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Materials Technology
Advanced Performance Materials
Volume 38, 2023 - Issue 1
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Research Article

Investigation of electrospun poly (ε-caprolactone) fiber mats loaded with Calophyllum inophyllum essential oil for wound dressing applications: Morphology, drug release and in vitro evaluation

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Article: 2223018 | Received 03 Apr 2023, Accepted 03 Jun 2023, Published online: 12 Jun 2023

References

  • Rodrigues M, Kosaric N, Bonham CA, et al. WouNd healing: a cellular perspective. Physiol Rev. 2019;99. 665–14. doi:10.1152/physrev.00067.2017
  • Guo S, DiPietro LA. Factors affecting wound healing. J Dent Res. 2010;89(3):219. DOI:10.1177/0022034509359125.
  • Ghomi ER, Khalili S, Khorasani SN, et al. WOund dressings: current advances and future directions. J Appl Polym Sci. 2019;136(27):47738. DOI:10.1002/APP.47738.
  • Naeimi M, Noohi N. Fabrication and characterisation of antibacterial porous alginate/aloe vera structures containing chitosan nanoparticles for wound dressing applications. Mater Technol. 2021;37(8):822–828. DOI:10.1080/10667857.2021.1898713.
  • Dweck AC, Meadows T. Tamanu (Calophyllum inophyllum) - the African, Asian, Polynesian and Pacific Panacea. Int J Cosmet Sci. 2002;24(6):341–348. DOI:10.1046/J.1467-2494.2002.00160.X.
  • Nguyen VL, Truong CT, Nguyen BCQ, et al. Anti-inflammatory and wound healing activities of Calophyllolide isolated from Calophyllum Inophyllum Linn. PLoS ONE. 2017;12(10):e0185674. DOI:10.1371/JOURNAL.PONE.0185674.
  • Poljšak N, Kreft S, Kočevar Glavač N. Vegetable butters and oils in skin wound healing: scientific evidence for new opportunities in dermatology. Phytother Res. 2020;34. 254–269. doi:10.1002/PTR.6524
  • Erdemir A. Anti-proliferative and apoptosis inducing activity of Calophyllum Inophyllum L. oil extracts on C6 Glioma cell line. Biotech Studies. 2021;30(1):0–0. DOI:10.38042/BIOST.2021.30.01.01.
  • Li D, Guo T, Zhong F, et al. Mechanically-enhanced fibre Topography via Electrospinning on a Poly(ε-Caprolactone) film for tendon tissue-engineering application. Materials Technology. 2021;37(9):1031–1039. DOI:10.1080/10667857.2021.1915664.
  • Xue J, Wu T, Dai Y, et al. Electrospinning and electrospun nanofibers: methods, materials, and applications. Chem Rev. 2019;119(8):5298. DOI:10.1021/ACS.CHEMREV.8B00593.
  • Liu X, Xu H, Zhang M, et al. Electrospun medicated nanofibers for wound healing: review. Membranes 2021. 2021;11(10):770. DOI:10.3390/membranes11100770.
  • Mostafavi P, Naeimi M. Investigation of Vitamin D-Loaded silk fibroin electrospun scaffolds for bone tissue engineering applications. Materials Technology. 2021;37(10):1329–1337. DOI:10.1080/10667857.2021.1940426.
  • Gu X, Cao R, Li Y, et al. Three-component antibacterial membrane of poly(Butylene Carbonate), poly(Lactic Acid) and Chitosan prepared by electrospinning. Mater Technol. 2019;34(8):463–470. DOI:10.1080/10667857.2019.1576822.
  • Aadil KR, Nathani A, Sharma CS, et al. Fabrication of biocompatible alginate-poly(Vinyl Alcohol) NanofIbers scaffolds for tissue engineering applications. Mater Technol. 2018;33. 507–512. doi:10.1080/10667857.2018.1473234
  • Karimi Tar A, Karbasi S, Naghashzargar E, et al. Biodegradation and cellular evaluation of aligned and random poly (3-hydroxybutyrate)/chitosan electrospun scaffold for nerve tissue engineering applications. Materials Technology. 2019;35(2):92–101. DOI:10.1080/10667857.2019.1658170.
  • Nanni G, Heredia-Guerrero JA, Paul UC, et al. POly(furfuryl alcohol)-polycaprolactone blends. Polymers. 2019;11(6):1069. DOI:10.3390/polym11061069.
