Nano antioxidant serum ethanol extract lime peel (Citrus aurantifolia S.)
DOI:
https://doi.org/10.22219/farmasains.v7i2.35928Keywords:
Antioxidant, Nanoparticle, Lime peel, serumAbstract
Serum is a cosmetic that has received great attention from the industry, but the main challenges are appearance, transparency and public acceptance of herbal active ingredients. On the other hand, herbal cosmetics, such as those using lime peel, are also growing. This study aims to determine the antioxidant activity of lime peel made in a nano extract serum preparation. The method for making nano extracts uses ionic gelation with PSA (Particle Size Analyzer) and Zeta Potential characterization. The concentration of nano serum of lime peel ethanol extract used was 0.5%; 1%; and 3%. Meanwhile, the antioxidant activity testing method uses DPPH and data analysis applied one-way ANOVA then by Tukey test. The results of the nano extract serum formulation using organoleptic testing are transparent, thick and liquid, odorless, and feel moist on the skin. The results of nanoparticle characterization using PSA measurements with three replications were 295.1; 320.3; 385.4 nm and the results of testing the zeta potential of nanoparticles with three replications, namely 3.2; 3.4; 6.0mV. Furthermore, the results of the antioxidant activity test on the basis of the preparation formula are classified as weak (IC50 value of 156.22 μg/mL); Meanwhile, preparation formula with a concentration of 0.5%; 1%; 3% are considered very strong (IC50 value of 46.39 μg/mL; 41.06 μg/mL; 36.27 μg/mL). The results of data analysis consider significance of p value below 0.05. The conclusion is nano lime peel extract meets the requirements and the serum preparation meets the requirements and has antioxidant activity.
Downloads
References
Abdassah, M. (2017). Nanopartikel dengan gelasi ionik. Jurnal Farmaka, 15(1), 45–52.
Anggraeni, R. D., Wilda, A., Barlian, & Akhmad, A. (2021). Pengaruh Perbedaan Konsentrasi Kombinasi Ekstrak Etanol Daun Salam (Syzgium polyantum) dan Kulit Jeruk Nipis (Citrus aurantifolia Swingle) Terhadap Sifat Fisik Sediaan Gel Handsantizer. Politeknik Harapan Bersama, 1–7.
Anindita, R., Yolanda, H., & Inggraini, M. (2022). Skrining Fitokimia dan Uji Antibakteri Senyawa Ekstrak Etanol Kulit Jeruk Lemon ( Citrus limon ( L .) Osbeck ) Terhadap Staphylococcus aureus. Jurnal Bioshell, 11(2), 100–112. http://ejurnal.uij.ac.id/index.php/BIO
Antasionasti, I., Jayanto, I., Abdullah, S. S., & Siampa, J. P. (2020). Karakterisasi Nanopartikel Ekstrak Etanol Kayu Manis (Cinnamomum burmanii) Dengan Kitosan Sodium Tripolifosfat Sebagai Kandidat Antioksidan. Chemistry Progress, 13(2), 77–85.
Aprilia, C., Faisal, M., & Prasetya, F. (2022). Formulasi dan Optimasi Basis Serum Xanthan Gum dengan Variasi Konsentrasi. Proceeding of Mulawarman Pharmaceuticals Conferences, 15, 30–34.
Dayanti, E., Rachma, F. A., Saptawati, T., & Ovikariani, O. (2023). PENETAPAN PARAMETER SPESIFIK DAN NON SPESIFIK EKSTRAK ETANOL BIJI BUAH TREMBESI (samanea saman). BENZENA Pharmaceutical Scientific Journal, 1(02). https://doi.org/10.31941/benzena.v1i2.2390
Febriani, Y., Handayani Lubis, S., & Annisa, F. (2022). Formulasi Sediaan Serum Ekstrak Daun Sirih Merah (Piper crocatum Ruiz & Pav.) Sebagai Antioksidan Formulation Of Red Betel Leaf Extract Serum (Piper crocatum Ruiz & Pav.) As Antioxidant. Journal of Pharmaceutical and Sciences, 120–127.
