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Research Article

An optimized chitosan/alginate-based microencapsulation of lime peel essential oil and its application as an antibacterial textile

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Pages 989-1007 | Received 10 Oct 2023, Accepted 30 Jan 2024, Published online: 10 Feb 2024

References

  • Mahato N, Sharma K, Koteswararao R, et al. Citrus essential oils: extraction, authentication and application in food preservation. Crit Rev Food Sci Nutr. 2019;59(4):611–625. doi: 10.1080/10408398.2017.1384716.
  • Puspita S, Eddy DR, Wahyudi T, et al. Microencapsulation of lime peel essential oils (citrus aurantifolia) with complex coacervation methods using gelatin/sodium alginate coating. Jurnal Kimia Valensi. 2020;6:106–112.
  • Wijesirigunawardana PB, Perera BGK. Development of a cotton smart textile with medicinal properties using lime oil microcapsules. ACSi. 2018;65(1):150–159. doi: 10.17344/acsi.2017.3727.
  • Torimiro N, Adegun BR, Abioye OE, et al. Antibacterial activity of essential oil from citrus aurantifolia (christm.) swingle peels against Multidrug-Resistant bacterial isolates. AiM. 2020;10(05):214–223. doi: 10.4236/aim.2020.105017.
  • Julaeha E, Nurzaman M, Wahyudi T, et al. The development of the antibacterial microcapsules of citrus essential oil for the cosmetotextile application: a review. Molecules. 2022;27(22):27. doi: 10.3390/molecules27228090.
  • Cruz-Valenzuela MR, Tapia-Rodríguez MR, Vazquez-Armenta FJ, et al. Lime (citrus aurantifolia) oils. In Essential oils in food preservation, flavor and safety. Elsevier Inc.; 2016.
  • Shishir MRI, Xie L, Sun C, et al. Advances in micro and nano-encapsulation of bioactive compounds using biopolymer and lipid-based transporters. Trends Food Sci Technol. 2018;78:34–60. doi: 10.1016/j.tifs.2018.05.018.
  • Pratiwi L, Eddy DR, Al Anshori J, et al. Microencapsulation of citrus aurantifolia essential oil with the optimized CaCl2 crosslinker and its antibacterial study for cosmetic textiles. RSC Adv. 2022;12(47):30682–30690. doi: 10.1039/d2ra04053k.
  • Julaeha E, Puspita S, Eddy DR, et al. Microencapsulation of lime (citrus aurantifolia) oil for antibacterial finishing of cotton fabric. RSC Adv. 2021;11(3):1743–1749. doi: 10.1039/d0ra09314a.
  • Wahyudi T, Mulyawan AS, Sugiyana D, et al. Immobilisasi mikrokapsul minyak jeruk nipis (citrus aurantifolia) pada kain kapas. AT. 2018;32(2):103–110. doi: 10.31266/at.v32i2.3543.
  • Wahyudi T, Mulyawan AS, Kasipah C, et al. Pembuatan mikrokapsul minyak jeruk (citrus aurantifolia) untuk aplikasi pada penyempurnaan tekstil. AT. 2017;32(1):1–8. doi: 10.31266/at.v32i1.2661.
  • Julaeha E, Pandiangan NS, Eddy DR, et al. Ethyl cellulose-based microcapsules of citrus aurantifolia (christm.) swingle essential oil with an optimized emulsifier for antibacterial cosmetotextiles. Polymer (Guildf). 2023;283:126265. doi: 10.1016/j.polymer.2023.126265.
  • Valle JAB, Valle R de CSC, Bierhalz ACK, et al. Chitosan microcapsules: methods of the production and use in the textile finishing. J Appl Polym Sci. 2021;138:e50482.
  • Syahrian A, Dian E, Suro S. Emulsion stability of clove oil in chitosan and sodium alginate matrix citation : reproduced by deakin university under the terms of the creative commons attribution licence downloaded from DRO : emulsion stability of clove oil in chitosan and sodium algi. 2018;21.
  • Yuan Y, Tian H, Huang R, et al. Fabrication and characterization of natural polyphenol and ZnO nanoparticles loaded protein-based biopolymer multifunction electrospun nanofiber films, and application in fruit preservation. Food Chem. 2023;418:135851. doi: 10.1016/j.foodchem.2023.135851.
  • Zhao Y, Guo G, Xu B, et al. Electrospun natural polypeptides based nanofabrics enriched with antioxidant polyphenols for active food preservation. Food Chem. 2023;405(Pt B):134991. doi: 10.1016/j.foodchem.2022.134991.
  • Mardikasari, SA, Akib, NI, Indahyani, R, et al. Mikroenkapsulasi asam mefenamat menggunakan polimer kitosan dan natrium alginat dengan metode gelasi ionik. JFG. 2020;6(2):192–203. doi: 10.22487/j24428744.2020.v6.i2.14589.
  • Deka C, Deka D, Bora MM, et al. Synthesis of peppermint oil-loaded chitosan/alginate polyelectrolyte complexes and study of their antibacterial activity. J Drug Deliv Sci Technol. 2016;35:314–322. doi: 10.1016/j.jddst.2016.08.007.
