Effect of ethanol extract of Hedyotis corymbosa (L.) Lamk against parasitemia and hepatomegaly in Plasmodium berghei ANKA-infected mice
Abstrak
Malaria is a parasitic infectious disease that remains one of the focuses of world health problems. The ethanol extract of Hedyotis corymbosa has biochemical compounds potentially become a new antimalarial drug. This study aimed to analyze the effect of this extract on parasitemia and hepatomegaly in mice infected with Plasmodium berghei ANKA. Twentyfive BALB/c mice were infected with P. berghei ANKA and grouped into 5 groups. Group 1-3 were treated with 250 mg/Kg BW (HC250), 300 mg/Kg BW (HC300), and 350 mg/Kg BW (HC350) of ethanol extract of H. corymbosa (EEHC), respectively. Group 4 was a positive control (POS) which was given dihydroartemisisnin-piperaquin (DHP) and Group 5 was a negative control (NEG) which was only given CMC Na 1%. Treatments were given orally once a day for four consecutive days. Parasitemia was observed daily on Giemsa-stained tail blood smear. On day 5 the mice were sacrificed, blood were collected by cardiac punctured, the livers were removed and the length, width, and weight were measured. There was no significant difference on parasitemia between Group 1, 2, 3 and NEG. However, the highest inhibition of parasite s growth was found in Group 3 (61.4%. Observation on hepatomegaly, showed that a significant difference on the length of the liver was found between Group 3 and NEG.
Artikel teks lengkap
Referensi
Afolayan FID, Adegbolagun O, Mwikwabe NN, Orwa J, Anumudu C. (2020). Cytokine Modulation during Malaria Infections by Some Medicinal Plants. Scientific African, 8, 428.
Arwati H, Bahalwan RR, Hapsari WT, Wardhani KA, Aini KN, Apsari PIB, et al. (2021). Suppressive effect of goat bile in Plasmodium berghei ANKA infection in mice, Veterinary World, 14(8), 2016-2022.
Bureau G, Longpre F, Martinoli MG. (2008). Resveratrol and quercetin, two natural polyphenols, reduce apoptotic neuronal cell death induced by neuroinflammation. J. Neurosci, 86(2), 403–410.
Bloland PB and World Health Organization. (2001). Drug resistance in malaria Drug resistance in malaria. World Health Organization. Malaria Epidemiology Branch Centers for Disease Control and Prevention Chamblee, GA, United States of America. https://www.cdc.gov/malaria/resources/pdf/drug_resistance/bloland_who2001.pdf
Chokchaisiri R, Chaichompoo W, Chalermglin R, Suksamrarn A. (2014). Potent Antiplasmodial Alkaloids and Flavonoids from Dasymaschalon acuminatum. ACG Publications, 9(2), 243-246.
David AV, Arulmoli R, Parasuraman S. (2016). Overviews of Biological Importance of Quercetin: A Bioactive Flavonoid. Pharmacogn, 10(20), 84–89.
Kementerian Kesehatan RI. (2019). Buku Saku Tatalaksana Kasus Malaria. Jakarta: Subdit Malaria Direktorat P2PTVZ Kementerian Kesehatan Republik Indonesia. Retrieved: May 17, 2021, from https://www.dinkes.pulangpisaukab.go.id/2020/01/05/buku-saku-tatalaksana-kasus-malaria-2019/
Kementerian Kesehatan RI. (2021). Data Terkini Kasus Malaria di Indonesia. Retrieved: May 17, 2021, from https://www.malaria.id
Li Y, Yao J, Han C, Yang J, Chaudhry MT, Wang S, et al. (2016). Quercetin, inflammation and immunity. Nutrients, 8(3), 167.
Liu S, Hou W, Yao P, Li N, Zhang B, Hao L, et al. (2012). Heme oxygenase-1 mediates the protective role of quercetin against ethanol-induced rat hepatocytes oxidative damage. Toxicol. In Vitro, 26(1), 74–80.
Louisa M. (2016). Farmakologi dan Terapan, 6th ed. Jakarta: FK UI, 574.