Fikayuniar, L., Abriyani, E., & Februrohman, W. N. (2020). ISOLASI METABOLIT SEKUNDER FLAVONOID DARI BATANG RANDU (Ceiba pentandra L.). Pharma Xplore : Jurnal Ilmiah Farmasi, 5(1), 15–22. https://doi.org/10.36805/farmasi.v5i1.976
Handayani, R., & Qa, ariah, N. (2023). Formulasi Sediaan Serum Ekstrak Etanol Umbi Hati Tanah. Jurnal Farmasetis, 12(2), 227–236.
Hidayah, H., Kusumawati, A. H., Sahevtiyani, S., & Amal, S. (2021). Literature Review Article: Aktivitas Antioksidan Sediaan Serum Wajah Dari Bebagai Tanaman. Literatur Review Article … Journal of Pharmacopolium, 4(2), 75–80.
Izza Khilyatun. (2019). Skrining Fitokimia Pada Kulit Jeruk Nipis Diwilayah Tegal dan Pemalang. x.
Khasanah, I., Ulfah, M., & Sumantri. (2021). Uji Aktivitas Antipksidan Ekstrak Etanolik Kulit Buah Jeruk Nipis ( Citrus aurantifolia ) Dengan Metode DPPH. Jurnal Ilmu Farmasi Dan Farmasi Klinik, 11(2), 9–17.
Liza, Najiya Uswatun, Rohama, A. H. (2022). AKTIVITAS ANTIBAKTERI EKSTRAK AKAR JERUK NIPIS (Citrus aurantifolia)TERHADAP BAKTERI Staphylococcus aureus DAN Escherichia coli DENGAN METODE DILUSI Antibacterial Activity Of Lime (Citrus aurantifolia)Root Extract Against Staphylococcus aureus and Escheri. 10, 43–53.
Marlina, D. (2020). Formulasi Sediaan Gel Ekstrak Etanol Daun Senduduk ( Melastoma malabathricum L .) Terhadap Uji Ksestabilan Fisik dan Uji Aktivitas Antibakteri Pada Staphylococcus aureus. 15(2). https://doi.org/10.36086/jpp.v15i2.557
Muhtadi, M., Mugiyanto, E., Nizmah Fajriyah, N., S, S., Waznah, U., Bagus Pambudi, D., Fridiana, Safitri, E. D., & Rosyidand, F. N. (2023). Formulation and Evaluation of Topical Nano-Hydrogel of Zinc and Annona Muricata Extract. Indonesian Journal of Pharmacy, 34(2), 291–301. https://doi.org/10.22146/ijp.5788
Murdiana, H. E., Rahmavika, T., & Rawar, E. A. (2023). Formulasi Dan Uji Antioksidsan Serum Minyak Atsiri Kulit Buah Jeruk Nipis (Citrus aurantifolia) Variasi Vitamin E Metode DPPH. Jurnal Farmamedika (Pharmamedica Journal), 8(2), 209–219.
Nafisa, S., Swandiny, G.F., Gangga, E., Zaenudin, Y. A. (2021). Penapisan Fitokimia dan Uji Aktivitas Antimikroba Ekstrak Etanol Daun Jeruk Nipis (Citrus Aurantifolia) (Antimicrobial Activity and Phytochemical Screening of Citrus aurantifolia Leaves Ethanolic Extract. Jurnal Ilmu Kefarmasian Indonesia, 19(2), 287–291.
Ningrum, W. A., & Rahmatullah, S. (2020). Uji Aktivitas Antibakteri Ekstrak Etanol Daun Bidara (Ziziphus Mauritiana Lamm) Dalam Formulasi Sediaan Sabun Cair Sebagai Antiseptik Terhadap Bakteri Stapylococcus Aureus Atcc 25923. Medical Sains : Jurnal Ilmiah Kefarmasian, 5(1), 89–98. https://doi.org/10.37874/ms.v5i1.161
Ningsih, I.S., Chatri, M., Advinda, L., V. (2023). Flavonoid Active Compounds Found In Plants Senyawa Aktif Flavonoid yang Terdapat Pada Tumbuhan. Serambi Biologi, 8(2), 126–132.
