EFEKTIVITAS EKSTRAK ETANOL BIJI KURMA MESIR (Phoenix dactylifera L.) SEBAGAI ANTIBAKTERI TERHADAP Streptococcus pyogenes SECARA IN VITRO

Lilia Putri Pratama

Abstract


Abstrak. Kurma (Phoenix dactylifera L.) telah dikonsumsi secara luas di seluruh duniadan diketahui memiliki banyak manfaat di bidan kesehatan. Salah satu mafaatnya yaitu sebagai obat terhadap faringitis yang disebabkan oleh bakteri Streptococcus pyogenes. Terdapat ±517.000 kematian pertahun yang disebabkan oleh infeksi Streptococcus pyogenes dan komplikasinya. Sejauh ini telah banyak studi mengenai manfaat daging kurma, namun manfaat terhadap biji kurma belum banyak diteliti. Maka dari itu penelitian ini bertujuan untuk menguji efek antibakteri ekstrak etanol biji kurma Mesir (Phoenix dactylifera L.) pada Streptococus pyogenes  secara in vitro dengan uji Konsentrasi Hambat Minimal (KHM) menggunakan metode dilusi serial dan uji Konsentrasi Bunuh Minimal (KBM) dengan inokulasi pada media agar darah. Konsentrasi yang digunakan dalam penelitian ini adalah 1428.57 mg/ml, 714,29 mg/ml, 357.14 mg/ml, 178.57 mg/ml, 89.29 mg/ml, 44,64 mg/ml, 22,32 mg/ml, dan 11,16 mg/ml. Dari penelitian tersebut didapatkan bahwa Konsentrasi Hambat Minimal (KHM) tidak dapat ditentukan dan nilai Konsentrasi Bunuh Minimal (KBM) sebesar 1428.57 mg/ml. Ekstrak etanol biji kurma Mesir (Phoenix dactylifera L.) efektif sebagai antibakteri terhadap Streptococcus pyogenes dengan nilai signifikan 0,002 (p<0,05)

 

Kata Kunci: Biji Kurma Mesir, Phoenix dactylifera L., Streptococcus pyogenes, faringitis

 

Abstract. Dates (Phoenix dactylifera L.) are widely consumed in various parts of the world and are known to have many benefits in the health sector. One of them is pharyngitis medication caused by Streptococcus pyogenes. There are ±517.000 deaths per year which caused by Streptococcus pyogenes infection and its complication. So far there have been many studies on the benefits of date flesh, but the benefits of the seeds have not been widely studied. The aim of this study is to test the anti-bacterial effect of the ethanol extract of Egyptian Phoenix dactylifera L. seed on Streptococcus pyogenes in vitro by Minimum Inhibitory Concentration test using serial dilution method and Minimum Bactericidal Concentration (MBC) in blood agar plate inoculates.  The concentration used in this study are 1428.57 mg/ml, 714,29 mg/ml, 357.14 mg/ml, 178.57 mg/ml, 89.29 mg/ml, 44,64 mg/ml, 22,32 mg/ml, and 11,16 mg/ml. From this study the Minimum Inhibitory Concentration (MIC) can not be determined and the Minimum Bactericidal Concentration is 1428.57 mg/ml. Ethanol extract of Egyptian Phoenix dactylifera L. seed effective as antibacteri against Streptococcus pyogenes with a significant value of 0,002 (p <0,05).

 

 

 

 

Keywords: date palm seeds, Phoenix dactylifera L, Streptococcus pyogenes, pharyngitis.

