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Research Articles

Encapsulation of tannic acid in polyvinylidene fluoride mediated electrospun nanofibers and its antibiofilm and antibacterial activities

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Pages 1911-1927 | Received 16 Feb 2023, Accepted 08 Apr 2023, Published online: 21 Apr 2023

References

  • Khandelwal N, Barbole RS, Banerjee SS, et al. Budding trends in integrated pest management using advanced micro- and nano materials: challenges and perspectives. J Environ Manage. 2016;184(Pt 2):157–169.
  • Savary S, Ficke A, Aubertot J-N, et al. Crop losses due to diseases and their implications for global food production losses and food security. Food Sec. 2012;4(4):519–537.
  • Ficke A, Cowger C, Bergstrom G, et al. Understanding yield loss and pathogen biology to improve disease management: septoria nodorum Blotch – a case study in wheat. Plant Dis. 2018;102(4):696–707.
  • Tilman D, Cassman KG, Matson PA, et al. Agricultural sustainability and intensive production practices. Nature. 2002;418(6898):671–677.
  • Pedrini S, Merritt DJ, Stevens J, et al. Seed coating: science or marketing spin? Trends Plant Sci. 2017;22(2):106–116.
  • Zeng D, Shi Y. Preparation and application of a novel environmentally friendly organic seed coating for rice. J Sci Food Agric. 2009;89(13):2181–2185.
  • Sikhao P, Taylor AG, Marino ET, et al. Development of seed agglomeration technology using lettuce and tomato as model vegetable crop seeds. Sci. Hortic. 2015;184:85–92.
  • Krishnamoorthy V, Elumalai G, Rajiv S. Environment friendly synthesis of polyvinylpyrrolidone nanofibers and their potential use as seed coats. New J Chem. 2016;40(4):3268–3276.
  • Krishnamoorthy V, Rajiv S. Potential seed coatings fabricated from electrospinning hexaaminocyclotriphosphazene and cobalt nanoparticles incorporated polyvinylpyrrolidone for sustainable agriculture. ACS Sustain Chem Eng. 2017;5(1):146–152.
  • Hussain Z, Khan MA, Iqbal F, et al. Electrospun microbial-encapsulated composite-based plasticized seed coat for rhizosphere stabilization and sustainable production of canola (Brassica napus L). J Agric Food Chem. 2019;67(18):5085–5095.
  • Barbara VF, Tahira P, Reny M, et al. Electrospun polymer nanofibers as seed coatings for crop protection. ACS Sustain Chem. Eng. 2019;7:1984–1985.
  • Abrigo M, McArthur SL, Kingshott P. Electrospun nanofibers as dressings for chronic wound care: advances, challenges, and future prospects. Macromol Biosci. 2014;14(6):772–792.
  • Wang X, Ding B, Li B. Biomimetic electrospun nanofibrous structures for tissue engineering. Mater Today (Kidlington). 2013;16(6):229–241.
  • Feng P, Du X, Guo J, et al. Light-responsive nanofibrous motor with simultaneously precise locomotion and reversible deformation. ACS Appl Mater Interfaces. 2021;13(7):8985–8996.
  • Xiuli R, Yanan H, Linna C, et al. Electrospinning of antibacterial and anti-inflammatory Ag@hesperidin core-shell nanoparticles into nanofibers used for promoting infected wound healing. Regen. Biomat. 2022;9:rbac012.
  • Raja K, Prabhu C, Subramanian KS, et al. Electrospun polyvinyl alcohol (PVA) nanofibers as carriers for hormones (IAA and GA3) delivery in seed invigoration for enhancing germination and seedling vigor of agricultural crops (groundnut and black gram). Polym Bull. 2021;78(11):6429–6440.
  • Yang FL, Li XG, Zhu F, et al. Structural characterization of nanoparticles loaded with garlic essential oil and their insecticidal activity against Tribolium castaneum (Herbst) (Coleoptera: Tenebrionidae). J Agric Food Chem. 2009;57(21):10156–10162.
  • Mengyuan W, Yulong T, Du L, et al. Negative isolation of circulating tumor cells using a microfuidic platform integrated with streptavidin-functionalized PLGA nanofbers. Adv Fiber Mater. 2021;3(3):192–202.
  • Haisheng C, Manhong H, Yanbiao L, et al. Functionalized electrospun nanofiber membranes for water treatment: a review. Sci Total Environ. 2020;739:139944.
  • Irena M, Tomasz C. Electrospun polymer nanofibers with antimicrobial activity. Polymers. 2022;14:1661.
  • Alaa MK, Ahmed HH, Mai I, et al. Innovative antibacterial electrospun nanofibers mats depending on piezoelectric generation. Sci. Rep. 2022;12:21788.
  • Jiwei L, Yujie F, Weichao C, et al. Electroactive materials: innovative antibacterial platforms for biomedical applications. Prog. Mat. Sci. 2023;132:101045.
  • Castaneda LM, Genro C, Roggia I, et al. Innovative rice seed coating (Oryza sativa) with polymer nanofibres and microparticles using the electrospinning method. J Res Updat Pol Sci. 2014;3:33–39.
  • Latha M, Raja K, Subramanian KS, et al. Fabrication and characterization of tebuconazole loaded PVA nanofibre. Int J Agric Sci. 2019;10:8514–8517.
  • Damasceno R, Roggia I, Pereira C, et al. Rhizobia survival in seeds coated with polyvinyl alcohol (PVA) electrospun nanofibres. Can J Microbiol. 2013;59(11):716–719.