Nurisyah, N. N., Asyikin, A., & Cartika, H. (2020). Aktivitas Antioksidan Krim Ekstrak Etil Asetat Kulit Jeruk Nipis (Citrus aurantifolia) Yang Ditetapkan Dengan Metode DPPH. Media Farmasi, 16(2), 215–221.
Nurjannah, I., Mustariani, B. A. A., & Suryani, N. (2022). SPIN JURNAL KIMIA & PENDIDIKAN KIMIA SKRINING FITOKIMIA DAN UJI ANTIBAKTERI EKSTRAK KOMBINASI DAUN JERUK PURUT (Citrus hystrix) DAN KELOR (Moringa oleifera L.) SEBAGAI ZAT AKTIF PADA SABUN ANTIBAKTERI. SPIN Jurnal Kimia & Pendidikan Kimia, 4(1), 23–36. https://doi.org/10.20414/spin.v4i1.4801
Permana, Andi, Nisa Nur Azizah, Shofia Difa Aulia, N. Y. (2022). Rekomendasi Terbaik 9 Jenis Tanaman Sebagai Bahan Dasar Zat Aktif Pembuatan Gel Serum Anti Jerawat. Gel Serum Anti Jerawat, 4(07), 1089–1100.
Pogaga, E., Yamlean, P. V. Y., & Lebang, J. S. (2020). Formulasi Dan Uji Aktivitas Antioksidan Ekstrak Etanol Daun Murbei (Morus alba L.) Menggunakan Metode DPPH (1,1-Diphenyl-2-Picrylhydrazyl). Pharmacon, 9(3), 349–356.
Prasetyaningrum, N., & Ardana, A. P. (n.d.). Pengaruh Gel Nanotransforme Ekstrak Jeruk Nipis (Citrus aurantifolia Swingle) Terhadap Ekspresi MMP-9 Pada Penyembuhan Luka Ulkus Tikus Wistar. Journal of Dentistry. 2023, 7(1), 725–740. http://dx.doi.org/10.21776/ub.eprodenta.2023.007.01.2
Putri, Ade Indriari, Agus Sundaryono, I. N. C. (2019). KARAKTERISASI NANOPARTIKEL KITOSAN EKSTRAK DAUN UBIJALAR (Ipomoea batatas L.) MENGGUNAKAN METODE GELASI IONIK. Alotrop, 2(2), 203–207.
Rizkayanti, R., Diah, A. W. M., & Jura, M. R. (2017). Uji Aktivitas Antioksidan Ekstrak Air dan Ekstrak Etanol Daun Kelor (Moringa Oleifera LAM). Jurnal Akademika Kimia, 6(2), 125–131.
Rohmani, S., & Kuncoro, M. A. A. (2019). Uji Stabilitas dan Aktivitas Gel Handsanitizer Ekstrak Daun Kemangi. Journal OfPharmaceutical Science and Clinical Research, 16–28. https://doi.org/10.20961/jpscr.v4i1.27212
Sari, A.N., Asri, M. T. (2022). Aktivitas Antibakteri Ekstrak Kulit Jeruk Nipis (Citrus aurantifolia) terhadap Pertumbuhan Bakteri Shigella dysenteriae Antibacterial Activity of Lime (Citrus aurantifolia) Peel Extract against Growth of Shigella dysenteriae. Jurnal Farmasi Indonesia, 11, 441–448.
Sari, D. Y., & Widyasari, R. (2023). Antioxidant Activity and Irritation Potency of Face Tonic Formulation from Ethanol Fraction of Sappan Wood (Caesalpinia sappan L.). Indonesian Journal of Pharmacy, 34(2), 261–271. https://doi.org/10.22146/ijp.4552
Setyawardhani, D. A., Saputri, C. M., & Ni’mah, N. (2021). Pembuatan dan Uji Organoleptik Hand Sanitizer dari Daun Mangga (Mangifera indica) dengan Metode Maserasi. Equilibrium Journal of Chemical Engineering, 4(1), 1–7.
