POTENSI HIDROSOL SEREH WANGI SEBAGAI SPF (SUN PROTECTION FACTOR) DALAM SEDIAAN LOTION MIKROEMULGEL

Authors

  • Ester Dwi Antari Politeknik Indonusa Surakarta
  • Vania Santika Putri Politeknik Indonusa Surakarta
  • Arum Asih Winarni Politeknik Indonusa Surakarta
  • Muhammad Syahrul Afianto Politeknik Indonusa Surakarta

DOI:

https://doi.org/10.36387/jiis.v9i1.1718

Keywords:

Hydrosol, Lotion, Microemulge, Lemongrass, SPF (Sun Protection Factor)

Abstract

The inclusion of sunscreen in cosmetic products is widely used globally in the cosmetics industry as it ensures adequate protection against harmful UV rays. This sunscreen product can be packaged into emulsion, cream, gel, and lotion. Cymbopogon nardus hydrosol is a by-product of the distillation of essential oils. This hydrosol is often unused and is simply thrown away, causing new environmental problems. Cymbopogon nardus hydrosol still has the properties of Cymbopogon nardus essential oil as an antioxidant with an IC50 value of 9,322 ppm which is included in the very strong antioxidant category.

Cymbopogon nardus hydrosol was made using the water distillation method, then microemulgel lotion was made and physical tests were carried out on the microemulgel lotion. Hydrosol and microemulgel lotion were measured for SPF values.

The research results showed that Cymbopogon nardus hydrosol and Cymbopogon nardus microemulgel lotion preparations had SPF values ​​in the ultra category. The higher the SPF value, the better it will protect the skin from the bad effects of UV radiation, one of which is skin cancer. Antioxidants are able to reduce superoxide through the formation of hydroperoxide intermediates so that they can prevent biomolecular damage by free radicals. The microemulgel preparation was stable in the Cycling stability test.

References

Antari, E. D., Nafisah, U., Eka, W., Dewi, R., & Muna, K. (2023). Uji Aktivitas Antioksidan pada Hidrosol Sereh Wangi (Cymbopogon nardus). Jurnal Pharmascience 288 Jurnal Pharmascience, 10(2), 288–295. https://ppjp.ulm.ac.id/journal/index.php/pharmascience

Apridamayanti, P., Sari, R., & Pratiwi, L. (2022). Quantitative analysis study on marker compound in crude extract and polar fraction of Melastoma malabathricum L. with reversed-phase high-performance liquid chromatography and determination of antioxidant activity and sun protection factor value as natural resources for cosmetics. Journal of Applied Pharmaceutical Science. https://doi.org/10.7324/japs.2022.121105

Cahyani, A. S., & Erwiyani, A. R. (2021). Formulasi dan Uji Sun Protection Factor (SPF) Sediaan Krim Ekstrak Etanol 70% Daging Buah Labu Kuning (Curcubita Maxima Durch) Secara In Vitro Formulation and Test of Sun Protection Factor (SPF) Preparation of Ethanol Extract Cream 70% Flesh Pumpkin (Cucurbita Maxima Durch) In Vitro.

Febriyenti, Putri, R. F., & Suharti, N. (2019). Formulation and Evaluation of Patchouli Oil Gel for Burn Wound. In Jurnal Sains Farmasi & Klinis | (Vol. 06, Issue 03).

Frisma Sriarumtias, F., Aldizal Mahendra Rizkio Syamsudin, R., Ummah, L., Fauzi Abdillah, F., & Kunci, K. (2022). FORMULASI DAN KARAKTERISASI MIKROEMULGEL ETIL P-METOKSISINAMAT (EPMS) DARI RIMPANG KENCUR (Kaempferia galanga Linn) FORMULATION AND CHARACTERIZATION OF MICROEMULGEL ETHYL P-METHOXYCINNAMATE (EPMS) FROM THE RHIZOME OF KENCUR (Kaempferia galanga Linn) (Vol. 7, Issue 1).

Irawati, S. P., Rahmawanty, D., & Fitriana, M. (2017). Karakterisasi Mikroemulsi Minyak Nilam (Pogostemon cablin Benth.) Dengan Pembawa Virgin Coconut Oil (VCO), Polisorbat 80, dan Sorbitol. Jurnal Pharmascience, 04(01), 109–115. http://jps.unlam.ac.id/

Kushwah, P., Kumar Sharma, P., S Koka, S., Gupta, A., Sharma, R., & Darwhekar, G. N. (2021). Microemulgel: a novel approach for topical drug delivery. Journal of Applied Pharmaceutical Research, 9(3), 14–20. https://doi.org/10.18231/j.joapr.2021.v9.i3.14-20

