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Titre: Andiroba Oil (Carapa guianensis Aublet) Gel-Based Nanoemulsion : Development, Characterization, and In Vitro Evaluation in Wound Healing-Related Cells
Auteur(s): Silva, Vitória Regina Pereira da
Silva, Atailson Oliveira da
Rodrigues , Mosar Corrêa
Py-Daniel, Karen Rapp
Gomes, Bruna Rafaela Bezerra
Damas, Elysa Beatriz de Oliveira
Nogueira, Thalya Soares Ribeiro
Vieira, Ivo José Curcino
Castro, Mariana de Souza
Sousa, Marcelo Henrique
Carneiro, Marcella Lemos Brettas
Joanitti, Graziella Anselmo
metadata.dc.identifier.orcid: https://orcid.org/0000-0001-7434-6491
https://orcid.org/0000-0003-1210-8329
https://orcid.org/0000-0002-6888-1284
metadata.dc.contributor.affiliation: University of Brasilia, Laboratory of Bioactive Compounds and Nanobiotechnology (LBCNano)
University of Brasilia, Green Nanotechnology Group
University of Brasilia, Laboratory of Bioactive Compounds and Nanobiotechnology (LBCNano)
University of Brasilia, Laboratory of Bioactive Compounds and Nanobiotechnology (LBCNano)
University of Brasilia (UnB), Institute of Biological Sciences, Department of Cell Biology, Laboratory of Protein Chemistry and Biochemistry
University of Brasilia, Laboratory of Bioactive Compounds and Nanobiotechnology (LBCNano)
State University of Northern Fluminense, Laboratory of Chemical Sciences(LCQUI)
State University of Northern Fluminense, Laboratory of Chemical Sciences(LCQUI)
University of Brasilia, Institute of Biological Sciences, Department of Cell Biology, Laboratory of Protein Chemistry and Biochemistry,
University of Brasilia, Green Nanotechnology Group
University of Brasilia, Laboratory of Bioactive Compounds and Nanobiotechnology (LBCNano), Graduation Program in Nanoscience and Nanobiotechnology
University of Brasilia, Laboratory of Bioactive Compounds and Nanobiotechnology (LBCNano), Program in Pharmaceutical Science and Post-Graduation, Program in Nanoscience and Nanobiotechnology
Date de publication: 2-oct-2026
Editeur: American Chemical Society (ACS)
Référence bibliographique: SILVA, Vitória R. P. et al. Andiroba oil (*Carapa guianensis* Aublet) gel-based nanoemulsion: development, characterization, and In Vitro evaluation in wound healing-related cells. ACS Omega, 2026, p. A–N. DOI: https://doi.org/10.1021/acsomega.6c02635. Disponível em: https://doi.org/10.1021/acsomega.6c02635. Acesso em: 9 out. 2026.
Abstract: Andiroba oil (Carapa guianensis Aublet) is widely used in traditional medicine due to its anti-inflammatory and reported wound-healing properties. In this study, we developed and characterized andiroba oil-based nanoemulsions (NeAnd) and gel-based nanostructured formulation (NeAndG) to investigate their physicochemical stability and initial in vitro biological effects in wound healing-related cells. Chemical characterization by GC-MS confirmed the presence of limonoids (including gedunin and its derivatives), β-sitosterol, and oleic acid in andiroba oil composition, compounds associated with anti-inflammatory and regenerative properties. The nanoemulsions exhibited hydrodynamic diameters <200 nm, low polydispersity indices (<0.3), and a negative surface charge, indicating a homogeneous and stable nanostructured system. After incorporation into the Carbopol hydrogel, the nanodroplets maintained nanoscale size while exhibiting a markedly increased negative ζ potential (≈ −74 mV), suggesting enhanced colloidal stability. Long-term stability assays demonstrated that the gel matrix significantly improved thermal stability and prevented nanodroplet aggregation compared with the nanoemulsion alone during storage (4, 25, and 37 °C for 120 days). In vitro assays using human keratinocytes (HaCaT) and fibroblasts (HGF) showed a dose-dependent decrease in cell viability. Scratch assay analysis revealed no significant enhancement of cell migration compared with controls, suggesting that the biological activity of andiroba oil in this context may involve mechanisms other than cell migration. Overall, these results demonstrate that the andiroba oil nanogel represents a stable and biocompatible nanoplatform suitable for further investigation in wound healing-related studies.
metadata.dc.description.unidade: Instituto de Ciências Biológicas (IB)
Departamento de Genética e Morfologia (IB GEM)
Faculdade de Ciências da Saúde (FS)
Departamento de Farmácia (FS FAR)
metadata.dc.description.ppg: Programa de Pós-Graduação em Nanociência e Nanobiotecnologia
Programa de Pós-Graduação em Ciências Farmacêuticas
Licença:: This article is licensed under CC-BY 4.0
DOI: https://doi.org/10.1021/acsomega.6c02635
Collection(s) :Artigos publicados em periódicos e afins

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