Slamet, S., Waznah, U., & Yusrilia, Y. (2022). Antioxidant activities of extracts, methanol, and n-hexane partitions of cayenne pepper (Capsicum frutescens L.). Media Farmasi: Jurnal Ilmu Farmasi, 19(1), 9. https://doi.org/10.12928/mf.v19i1.19093
Sukmawaty, E., & Afni, N. (2019). Kadar Total Fenol Ekstrak Bekatul Sorgum ( Sorghum bicolor L .) Varietas Super 2. Prosiding Seminar Nasional Biodiversitas Indonesia, 42–47.
Sukweenadhi, J., Yunita, O., Setiawan, F., Kartini, Siagian, M. T., Danduru, A. P., & Avanti, C. (2020). Antioxidant activity screening of seven Indonesian herbal extract. Biodiversitas, 21(5), 2062–2067. https://doi.org/10.13057/biodiv/d210532
Sumule, A., Kuncahyo, I., & Leviana, F. (2020). Optimasi Carbopol 940 dan Gliserin dalam Formula Gel Lendir Bekicot (Achatina fulica Ferr) sebagai Antibakteri Staphylococcus aureus dengan Metode Simplex Lattice Design. PHARMACY: Jurnal Farmasi Indonesia (Pharmaceutical Journal of Indonesia), 17(1), 108–117.
Sutomo, S., Hasanah, N., Arnida, A., & Sriyono, A. (2021). Standardisasi Simplisia dan Ekstrak Daun Matoa (Pometia pinnata J.R Forst & G. Forst) Asal Kalimantan Selatan. Jurnal Pharmascience, 8(1), 101–110.
Thakre, A. D. (2017). 22 Formulation and Development of De Pigment Serum Incorporating Fruits Extract. International Journal of Innovative Science and Research Technology, 2(12), 330–382.
Veni Haqiqotun Najihah, Eko Mugiyanto, Y. W. P. (2018). Aktivitas Antioksidan, Total Fenol dan Total Flavonoid Tanaman Kedondong (Spondias dulcis Soland ex Park). Farmasains, 5(2), 61–67.
Wahid, A. R., & Safwan, S. (2020). Skrining Fitokimia Senyawa Metabolit Sekunder Terhadap Ekstrak Tanaman Ranting Patah Tulang (Euphorbia tirucalli L.). Lumbung Farmasi: Jurnal Ilmu Kefarmasian, 1(1), 24–27.
Wirasti., Rahmatullah St., Slamet., Permadi, Y.P., Agmarina, S. N. (2021). Pengujian Karakter Nanopartikel Metode Gelasi Ionik Ekstrak Dan Tablet Daun Afrika( Vernonia Testing Of Nanoparticle Ionic Gelation Method Of Extract And Tablet Of Afrika Leaf ( Vernonia Amygdalina Del .). Jurnal Wiyata, 8, 147–151.
Yuniarsih, N., & Haryani, A. (2022). Formulasi Dan Uji Stabilitas Fisik Serum Wajah Ekstrak Krokot (Portulaca oleracea Linn). Jurnal Buana Farma, 2(1), 6–10.
Downloads
Published
How to Cite
Issue
Section
License
Copyright (c) 2022 Putri Asabella Fortuna, Eko Mugiyanto, Urmatul Waznah, Khusna Santika Rahmasari
This work is licensed under a Creative Commons Attribution 4.0 International License.
Authors who publish with this journal agree to the following terms:
a. Authors retain copyright and grant the journal right of first publication with the work simultaneously licensed under a Creative Commons Attribution License that allows others to share the work with an acknowledgement of the work's authorship and initial publication in this journal.
b. Authors are able to enter into separate, additional contractual arrangements for the non-exclusive distribution of the journal's published version of the work (e.g., post it to an institutional repository or publish it in a book), with an acknowledgement of its initial publication in this journal.
c. Authors are permitted and encouraged to post their work online (e.g., in institutional repositories or on their website) prior to and during the submission process, as it can lead to productive exchanges, as well as earlier and greater citation of published work (See The Effect of Open Access).