1,151
Views
0
CrossRef citations to date
0
Altmetric
Microbiology

Antimicrobial effect of Brachystegia boehmii extracts and their green synthesised silver zero-valent derivatives on burn wound infectious bacteria

, , , , &
Pages 1117-1125 | Received 18 Jun 2021, Accepted 02 Aug 2022, Published online: 17 Oct 2022

References

  • Abdellah AM, Sliem MA, Bakr M, Amin RM. 2018. Green synthesis and biological activity of silver-curcumin nanoconjugates. Future Med Chem. 10(22):2577–2588.
  • Achari A, Somers DO, Champness JN, Bryant PK, Rosemond J, Stammers DK. 1997. Crystal structure of the anti-bacterial sulfonamide drug target dihydropteroate synthase. Nat Struct Biol. 4(6):490–497.
  • Ahmed RH, Mustafa DE. 2020. Green synthesis of silver nanoparticles mediated by traditionally used medicinal plants in Sudan. Int Nano Lett. 10(1):1–14. doi:10.1007/s40089-019-00291-9.
  • Ahmed S, Ahmad M, Swami BL, Ikram S, Agarwal H, et al. 2016. A review on plants extract mediated synthesis of silver nanoparticles for antimicrobial applications: a green expertise. Resour Technol. 9(1):1–7. doi:10.1016/j.jare.2015.02.007.
  • Ahn EY, Jin H, Park Y. 2019. Green synthesis and biological activities of silver nanoparticles prepared by Carpesium cernuum extract. Arch Pharm Res. 42(10):926–934. doi:10.1007/s12272-019-01152-x.
  • Ajitha B, Ashok Kumar Reddy Y, Sreedhara Reddy P. 2015. Green synthesis and characterization of silver nanoparticles using Lantana camara leaf extract. Mater Sci Eng C. 49:373–381.
  • Azizi S, Ahmad MB, Namvar F, Mohamad R. 2014. Green biosynthesis and characterization of zinc oxide nanoparticles using brown marine macroalga Sargassum muticum aqueous extract. Mater Lett. 116:275–277.
  • Begashaw B, Mishra B, Tsegaw A, Shewamene Z. 2017. Methanol leaves extract Hibiscus micranthus Linn exhibited antibacterial and wound healing activities. BMC Complement Altern Med. 17(1):337; [accessed 2020 Aug 11]. http://bmccomplementalternmed.biomedcentral.com/articles/10.1186s12906-017-1841-x.
  • Behravan M, Hossein Panahi A, Naghizadeh A, Ziaee M, Mahdavi R, Mirzapour A. 2019. Facile green synthesis of silver nanoparticles using Berberis vulgaris leaf and root aqueous extract and its antibacterial activity. Int J Biol Macromol. 124:148–154.
  • Breijyeh Z, Jubeh B, Karaman R. 2020. Resistance of gram-negative bacteria to current antibacterial agents and approaches to resolve it. Molecules. 25(6):1340. doi:10.3390/molecules25061340.
  • Budovsky A, Yarmolinsky L, Ben-Shabat S. 2015. Effect of medicinal plants on wound healing. Wound Repair Regen. 23:171–183.
  • Chirisa E, Mukanganyama S. 2016. Evaluation of in vitro anti-inflammatory and antioxidant activity of selected Zimbabwean plant extracts. J Herbs Spices Med Plants. 22(2):157–172. doi:10.1080/10496475.2015.1134745.
  • Chitemerere T, Mukanganyama S. 2011. In vitro antibacterial activity of selected medicinal plants from Zimbabwe. African J Plant Sci Biotechnol. 5(1):1–7.
  • Dai NT, Chang HI, Wang YW, Fu KY, Huang TC, Huang NC, et al. 2018. Restoration of skin pigmentation after deep partial or full-thickness burn injury. Adv Drug Deliv Rev. 123(325):155–164. doi:10.1016/j.addr.2017.10.010.
