FACE MIST FORMULATION OF CHRYSANTHEMUM INDICUM L. FLOWER ETHANOLIC EXTRACT, ANTIOXIDANT ASSAY, AND IN SILICO TOXICITY PREDICTION

Authors

DOI:

https://doi.org/10.22159/ijap.2025v17i2.52753

Keywords:

Face mist formulation, Chrysanthemum, toxicity prediction, in silico, antioxidant activity

Abstract

Objective: Chrysanthemum indicum Linné (L.) flower is one of the popular ornamental plants in Indonesia. It is known to contain antioxidants that are essential for protecting our skin from free radicals. The objective of this study is to perform an in silico toxicity prediction of Chrysanthemum indicum L. metabolites, to formulate the Chrysanthemum indicum L. flower ethanolic extract into a face mist preparation, and to analyze the effect of extract variations on the physical and chemical stability and antioxidant activity of face mist preparations.

Methods: The antioxidant activity was evaluated using the 2,2-diphenyl-1-picrylhydrazyl (DPPH) assay; toxicity prediction was performed with the pkCSM Website. The extract was formulated into face mist preparations with 0.4, 0.6, and 0.8% concentrations. Furthermore, the stability of the face mist preparations was assessed through the cycling test. Finally, the data results were analyzed using a two-way Analysis of Variance (ANOVA).

Results: The majority of the metabolites derived from Chrysanthemum indicum L.  were found to be non-toxic. All formulations of the face mist preparation were liquid, exhibiting a color range from yellowish-brown to dark yellowish-brown, and had a rose-like scent. The formulations met the requisite specifications of specific gravity, clarity, spray dispersibility, drying time, and pH. The IC50 values of face mist preparations were 87.75 ± 0.02 ppm (F1), 77.57 ± 0.02 ppm (F2), and 53.51 ± 0.03 ppm (F3). After completing the cycling test, a rise in IC50 values was observed, with the values increasing to 88.28 ± 0.04 ppm (F1), 79.74 ± 0.009 ppm (F2), and 56.94 ± 0.008 ppm (F3).

Conclusion: The extract concentration variation significantly affected the face mist preparation's clarity, pH, and antioxidant stability.

Downloads

Download data is not yet available.

References

Tejaputri NA, Arsianti A, Qorina F, Fithrotunnisa Q. Phytochemical analysis and antioxidant properties by dpph radical scavenger activity of Ruellia brittoniana flower. Int J App Pharm. 2019;24–8. doi: 10.22159/ijap.2019.v11s6.33531.

Husni A, Putra DR, Lelana IYB. Antioxidant activity of Padina sp. at various temperature and drying time. JPB Perikan. 2014 Nov 25;9(2):165–73. doi: 10.15578/jpbkp.v9i2.109.

Liu R, Mabury SA. Synthetic phenolic antioxidants: a review of environmental occurrence, fate, human exposure, and toxicity. Environ Sci Technol. 2020 Okt 6;54(19):11706–19. doi: 10.1021/acs.est.0c05077.

Dolongtelide JI, Fatimawali F, Tallei TE, Suoth EJ, Simbala HEI, Antasionasti I, Kalalo MJ. In vitro antioxidant activity of Chrysanthemum indicum flowers extract and its fraction. Malacca Pharmaceutics. 2023;1(2):43–7. doi: 10.60084/mp.v1i2.26.

Badan Pusat Statistik [Internet]. Produksi Tanaman Florikultura (Hias) 2021-2023. [updated 2024 Jun 10; cited 2023 Sep 24]. Available from: https://www.bps.go.id/id/statistics-table/2/NjQjMg==/produksi-tanaman-florikultura--hias-.html.

Shao Y, Sun Y, Li D, Chen Y. Chrysanthemum indicum L.: a comprehensive review of its botany, phytochemistry and pharmacology. Am J Chin Med. 2020 Jan 20;48(04):871–97. doi: 10.1142/S0192415X20500421.

Joo SY. Antioxidant activities of medicinal plant extracts. J. Korean Soc. Food Sci. Nutr. 2013;42(4):512–9.

Apristasari O, Yuliani SH, Rahmanto D, Srifiana Y. Famiku (face mist-ku) yang memanfaatkan ekstrak kubis ungu dan bengkuang sebagai antioksidan dan pelembab wajah [Famiku: Utilizing purple cabbage and jicama extracts as antioxidants and moisturizers]. Farmasains. 2018;5(2). Indonesian.

Wangsasaputra E, Prihandini S, Ginting CN, Chiuman L. Prediksi toksisitas in silico senyawa bioaktif daun kemangi (Ocimum sanctum L.) [In silico toxicity prediction of basil leaves (Ocimum sanctum L.)]. Damianus Journal of Medicine. 2023 Aug 31;22(2). doi: 10.25170/djm.v22i2.4634. Indonesian.

Departemen Kesehatan Republik Indonesia. Parameter standar umum ekstrak tumbuhan obat. 1st ed. Jakarta: Departemen Kesehatan Republik Indonesia; 2000. 17, 31 p.

Herliningsih H, Anggraini N. Formulasi facemist ekstrak etanol buah bengkuang (Pachyrhizus erosus (L.) Urb) dengan menggunakan pewarna alami saffron (Crocus sativus L.) [Formulation of a face mist using ethanol extract of jicama fruit (Pachyrhizus Erosus (L.) Urb) and natural saffron (Crocus sativus L.) coloring.]. Herbapharma: Journal of Herb Farmacological. 2021 Dec 31;3(2):48–55. Indonesian.