  • Veras FF, Roggia I, Pranke P, et al. Inhibition of filamentous fungi by ketoconazole-functionalized electrospun nanofibers. Eur J Pharm Sci. 2016;84:70–76.
  • Faisal M, Ahmad U, Wulandani D. Determination of mung bean seed viability change in vacuum packaging during storage in different temperatures. IOP Conf Ser: Mater Sci Eng. 2019;557(1):012074–012084.
  • Ramakrishna S, Fujihara K, Teo WE, et al. Basics relevant to electrospinning in an introduction to electrospinning and nanofibers. 2005, 22–89. World Scientific Publishing Co. Pte. Ltd., 2005.
  • Meraz-Dávila S, Pérez-García CE, Feregrino-Perez AA. Challenges and advantages of electrospun nanofibers in agriculture: a review. Mater Res Express. 2021;8(4):042001.
  • Gaydhane MK, Pudke SP, Sharma CS. Neem oil encapsulated electrospun polyurethane nanofibrous bags for seed storage: a step toward sustainable agriculture. J Appl Polym Sci. 2021;138(11):50003.
  • Karla ČB, Sylva H, Marianna H, et al. Antimicrobial PVDF nanofiber composites with the ZnO – vermiculite – chlorhexidine based nanoparticles and their tensile properties. Polym Test. 2021;103:107367.
  • Shu W, Jian N, Yihong C, et al. Non-leaching, rapid bactericidal and biocompatible polyester fabrics finished with benzophenone terminated N-halamine. Adv. Fib. Mat. 2022;4:119–128.
  • Andrew B, Brian WB. Biomedical applications of tannic acid. J Biomat Appl. 2022;36:1503–1523.
  • Meng Z, He Y, Wang F, et al. Enhancement of antibacterial and mechanical properties of photocurable ε-poly-l-lysine hydrogels by tannic acid treatment. ACS Appl Bio Mater. 2021;4(3):2713–2722.
  • Weiqiao Y, Ana MMS, Audrey T-G, et al. Electrospun polymer nanofibers reinforced by tannic acid/Fe+++ complexes. Materials. 2016;9(9):757.
  • Beata K. Tannic acid with antiviral and antibacterial activity as a promising com-ponent of biomaterials-A mini review. Materials. 2020;13:3224.
  • Allais M, Mailley D, Hébraud P, et al. Polymer-free electrospinning of tannic acid and cross-linking in water for hybrid supramolecular nanofibers. Nanoscale. 2018;10(19):9164–9173.
  • Raorane CJ, Raj V, Lee J-H, et al. Antifungal activities of fluoroindoles against the postharvest pathogen botrytis ci-nerea: in vitro and in silico approaches. Int J Food Microbiol. 2022;362:109492.
  • Adriana P, Dana T, Manuela S, et al. Tailoring the RhB removal rate by modifying the PVDF membrane surface through ZnO particles deposition. J. Inorg. Organomet. Pol. Mat. 2021;31:1642–1652.
  • Alhusaiki-Alghamdi HM. Molecular structural, optical analyses, and dielectric properties of PVDF/PVA-MK composites. Polym Bull. 2023;80(2):2137–2152.
  • Rajaram R, Yong RL, Angaiah S. Supramolecular assembly of benzocaine bearing cyclodextrin cavity via host-guest complexes on polyacrylonitrile as an electrospun nanofiber. J Pharm Biomed Anal. 2023;225:115223.
  • Rajaram R, Punniyakotti P, Subramaniyam N, et al. Polymer-based electrospun nanofibrous mats for the cytotoxic assay on liver cancer cell line with the cardiospermum halicacabum leaf. Appl. Nanosci. 2022;12:3021–3029.
  • Rajaram R, Angaiah S, Yong RL. Polymer-mediated electrospun nanofibrous mats on supramolecular assembly of nortriptyline in the β-cyclodextrin medium for antibacterial study. J. Biomat. Sci. Pol. Ed. 2022;33:1256–1268.
  • Rajaram R, Mika S, Angaiah S. Electrospun polyvinylidene fluoride nanofibrous mats as the carrier for drug delivery system of benzocaine and its complex with β-cyclodextrin. J. Mol. Liq. 2021;341:117411.
  • Jabbarnia A, Asmatulu R. Synthesis and characterization of PVdF/PVP-Based electrospun membranes as separators for supercapacitor applications. J. Mat. Sci. Tech. Res. 2015;2:43–51.
  • Zhiyu X, Weeradech K, Patrick F, et al. Fire resistant polyphenols based on chemical modification of bio-derived tannic acid. Pol. Deg. Stab. 2018;153:227–243.
  • Ahmed A, Shahir H, Mohd I. Systematic exploration of electrospun polyvinylidene fluoride (PVDF)/multi-walled carbon nanotubes’ (MWCNTs) composite nanofibres for humidity sensing application. J. Taib. Uni. Sci. 2021;15:257–266.
  • Ya-Nan C, Chen J, Yaxin Z, et al. Self-assembled polyvinyl alcohol–tannic acid hydrogels with diverse microstructures and good mechanical properties. ACS Omega. 2018;3(9):11788–11795.
  • Mohammed K, Arunjunairaj M, Anandhan S. Probing the synergism of halloysite nanotubes and electrospinning on crystallinity, polymorphism and piezoelectric performance of poly(vinylidene fluoride). RSC Adv. 2016;6(115):114052–114060.
  • Yan S, Zhining W, Congjie G. A new synthetical process of PVDF derivatives via atom transfer radical graft polymerizations and its application in fabrication of antifouling and antibacterial PVDF ultrafiltration membranes, desalin. Wat. Treat. 2014;52:6377–6388.

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