Formulation of Wound Healing Hydrogel from 70% Ethanol Extract of Kelakai Roots (Stenochlaena palustris (Burm. F.) Bedd) with Polymer Combination of PVA/HPMC

Dyera Forestryana, Shilpa Pebrianie, Hafiz Ramadhan, Ratna Restapaty

Abstract


Kelakai root contains alkaloids, saponins, tannins, and flavonoids. This compound is known to have medicinal properties such as wound healing. The effectiveness of wound healing increased by using hydrogel to deliver the active substance. The use of polymers played a role in delivering the active substance. This study aimed to formulate hydrogels for wound healing with various concentrations of polyvinyl alcohol (PVA) and hydroxy propyl methyl cellulose (HPMC) K4M. Preparation of hydrogel by the solvent casting method used 0.2% Kelakai root extract. The physical characteristics of hydrogel investigated before and after the stability test included organoleptic, weight uniformity, thickness, pH, moisture content, and hedonic test of Kelakai roots extract hydrogel.  The optimum formula was tested for wound healing activity. The data obtained were then analyzed using Wilcoxon testswith p<0.05 considered significant. Physically, Kelakai root extract hydrogel met the test requirements. The results of the wound-healing activity showed that the hydrogel extract of the Kelakai root was able to heal the wounds within seven days. There was a significant difference in wound healing time with p=0.014. The optimum formula obtained based on the stability test was F4 with a 1:4 ratio of PVA and HPMC. 

Keywords


Antioxidant; Hydrogel; Kelakai Root; PVA/HPMC; Wound healing

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References


Adawiyah, R., & Rizki, M. I. 2018. Aktivitas Antioksidan Ekstrak Etanol Akar Kalakai (Stenochlaena palustris Bedd) Asal Kalimantan Tengah. Jurnal Pharmascience, 5(1). http://dx.doi.org/10.20527/jps.v5i1.5788

Ahmed, AS., Taher, M., Mandal, UK., Jaffri, JM., Susanti, D., Mahmood, S., & Zakaria, ZA. (2019). Pharmacological properties of Centella asiatica hydrogel in accelerating wound healing in rabbits. BMC complementary and alternative medicine, 19(1), 1-7. https://doi.org/10.1186/s12906-019-2625-2

Baghaie, S., Khorasani, MT., Zarrabi, A., & Moshtaghian, J. 2017. Wound healing properties of PVA/starch/chitosan hydrogel membranes with nano Zinc oxide as antibacterial wound dressing material. Journal of Biomaterials Science, Polymer Edition, 28(18), 2220-2241.

Fahruni, F., Handayani, R., & Novaryatiin, S. 2018. Potensi Tumbuhan Kelakai (Stenochlaena palustris (Burm. F.) Bedd.) asal Kalimantan Tengah sebagai Afrodisiaka. Jurnal Surya Medika (JSM), 3(2), 144-153. https://doi.org/10.33084/jsm.v3i2.114

Fitriyani, A., Winarti, L., Muslichah, S., & Nuri, N. 2011. Anti-inflammatory Activityy of Piper crocatum Ruiz & Pav. Leaves metanolic extract in rats. Majalah Obat Tradisional, 16(1), 34-42. https://doi.org/10.22146/tradmedj.8020

Forestryana, D., Putri, AN., & Liani, NA. 2020. Pengembangan Formula Masker Gel Peel Off Ekstrak Etanol 70% Akar Kelakai (Stenochlaena palustris (Burn. F) Bedd.). Farmasains: Jurnal Ilmiah Ilmu Kefarmasian, 7(1), 1-5. https://doi.org/10.22236/farmasains.v7i1.4423.