Majeed, M., Majeed, S., Jain, R., Mundkur, L., Rajalakshmi, H. R., Lad, P., & Neupane, P. (2020). A randomized study to determine the sun protection factor of natural pterostilbene from pterocarpus marsupium. Cosmetics, 7(1). https://doi.org/10.3390/COSMETICS7010016

Mota, M. D., da Boa Morte, A. N., Silva, L. C. R. C. e., & Chinalia, F. A. (2020). Sunscreen protection factor enhancement through supplementation with Rambutan (Nephelium lappaceum L) ethanolic extract. Journal of Photochemistry and Photobiology B: Biology, 205. https://doi.org/10.1016/j.jphotobiol.2020.111837

Nopiyanti, V., & Aisiyah, S. (2020). UJI PENENTUAN NILAI SPF (Sun Protection Factor) FRAKSI BUNGA ROSELA (Hibiscus Sabdariffa L.) SEBAGAI ZAT AKTIF TABIR SURYA Determination of sun protection factor (SPF) on fractionated extract of Rosela (Hibiscus Sabdariffa L.) as sunscreen active agent. In Journal of Pharmacy (Vol. 9, Issue 1).

Olayemi, O., Okoh, J., Gbate, M. A., Emeje, M., Isimi, C., & Ekere, K. (2017). Determination of sun protection factor number: an emerging in-vitro tool for predicting UV protection capabilities. International Journal of Herbal Medicine, 5(1), 6–9.

Pokhrel, S., Shrestha, S., Sharma, S., Manandhar, M., & Alam, I. (2017). FORMULATION AND EVALUATION OF TOPICAL MICROEMULGEL LOADED WITH TERBINAFINE HCL MICROEMULSION. International Journal of Pharmaceutical Sciences and Research, 8(11), 4716–4723. https://doi.org/10.13040/IJPSR.0975-8232.8(11).4716-23

Putranti, W., Maulana, A., & Fatimah, S. F. (2019). Formulasi Emulgel Ekstrak Bawang Putih (Allium sativum L.). Jurnal Sains Farmasi & Klinis, 6(1), 7. https://doi.org/10.25077/jsfk.6.1.7-15.2019

Rahmawati, Muflihunna, A., & Amalia, M. (2018). ANALISIS AKTIVITAS PERLINDUNGAN SINAR UV SARI BUAH SIRSAK (Annona muricata L.) BERDASARKAN NILAI SUN PROTECTION FACTOR (SPF) SECARA SPEKTROFOTOMETRI UV-VIS. In Jurnal Fitofarmaka Indonesia (Vol. 5, Issue 2). www.jurnal.farmasi.umi.ac.id/index.php/fitofarmakaindonesia

Sari, K. P., Fadraersada, J., Prasetya, F., Penelitian, L., Kefarmasian, P., & Tropis, F. (2020). Karakteristik Gel Sariawan Ekstrak Daun Sirih Hitam sebagai Antimikroba dengan Variasi Konsentrasi Carbopol. https://doi.org/10.25026/mpc.v11i1.395

Shabrina, A., Pratiwi, A. R., & Muurukmihadi, M. (2020). Stabilitas Fisik Dan Antioksidan Mikroemulsi Minyak Nilam Dengan Variasi Tween 80 Dan PEG 400. Media Farmasi, 16(2), 185. https://doi.org/10.32382/mf.v16i2.1720

Sriarumtias, F. F., Najihudin, A., Putri, I. R., Akmal, A., & Hamdani, S. (2019). Microemulgel formulation of Kepok banana peel extract (Musa paradisiaca L) as an antioxidant. Journal of Physics: Conference Series, 1402(5). https://doi.org/10.1088/1742-6596/1402/5/055090

Sulastri, E., Cristadeolia, O., & Yusriadi. (2015). Formulasi Mikroemulsi Ekstrak Bawang Hutan dan Uji Aktivitas Antioksidan. Jurnal Pharmascience, 2(2), 1–14.

Vanti, G., Grifoni, L., Bergonzi, M. C., Antiga, E., Montefusco, F., Caproni, M., & Bilia, A. R. (2021). Development and optimisation of biopharmaceutical properties of a new microemulgel of cannabidiol for locally-acting dermatological delivery. International Journal of Pharmaceutics, 607. https://doi.org/10.1016/j.ijpharm.2021.121036

Published

2024-03-31

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Section

Article

How to Cite

POTENSI HIDROSOL SEREH WANGI SEBAGAI SPF (SUN PROTECTION FACTOR) DALAM SEDIAAN LOTION MIKROEMULGEL. (2024). Jurnal Ilmiah Ibnu Sina, 9(1), 160-169. https://doi.org/10.36387/jiis.v9i1.1718

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