  • Espenti CS, Rao KSVK, Rao KM. 2016. Bio-synthesis and characterization of silver nanoparticles using Terminalia chebula leaf extract and evaluation of its antimicrobial potential. Mater Lett. 174:129–133. doi:10.1016/j.matlet.2016.03.106.
  • Ethiraj AS, Jayanthi S, Ramalingam C, Banerjee C. 2016. Control of size and antimicrobial activity of green synthesized silver nanoparticles. Mater Lett. 185:526–529.
  • Fankam AG, Kuiate JR, Kuete V. 2015. Antibacterial and antibiotic resistance modifying activity of the extracts from Allanblackia gabonensis, Combretum molle and Gladiolus quartinianus against gram-negative bacteria including multi-drug resistant phenotypes. BMC Complement Altern Med. 15(1). doi:10.1186/s12906-015-0726-0.
  • Ganesan S, Mehalingam P, Selvam GS. 2019. Green synthesis of silver nanoparticles from de-oiled rhizomes of Curcuma longa L. and its biomedical potential. Cham: Springer; p. 94–106; [accessed 2020 Sep 10]. https://link.springer.com/chapter/10.1007978-3-030-25135-2_10.
  • Hudzicki J. 2009. Kirby-Bauer disk diffusion susceptibility test protocol author information. Am Soc Microbiol. 15:55–63. https://www.asm.org/Protocols/Kirby-Bauer-Disk-Diffusion-Susceptibility-Test-Pro.
  • Isabel M, Jossias AD, Maria JS, Natasha R. 2018. Woody species from the Mozambican Miombo woodlands: a review on their ethnomedicinal uses and pharmacological potential. J Med Plants Res. 12(2):15–31.
  • Karunanidhi A, Ghaznavi-Rad E, Nathan JJ, Abba Y, Van Belkum A, Neela V. 2017. Allium stipitatum extract exhibits in vivo antibacterial activity against methicillin-resistant staphylococcus aureus and accelerates burn wound healing in a full-thickness murine burn model. Evidence-based complement. Altern Med. 2017:1914732.
  • Khatami M, Pourseyedi S, Khatami M, Hamidi H, Zaeifi M, Soltani L. 2015. Synthesis of silver nanoparticles using seed exudates of Sinapis arvensis as a novel bioresource, and evaluation of their antifungal activity. Bioresour Bioprocess. 2(1):19. http://www.bioresourcesbioprocessing.com/content/2/1/19.
  • Lachiewicz AM, Hauck CG, Weber DJ, Cairns BA, Van Duin D. 2017. Bacterial infections after burn injuries: impact of multidrug resistance. Clin Infect Dis. 65(12):2130–2136.
  • Leaper D, Ayello EA, Carville K, Fletcher J, Keast DH. 2012. International consensus appropriate use of silver. MacGregor L, editor. Wounds Int. London: Kathy Day.
  • Maikai V, Kobo P, Maikai B. 2009. Antimicrobial properties of stem bark extracts of Ximenia americana. J Agric Sci. 1(2):30.
  • Maroyi A. 2013. Traditional use of medicinal plants in south-central Zimbabwe: review and perspectives. J Ethnobiol Ethnomed. 9(1):1–8.
  • Maroyi A. 2016. Ximenia caffra Sond. (Ximeniaceae) in sub-Saharan Africa: a synthesis and review of its medicinal potential. J Ethnopharmacol. 184:81–100. doi:10.1016/j.jep.2016.02.052.
  • Ministry of Health and Child Welfare. 2015. EDLIZ 2015 7th essential medicines list and standard treatment guidelines for Zimbabwe. 7th ed. Harare. www.mohcc.gov.zw.
  • Mo YY, Tang YK, Wang SY, Lin JM, Zhang HB, Luo DY. 2015. Green synthesis of silver nanoparticles using eucalyptus leaf extract. Mater Lett. 144:165–167.
