Publicações

  1. 2026
  2. 2025
  3. 2024
  4. 2022
  5. 2021
  6. 2020

2026

  1. E. N BORGESet al. Nerolidol and a zwitterionic surfactant induce membrane rigidity in and infected macrophages. COLLOIDS AND SURFACES B-BIOINTERFACES, v. 257, p. 115156, 2026.
  2. A. C. M. BARROS et al. Cholesterol-Driven Optimization of Liposomal Systems for Ivermectin Capture: Insights from Experimental and Molecular Dynamics Studies. ACS Applied Materials & Interfaces, v. 2, p. A-J, 2026.
  3. T. ALVES et al . Sustained simvastatin delivery via poly(lactide) nanoparticles enhances early osteogenic-associated responses in human periodontal ligament stem cells. Scientific Reports, v. 7, p. 1-30, 2026.
  4. L. R. de  SOUSA et al . Erythrocyte Membrane Incorporation Modulates the Stability and Fusion-Associated Behavior of Biomimetic Liposomes. LANGMUIR, v. 7, p. A-L, 2026.
  5. H. PASCOA et al. . Evaluation of olanzapine-excipient compatibility for the development of nanostructured lipid carriers: a preformulation study with lipids and surfactants. JOURNAL OF THERMAL ANALYSIS AND CALORIMETRY, v. 8, p. 1-14, 2026.
  6. J. PIRES et al. Lipid phase organization controls drug partitioning and release across lipid nanocarriers. RSC Pharmaceutics, v. 6, p. 1-13, 2026.
  7. O.B. de SOUSA et al. From Liquid to Solid: Formulation and Characterization of Testosterone-Loaded S-SMEDDS Pellets Using a 24 Factorial Design. AAPS PHARMSCITECH, v. 27, p. 1-17, 2026.

2025

  1. M.O. S OLIVEIRA et al. Nanoencapsulation of bioactive extracts from grape, jaboticaba, and hibiscus by-products using chitosan-TPP: Characterization, bioactive properties, and application in cassava-based foods. INTERNATIONAL JOURNAL OF BIOLOGICAL MACROMOLECULES, v. 336, p. 149383, 2025.
  2. J.V.R. ROCHA et al. . Near Infrared Biomimetic Hybrid Magnetic Nanocarrier for MRI-Guided Thermal Therapy. ACS Applied Materials & Interfaces, v. 17, p. 13094-13110, 2025.
  3. N.N. FERREIRA et al. Nose-to-Brain Delivery of Biomimetic Nanoparticles for Glioblastoma Targeted Therapy. ACS Applied Materials & Interfaces, v. 17, p. 484-499, 2025.
  4. E.D.de OLIVEira JUNIOR et al . Optimized mucus adhesion and penetration of lipid-polymer nanoparticles enables effective nose-to-brain delivery of perillyl alcohol for glioblastoma therapy. Drug Delivery and Translational Research, v. 3, p. 1-16, 2025.
  5. E.N. BORGES et al . Miltefosine and amphoterin B induce membrane rigidity in Leishmania amazonensis and Leishmania-infected macrophages. ARCHIVES OF BIOCHEMISTRY AND BIOPHYSICS, v. 769, p. 110417, 2025.


2024 
  1. I.P. SOUSA et al . Improved photostability and skin retention of avobenzone encapsulated in compatible nanostructured lipid carriers. JOURNAL OF COSMETIC SCIENCE, v. 75, p. 128-145, 2024.
  2. K.R.A.BORGESet al . Açaí (Euterpe oleracea Mart.) Seed Oil and Its Nanoemulsion: Chemical Characterisation, Toxicity Evaluation, Antioxidant and Anticancer Activities. Current Issues in Molecular Biology (Online), v. 46, p. 3763-3793, 2024.
  3. L.Q.L. HIRANO ET AL . Pharmacokinetics and pharmacodynamics of dextroketamine alone or combined with midazolam in Caiman crocodilus. JOURNAL OF VETERINARY PHARMACOLOGY AND THERAPEUTICS, v. 4, p. 1-10, 2024.
  4. G.R. SILVA et al. Extracellular vesicles from the mycoparasitic fungus Trichoderma harzianum. ANTONIE VAN LEEUWENHOEK, v. 117, p. 64, 2024.