  • Altun E, Ahmed J, Onur Aydogdu M, et al. The effect of solvent and pressure on polycaprolactone solutions for particle and fibre formation. Eur Polym J. 2022;173:111300. DOI:10.1016/j.eurpolymj.2022.111300
  • Adhikari J, Ghosh M, Das P, et al. PolycaprolActone assisted electrospinning of honey/betel with chitosan for tissue engineering. Mater Today Proc. 2022;57:307–315. DOI:10.1016/j.matpr.2022.03.096
  • El Fawal G, Hong H, Mo X, et al. Fabrication of Scaffold based on Gelatin and Polycaprolactone (PCL) for wound dressing application. J Drug Deliv Sci Technol. 2021;63:102501. DOI:10.1016/J.JDDST.2021.102501
  • Meteoglu I, Erdemir A. Genistein and Temozolomide-loaded Polymeric Nanoparticles: a Synergistic approach for improved anti-tumor efficacy against Glioblastoma. Process Biochem. 2021;110. 9–18. doi:10.1016/J.PROCBIO.2021.07.015
  • Partheniadis I, Stathakis G, Tsalavouti D, et al. Essential oil—loaded nanofibers for pharmaceutical and biomedical applications: a systematic mini-review. Pharmaceutics. 2022;14(9):1799. DOI:10.3390/PHARMACEUTICS14091799.
  • Haider A, Haider S, Kang IK. A comprehensive review summarizing the effect of electrospinning parameters and potential applications of nanofibers in biomedical and biotechnology. Arabian J Chem. 2018;11. 1165–1188. doi:10.1016/J.ARABJC.2015.11.015
  • Amna R, Ali K, Malik MI, et al. A brief review of electrospinning of polymer nanofibers: history and main applications. JNMES. 2020;23(3):151–163. DOI:10.14447/JNMES.V23I3.A01.
  • Rather AH, Wani TU, Khan RS, et al. ProsPects of polymeric nanofibers loaded with essential oils for biomedical and food-packaging applications. Int J Mol Sci. 2021;22(8):4017. DOI:10.3390/IJMS22084017.
  • Mele E. Electrospinning of Essential Oils. Polymers. 2020;12(4):908. DOI:10.3390/POLYM12040908.
  • Unalan I, Endlein SJ, Slavik B, et al. Evaluation of electrospun poly(ε-caprolactone)/gelatin nanofiber mats containing clove essential oil for antibacterial wound dressing. Pharmaceutics. 2019;11(11):570. DOI:10.3390/PHARMACEUTICS11110570.
  • García-Moreno PJ, Guadix A, Guadix EM, et al. PhysIcal and oxidative stability of fish oil-in-water emulsions stabilized with fish protein hydrolysates. Food Chem. 2016;203:124–135. DOI:10.1016/J.FOODCHEM.2016.02.073
  • Sill TJ, von Recum HA. Electrospinning: applications in drug delivery and tissue engineering. Biomaterials. 2008;29(13):1989–2006. DOI:10.1016/J.BIOMATERIALS.2008.01.011.
  • Garg K, Bowlin GL. Electrospinning jets and nanofibrous structures. Biomicrofluidics. 2011;5(1):013403. DOI:10.1063/1.3567097.
  • Ura DP, Rosell-Llompart J, Zaszczyńska A, et al. THe role of electrical polarity in electrospinning and on the mechanical and structural properties of as-spun fibers. Materials. 2020;13(18):4169. DOI:10.3390/MA13184169
  • Zeng W, Cheng NM, Liang X, et al. Wei electrospun polycaprolactone nanofibrous membranes loaded with baicalin for antibacterial wound dressing. Scientific Reports 2022 12:1 1–11, doi:10.1038/s41598-022-13141-0.
  • Hafshah H, Prajitno DH, Roesyadi A. HydrotalCite catalyst for hydrocracking calophyllum inophyllum oil to biofuel: a comparative study with and without nickel impregnation. Bull Chem React Eng Catal. 2017;12(2):273–280. DOI:10.9767/BCREC.12.2.776.273-280.
  • Mollaghadimi B. Preparation and characterisation of polycaprolactone–fibroin nanofibrous scaffolds containing Allicin. IET Nanobiotechnol. 2022;16(7–8):239–249. DOI:10.1049/NBT2.12092.
