A Randomized, Placebo-Controlled Trial of Diindolylmethane for Breast Cancer Biomarker Modulation in Patients Taking Tamoxifen;Thomson;Breast Cancer Res. Treat.,2017

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