 


Keywords


Biji Kurma Mesir; Phoenix dactylifera L.; Streptococcus pyogenes; faringitis

References


Abd El-Ghany, S.M., Abdelmaksoud, A.A., Saber, S.M., Abd El Hamid, D.H., 2015. Group A beta-hemolytic streptococcal pharyngitis and carriage rate among Egyptian children: A case-control study. Ann. Saudi Med. 35, 377–382. https://doi.org/10,5144/0256-4947.2015.377

Abdelaziz, D.H.A., Ali, S.A., Mostafa, M.M.A., 2015. Phoenix dactylifera seeds ameliorate early diabetic complications in streptozotocin-induced diabetic rats. Pharm. Biol. 53, 792–799. https://doi.org/10,3109/13880209.2014.942790

Abuharfeil, N., Sukhon, S. El, Msameh, Y., & Sallal, A., 1999. Effect of date fruits, Phoenix dactylifera L., on the hemolytic activity of streptolysin O. Pharmaceutical biology, 37, 335-339. doi: 10.1076/phbi.37.5.335.6051

Akinyemi, K.O., 2014. Antimicrobial activities of medicinal plants used in folklore remedies in south-western. https://doi.org/10,4314/ajtcam.v3i4.31173

Al-daihan, S., Bhat, R.S., 2012. Antibacterial activities of extracts of leaf , fruit , seed and bark of Phoenix dactylifera 11, 10021–10025. https://doi.org/10,5897/AJB11.4309

Al-Farsi, M.A., Lee, C.Y., 2008. Nutritional and functional properties of dates: A review. Crit. Rev. Food Sci. Nutr. 48, 877–887. https://doi.org/10,1080/10408390701724264

Al-Shwyeh, H.A., 2019. Date Palm (Phoenix dactylifera L.) Fruit as Potential Antioxidant and Antimicrobial Agents. J. Pharm. Bioallied Sci. 11, 1–11. https://doi.org/10,4103/jpbs.JPBS_168_18

Andrews, J.M., 2001. Determination of minimum inhibitory concentrations. J. Antimicrob. Chemother. 48 Suppl 1, 5–16. https://doi.org/10,1093/jac/48.suppl_1.5

Armiati, I.G.K., 2015. Ekstrak Etanol Kulit Daun Lidah Buaya (Aloe vera barbadensis Miller) konsentrasi 100% dapat menurunkan akumulasi plak gigi dan jumlah koloni bakteri Streptococcus mutans. Denpasar: Program Pascasarjana Universitas Udayana.

Bentrad, N., Gaceb-Terrak, R., Benmalek, Y., & Rahmania, F., 2017. Studies On Chemical Composition and Antimicrobial Activities of Bioactive Molecules from Date Palm (Phoenix dactylifera L.) Pollens And Seeds. African journal of traditional, complementary, and alternative medicines : AJTCAM.

Bouhlali, E. dine T., Bammou, M., Sellam, K., Benlyas, M., Alem, C., Filali-Zegzouti, Y., 2016. Evaluation of antioxidant, antihemolytic and antibacterial potential of six Moroccan date fruit (Phoenix dactylifera L.) varieties. J. King Saud Univ. - Sci. 28, 136–142. https://doi.org/10,1016/j.jksus.2016.01.002

Dalynn, 2002. McFARLAND STANDARD. Cat. No. TM50-TM60 Mcfarl.

Esposito, S., Blasi, F., Bosis, S., Droghetti, R., Faelli, N., Lastrico, A., Principi, N., 2004. Aetiology of acute pharyngitis: The role of atypical bacteria. J. Med. Microbiol. 53, 645–651. https://doi.org/10,1099/jmm.0,05487-0

Habib, H.M., Ibrahim, W.H., 2011. Effect of date seeds on oxidative damage and antioxidant status in vivo. J. Sci. Food Agric. 91, 1674–1679. https://doi.org/10,1002/jsfa.4368

Hafiz, E., Soliman, S., Ahmed, M.M.M., 2006. Molecular Identification of Some Egyptian Date Palm Males by females varieties ( Phoenix dactylifera L .) Using DNA Markers.

Mandell, Douglas, Benett, 2010, Principles and Practice Infectious Diseases, The Lancet Infectious Diseases. https://doi.org/10,1016/S1473-3099(10)70089-X.