  • Göksen G, Fabra MJ, Ekiz HI, et al. Phytochemical-loaded electrospun nanofibers as novel active edible films: characterization and antibacterial efficiency in cheese slices. Food Control. 2020;112:107133. DOI:10.1016/J.FOODCONT.2020.107133
  • Unalan I, Slavik B, Buettner A, et al. PhysiCal and antibacterial properties of peppermint essential oil loaded poly (ε-Caprolactone) (PCL) electrospun fiber mats for wound healing. Front Bioeng Biotechnol. 2019;7. 346. doi:10.3389/fbioe.2019.00346
  • Jin G, Prabhakaran MP, Kai D, et al. Tissue engineered plant extracts as nanofibrous wound dressing. Biomaterials. 2013;34(3):724–734. DOI:10.1016/J.BIOMATERIALS.2012.10.026.
  • Agnes Mary S, Giri Dev VR. Electrospun herbal nanofibrous wound dressings for skin tissue engineering. J Tex Inst. 2015;106(8):886–895. DOI:10.1080/00405000.2014.951247.
  • Ardekani NT, Khorram M, Zomorodian K, et al. EvaluatIon of electrospun poly (vinyl alcohol)-based nanofiber mats incorporated with zataria multiflora essential oil as potential wound dressing. Int j biol macromol. 2019;125:743–750. DOI:10.1016/J.IJBIOMAC.2018.12.085
  • Castillo-Henríquez L, Castro-Alpízar J, Lopretti-Correa M, et al. Exploration of bioengineered scaffolds composed of thermo-responsive polymers for drug delivery in wound healing. Int J Mol Sci. 2021;22. 1408. doi:10.3390/IJMS22031408
  • Dias JR, Sousa A, Augusto A, et al. Electrospun Polycaprolactone (PCL) Degradation. An In Vitro And In Vivo Study Polymers (Basel). 2022;14(16):3397. DOI:10.3390/POLYM14163397.
  • Sonmez T, Ardic B, Sevindik HG, et al. AntibacteRial effect of hypericum perforatum and calophyllum inophyllum against some bacteria causing infections in cesarean and episiotomy wounds corresponding author. Int J Caring Sci. 2021;14:1953–1960.
  • Léguillier T, Lecsö-Bornet M, Lémus C, et al. The wound healing and antibacterial activity of five ethnomedical calophyllum inophyllum oils: an alternative therapeutic strategy to treat infected wounds. PLoS ONE. 2015;10(9):e0138602. DOI:10.1371/JOURNAL.PONE.0138602
  • Phaiju S, Mulmi P, Shahi DK, et al. AntibActerial cinnamon essential oil incorporated poly(ɛ−caprolactone) nanofibrous mats: new platform for biomedical application. J Inst Sci Tech. 2020;25(2):9–16. DOI:10.3126/JIST.V25I2.33724.
  • Mouro C, Simões M, Gouveia IC, et al. Emulsion electrospun fiber mats of PCL/PVA/Chitosan and eugenol for wound dressing applications. Adv Polym Technol. 2019;2019:1–11. doi: 10.1155/2019/9859506
  • Chen X, Zhang Q, Wang Y, et al. FabriCation and characterization of electrospun poly(Caprolactone)/Tannic Acid scaffold as an antibacterial wound dressing. Polymers. 2023;15(3):593. DOI:10.3390/POLYM15030593/S1.
  • Gheorghita D, Grosu E, Robu A, et al. EsseNtial oils as antimicrobial active substances in wound dressings. Materials 2022. 2022;15(19):6923. DOI:10.3390/MA15196923.
  • Kahdim QS, Abdelmoula N, Al-Karagoly H, et al. Fabrication of a polycaprolactone/Chitosan nanofibrous scaffold loaded with nigella sativa extract for biomedical applications. Biotech. 2023;12(1):19. DOI:10.3390/BIOTECH12010019.
  • Doustdar F, Ramezani S, Ghorbani M, et al. Optimization and characterization of a novel tea tree oil-integrated poly (ε-Caprolactone)/Soy protein isolate electrospun mat as a wound care system. Int J Pharm. 2022;627:122218. DOI:10.1016/J.IJPHARM.2022.122218
  • Michalak M. Plant-derived antioxidants: significance in skin health and the ageing process. Int J Mol Sci. 2022;23. 585. doi:10.3390/IJMS23020585
  • Dinarello CA. Interleukin-1 in the pathogenesis and treatment of inflammatory diseases. Blood. 2011;117(14):3720. DOI:10.1182/BLOOD-2010-07-273417.