KANDUNGAN FITOKIMIA DAN AKTIVITAS FARMAKOLOGI Orthosiphon aristatus

Luh Vela Septyani, Ni Putu Mas Arya Shinta

Abstract


Phytochemical Content And Pharmacological Activity Of Orthosiphon Aristatus

Orthosiphon aristatus is a plant widely grown in Southeast Asia, including Indonesia, Vietnam, Thailand, Malaysia and Australia. This plant has been used traditionally to treat several diseases. Therefore, this study aims to provide a comprehensive overview of the phytochemical content, pharmacological effects and traditional uses of O. aristatus. The study was carried out through literature review of secondary data sources in the form of national and international scientific journals. Meanwhile, based on several studies, about 45 phytochemicals have been isolated from this plant.Pharmacological studies of extracts, fractions, essential oils, and pure compounds isolated showed the presence of gastroprotective, antioxidant, cytotoxic, diuretic, antidiabetic, antihypertensive, anti-inflammatory, antipyretic, antiobesity, antibacterial, antifungal and hepatoprotective activity. Furthermore, sinensetin, eupatorin, and rosmarinic acid are the main ingredients with significant pharmacological effects. The results showed that O. aristatus has various phytochemical compositions and pharmacological activities which potentially improve the degree of health and human life.

Keywords   : Orthosiphon aristatus, Sinensetin, Eupatorin, Rosmarinic Acid

Orthosiphon aristatus merupakan tanaman yang banyak tumbuh di wilayah Asia Tenggara yang seperti Indonesia, Vietnam, Thailand, Malaysia, dan Australia. Khasiat tumbuhan ini telah banyak digunakan secara tradisional untuk mengobati beberapa penyakit. Tujuan dari review ini adalah memberikan tinjauan yang komprehensif tentang kandungan fitokimia, efek farmakologi, dan penggunaan O. aristatus secara tradisional. Metode penyusunan review melalui studi pustaka pada sumber data sekunder berupa jurnal ilmiah nasional dan internasional. Beberapa penelitian menunjukkan bahwa terdapat 45 kandungan fitokimia yang diisolasi dari tanaman ini. Studi farmakologi terhadap ekstrak, fraksi, minyak esensial, dan senyawa murni yang diisolasi menunjukkan adanya aktivitas farmakologi gastroprotektif, antioksidan, sitotoksik, diuretik, antidiabetes, antihipertensi, antiinflamasi, antipiretik, antiobesitas, antibakteri, antifungi, dan hepatoprotektif. Sinensetin, eupatorin, dan asam rosmarinik merupakan kandungan utama yang memiliki banyak efek farmakologis. Dari hasil review yang dilakukan diketahui bahwa O. aristatus memiliki komposisi fitokimia dan aktivitas farmakologi beragam yang dapat meningkatkan taraf kesehatan dan kehidupan manusia.

Kata Kunci: Orthosiphon aristatus, Sinensetin, Eupatorin, Asam Rosmarinik


References


Falzon CC, Balabanova A. Phytotherapy: An Introduction to Herbal Medicine. Prim Care - Clin Off Pract. 2017;44(2):217–27.

Adnyana K, Setiawan F, Insanu M. From ethnopharmacology to clinical study of Orthosiphon stamineus Benth. Int J Pharm Pharm Sci. 2013;5(3):66–73.

Alshawsh MA, Abdulla MA, Ismail S, Amin ZA, Qader SW, Hadi HA, et al. Free radical scavenging, antimicrobial and immunomodulatory activities of Orthosiphon stamineus. Molecules. 2012;17(5):5385–95.

Sivakumar C, Jeganathan K. Phytochemical profiling of cat whisker’s (Orthosiphon stamineus) tea leaves extract. J Pharmacogn Phytochem. 2018;7(6):1396–402.

Ameer OZ, Salman IM, Asmawi MZ, Ibraheem ZO, Yam MF. Orthosiphon stamineus: Traditional uses, phytochemistry, pharmacology, and toxicology. J Med Food. 2012;15(8):678–90.

Ashraf K, Halim H, Lim SM, Ramasamy K, Sultan S. In vitro antioxidant, antimicrobial and antiproliferative studies of four different extracts of Orthosiphon stamineus, Gynura procumbens and Ficus deltoidea. Saudi J Biol Sci. 2020;27(1):417–32.

