BACKGROUND: The encapsulated essential oils (EOs) of Piper aduncum L. and Piper hispidinervum C. DC. in gelatin nanoparticles were evaluated against Aedes aegypti Linn., Tetranychus urticae Koch and Cerataphis lataniae Boisd. RESULTS: Encapsulation efficiency of the EOs was measured for absolute concentrations of 500 µg mL-1 (79.2 and 72.7%) and 1000 µg mL-1 (84.5 and 82.2%). The loaded nanoparticles were nearly spherical and well dispersed. The nanoparticles loaded with P. hispidinervum EO had an average size of 100 ± 2 nm, while the nanoparticles containing P. aduncum EO ranged from 175 ± 4 to 220 ± 4 nm. According to zeta potential analysis, the nanoparticles loaded with P. hispidinervum and P. aduncum EOs presented values around -43.5 ± 3 and -37.5 ± 2 mV respectively. The controlled release of EOs was described by the anomalous mechanism of Korsmeyer-Peppas. Both encapsulated EOs reached lethal dosages within 24 h of exposure and total mortality of the tested pests. CONCLUSION: The present work successfully developed gelatin-based nanoparticles that served as carriers for the EOs of P. aduncum and P. hispidinervum to be applied as a sustainable control tool of A. aegypti, T. urticae and C. lataniae. The developed loaded nanoparticles presented high encapsulation efficiency and EO concentration release higher than lethal dosages. This indicates that it is feasible to use gelatin-based nanoparticles loaded with P. aduncum and P. hispidinervum EOs to control the tested pests.
BACKGROUND: The encapsulated essential oils (EOs) of Piper aduncum L. and Piper hispidinervum C. DC. in gelatin nanoparticles were evaluated against Aedes aegypti Linn., Tetranychus urticae Koch and Cerataphis lataniae Boisd. RESULTS: Encapsulation efficiency of the EOs was measured for absolute concentrations of 500 µg mL-1 (79.2 and 72.7%) and 1000 µg mL-1 (84.5 and 82.2%). The loaded nanoparticles were nearly spherical and well dispersed. The nanoparticles loaded with P. hispidinervum EO had an average size of 100 ± 2 nm, while the nanoparticles containing P. aduncum EO ranged from 175 ± 4 to 220 ± 4 nm. According to zeta potential analysis, the nanoparticles loaded with P. hispidinervum and P. aduncum EOs presented values around -43.5 ± 3 and -37.5 ± 2 mV respectively. The controlled release of EOs was described by the anomalous mechanism of Korsmeyer-Peppas. Both encapsulated EOs reached lethal dosages within 24 h of exposure and total mortality of the tested pests. CONCLUSION: The present work successfully developed gelatin-based nanoparticles that served as carriers for the EOs of P. aduncum and P. hispidinervum to be applied as a sustainable control tool of A. aegypti, T. urticae and C. lataniae. The developed loaded nanoparticles presented high encapsulation efficiency and EO concentration release higher than lethal dosages. This indicates that it is feasible to use gelatin-based nanoparticles loaded with P. aduncum and P. hispidinervum EOs to control the tested pests.
Authors: Larissa Medeiros de Oliveira; Robert Saraiva Matos; Ştefan Ţălu; Ana Luisa Farias Rocha; Ronald Zico de Aguiar Nunes; Jaqueline de Araújo Bezerra; Pedro Henrique Campelo Felix; Natália Mayumi Inada; Edgar Aparecido Sanches; Henrique Duarte da Fonseca Filho Journal: Materials (Basel) Date: 2022-04-03 Impact factor: 3.623
Authors: Ana Luisa Farias Rocha; Ronald Zico de Aguiar Nunes; Robert Saraiva Matos; Henrique Duarte da Fonseca Filho; Jaqueline de Araújo Bezerra; Alessandra Ramos Lima; Francisco Eduardo Gontijo Guimarães; Ana Maria Santa Rosa Pamplona; Cláudia Majolo; Maria Geralda de Souza; Pedro Henrique Campelo; Ştefan Ţălu; Vanderlei Salvador Bagnato; Natalia Mayumi Inada; Edgar Aparecido Sanches Journal: Nanomaterials (Basel) Date: 2022-08-07 Impact factor: 5.719
Authors: Sidney Gomes Azevedo; Ana Luisa Farias Rocha; Ronald Zico de Aguiar Nunes; Camila da Costa Pinto; Ştefan Ţălu; Henrique Duarte da Fonseca Filho; Jaqueline de Araújo Bezerra; Alessandra Ramos Lima; Francisco Eduardo Gontijo Guimarães; Pedro Henrique Campelo; Vanderlei Salvador Bagnato; Natalia Mayumi Inada; Edgar Aparecido Sanches Journal: Materials (Basel) Date: 2022-08-05 Impact factor: 3.748
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