Huang, J., Chen, M., Zhou, Y., Li, Y., & Hu, Y. 2020. Functional characteristics improvement by structural modification of hydroxypropyl methylcellulose modified polyvinyl alcohol films incorporating roselle anthocyanins for shrimp freshness monitoring. International Journal of Biological Macromolecules, 162, 1250-1261 https://doi.org/10.1016/j.ijbiomac.2020.06.156

Jamshidi, M., Shabani, E., Hashemi, Z., & Ebrahimzadeh, MA. 2014. Evaluation of three methods for the extraction of antioxidants from leaf and aerial parts of Lythrum salicaria L.(Lythraceae). International food research Journal, 21(2).

Jayaprakash, S., Mohamed Halith, S., Firthouse, PM., & Nagarajan, Y. M. 2010. Preparation and evaluation of celecoxib transdermal patches. Pakistan journal of pharmaceutical sciences, 23(3).

Jhawat, V. C., Saini, V., Kamboj, S., & Maggon, N. 2013. Transdermal drug delivery systems: approaches and advancements in drug absorption through skin. Int J Pharm Sci Rev Res, 20(1), 47-56.

Kamoun, E. A., Chen, X., Eldin, M. S. M., & Kenawy, E. R. S. 2015. Crosslinked poly (vinyl alcohol) hydrogels for wound dressing applications: A review of remarkably blended polymers. Arabian Journal of chemistry, 8(1), 1-14. https://doi.org/10.1016/j.arabjc.2014.07.005

Kida, D., Gładysz, O., Szulc, M., Zborowski, J., Junka, A., Janeczek, M.... & Karolewicz, B. 2020. Development and evaluation of a polyvinylalcohol-cellulose derivative-based film with povidone-iodine predicted for wound treatment. Polymers, 12(6), 1271. https://doi.org/10.3390/polym12061271

Kuntorini, EM., & Astuti, MD. 2010. Penentuan Aktivitas antioksidan ekstrak etanol bulbus bawang dayak (Eleutherine americana Merr.). Jurnal Sains dan Terapan Kimia, 4(1), 15-22. http://dx.doi.org/10.20527/jstk.v4i1.2043

Kusmardiyani, S., Alfianti, F., & Fidrianny, I. 2016. Antioxidant profile and phytochemical content of three kinds of lemon grass grown in West Java-Indonesia. Asian Journal of Pharmaceutical and Clinical Research, 381-385.

Margono, D. P., Suhartono, E., & Arwati, H. 2016. Potensi ekstrak kelakai (Stenochlaena palustris (Burm. f) Bedd) terhadap kadar tumor necrosis factor-alfa (TNF-α) pada mencit BALB/c yang diinfeksi Plasmodium berghei ANKA. Berkala Kedokteran, 12(1), 77-85. http://dx.doi.org/10.20527/jbk.v12i1.359

Miladiyah, I., & Prabowo, B. R. 2012. Ethanolic extract of Anredera cordifolia (Ten.) Steenis leaves improved wound healing in guinea pigs. Universa Medicina, 31(1), 4-11. https://doi.org/10.18051/UnivMed.2012.v31.4-11

Mohanty, C., & Sahoo, S. K. 2017. Curcumin and its topical formulations for wound healing applications. Drug Discovery Today, 22(10), 1582-1592. https://doi.org/10.1016/j.drudis.2017.07.001

Nurahmanto, D., Mahrifah, IR., Azis, RFNI., & Rosyidi, VA. 2017. Formulasi sediaan gel dispersi padat ibuprofen: studi gelling agent dan senyawa peningkat penetrasi. Jurnal Ilmiah Manuntung, 3(1), 96-105. https://doi.org/10.51352/jim.v3i1.97

Parhi, R., Suresh, P., & Patnaik, S. 2015. Formulation optimization of PVA/HPMC cryogel of Diltiazem HCl using 3-level factorial design and evaluation for ex vivo permeation. Journal of Pharmaceutical Investigation, 45(3), 319-327. http://dx.doi.org/10.1007/s40005-015-0179-y

Parisvesh, S., Sumeet, D., and Abhishek, D. 2010. Design, Evaluation, Parameters and Marketed Products of Transdermal Patches. J. Pharm. Res., 3(2):235-240.