Yuniarto A, Susilawati E, Khairunnisa I, Juanda D, Setiawan F. Antioxidant and gastric ulcer healing effect of Orthosiphon stamineus (Benth.) leaves extract in aspirin-induced rats. Asian J Pharm Clin Res. 2017;10(2):397–9.

Wiart C. Medicinal Plant of Southeast Asia. Selangor: Pelanduk Publication; 2000. 37–45 p.

Depkes RI. Farmakope Herbal Indonesia. Edisi I. Jakarta: Departemen Kesehatan Republik Indonesia; 2008. 68–72 p.

Olah NK, Radu L, Mogoşan C, Hanganu D, Gocan S. Phytochemical and pharmacological studies on Orthosiphon stamineus Benth. (Lamiaceae) hydroalcoholic extracts. J Pharm Biomed Anal. 2003;33(1):117–23.

Cai X, Xiao C, Xue H, Xiong H, Hang Y, Xu J, et al. A comparative study of the antioxidant and intestinal protective effects of extracts from different parts of Java tea (Orthosiphon stamineus). Food Sci Nutr. 2018;6(3):579–84.

Putra IGS. Taru Premana Khasiat Tanam-tanaman untuk Obat Tradisional. Denpasar: Penerbit PT. Upada Sastra; 1999.

Juniari PDA, Kriswiyanti E, Sudiartawan P. Tumbuhan Bahan Loloh dan Boreh di Kelurahan Kawan, Kecamatan Bangli, Kabupaten Bangli. In: Seminar Nasionan Fakultas MIPA UNHI. 2017. p. 258–67.

Yam MF, Ang LF, Salman IM, Ameer OZ, Lim V, Ong LM, et al. Orthosiphon stamineus leaf extract protects against ethanol-induced gastropathy in rats. J Med Food. 2009;12(5):1089–97.

Akowuah GA, Zhari I, Norhayati I, Sadikun A, Khamsah SM. Sinensetin, eupatorin, 3′-hydroxy-5, 6, 7, 4 ′-tetramethoxyflavone and rosmarinic acid contents and antioxidative effect of Orthosiphon stamineus from Malaysia. Food Chem. 2004;87(4):559–66.

Chua LS, Lau CH, Chew CY, Ismail NIM, Soontorngun N. Phytochemical profile of Orthosiphon aristatus extracts after storage: Rosmarinic acid and other caffeic acid derivatives. Phytomedicine. 2018;39:49–55.

Hsu CL, Hong BOH, Shan YU, Yen GC. Antioxidant and Anti-Inflammatory effects of orthosiphon aristatus and its bioactive compounds. J Agric Food Chem. 2010;58(4):2150–6.

Awale S, Tezuka Y, Banskota AH, Kadota S. Siphonols A-E: Novel nitric oxide inhibitors from Orthosiphon stamineus of Indonesia. Bioorganic Med Chem Lett. 2003;13(1):31–5.

Awale S, Tezuka Y, Banskota AH, Ketut Adnyana I, Kadota S. Highly-oxygenated isopimarane-type diterpenes from Orthosiphon stamineus of Indonesia and their nitric oxide inhibitory activity. Chem Pharm Bull. 2003;51(3):268–75.

Awale S, Tezuka Y, Banskota AH, Ketut Adnyana I, Kadota S. Nitric Oxide Inhibitory Isopimarane-type Diterpenes from Orthosiphon stamineus of Indonesia. J Nat Prod. 2003;66(2):255–8.

Singh MK, Dhongade H, Tripathi DK. Orthosiphon pallidus, a potential treatment for patients with breast cancer. J Pharmacopuncture. 2017;20(4):265–73.

Abd Razak N, Yeap SK, Alitheen NB, Ho WY, Yong CY, Tan SW, et al. Eupatorin Suppressed Tumor Progression and Enhanced Immunity in a 4T1 Murine Breast Cancer Model. Integr Cancer Ther. 2020;19:1–13.

Al-Suede FSR, Khadeer Ahamed MB, Abdul Majid AS, Baharetha HM, Hassan LEA, Kadir MOA, et al. Optimization of cat’s whiskers tea (orthosiphon stamineus) using supercritical carbon dioxide and selective chemotherapeutic potential against prostate cancer cells. Evidence-based Complement Altern Med. 2014;2014:1–15.

