IN VITRO ANTIBACTERIAL ACTIVITY OF THE ETHANOLIC EXTRACT OF JALOH (SALIX TETRASPERMA ROXB.) LEAVES AGAINST STAPHYLOCOCCUS AUREUS AND PSEUDOMONAS AERUGINOSA

Authors

  • Fitrah Wahyuni Master Programme in Pharmacy, Faculty of Pharmacy, University of Sumatera Utara, Jalan Tri Dharma No. 5, Padang Bulan, Medan, Indonesia.
  • Urip Harahap Department of Pharmacology, Faculty of Pharmacy, University of Sumatera Utara, Jalan Tri Dharma No. 5, Padang Bulan, Medan, Indonesia.
  • Masfria Masfria Department of Pharmaceutical Chemistry, Faculty of Pharmacy, University of Sumatera Utara, Jalan Tri Dharma No. 5, Padang Bulan, Medan, Indonesia.

DOI:

https://doi.org/10.22159/ajpcr.2018.v11s1.26580

Keywords:

Antibacterial, Salix tetrasperma Roxb, Jaloh, Staphylococcus aureus, Pseudomonas aeruginosa

Abstract

Objective: This study aims to determine antibacterial activity of ethanolic extract of jaloh (Salix tetrasperma Roxb.) leaves against Staphylococcus aureus (SA) and Pseudomonas aeruginosa (PA).

Methods: Extract was obtained by maceration method of jaloh (S. tetrasperma Roxb.) leaves dried powder with 96% ethanol as solvent. The antibacterial activities of extract were tested by Kirby–Bauer method against SA and PA. Data were analyzed statistically using Kruskal–Wallis test for significant difference level p<0.05.

Results: Based on the regression test, the equation of regression curve of extract antibacterial activity on SA and PA, respectively, was y=350.456x-229.579 and y=331.866x-272.069. The minimum inhibitory concentrations (MICs) of SA and PA from the equation of regression curve, respectively, were 4.5193 and 6.6039 mg/mL.

Conclusion: Based on the MIC value, ethanolic jaloh leaves extract had a weak antibacterial activity against SA and PA.

Downloads

Download data is not yet available.

References

Utami ER. Antibiotics, resistence and rationality of therapy. Sainstis 2012;1:124-5.

Alamzeb M, Khan MR, Ali S, Ur-Rashid M, Khan AA. Bioassay guided isolation and characterization of anti-microbial and anti-trypanosomal agents from Berberis glaucocarpa Stapf. Afr J Pharm Pharm 2013;6:2564.

Abdallah EM. Plants: An alternative source for antimicrobials. J Appl Pharm Sci 2011;1:18.

Sugito S, Manalu W, Astuti DA, Handharyani E, Chairul. Intestinal Morphometrics and broiler chicken performance with heat recovery and n-hexane skin extract ‘Jaloh’ (Salix tetrasperma Roxb). Livest Media 2007;30:199.

Hayek SA, Gyawali R, Ibrahim SA. Antimicrobial natural products. In: Vilas AM, editor. Microbial Pathogens and Strategies for Combating Them: Science, Technology and Education. Formatex. Halaman; 2013. p. 915-6.

Depkes RI. Pharmacope of Indonesian. 3rd ed. Jakarta: Departemen Kesehatan RI; 1979. p. 33, 649, 696.

Depkes RI. Pharmacope of Indonesian. 4th ed. Jakarta: Departemen Kesehatan RI; 1995. p. 891-9.

Mwitari PG, Ayeka PA, Ondicho J, Matu EN, Bii CC. Antimicrobial activity and probable mechanisms of action of medicinal plants of Kenya: Withania somnifera, Warbugia ugandensis, Prunus africana and Plectrunthus barbatus. PLoS One 2013;8:3-4.

Ofokansi KC, Attama AA, Uzor PF, Ovri MO. Antibacterial activities of the combined leaf extract of phyllantus muellerianus and ciprofloxacin against urogenital isolates of Staphylococcus aureus. Clin Pharm Biopharm 2012;1:2.

Ofokansi KC, Attama AA, Uzor PF, Ovri MO. Evaluation of the combined antimicrobial activity of the leaf extract of Phyllantus muellerianus with ciprofloxacin. J Pharm Technol Drug Res 2013;2:2-3.

Islam MS, Zahan R, Nahar L, Alam MB, Naznin M, Sarkar GC, et al. Antibacterial, insecticidal and in vivo cytotoxicity activities of salix tetrasperma. Int J Pharm Sci Res 2011;2:2103-6.

Stefanovic O, Radojevic I, Vasic S, Comic L. Antibacterial activity of naturally occurring compounds from selected plants. In: Bobbarala V, editor. Antimicrobial Agents. Kroasia: InTech. Halaman; 2012. p. 2-3.

Moningka KC, Kojong NS, Sudewi S. Uji aktivitas antibakteri ekstrak daun ekor kucing (Acalypha hispida Burm. F.) terhadap bakteri Staphylococcus aureus dan Escherichia coli secara in-vitro. Pharm J Ilmiah Farmasi 2015;4:198-9.

Savola D. Plant-derived antimicrobial compounds: Alternatives to antibiotics. Future Microbiol 2012;7:981-2.

Angelina M, Turnip M, Khotimah S. Antibacterial activity test of basil leaf ethanol extract (Ocimum sanctum L.) on bacterial growth. Escherichia coli dan Staphylococcus aureus. Protobiont 2015;4:188.

Fernandes TG, de Mesquita AR, Randau KP, Franchitti AA, Ximenes EA. In vitro synergistic effect of Psidium guineense (swartz) in combination with antimicrobial agents against methicillin-resistant Staphylococcus aureus strains. Sci World J 2012; ???:4-6.

Omojate GC, Enwa FO, Jewo AO, Eze CO. Mechanisms of antimicrobial actions of phytochemicals against enteric pathogens–A review. J Pharm Chem Biol Sci 2014;2:82.

Roihanah S, Sukoso S, Andayani S. Aktivitas antibakteri ekstrak teripang Holothuria sp. Terhadap bakteri aeromonas hydrophila secara in vitro. J Exp Life Sci 2013;3:42-43.

Hossain MA, Park JY, Kim JY, Suh JW, Park SC. Synergistic effect and antiquorum sensing activity of Nymphaea tetragona (water lily) extract. BioMed Res Int 2014;7:2-3.

Aiyegoro OA, Okoh AI. Use of bioactive plant products in combination with standard antibiotics: Implications in antimicrobial chemotherapy. J Med Plants Res 2009;3:1147-9.

Published

26-04-2018

How to Cite

Wahyuni, F., U. Harahap, and M. Masfria. “IN VITRO ANTIBACTERIAL ACTIVITY OF THE ETHANOLIC EXTRACT OF JALOH (SALIX TETRASPERMA ROXB.) LEAVES AGAINST STAPHYLOCOCCUS AUREUS AND PSEUDOMONAS AERUGINOSA”. Asian Journal of Pharmaceutical and Clinical Research, vol. 11, no. 13, Apr. 2018, pp. 107-9, doi:10.22159/ajpcr.2018.v11s1.26580.

Issue

Section

Original Article(s)