 


2022

  1. M. O. Vasconcelos et al., Lidocaine- and chloramphenicol-loaded nanoparticles embedded in a chitosan/hyaluronic acid/glycerol matrix: Drug-eluting biomembranes with potential for guided tissue regeneration,” Frontiers in Nanotechnology, vol. 4, 2022, doi: 10.3389/fnano.2022.1049599.
  2. B. C. C. Ribeiro, E. R. Cintra, E. M. Lima, L. A. D. Silva, and D. G. A. Diniz, Evaluation of testosterone compatibility with different excipients for the development of a self-emulsifying drug delivery system, Journal of Thermal Analalysis and Calorimetry, 2022, doi: 10.1007/s10973-022-11751-4.
  3. K. B. Japiassu et al., Interplay between mucus mobility and alveolar macrophage targeting of surface-modified liposomes, Journal of Controlled Release, vol. 352, pp. 15–24, 2022, doi: 10.1016/j.jconrel.2022.10.006.
  4. J. C. de A. Borges et al., Extrato rico em Curcumina do Brasil Central Curcuma longa protege células endoteliais de veias umbilicais humanas sob estresse oxidativo, ABCS Health Sciences, 2022, doi: 10.7322/abcshs.2021005.1727.
  5. T. R. de Souza et al., Topical application of melatonin accelerates the maturation of skin wounds and increases collagen deposition in a rat model of diabetes, Journal of Tissue Viability, 2022, doi: 10.1016/j.jtv.2022.07.015.
  6. R. D. Machado et al., Improvement in Solubility–Permeability Interplay of Psoralens from Brosimum gaudichaudii Plant Extract upon Complexation with Hydroxypropyl-β-cyclodextrin, Molecules, vol. 27, no. 14, p. 4580, Jul. 2022, doi: 10.3390/molecules27144580.
  7. R. S. de Moura et al., Plasma concentration, cardiorespiratory and analgesic effects of ketamine-fentanyl infusion in dogs submitted to mastectomy, BMC Veterinary Research, vol. 18, no. 1, p. 225, 2022, doi: 10.1186/s12917-022-03244-1.
  8. E. R. Cintra et al., Folate-Targeted PEGylated Magnetoliposomes for Hyperthermia-Mediated Controlled Release of Doxorubicin,” Frontiers in Pharmacology., vol. 13, 2022, doi: 10.3389/fphar.2022.854430.

2021

  1. ALONSO, Lais et al. Comparative EPR spectroscopy analysis of amphotericin B and miltefosine interactions with Leishmania, erythrocyte and macrophage membranes. European Journal of Pharmaceutical Sciences, v. 163, p. 105859, 2021.
  2. ARANTES, Diego Antonio Costa et al. Biological effects of formulation containing curcuminoids and Bidens Pilosa L. in oral carcinoma cell line. Brazilian Oral Research, v. 35, 2021.
  3. BEZERRA, Soraia F. et al. Application of the adverse outcome pathway framework for investigating skin sensitization potential of nanomaterials using new approach methods. Contact Dermatitis, v. 84, n. 2, p. 67-74, 2021.
  4. CARDOSO, Wesley B.; MENDANHA, Sebastião A. Molecular dynamics simulation of docking structures of SARS-CoV-2 main protease and HIV protease inhibitors. Journal of Molecular Structure, v. 1225, p. 129143, 2021.
  5. DE OLIVEIRA VIANA, Iara Maíra et al. Innate and adaptive immune responses toward nanomedicines. Acta Pharmaceutica Sinica B, v. 11, n. 4, p. 852-870, 2021.
  6. DE SOUZA, Ana Luiza Ribeiro et al. Development and validation of a rapid RP-HPLC method for simultaneous quantification of paclitaxel and cetuximab in immunoliposomes. Talanta, v. 225, p. 121988, 2021.
  7. FERREIRA, Natália N. et al. Nose-to-brain co-delivery of drugs for glioblastoma treatment using nanostructured system. International Journal of Pharmaceutics, v. 603, p. 120714, 2021.
  8. MACEDO, Larissa M. et al. Effect of angiotensin II and angiotensin-(1–7) on proliferation of stem cells from human dental apical papilla. Journal of Cellular Physiology, v. 236, n. 1, p. 366-378, 2021.
  9. TRUZZI, Eleonora et al. Nasal biocompatible powder of Geraniol oil complexed with cyclodextrins for neurodegenerative diseases: physicochemical characterization and in vivo evidences of nose to brain delivery. Journal of Controlled Release, v. 335, p. 191-202, 2021.
  10. VINÍCIUS-ARAÚJO, Marcus et al. ZnxMn1-xFe2O4@SiO2:zNd+3 core-shell nanoparticles for low-field magnetic hyperthermia and enhanced photothermal therapy with the potential for nanothermometry. ACS Applied Nano Materials, 2021.