Metoui, M., Essid, A., Bouzoumita, A., Ferchichi, A., 2019. Chemical Composition , Antioxidant and Antibacterial Activity of Tunisian Date Palm Seed 28, 1–8. https://doi.org/10,15244/pjoes/84918

Mistrello, J., Sirisena, S.D., Ghavami, A., Richard, J., 2014. Determination of the antioxidant capacity , total phenolic and flavonoid contents of seeds from three commercial varieties of culinary dates 3, 34–44.

Mrabet, A., Jiménez-Araujo, A., Fernández-Bolaños, J., Rubio-Senent, F., Lama-Muñoz, A., Sindic, M., Rodríguez-Gutiérrez, G., 2016. Antioxidant phenolic extracts obtained from secondary Tunisian date varieties (Phoenix dactylifera L.) by hydrothermal treatments. Food Chem. 196, 917–924. https://doi.org/10,1016/j.foodchem.2015.10,026

Olivieri, R., Morandi, M., Zanchi, A., Tordini, G., Pozzi, G., De Luca, A., Montagnani, F., 2015. Evolution of macrolide resistance in streptococcus pyogenes over 14 years in an area of central italy. J. Med. Microbiol. 64, 1186–1195. https://doi.org/10,1099/jmm.0,000146

Passàli, D., Lauriello, M., Passàli, G.C., Passàli, F.M., Bellussi, L., 2007. Group A streptococcus and its antibiotic resistance. Acta Otorhinolaryngol. Ital. organo Uff. della Soc. Ital. di Otorinolaringol. e Chir. Cerv.-facc. 27, 27–32.

Qadoos, H. A., Dhafari H. S., Al Marzooqi D. A., Yaqoubi A. I., Kumarappan A., Nazir A., Elsori D., 2017. Phenolic content and antimicrobial activities of date palm ( Phoenix dactylifera L .) fruits and leaves. https://doi.org/10,19071/fbiol.2017.v6.3154

Renner, B., Mueller, C.A., Shephard, A., 2012. Environmental and non-infectious factors in the aetiology of pharyngitis (sore throat). Inflamm. Res. 61, 1041–1052. https://doi.org/10,1007/s00011-012-0540-9

Riad, M., 1996. The date palm sector in Egypt. CIHEAM-Options Mediterr. 53, 45–53.

Salem, M.Z.M., Ali, H.M., El-Shanhorey, N.A., Abdel-Megeed, A., 2013. Evaluation of extracts and essential oil from Callistemon viminalis leaves: Antibacterial and antioxidant activities, total phenolic and flavonoid contents. Asian Pac. J. Trop. Med. 6, 785–791. https://doi.org/10,1016/S1995-7645(13)60139-X

Shulman S. T., Tanz R. R. 2003. Streptococcus pyogenes (group A Streptococcus). Dalam: Long SS, Pickering LK, Prober CG, penyunting. Principles and practice of pediatric infectious diseases. Edisi ke-2. Philadelphia: Churchill Livingstone; h.716-8.

Sundar, R.D.V., Segaran, G., Shankar, S., Settu, S., Ravi, L., 2017. Bioactivity of Phoenix dactylifera seed and its phytochemical analysis. International Journal of Green Pharmacy; 11: 1-11

Vela, A.I., Villalón, P., Sáez-Nieto, J.A., Chacón, G., Domínguez, L., Fernández-Garayzábal, J.F., 2017. Characterization of streptococcus pyogenes from animal clinical specimens, Spain. Emerg. Infect. Dis. 23, 2011–2016. https://doi.org/10,3201/eid2312.151146

Wessels, M.R., 2016. Pharyngitis and Scarlet Fever. Streptococcus pyogenes Basic Biol. to Clin. Manifestations. 1–15.

Wojdyło, A., Teleszko, M., & Oszmiański, J., 2014. Original article Physicochemical characterisation of quince fruits for industrial use : yield , turbidity , viscosity and colour properties of juices 1818–1824. https://doi.org/10,1111/ijfs.12490


Full Text: PDF

DOI: 10.24815/jks.v19i3.14591

Refbacks

  • There are currently no refbacks.