Yıl: 2019 Cilt: 12 Sayı: 2 Sayfa Aralığı: 576 - 584 Metin Dili: İngilizce DOI: 10.18185/erzifbed.451871 İndeks Tarihi: 20-12-2020

Antibacterial Activity of DMSO Extracts of Selected Plants Against Antibiotic Resistant Clinical Isolates

Öz:
In this study, we aimed to find out new herbal materials that are able to inhibit the growth of the P. aeruginosaand E.coli clinical isolates that has antibiotic resistance. Clinical isolates used in this research are E. coli (n=1)and P.aeruginosa (n=1). Antibiotic susceptibility profiles of E. coli and P. aeruginosa were determined usinge-test. Plants were collected in Trabzon region of Turkey are Calendula officinalis, Hypericum perforatum andGlycyrrhiza glabra. DMSO were used as solvent and solid-liquid extraction was employed. Micro-dilutionmethod was preferred fo the determination of the minimum inhibitory concentration (MIC). MIC results wereobtained through observation of turbidities. According to E-test results, while P. aeruginosa was resistant topiperacillin, piperacillin/tazobactam, meropenem and ceftazidime, E. coli was resistant to piperacillin,cefotaxime and ceftazidime. DMSO extract of Calendula officinalis showed very strong activity against PA1with the best MIC (5 mg/mL). DMSO extract of three plant had lower MIC values (5-10 mg/ml) for EC1 andPA1 than ampicillin. In future studies antibacterial activity of different solvents extracts of these plants andother plants against antibiotic resistant clinical isolates will be examined. Natural products from plants arepromising in fighting with antibiotic-resistant bacteria.
Anahtar Kelime:

Seçilen Bitkilerin DMSO Özütlerinin Antibiyotik Dirençli Klinik İzolatlara Karşı Antibakteriyel Aktivitesi

Öz:
Bu çalışmada, antibiyotik dirençli P. aeruginosa ve E.coli klinik izolatlarının büyümesini engelleyebilecek yeni bitkisel materyallerin keşfi amaçlanmıştır. Bu çalışmada kullanılan klinik izolatlar E. coli (n = 1) ve P.aeruginosa'dır (n = 1). E. coli ve P. aeruginosa'nın antibiyotik duyarlılık profilleri e-test kullanılarak belirlenmiştir. Trabzon yöresinden Calendula officinalis, Hypericum perforatum and Glycyrrhiza glabra bitkileri toplanmıştır. Çözücü olarak DMSO kullanılmış ve katı-sıvı ekstraksiyon yapılmıştır. Minimum inhibitör konsantrasyonunun (MİK) belirlenmesi için mikro dilüsyon yöntemi tercih edilmiştir. MİK sonuçları türbiditelerin gözlemlenmesiyle elde edilmiştir. E-test sonuçlarına göre, P. aeruginosa piperasilin, piperasilin/tazobaktam, meropenem ve seftazidime dirençli iken, E. coli piperasilin, sefotaksim ve seftazidime dirençliydi. Calendula officinalis'in DMSO özütü, en iyi MIC (5 mg / mL) ile PA1'e karşı çok güçlü aktivite göstermiştir. Üç bitkinin DMSO özütü, EC1 ve PA1 için ampisilin değerinden daha düşük MIC değerlerine (5- 10 mg / ml) sahip olduğu tespit edilmiştir. Gelecekteki çalışmalarda, bu bitkilerin ve diğer bitkilerin antibiyotik dirençli klinik izolatlara karşı farklı çözücülerle hazırlanan özütlerinin antibakteriyel aktiviteleri incelenecektir. Bitkilerden elde edilen doğal ürünler, antibiyotiğe dirençli bakterilerle savaşırken ümit vericidir.
Anahtar Kelime:

Belge Türü: Makale Makale Türü: Araştırma Makalesi Erişim Türü: Erişime Açık
  • Abbas, A., Zubair, M., Rasool, N., Rizwan, K. (2015). “Antimicrobial Potential of Glycyrrhiza glabra”, Journal of Drug Design and Medicinal Chemistry, 1(2), 17-20.
