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Design and characterization of propolis extract loaded self-nano emulsifying drug delivery system as immunostimulant

This current study aims to optimize, characterize, and observe the stability of the self-nano emulsifying drug delivery system (SNEDDS) of propolis extract (PE) for improving the immune response. Optimization of the selected composition of SNEDDS was conducted using a D-optimal mixture design. SNEDD...

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Autores principales: Fitria, Annisa, Hanifah, Suci, Chabib, Lutfi, Uno, Adnan Muhammad, Munawwarah, Hodijatul, Atsil, Nur, Pohara, Hendry Aditya, Weuanggi, Dwi Amalia, Syukri, Yandi
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8233540/
https://www.ncbi.nlm.nih.gov/pubmed/34194270
http://dx.doi.org/10.1016/j.jsps.2021.04.024
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author Fitria, Annisa
Hanifah, Suci
Chabib, Lutfi
Uno, Adnan Muhammad
Munawwarah, Hodijatul
Atsil, Nur
Pohara, Hendry Aditya
Weuanggi, Dwi Amalia
Syukri, Yandi
author_facet Fitria, Annisa
Hanifah, Suci
Chabib, Lutfi
Uno, Adnan Muhammad
Munawwarah, Hodijatul
Atsil, Nur
Pohara, Hendry Aditya
Weuanggi, Dwi Amalia
Syukri, Yandi
author_sort Fitria, Annisa
collection PubMed
description This current study aims to optimize, characterize, and observe the stability of the self-nano emulsifying drug delivery system (SNEDDS) of propolis extract (PE) for improving the immune response. Optimization of the selected composition of SNEDDS was conducted using a D-optimal mixture design. SNEDDS was prepared by loading 150 mg/mL of PE in oil, surfactant, and cosurfactant phases. The thermodynamic stability test was carried out with phase separation parameters followed by the robustness to dilution and accelerated stability test. The immunostimulant activity was examined in vitro and in vivo by determining the phagocytic activity, cell proliferation, production of nitrite oxide levels of RAW 264.7 cells, phagocytic activity of macrophages, and the number of leukocytes, neutrophils, and lymphocytes. The formula optimization showed that the formula containing Capryol-90, Cremophor RH40, and PEG 400 at a ratio of 30: 34: 36 was optimum. The verification response of the optimum formula with drug loading showed that the transmittance, droplet size, and zeta potential were 96.90 ± 0.00%, 28.7 ± 1.20 nm, and −56.5 ± 2.05 mV, respectively. The thermodynamic stability test and robustness to dilution did not find any separation phase. The accelerated stability test results were classified as stable. The in vitro and in vivo immunostimulant activity test showed that PE-loaded SNEDDS exhibited a higher immunostimulant effect than PE. In conclusion, the optimum and stable composition of PE loaded SNEDDS was found with a simple and accurate method using the D-Optimal mixture design and demonstrated an immunostimulant activity.
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spelling pubmed-82335402021-06-29 Design and characterization of propolis extract loaded self-nano emulsifying drug delivery system as immunostimulant Fitria, Annisa Hanifah, Suci Chabib, Lutfi Uno, Adnan Muhammad Munawwarah, Hodijatul Atsil, Nur Pohara, Hendry Aditya Weuanggi, Dwi Amalia Syukri, Yandi Saudi Pharm J Original Article This current study aims to optimize, characterize, and observe the stability of the self-nano emulsifying drug delivery system (SNEDDS) of propolis extract (PE) for improving the immune response. Optimization of the selected composition of SNEDDS was conducted using a D-optimal mixture design. SNEDDS was prepared by loading 150 mg/mL of PE in oil, surfactant, and cosurfactant phases. The thermodynamic stability test was carried out with phase separation parameters followed by the robustness to dilution and accelerated stability test. The immunostimulant activity was examined in vitro and in vivo by determining the phagocytic activity, cell proliferation, production of nitrite oxide levels of RAW 264.7 cells, phagocytic activity of macrophages, and the number of leukocytes, neutrophils, and lymphocytes. The formula optimization showed that the formula containing Capryol-90, Cremophor RH40, and PEG 400 at a ratio of 30: 34: 36 was optimum. The verification response of the optimum formula with drug loading showed that the transmittance, droplet size, and zeta potential were 96.90 ± 0.00%, 28.7 ± 1.20 nm, and −56.5 ± 2.05 mV, respectively. The thermodynamic stability test and robustness to dilution did not find any separation phase. The accelerated stability test results were classified as stable. The in vitro and in vivo immunostimulant activity test showed that PE-loaded SNEDDS exhibited a higher immunostimulant effect than PE. In conclusion, the optimum and stable composition of PE loaded SNEDDS was found with a simple and accurate method using the D-Optimal mixture design and demonstrated an immunostimulant activity. Elsevier 2021-06 2021-05-01 /pmc/articles/PMC8233540/ /pubmed/34194270 http://dx.doi.org/10.1016/j.jsps.2021.04.024 Text en © 2021 The Author(s) https://creativecommons.org/licenses/by-nc-nd/4.0/This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Original Article
Fitria, Annisa
Hanifah, Suci
Chabib, Lutfi
Uno, Adnan Muhammad
Munawwarah, Hodijatul
Atsil, Nur
Pohara, Hendry Aditya
Weuanggi, Dwi Amalia
Syukri, Yandi
Design and characterization of propolis extract loaded self-nano emulsifying drug delivery system as immunostimulant
title Design and characterization of propolis extract loaded self-nano emulsifying drug delivery system as immunostimulant
title_full Design and characterization of propolis extract loaded self-nano emulsifying drug delivery system as immunostimulant
title_fullStr Design and characterization of propolis extract loaded self-nano emulsifying drug delivery system as immunostimulant
title_full_unstemmed Design and characterization of propolis extract loaded self-nano emulsifying drug delivery system as immunostimulant
title_short Design and characterization of propolis extract loaded self-nano emulsifying drug delivery system as immunostimulant
title_sort design and characterization of propolis extract loaded self-nano emulsifying drug delivery system as immunostimulant
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8233540/
https://www.ncbi.nlm.nih.gov/pubmed/34194270
http://dx.doi.org/10.1016/j.jsps.2021.04.024
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