Kementerian Kesehatan Republik Indonesia. Farmakope Herbal Indonesia. 2nd ed. Jakarta: Kementerian Kesehatan Republik Indonesia; 2017. 257 p.

Sulistyarini I, Sari DA, Wicaksono TA. Skrining fitokimia senyawa metabolit sekunder batang buah naga (Hylocereus polyrhizus) [Phytochemical screening of secondary metabolites compounds of dragon fruit stem (Hylocereus polyrhizus)]. Jurnal Ilmiah Cendekia Eksakta. 2020;5(1):56–62. Indonesian.

Astarina N, Astuti K, Warditiani N. Skrining fitokimia ekstrak metanol rimpang bangle (Zingiber purpureum Roxb.) [Phytochemical screening of methanol extract of bangle rhizome (Zingiber purpureum Roxb.)]. Jurnal Farmasi Udayana. 2013;2(4). Indonesian.

Wahdaningsih S, Subagus W, Sugeng R, Retno M. Penetapan kadar fenolik total dan flavonoid total ekstrak metanol dan fraksi asetat kulit buah naga merah (Hylocereus polyrhizus (f.a.c.webwer) britton dan rose) [Determination of total phenolic and flavonoid content in methanol extract and acetate fraction of red dragon fruit peel (Hylocereus polyrhizus (f.a.c. webwer) britton and rose]. Jurnal Ilmiah Farmasi Universitas Sam Ratulangi. 2017;6(3):295–301. Indonesian.

Gulcin İ, Alwasel SH. DPPH radical scavenging assay. Processes. 2023 Jul 26;11(8):2248. doi: 10.3390/pr11082248.

Kurniawan A, Mumpuni E, Abdillah S. In silico molecular docking and toxicity studies of bioactive fucoidan compound from brown seaweed as potential of antihypertensive. Jurnal Farmasi Indonesia. 2022;19(1).

Aulena DN, Fitriyani D. Studi in silico enam senyawa dari Caesalpinia bonduc L. (Roxb.) untuk prediksi toksisitas dan interaksi pada reseptor 5jmy sebagai inhibitor enzim elastase [In silico study of six compounds from Caesalpinia bonduc L. (Roxb.) for toxicity prediction and interaction with 5jmy receptor as an elastase enzyme inhibitor]. Sainteks. 2022 Oct 25;19(2):199. doi: 10.30595/sainteks.v19i2.13532. Indonesian.

Rusdin A, Mohd Gazzali A, Ain Thomas N, Megantara S, Aulifa DL, Budiman A, Muchtaridi M. Advancing drug delivery paradigms: polyvinyl pyrolidone (pvp)-based amorphous solid dispersion for enhanced physicochemical properties and therapeutic efficacy. Polymers (Basel). 2024 Jan 20;16(2):286. doi: 10.3390/polym16020286.

Dréno B, Zuberbier T, Gelmetti C, Gontijo G, Marinovich M. Safety review of phenoxyethanol when used as a preservative in skin cares. J. Eur. Acad. Dermatol. Venereol. 2019 Nov 7;33(S7):15–24. doi: 10.1111/jdv.15944.

Yulianti D, Herawati MM. Produksi enzim pektinase dari limbah kulit pisang oleh kapang Aspergillus niger dan aplikasinya terhadap klarifikasi minuman fungsional jahe lemon [Production of pectinase enzyme from banana peel waste by Aspergillus niger fungus and its application in clarifying lemon ginger functional drink]. Jurnal Teknologi dan Industri Pertanian Indonesia. 2020;12(2):86–92. Indonesian.

Fitriansyah S, Wirya S, Hermayanti C. Formulation and evaluation of antiacne spray gel from ethyl acetate fraction of shoot green tea leaf (Camelia sinensis [L.] Kuntze). Pharmacy. 2016;13(2):202–16.

Ermawati DE, Yugatama A, Ramadhani BR, Pertiwi I, Rosikhoh A, Novachiria SR. Stability and antibacterial activity test of nanosilver biosynthetic hydrogel. Int. J. Appl. Pharm. 2022 Mar 1;14(2):221–6. doi: 10.22159/ijap.2022v14i2.43584.

Vo Q V., Nam PC, Thong NM, Trung NT, Phan CTD, Mechler A. Antioxidant motifs in flavonoids: o–h versus c–h bond dissociation. ACS Omega. 2019 May 31;4(5):8935–42. doi: 10.1021/acsomega.9b00677.

Lisyanti F, Budi S, Zulfadhilah M. Formulation test of preparations face mist combination of pomegranate peel extract and mangosteen peel as an antioxidants. Journal of Advances in Medicine and Pharmaceutical Sciences. 2022 Oct 3;1(1):15–22.

Published

27-12-2024

How to Cite

NOVIANI, Y., HANANDHIETA, A., & MUMPUNI, E. (2024). FACE MIST FORMULATION OF CHRYSANTHEMUM INDICUM L. FLOWER ETHANOLIC EXTRACT, ANTIOXIDANT ASSAY, AND IN SILICO TOXICITY PREDICTION. International Journal of Applied Pharmaceutics, 17(2). https://doi.org/10.22159/ijap.2025v17i2.52753

Issue

Section

Original Article(s)

Most read articles by the same author(s)