  • Moodley JS, Babu S, Krishna N, Pillay K, Govender P, Indexed S, Aujla GS, Pandey S, Trivedi Y, Ghosh D, et al. 2018. The good and the bad collagens of fibrosis – their role in signaling and organ function. Adv Drug Deliv Rev. 123(1–3):33–64. doi:10.1016/j.addr.2017.11.011.
  • Mucheneri N, Muchenje T, Nyoni S, Shumba M, Mupa M, Gwatidzo L, Rahman A. 2017. Green synthesis of silver nanoparticles using Euphorbia confinalis stem extract, characterization and evaluation of antimicrobial activity. J Nanomater Mol Nanotechnol Res. 6(3). doi:10.4172/2324-8777.1000224.
  • Mussin J, Giusiano G. 2020. Agricultural, forestry and bioindustry biotechnology and biodiscovery. Cham: Springer.
  • Mussin J, Robles-Botero V, Casañas-Pimentel R, Rojas F, Angiolella L, San Martín-Martínez E, et al. 2021. Antimicrobial and cytotoxic activity of green synthesis silver nanoparticles targeting skin and soft tissue infectious agents. Sci Rep. 11(1):1–12. doi:10.1038/s41598-021-94012-y.
  • Negut I, Grumezescu V, Grumezescu AM. 2018. Treatment strategies for infected wounds. Molecules. 2(3):1–23.
  • Paladini F, Pollini M. 2019. Antimicrobial silver nanoparticles for wound healing application: progress and future trends. Materials. 12(16):2540.
  • Palamthodi SM, Gaikwad VJ, Ghasghase N V, Patil SS. 2011. Antibacterial targets in Pseudomonas aeruginosa. Int J Pharm Appl 2(3):159–164. http://www.bipublication.com.
  • Pannerselvam B, Dharmalingam Jothinathan MK, Rajenderan M, Perumal P, Pudupalayam Thangavelu K, Kim HJ, et al. 2017. An in vitro study on the burn wound healing activity of cotton fabrics incorporated with phytosynthesized silver nanoparticles in male Wistar albino rats. Eur J Pharm Sci 100:187–196. doi:10.1016/j.ejps.2017.01.015.
  • Patra JK, Das G, Fraceto LF, Campos EVR, Rodriguez-Torres MDP, Acosta-Torres LS, et al. 2018. Nano based drug delivery systems: recent developments and future prospects 10 technology 1007 nanotechnology 03 chemical sciences 0306 physical chemistry (incl. structural) 03 chemical sciences 0303 macromolecular and materials chemistry 11 medical and He. J Nanobiotechnology. 16(1):1–33. doi:10.1186/s12951-018-0392-8.
  • Permana AD, Anjani QK, Sartini UE, Volpe-Zanutto F, Paredes AJ, et al. 2021. Selective delivery of silver nanoparticles for improved treatment of biofilm skin infection using bacteria-responsive microparticles loaded into dissolving microneedles. Mater Sci Eng C. 120:111786. doi:10.1016/j.msec.2020.111786.
  • Queiroz Monte FJ, de Lemos TLG, de Arajo MRS, de Sousa Gomes E. 2012. Ximenia americana: chemistry, pharmacology and biological properties, a review. In: Rao V, editor. Phytochemicals – a global perspective of their role in nutrition and health. InTech. http://www.intechopen.com/books/phytochemicals-a-global- perspective-of-their-role-in-nutrition-and-health/ximenia-americana-chemistry-pharmacology-and-biological- properties-a-review.
  • Rai M, Yadav A, Gade A. 2009. Silver nanoparticles as a new generation of antimicrobials. Biotechnol Adv. 27(1):76–83. doi:10.1016/j.biotechadv.2008.09.002.
  • Rajendran NK, Kumar SSD, Houreld NN, Abrahamse H. 2018. A review on nanoparticle based treatment for wound healing. J Drug Deliv Sci Technol. 44:421–430.
