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http://repository.ipb.ac.id/handle/123456789/157209| Title: | Formulasi dan Enkapsulasi Nanoemulsi Minyak Atsiri Serai Wangi (Cymbopogon nardus) dan Potensinya sebagai Antifungi Ganoderma boninense. |
| Other Titles: | Formulation and Nanoemulsion Encapsulation of Citronella (Cymbopogon nardus) Essential Oil and Its Potential as an Antifungal for Ganoderma boninense. |
| Authors: | Safira, Ukhradiya Magharaniq Ambarsari, Laksmi Hakim, Muhammad Dzikril |
| Issue Date: | 2024 |
| Publisher: | IPB University |
| Abstract: | Minyak atsiri pada serai wangi diduga memiliki aktivitas antifungi terhadap Ganoderma boninense. Namun, minyak atsiri merupakan campuran senyawa yang bersifat volatil dan tidak larut dalam air. Penelitian ini bertujuan menguji kemampuan minyak atsiri serai wangi dalam bentuk enkapsulat nanoemulsi sebagai antifungi G. boninense. Nanoemulsi minyak atsiri serai wangi dibuat menggunakan kombinasi dua metode yaitu teknik energi rendah dan teknik energi tinggi serta dilakukan enkapsulasi dengan teknik spray drying. Efisiensi penjerapan dilakukan dengan menghitung kadar total oil dan surface oil. Aktivitas antifungi diuji dengan metode modified dual culture assay. Hasil penelitian menunjukkan formulasi terbaik nanoemulsi adalah dengan penambahan tween 80 sebesar 100% dari fase organik. Nanoemulsi memiliki ukuran sebesar 102,0±25,7 nm dengan indeks polidispersitas sebesar 0,330. Enkapsulasi memiliki rendemen sebesar 51,92% serta efisiensi enkapsulasi sebesar 49,65 %. Aktivitas antifungi enkapsulat minyak atsiri memiliki nilai Percentage of Inhibition of Radial Growth sebesar 54,44% The essential oil in citronella was thought to have antifungal activity against Ganoderma boninense, however the essential oil was a mixture of compounds that are volatile and insoluble in water. This research aims to test the ability of citronella essential oil in nanoemulsion encapsulate form as an antifungal for G. boninense. Citronella essential oil nanoemulsion was made using a combination of two methods, namely low-energy and high-energy techniques, and encapsulation was carried out using spray drying technique. Adsorption efficiency was calculated by calculating the total oil and surface oil levels. Antifungal activity was tested using the modified dual culture assay method. The research results showed that the best formulation for nanoemulsion was with the addition of Tween 80 at 100% of the organic phase. The nanoemulsion has a size of 102.0 ± 25.7 nm with a polydispersity index of 0.330. Encapsulation has a yield of 51.92% and an encapsulation efficiency of 49,65%. The antifungal activity of essential oil encapsulates has a Percentage of Inhibition of Radial Growth value of 54,44%. |
| URI: | http://repository.ipb.ac.id/handle/123456789/157209 |
| Appears in Collections: | UT - Biochemistry |
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| File | Description | Size | Format | |
|---|---|---|---|---|
| cover_G8401201012_b911a8eaf0d24c59b20bed90b36b116a.pdf | Cover | 358.64 kB | Adobe PDF | View/Open |
| fulltext_G8401201012_073226cbfbb54534acccd3b4fe2ab8fb.pdf Restricted Access | Fulltext | 886.22 kB | Adobe PDF | View/Open |
| lampiran_G8401201012_f7cda113eb154780833cf1b440cf54ce.pdf Restricted Access | Lampiran | 790.81 kB | Adobe PDF | View/Open |
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