  • Akova, M. (2016). “Epidemiology of antimicrobial resistance in bloodstream infections.” Virulence, 7(3), 252–266.
  • Andersen, NF., Møller, J., Peterslund, NA. (2005). “Piperacillin-resistant Escherichia coli bacteraemia: Relation to empiric therapy and clinical outcome”, Scandinavian Journal of Infectious Diseases, 37(2),90-95.
  • Cantas, L., Shah, SQ., Cavaco, LM., Manaia, CM., Walsh, F., Popowska, M., Garelick, H., Bürgmann, H., Sørum, H. (2013). “A brief multi-disciplinary review on antimicrobial resistance in medicine and its linkage to the global environmental microbiota”, Frontiers in Microbiology, 14;4:96.
  • Chandurkar, P., Murab, T., Ahakey, N., Tripathi, N., Choudhary, A. (2015) “Antimicrobial activity of aqueous, acetone and methanol extracts of Calendulaofficinalis L. (Marigold) flower”, International Journal of Pure & Applied Bioscience, 3 (2), 386-388.
  • Damasceno, J., Giuberti, C., Gonçalves, R., Kitagawa, R. (2015) “Preformulation study and influence of DMSO and propylene glycol on the antioxidant action of isocoumarin paepalantine isolated from Paepalanthus bromelioides,” Revista Brasileira de Farmacognosia, 25(4), 395-400.
  • Dhama, K., Tiwari R., Chakraborty S., Saminathan M., Kumar A., Karthik K., Wani MY., Amarpal, Singh SV. and Rahal A. (2014). “Evidence Based Antibacterial Potentials of Medicinal Plants and Herbs Countering Bacterial Pathogens Especially in the Era of Emerging Drug Resistance: An Integrated Update”, International Journal of Pharmacology, 10, 1-43.
  • Direkel S, Uzunoglu E, Uzalp C, Findik E, Tontak S, et al. (2017). “Determination of Piperacillin/Tazobactam and Ticarcillin/Clavulanate Susceptibilities in Pseudomonas aeruginosa Isolates in Hospitalised Patients by E-test Gradient Method and Comparison of Results with Disk Diffusion Tests”, Clinical Microbiology: Open Access, 6:273.
  • EUCAST. “The European Committee on Antimicrobial Susceptibility Testing. Breakpoint tables for interpretation of MICs and zone diameters. Version 8.1, 2018”, http://www.eucast.org, 05.06.18.
  • Hunter, PA., Dawson, S., French, GL., Goossens, H., Hawkey, P.M., Kuijper, EJ., Nathwani, D., Taylor, DJ., Teale, CJ., Warren, RE., Wilcox, MH., Woodford, N., Wulf, MW., Piddock, LJ. (2010). “Antimicrobialresistant pathogens in animals and man: prescribing, practices and policies”, Journal of Antimicrobial Chemotherapy, 65 (1), 3-17.
  • Karahan, F., Avsar, C., Ozyigit, II., Berber I. (2016). “Antimicrobial and antioxidant activities of medicinal plant Glycyrrhiza glabra var. glandulifera from different habitats”, Biotechnology & Biotechnological Equipment, 30 (4), 797-804.
  • Kim, A., Sutherland, CA., Kuti, JL., Nicolau, DP. (2007). “Optimal dosing of piperacillintazobactam for the treatment of Pseudomonas aeruginosa infections: prolonged or continuous infusion?” Pharmacotherapy, 27(11),1490-1497.
  • Kos, VN., McLaughlin, RE., Gardner, HA. (2016). “Elucidation of Mechanisms of Ceftazidime Resistance among Clinical Isolates of Pseudomonas aeruginosa by Using Genomic Data”, Antimicrobial Agents and Chemotherapy, 60(6), 3856–3861.
  • Lodise, TP., Jr, Lomaestro, B., Drusano, GL. (2007). “Piperacillin-Tazobactam for Pseudomonas aeruginosa Infection: Clinical Implications of an Extended-Infusion Dosing Strategy”, Clinical Infectious Diseases, 44(3), 357-363.