Suhaimi SH, Hasham R, Idris MKH, Ismail HF, Ariffin NHM, Majid FAA. Optimization of Ultrasound-Assisted Extraction Fractionation from Orthosiphon stamineus Benth. Molecules. 2019;24:2–20.

Stampoulis P, Tezuka Y, Banskota AH, Tran KQ, Saiki I, Kadota S. Staminolactones A and B and norstaminol A: Three highly oxygenated staminane-type diterpenes from Orthosiphon stamineus. Org Lett. 1999;1(9):1367–70.

Al-suede FSR, Farsi E, Ahamed MBK, Ismail Z, Abdul AS, Majid AMSA. Marked antitumor activity of cat’s whiskers tea (Orthosiphon stamineus) extract in orthotopic model of human colon tumor in nude mice. J Biochem Technol. 2014;3(5):170–6.

Adam Y, Somchit MN, Sulaiman MR, Nasaruddin AA, Zuraini A, Bustamam AA, et al. Diuretic properties of Orthosiphon stamineus Benth. J Ethnopharmacol. 2009;124(1):154–8.

Arafat OM, Tham SY, Sadikun A, Zhari I, Haughton PJ, Asmawi MZ. Studies on diuretic and hypouricemic effects of Orthosiphon stamineus methanol extracts in rats. J Ethnopharmacol. 2008;118(3):354–60.

Mohamed EAH, Yam MF, Ang LF, Mohamed AJ, Asmawi MZ. Antidiabetic Properties and Mechanism of Action of Orthosiphon stamineus Benth Bioactive Sub-fraction in Streptozotocin-induced Diabetic Rats. JAMS J Acupunct Meridian Stud. 2013;6(1):31–40.

Mohamed EAH, Siddiqui MJA, Ang LF, Sadikun A, Chan SH, Tan SC, et al. Potent α-glucosidase and α-amylase inhibitory activities of standardized 50% ethanolic extracts and sinensetin from Orthosiphon stamineus Benth as anti-diabetic mechanism. BMC Complement Altern Med. 2012;12(176):1–7.

Yam MF, Tan CS, Shibao R. Vasorelaxant effect of sinensetin via the NO/sGC/cGMP pathway and potassium and calcium channels. Hypertens Res. 2018;41(10):787–97.

Tan CS, Yam MF. Mechanism of vasorelaxation induced by 3′-hydroxy-5,6,7,4′-tetramethoxyflavone in the rats aortic ring assay. Naunyn Schmiedebergs Arch Pharmacol. 2018;391(6):561–9.

Yam MF, Tan CS, Ahmad M, Shibao R. Mechanism of vasorelaxation induced by eupatorin in the rats aortic ring. Eur J Pharmacol. 2016;789:27–36.

Yam MF, Tan CS, Ahmad M, Shibao R. Vasorelaxant Action of the Chloroform Fraction of Orthosiphon stamineus via NO/cGMP Pathway, Potassium and Calcium Channels. Am J Chin Med. 2016;44(7):1413–39.

Laavola M, Nieminen R, Yam M, Sadikun A, Asmawi M, Basir R, et al. Flavonoids eupatorin and sinensetin present in Orthosiphon stamineus leaves inhibit inflammatory gene expression and STAT1 activation. Planta Med. 2012;78(8):779–86.

Seyedan A, Alshawsh MA, Alshagga MA, Mohamed Z. Antiobesity and Lipid Lowering Effects of Orthosiphon stamineus in High-Fat Diet-Induced Obese Mice. Planta Med. 2017;83(8):684–92.

Son JY, Park SY, Kim JY, Won KC, Kim YD, Choi YJ, et al. Orthosiphon stamineus reduces appetite and visceral fat in rats. J Appl Biol Chem. 2011;54(2):200–5.

Yam MF, Basir R, Asmawil MZ, Ismail Z. Antyoxidant and Hepatoprotective Effects of Orthosiphon stamineus Benth. Standardized Extract. Am J Chin Med. 2007;35(1):115–26.

Maheswari C, Maryammal R, Venkatanarayanan R. Hepatoprotective Activity of “Orthosiphon stamineus” on Liver Damage Caused by Paracetamol in Rats. Jordan J Biol Sci. 2008;1(3):105–8.

