Original ArticleJournal of Young PharmacistsVol. 10 | Issue 2s | 2018 | pp. S11–S15Open access
Comparison of the Characteristics of Transfersomes and Protransfersomes Containing Azelaic Acid
- 1*,
- 1,
- 1
- 1 Faculty of Pharmacy, Universitas Indonesia, Depok 16424 West Java, INDONESIA.
Published in Journal of Young Pharmacists
Correspondence: Iskandarsyah I
Faculty of Pharmacy, Universitas Indonesia, Depok 16424 West Java, INDONESIA.
Email: aya_2803@yahoo.com
Copyright: © 2018 Manuscript Technomedia. This is an open access article.
- Published:
- Jul 18, 2018
- Received:
- Dec 21, 2017
- Accepted:
- Mar 12, 2018
How to cite
I, I., Rahmi, A. D., & Pangesti, D. M. (2018). Comparison of the Characteristics of Transfersomes and Protransfersomes Containing Azelaic Acid. Journal of Young Pharmacists, 10(2s), S11–S15. https://doi.org/10.5530/jyp.2018.2s.3
Abstract
Objectives: Recently developed agent carriers, transfersomes, which are sufficiently deformable to penetrate into or across the skin barrier. Protransfersome is the lyophilization of transfersome by removing the water system with freeze-drying method to improve the protransfersome characterizations, especially entrapment efficiency. The aim of this study was to comparethe characteristics ofazelaic acid transfersomes and protransfersomes. Materials and Methods: Transfersome was prepared by thin layer hidration method. Protransfersome was prepared by freeze-drying method and trehalose as lyoprotectant. The characterizations that measured were entrapment efficiency, morphological structure, particel size, and zeta potential. Results: The result of Transfersome particel size characterization, pointed out measurement with 89,06 nm. Whereas, after freeze- drying process, Protransfersome A has 735 nm, Protransfersome B has 1218 nm, and Protransfersome C has723,1 nm. There are excalations from 40,98% of entrapment efficiency after freeze-drying process, Protransfersome A with percentage 45,20%, Protransfersome B with percentage 45,65%, and Protransfersome C with percentage 52,90%. The spheric vesicle morphology of transfersome and protransfersomes is determined by transmission electron microscope. Conclusion: Protransfersomes have a better stability in entrapment efficiency by using trehalose or no trehalose with indirect cooling rate within 4 weeks of storage period.
Key message: There has been no research yet that compares the stability of azelaic acid transfersome to protransfersome of azelaic acid which uses freeze-drying method with three different steps, which are fast-freezing trehalose step, slow-freezing trehalose step, and slow-freezing step without trehalose.
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Article metadata
| Title | Comparison of the Characteristics of Transfersomes and Protransfersomes Containing Azelaic Acid |
|---|---|
| Authors | Iskandarsyah I; Aulia Dwi Rahmi; Dwita Medya Pangesti |
| Affiliations | Faculty of Pharmacy, Universitas Indonesia, Depok 16424 West Java, INDONESIA. |
| Corresponding author | aya_2803@yahoo.com |
| Journal | Journal of Young Pharmacists |
| Volume / Issue | Vol. 10, Issue 2s (2018) |
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