  • Mirsalehian, A., Kalantar-Neyestanaki, D., Taherikalani, M., Jabalameli, F., Emaneini, M. (2017). “Determination of carbapenem resistance mechanism in clinical isolates of Pseudomonas aeruginosa isolated from burn patients, in Tehran, Iran”, Journal of Epidemiology and Global Health, 7(3),155- 159.
  • Nitalikar, MM., Munde, KC., Dhore, BV., Shikalgar, SN. (2010). “Studies of Antibacterial Activities of Glycyrrhiza glabra Root Extract”, International Journal of PharmTech Research, 2 (1), 899-901.
  • Oskay, M., Oskay, D., Kalyoncu, F. (2009). “Activity of Some Plant Extracts Against Multi-Drug Resistant Human Pathogens”, Iranian Journal of Pharmaceutical Research, 8 (4), 293-300.
  • Reichling, J., Weseler, A., Saller, RA. 2001. “Current Review of the Antimicrobial Activity of Hypericum perforatum L”, Pharmacopsychiatry, 34 (1), 116-118.
  • Rostami, S., Farajzadeh Sheikh, A., Shoja, S., Farahani, A., Tabatabaiefar, MA., Jolodar, A., Sheikhi, R. (2018). “Investigating of four main carbapenem-resistance mechanisms in high-level carbapenem resistant Pseudomonas aeruginosa isolated from burn patients”, Journal of the Chinese Medical Association, 81(2),127-132.
  • Shah Pratibha, J., Williamson Manita, T. (2015). “Antibacterial and Synergistic activity of Calendula officinalis Methanolic Petal Extract on Klebsiella pneumoniae Coproducing ESBL and AmpC Beta Lactamase”, International Journal of Current Microbiology and Applied Sciences,4(4), 107- 117.
  • Srivastava, J., Chandra, H., Nautiyal, AR., Kalra, SJS. (2014). "Antimicrobial resistance (AMR) and plant-derived antimicrobials (PDAms) as an alternative drug line to control infections”, 3 Biotech, 4(5), 451–460.
  • Süntar, I., Oyardı, O., Akkol, EK., Ozçelik, B. (2016). “Antimicrobial effect of the extracts from Hypericum perforatum against oral bacteria and biofilm formation”, Pharmaceutical Biology, 54(6),1065-1070.
  • Tavío, MM., Aquili, VD., Vila, J., Poveda, JB. (2014). “Resistance to ceftazidime in Escherichia coli associated with AcrR, MarR and PBP3 mutations and overexpression of sdiA”, Journal of Medical Microbiology, 63(1),56-65.
  • Vila, J., Sáez-López, E., Johnson, JR., Römling, U., Dobrindt, U., Cantón, R., Giske, CG., Naas, T., Carattoli, A., MartínezMedina, M., Bosch, J., Retamar, P., Rodríguez-Baño, J., Baquero, F., Soto, SM. (2016). “Escherichia coli: an old friend with new tidings”, FEMS Microbiology Reviews, 40(4),437-463.
  • Wikaningtyas, P., Sukandar, EY. (2016). “The antibacterial activity of selected plants towards resistant bacteria isolated from clinical specimens”, Asian Pacific Journal of Tropical Biomedicine, 6 (1),16-19.
  • Yuan, XY., Yu, DY., Qu, XH., Xiao, XQ., Bi, B., Sun, SB., Chang, AY., Zhang, QB. (2016). “Increased resistance rate to ceftazidime among blood culture isolates of ESBL-producing Escherichia coli in a university-affiliated hospital of China”, The Journal of Antibiotics (Tokyo), 69(3),169- 172.