Patel, D., Chaudhary, SA., Parmar, B., & Bhura, N. 2012. Transdermal drug delivery system: a review. The pharma innovation, 1(4, Part A), 66. https://doi.org/10.18231/j.ijpp.2021.002

Peppas, NA. (2010). Biomedical applications of hydrogels handbook. Springer Science & Business Media.jaya

Piluharto, B., Sjaifullah, A., Rahmawati, I., & Nurharianto, E. 2017. Membran blend kitosan/poli vinil alkohol (PVA): pengaruh komposisi material blend, pH, dan konsentrasi bahan pengikat silang. Jurnal Kimia Riset, 2(2), 77-85. http://dx.doi.org/10.20473/jkr.v2i2.6195

Pudyastuti, B., Nugroho, AK., & Martono, S. 2014. Formulasi Matriks Transdermal Pentagamavunon-0 dengan Kombinasi Polimer PVP K30 dan Hidroksipropil Metilselulosa. Jurnal Farmasi Sains dan Komunitas (Journal of Pharmaceutical Sciences and Community), 11(2). https://doi.org/10.24071/jpsc.0099

Qindeel, M., Ahmed, N., Sabir, F., Khan, S., & Ur-Rehman, A. 2019. Development of novel pH-sensitive nanoparticles loaded hydrogel for transdermal drug delivery. Drug development and industrial pharmacy, 45(4), 629-641. http://dx.doi.org/10.1080/03639045.2019.1569031

Rijai, HR., Fakhrudin, N., & Wahyuono, S. 2019. Isolation and Identification of DPPH Radical (2, 2-diphenyl-1-pikrylhidrazyl) Scavenging Active Compound in Ethyl acetat fraction of Piper acre Blume. Majalah Obat Tradisional, 24(3), 204-209. https://doi.org/10.22146/mot.48173

Roy, N., Saha, N., Kitano, T., & Saha, P. 2010. Novel hydrogels of PVP– CMC and their swelling effect on viscoelastic properties. Journal of Applied Polymer Science, 117(3), 1703-1710. https://doi.org/10.1002/app.32056

Sayuti, NA. 2015. Formulasi dan uji stabilitas fisik sediaan gel ekstrak daun ketepeng cina (Cassia alata l.). Jurnal Kefarmasian Indonesia, 74-82. http://dx.doi.org/10.22435/jki.v5i2.4401.74-82

Shalumon, KT., Anulekha, KH., Nair, SV., Nair, SV., Chennazhi, KP., & Jayakumar, R. 2011. Sodium alginate/poly (vinyl alcohol)/nano ZnO composite nanofibers for antibacterial wound dressings. International journal of biological macromolecules, 49(3), 247-254. https://doi.org/10.1016/j.ijbiomac.2011.04.005

Sharma, M., Mondal, D., Mukesh, C., & Prasad, K. 2013. Self-healing guar gum and guar gum-multiwalled carbon nanotubes nanocomposite gels prepared in an ionic liquid. Carbohydrate polymers, 98(1), 1025-1030. https://doi.org/10.1016/j.carbpol.2013.06.074

Shivaraj, A., Selvam, RP., Mani, TT., & Sivakumar, T. 2010. Design and evaluation of transdermal drug delivery of ketotifen fumarate. Int J Pharm Biomed Res, 1(2), 42-47.

Sumiyati, S., & Ginting, M. 2017. Formulasi Masker Gel Peel off dari Kulit Buah Pisang Kepok (Musa paradisiaca L.). Jurnal Dunia Farmasi, 1(3), 123-133. https://doi.org/10.33085/jdf.v1i3.4375

Walters dan Robert. 2015. The Cell 4th Edition. Garland Science Taylor and Francis Group. USA, pp : 1102-1105.




DOI: https://doi.org/10.24071/jpsc.005291

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