Margono D, Suhartono E, Arwati H. (2016). Pengaruh Ekstrak Kelakai (Stenochlaena palustris (Burm.f) Bedd) terhadap Kadar Interleukin-10 (IL-10) Mencit. Medical Laboratory Technology Journal, Vol 2(1), 31–36.
Maslachah L, Sugihartuti R, Wahyuni RS. (2019). Hematologic changes and splenic index on malaria mice models given Syzygium cumini extract as an adjuvant therapy. Veterinary World, 12(1), 106-111.
Mishra K, Dash AP, Swain BK, Dey N. (2009). Anti-malarial activities of Andrographis paniculata and Hedyotis corymbosa extracts and their combination with curcumin. Malaria Journal, 8(26),
Muhaimin M, Yusnaidar Y, Syahri W, Latief M, Putri RD, Utami A, et al. (2019). Antiplasmodial Activity of Ethanolic Extract of Macaranga Gigantea Leaf and Its Major Constituent. Pharmacognosy Journal, 11(6), 1181-1188.
Michalski J, Deinzer A, Stich L, Zinser E, Steinkasserer A, Knippertz I. (2020). Quercetin induces an immunoregulatory phenotype in maturing human dendritic cells. Immunobiology, 225(4).
Ntie-Kang F, Onguéné P, Lifongo L, Ndom J, Sippl W, Mbaze L. (2014). The potential of anti-malarial compounds derived from African medicinal plants, part II: a pharmacological evaluation of non-alkaloids and non terpenoids. Malaria Journal, 13(1), 1-20.
Pusat Data dan Informasi Kemenkes RI. (2016). Malaria. InfoDatin. Retrieved: May 17, 2021, from https://pusdatin.kemkes.go.id/download.php?file=download/pusdatin/infodatin/InfoDatin-Malaria-2016.pdf
Rahayu P, Hernaningsih Y, Arwati, H. (2021). Antimalarial Activity of Ethanol Extract of Noni Leaves (Morinda citrifolia) towards Parasitemia, Splenomegaly, and Hepatomegaly in Plasmodium berghei ANKA Infected Mice. Biomolecular and Health Science Journal, 4(1), 5-9.
Sadasivan S, Latha PG, Sasikumar JM, Rajashekaran S, Shyamal S, Shine VJ. (2006). Hepatoprotective studies on Hedyotis corymbosa (L.) Lam. Journal of Ethnopharmacology, 106(2), 245–249.
Selvan PS, Vellavan S, Sagunthala P, Prakash N, Subramanian S. (2015). Analysis of Phytochemical Component And Nutrients Component In Ethanol Extracted Oldenlandia corymbose. World Journal of Pharmaceutical Research, 4(7).
Soemardji AA, Anisa IN, Damayanti NA. (2015). Study On Rumput Mutiara (Hedyotis Corimbosa) Herbs As Medicine. Journal Of Medicine & Health, 1(2).
Wilson S, Jones FM, Mwatha JK, Kimani G, Booth M, Kariuki HC, et al. (2009) Hepatosplenomegaly associated with chronic malaria exposure: Evidence for a pro-inflammatory mechanism exacerbated by schistosomiasis. Parasite Immunology, 31(2), 64–71.
World Health Organization. (2019). Artemisinin resistance and artemisinin-based combination therapy efficacy (December 2019). Retrieved: May 17, 2021, from https://www.who.int/docs/default-source/documents/publications/gmp/who-cds-gmp-2019-17-eng.pdf?ua=1
World Health Organization. (2021). Malaria. Retrieved: May 17, 2021, from https://www.who.int/news-room/fact-sheets/detail/malaria
Yuliandra YAN, Salsa AN, dan Ismed F. (2015). Uji Toksisitas Subkronis Ekstrak Etanol Tali Putri (Cassytha filiformis L.) terhadap Fungsi Ginjal Tikus. Jurnal Sains Farmasi dan Klinis, 2(1), 54-59.
Penulis

Qanun Medika oleh FK UM Surabaya disebarluaskan di bawah Lisensi Creative Commons Atribusi 4.0 Internasional.
Berdasarkan ciptaan pada http://journal.um-surabaya.ac.id/index.php/qanunmedika.