APA SARAL A, KARDİL U, ÖZAD DÜZGÜN A (2019). Antibacterial Activity of DMSO Extracts of Selected Plants Against Antibiotic Resistant Clinical Isolates. , 576 - 584. 10.18185/erzifbed.451871
Chicago SARAL Ayşegül,KARDİL Uğur,ÖZAD DÜZGÜN AZER Antibacterial Activity of DMSO Extracts of Selected Plants Against Antibiotic Resistant Clinical Isolates. (2019): 576 - 584. 10.18185/erzifbed.451871
MLA SARAL Ayşegül,KARDİL Uğur,ÖZAD DÜZGÜN AZER Antibacterial Activity of DMSO Extracts of Selected Plants Against Antibiotic Resistant Clinical Isolates. , 2019, ss.576 - 584. 10.18185/erzifbed.451871
AMA SARAL A,KARDİL U,ÖZAD DÜZGÜN A Antibacterial Activity of DMSO Extracts of Selected Plants Against Antibiotic Resistant Clinical Isolates. . 2019; 576 - 584. 10.18185/erzifbed.451871
Vancouver SARAL A,KARDİL U,ÖZAD DÜZGÜN A Antibacterial Activity of DMSO Extracts of Selected Plants Against Antibiotic Resistant Clinical Isolates. . 2019; 576 - 584. 10.18185/erzifbed.451871
IEEE SARAL A,KARDİL U,ÖZAD DÜZGÜN A "Antibacterial Activity of DMSO Extracts of Selected Plants Against Antibiotic Resistant Clinical Isolates." , ss.576 - 584, 2019. 10.18185/erzifbed.451871
ISNAD SARAL, Ayşegül vd. "Antibacterial Activity of DMSO Extracts of Selected Plants Against Antibiotic Resistant Clinical Isolates". (2019), 576-584. https://doi.org/10.18185/erzifbed.451871
APA SARAL A, KARDİL U, ÖZAD DÜZGÜN A (2019). Antibacterial Activity of DMSO Extracts of Selected Plants Against Antibiotic Resistant Clinical Isolates. Erzincan Üniversitesi Fen Bilimleri Enstitüsü Dergisi, 12(2), 576 - 584. 10.18185/erzifbed.451871
Chicago SARAL Ayşegül,KARDİL Uğur,ÖZAD DÜZGÜN AZER Antibacterial Activity of DMSO Extracts of Selected Plants Against Antibiotic Resistant Clinical Isolates. Erzincan Üniversitesi Fen Bilimleri Enstitüsü Dergisi 12, no.2 (2019): 576 - 584. 10.18185/erzifbed.451871
MLA SARAL Ayşegül,KARDİL Uğur,ÖZAD DÜZGÜN AZER Antibacterial Activity of DMSO Extracts of Selected Plants Against Antibiotic Resistant Clinical Isolates. Erzincan Üniversitesi Fen Bilimleri Enstitüsü Dergisi, vol.12, no.2, 2019, ss.576 - 584. 10.18185/erzifbed.451871
AMA SARAL A,KARDİL U,ÖZAD DÜZGÜN A Antibacterial Activity of DMSO Extracts of Selected Plants Against Antibiotic Resistant Clinical Isolates. Erzincan Üniversitesi Fen Bilimleri Enstitüsü Dergisi. 2019; 12(2): 576 - 584. 10.18185/erzifbed.451871
Vancouver SARAL A,KARDİL U,ÖZAD DÜZGÜN A Antibacterial Activity of DMSO Extracts of Selected Plants Against Antibiotic Resistant Clinical Isolates. Erzincan Üniversitesi Fen Bilimleri Enstitüsü Dergisi. 2019; 12(2): 576 - 584. 10.18185/erzifbed.451871
IEEE SARAL A,KARDİL U,ÖZAD DÜZGÜN A "Antibacterial Activity of DMSO Extracts of Selected Plants Against Antibiotic Resistant Clinical Isolates." Erzincan Üniversitesi Fen Bilimleri Enstitüsü Dergisi, 12, ss.576 - 584, 2019. 10.18185/erzifbed.451871
ISNAD SARAL, Ayşegül vd. "Antibacterial Activity of DMSO Extracts of Selected Plants Against Antibiotic Resistant Clinical Isolates". Erzincan Üniversitesi Fen Bilimleri Enstitüsü Dergisi 12/2 (2019), 576-584. https://doi.org/10.18185/erzifbed.451871