  • Rao NH, Lakshmidevi N, Pammi SVN, Kollu P, Ganapaty S, Lakshmi P. 2016. Green synthesis of silver nanoparticles using methanolic root extracts of Diospyros paniculata and their antimicrobial activities. Mater Sci Eng C. 62:553–557. http://www.ncbi.nlm.nih.gov/pubmed/26952458%5Cnhttp://ac.els-cdn.com/S0928493116300716/1-s2.0-S0928493116300716-main.pdf?_tid=94d79c70-f0c7-11e5-bc74-00000aacb362&acdnat=1458717749_4c3ea9b5783ecd666f675bb3e8007f4e.
  • Rex JRS, Muthukumar NM, Selvakumar PM. 2018. Phytochemicals as a potential source for anti-microbial, anti-oxidant and wound healing – a review. MOJ Bioorganic Org Chem. 2(2):61–70.
  • Rose LF, Chan RK. 2016. The burn wound microenvironment. Adv wound care. 5(3):106–118. doi:10.1089/wound.2014.0536.
  • Rousselle P, Braye F, Dayan G. 2018. Re-epithelialization of adult skin wounds: cellular mechanisms and therapeutic strategies. Adv Drug Deliv Rev. 46:344–365. doi:10.1016/j.addr.2018.06.019.
  • Salomoni R. 2017. Antibacterial effect of silver nanoparticles in Pseudomonas aeruginosa. Nanotechnol Sci Appl. 10:115–121.
  • Selvakumar PM, Rajkumar RJ, Nadar M. 2018. Plant-derived compounds for wound healing – a review. Org Med Chem Int J. 5(1):1–5.
  • Shah A, Amini-Nik S. 2017. The role of phytochemicals in the inflammatory phase of wound healing. Int J Mol Sci. 18(5):1068. doi:10.3390/ijms18051068.
  • Singh P, Kim YJ, Zhang D, Yang DC. 2016. Biological synthesis of nanoparticles from plants and microorganisms. Trends Biotechnol. 34:588–599. doi:10.1016/j.tibtech.2016.02.006.
  • Thakur R, Jain N, Pathak R, Sandhu SS. 2011. Practices in wound healing studies of plants. Evidence-based complement. Altern Med. 2011:438056.
  • Vaghardoost R, Mousavi Majd SG, Tebyanian H, Babavalian H, Malaei L, Niazi M, Javdani A. 2018. The healing effect of sesame oil, camphor and honey on second degree burn wounds in rat. World J Plast Surg 7(1):67–71.
  • Wang Y, Beekman J, Hew J, Jackson S, Issler-Fisher AC, Parungao R, et al. 2018. Burn injury: challenges and advances in burn wound healing, infection, pain and scarring. Adv Drug Deliv Rev. 123:3–17. doi:10.1016/j.addr.2017.09.018.
  • Wasef LG, Shaheen HM, El-sayed YS, Shalaby TIA, Samak DH. 2019. Effects of silver nanoparticles on burn wound healing in a mouse model. Biol Trace Elem Res. 193(2):456–465. doi:10.1007/s12011-019-01729-z.
  • Yaman I, Durmus AS, Ceribasi S, Yaman M. 2010. Effects of Nigella sativa and silver sulfadiazine on burn wound healing in rats. Vet Med. 55(12):619–624.
  • Yin IX, Zhang J, Zhao IS, Mei ML, Li Q, Chu CH. 2020. The antibacterial mechanism of silver nanoparticles and its application in dentistry. Int J Nanomedicine. 15:2555–2562.
  • Zarrintaj P, Moghaddam AS, Manouchehri S, Atoufi Z, Amiri A, Amirkhani MA, Nilforoushzadeh MA, Saeb MR, Hamblin MR, Mozafari M. 2017. Can regenerative medicine and nanotechnology combine to heal wounds? the search for the ideal wound dressing. Nanomedicine 12(19):2403–2422. doi:10.2217/nnm-2017-0173.