Combinatory Effect of Pequi Oil (Caryocar brasiliense)-Based Nanoemulsions Associated to Docetaxel and Anacardic Acid (Anacardium occidentale) in Triple-Negative Breast Cancer Cells In Vitro

Author:

Ombredane Alicia Simalie12ORCID,Martins Natália Ornelas1ORCID,de Souza Gabriela Mara Vieira1,Araujo Victor Hugo Sousa1,Szlachetka Ísis O.23,da Silva Sebastião William23ORCID,da Rocha Márcia Cristina Oliveira2,Oliveira Andressa Souza de45ORCID,Holanda Cleonice Andrade45,Romeiro Luiz Antonio Soares45ORCID,Damas Elysa Beatriz de Oliveira1,Azevedo Ricardo Bentes2ORCID,Joanitti Graziella Anselmo12

Affiliation:

1. Laboratory of Bioactive Compounds and Nanobiotechnology (LCBNano), University of Brasilia, Campus Universitário—Centro Metropolitano, Ceilandia Sul, Brasilia 72220-275, Brazil

2. Post-Graduation Program in Nanoscience and Nanobiotechnology, University of Brasilia, Campus Universitário Darcy Ribeiro, Brasilia 70910-900, Brazil

3. Laboratory of Optical Espectroscopy, Physics Institute, University of Brasilia, Campus Universitário Darcy Ribeiro, Brasilia 70910-900, Brazil

4. Graduate Program in Pharmaceutical Sciences, Department of Pharmacy, Health Sciences Faculty, University of Brasilia, Brasilia 70910-900, Brazil

5. Laboratory of Development of Therapeutic Innovations (LDT), Center for Tropical Medicine, Faculty of Medicine, University of Brasilia, Brasilia 70910-900, Brazil

Abstract

Combination therapy integrated with nanotechnology offers a promising alternative for breast cancer treatment. The inclusion of pequi oil, anacardic acid (AA), and docetaxel (DTX) in a nanoemulsion can amplify the antitumor effects of each molecule while reducing adverse effects. Therefore, the study aims to develop pequi oil-based nanoemulsions (PeNE) containing DTX (PDTX) or AA (PAA) and to evaluate their cytotoxicity against triple-negative breast cancer cells (4T1) in vitro. The PeNE without and with AA (PAA) and DTX (PDTX) were prepared by sonication and characterized by ZetaSizer® and electronic transmission microscopy. Viability testing and combination index (CI) were determined by MTT and Chou-Talalay methods, respectively. Flow cytometry was employed to investigate the effects of the formulations on cell structures. PeNE, PDTX, and PAA showed hydrodynamic diameter < 200 nm and a polydispersity index (PdI) of 0.3. The association PDTX + PAA induced a greater decrease in cell viability (~70%, p < 0.0001) and additive effect (CI < 1). In parallel, an association of the DTX + AA molecules led to antagonism (CI > 1). Additionally, PDTX + PAA induced an expressive morphological change, a major change in lysosome membrane permeation and mitochondria membrane permeation, cell cycle blockage in G2/M, and phosphatidylserine exposure. The study highlights the successful use of pequi oil nanoemulsions as delivery systems for DTX and AA, which enhances their antitumor effects against breast cancer cells. This nanotechnological approach shows significant potential for the treatment of triple-negative breast cancer.

Funder

Coordenação de Aperfeiçoamento de Pessoal de Nível Superior

Conselho Nacional de Desenvolvimento Cientifico e Tecnológico

Instituto Nacional de Ciência e Tecnologia em Nanobiotecnologia

Fundação de Amparo à Pesquisa do Distrito Federal

Publisher

MDPI AG

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