2020

  1. ALONSO, Lais et al. Analysis of the interactions of amphotericin B with the Leishmania plasma membrane using EPR spectroscopy. The Journal of Physical Chemistry B, v. 124, n. 45, p. 10157-10165, 2020.
  2. ALVES, Eyber Domingos; COLHERINHAS, Guilherme; MENDANHA, Sebastião Antonio. Assessing the DOPC-cholesterol interactions and their influence on fullerene C60 partitioning in lipid bilayers. Journal of Molecular Liquids, v. 315, p. 113698, 2020.
  3. CAPISTRANO, Gustavo et al. IR-780-albumin-based nanocarriers promote tumor regression not only from phototherapy but also by a nonirradiation mechanism. ACS Biomaterials Science & Engineering, v. 6, n. 8, p. 4523-4538, 2020.
  4. DE MAGALHÃES BENEDETTI, Naiara IG et al. A reliable HPLC-ELSD method for determination of cholesterol, phosphatidylcholine, lysophosphatidylcholine content and the stability of a liposomal formulation. Current Pharmaceutical Analysis, v. 16, n. 5, p. 623-632, 2020.
  5. DE OLIVEIRA JUNIOR, Edilson Ribeiro et al. Nasal administration of nanoencapsulated geraniol/ursodeoxycholic acid conjugate: Towards a new approach for the management of Parkinson's disease. Journal of Controlled Release, v. 321, p. 540-552, 2020.
  6. DE OLIVEIRA JUNIOR, Edilson Ribeiro et al. Nose-to-brain drug delivery mediated by polymeric nanoparticles: Influence of PEG surface coating. Drug Delivery and Translational Research, v. 10, n. 6, p. 1688-1699, 2020.
  7. DE OLIVEIRA VIANA, Iara Maíra et al. Role of the complement cascade in the biological fate of liposomes in rodents. Nanoscale, v. 12, n. 36, p. 18875-18884, 2020.
  8. DOS SANTOS, Giselly Almeida et al. Besifloxacin liposomes with positively charged additives for an improved topical ocular delivery. Scientific Reports (Nature Publisher Group), v. 10, n. 1, 2020.
  9. GELFUSO, Guilherme M. et al. Iontophoresis enhances voriconazole antifungal potency and corneal penetration. International journal of pharmaceutics, v. 576, p. 118991, 2020.
  10. MENDANHA, Sebastião A. et al. Scalar field model applied to the lamellar to the inverse hexagonal phase transition in lipid systems. Communications in Nonlinear Science and Numerical Simulation, v. 91, p. 105446, 2020.
  11. RIBEIRO, Maycon Carvalho et al. Wound healing treatment using insulin within polymeric nanoparticles in the diabetes animal model. European Journal of Pharmaceutical Sciences, v. 150, p. 105330, 2020.
  12. SOUSA-JUNIOR, Ailton A. et al. Predictive model for delivery efficiency: Erythrocyte membrane-camouflaged magnetofluorescent nanocarriers study. Molecular Pharmaceutics, v. 17, n. 3, p. 837-851, 2020.
  13. TRUZZI, Eleonora et al. In vivo biodistribution of respirable solid lipid nanoparticles surface-decorated with a mannose-based surfactant: A promising tool for pulmonary tuberculosis treatment? Nanomaterials, v. 10, n. 3, p. 568, 2020.