Alshawsh MA, Abdulla MA, Ismail S, Amin ZA. Hepatoprotective effects of Orthosiphon stamineus extract on thioacetamide-induced liver cirrhosis in rats. Evidence-based Complement Altern Med. 2011;2011:1–6.

Movahedi A, Basir R, Rahmat A, Charaffedine M. Orthosiphon stamineus : an Asian tea with substantial anticancer properties. J Nutr Scaineces Diet. 2014;1(1):44–52.

Yam MF, Ang LF, Basir R, Salman IM, Ameer OZ, Asmawi MZ. Evaluation of the anti-pyretic potential of Orthosiphon stamineus Benth standardized extract. Inflammopharmacology. 2009;17(1):50–4.

Ho CH, Noryati I, Sulaiman SF, Rosma A. In vitro antibacterial and antioxidant activities of Orthosiphon stamineus Benth. extracts against food-borne bacteria. Food Chem. 2010;122(4):1168–72.

Romulo A, Zuhud EAM, Rondevaldova J, Kokoska L. Screening of in vitro antimicrobial activity of plants used in traditional indonesian medicine. Pharm Biol. 2018;56(1):287–93.

Azizan N, Mohd Said S, Abidin ZZ, Jantan I. Composition and antibacterial activity of the essential oils of orthosiphon stamineus benth and ficus deltoidea jack against pathogenic oral bacteria. Molecules. 2017;22(12).

Hossain MA, Ismail Z, Rahman A, Kang SC. Chemical composition and anti-fungal properties of the essential oils and crude extracts of Orthosiphon stamineus Benth. Ind Crops Prod. 2008;27(3):328–34.

Smith P, Ho K, Takagi Y, Djaballah H, Shumana S. Nanomolar Inhibitors of Trypanosoma brucei RNA Triphosphatase. Am Soc Microbiol. 2016;7(1):1–10.

Gong C, Martins A, Shuman S. Structure-Function Analysis of Trypanosoma brucei RNA Triphosphatase and Evidence for a Two-metal Mechanism. J Biol Chem. 2003;278(51):50843–52.

Pei Y, Lehman K, Tian L, Shuman S. Characterization of Candida albicans RNA triphosphatase and mutational analysis of its active site. Nucleic Acids Res. 2000;28(9):1885–92.

Gong C, Shuman S. Chlorella virus RNA triphosphatase. Mutational analysis and mechanism of inhibition by tripolyphosphate. J Biol Chem. 2002;277(18):15317–24.

Palmeira-De-Oliveira R, Palmeira-De-Oliveira A, Gaspar C, Silvestre S, Martinez-De-Oliveira J, Amaral MH, et al. Sodium Tripolyphosphate: An excipient with intrinsic in vitro anti-Candida activity. Int J Pharm. 2011;421(1):130–4.

Yam MF, Lim CP, Fung Ang L, Por LY, Wong ST, Asmawi MZ, et al. Antioxidant and toxicity studies of 50% methanolic extract of orthosiphon stamineus benth. Biomed Res Int. 2013;2013.

Mohamed EAH, Lim CP, Ebrika OS, Asmawi MZ, Sadikun A, Yam MF. Toxicity evaluation of a standardised 50% ethanol extract of Orthosiphon stamineus. J Ethnopharmacol. 2011;133(2):358–63.

Abdullah NR, Ismail Z, Ismail Z. Acute toxicity of Orthosiphon stamineus Benth standardized extract in Sprague Dawley rats. Phytomedicine. 2009;16(2–3):222–6.

Rebecca MA, Ishii-Iwamoto EL, Grespan R, Cuman RKN, Caparroz-Assef SM, De Mello JCP, et al. Toxicological studies on Stryphnodendron adstringens. J Ethnopharmacol. 2002;83(1–2):101–4.




DOI: https://doi.org/10.32382/mf.v17i1.2048

Refbacks



Creative Commons License
This work is licensed under a Creative Commons Attribution-NonCommercial-ShareAlike 4.0 International License.

Kontak Editor

Hendra Stevani

Jurusan Farmasi Poltekkes kemenkes Makassar

email : hendra@poltekkes-mks.ac.id

View My Stats

Flag Counter

Creative Commons License
This work is licensed under a Creative Commons Attribution-ShareAlike 4.0 International License.