  • Yulvianti M, Jayanudin J, Rochmadi R, et al. The effect of tri poly phosphate concentration towards chitosan- alginate micro-particle characterization and dissolution process in acidic medium. Int J Adv Sci Eng Inf Technol. 2017;7(5):1900–1906. doi: 10.18517/ijaseit.7.5.2463.
  • Petrusic S, Koncar V. Controlled release of active agents from microcapsules embedded in textile structures. In Smart textiles and their applications. Elsevier Ltd; 2016.
  • Butstraen C, Salaün F. Preparation of microcapsules by complex coacervation of gum arabic and chitosan. Carbohydr Polym. 2014;99:608–616. doi: 10.1016/j.carbpol.2013.09.006.
  • Kayaci F, Uyar T. Solid inclusion complexes of vanillin with cyclodextrins: their formation, characterization, and high-temperature stability. J Agric Food Chem. 2011;59(21):11772–11778. doi: 10.1021/jf202915c.
  • Surini S, Khotima NH. Stability study of ethylcellulose coated tocotrienol microcapsule prepared by solvent evaporation and spraying drying techniques. Int J Appl Pharm. 2020;12:1–4.
  • Julaeha E, Eddy DR, Wahyudi T, et al. Coacervate microcapsules of citrus aurantifolia essential oil (LOs): optimization and their antibacterial activity study. ChemistrySelect. 2022;7(15):e202200187. doi: 10.1002/slct.202200187.
  • Lin LY, Chuang CH, Chen HC, et al. Lime (citrus aurantifolia (christm.) swingle) essential oils: volatile compounds, antioxidant capacity, and hypolipidemic effect. Foods. 2019;8(9):398. doi: 10.3390/foods8090398.
  • Galovičová L, Borotová P, Vukovic NL, et al. The potential use of citrus aurantifolia L. Essential oils for decay control, quality preservation of agricultural products, and anti-Insect activity. Agronomy. 2022;12(3):735. doi: 10.3390/agronomy12030735.
  • Shu XZ, Zhu KJ. Controlled drug release properties of ionically cross-linked chitosan beads: the influence of anion structure. Int J Pharm. 2002;233(1-2):217–225. doi: 10.1016/s0378-5173(01)00943-7.
  • Gierszewska M, Ostrowska-Czubenko J, Chrzanowska E. pH-responsive chitosan/alginate polyelectrolyte complex membranes reinforced by tripolyphosphate. Eur Polym J. 2018;101:282–290. doi: 10.1016/j.eurpolymj.2018.02.031.
  • Umawiranda PF, Cahyaningrum SE. Enkapsulasi pirazinamid menggunakan alginat dan kitosan encapsulation of pyrazinamide using alginate and chitosan. UNESA Journal of Chemistry. 2014;3:146–153.
  • Sholihat A, Gadri A, Cahya G, et al. Optimasi kadar konsentrat likopen terenkapsulasi penyalut alginat dan kitosan. Prosiding Farmasi. 2015;2:454–459.
  • Azevedo MA, Bourbon AI, Vicente AA, et al. Alginate/chitosan nanoparticles for encapsulation and controlled release of vitamin B2. Int J Biol Macromol. 2014;71:141–146. doi: 10.1016/j.ijbiomac.2014.05.036.
  • Heng PWS, Chan LW, Easterbrook MG, et al. Investigation of the influence of mean HPMC particle size and number of polymer particles on the release of aspirin from swellable hydrophilic matrix tablets. J Control Release. 2001;76(1-2):39–49. doi: 10.1016/s0168-3659(01)00410-2.
  • Rajam R, Anandharamakrishnan C. Spray freeze drying method for microencapsulation of Lactobacillus plantarum. J Food Eng. 2015;166:95–103. doi: 10.1016/j.jfoodeng.2015.05.029.
  • Huang JB, Urban MW. Effect of overlapping bands on intensities in ATR FT-IR spectra. Appl Spectrosc. 1992;46(6):1014–1019. doi: 10.1366/0003702924124466.
  • Aisyah Y, Maulina D, Asmawati A. Enkapsulasi minyak nilam (pogostemon cablin benth), pala (myristica fragrans) dan sereh wangi (cymbopogon nardus) menggunakan kitosan dengan metode gelasi ionik. J Teknol Pertan Andalas. 2022;26(2):151. doi: 10.25077/jtpa.26.2.151-162.2022.
  • Taghe S, Mirzaeei S. Preparation and characterization of novel, mucoadhesive of loxacin nanoparticles for ocular drug delivery. Braz J Pharm Sci. 2019;55:1–12. doi: 10.1590/s2175-97902019000117105.
  • Sari R, Tunggadewi S, Paramanandana A, et al. Preparation and physical characterization of Andrographolide-Chitosan-alginate microparticles prepared by ionic Gelation-Freeze drying. Res J Pharm Technol. 2019;12(2):553. doi: 10.5958/0974-360X.2019.00098.2.
  • Kunjumon R, Viswanathan G, Baby S. Biocompatible madecassoside encapsulated alginate chitosan nanoparticles, their anti-proliferative activity on C6 glioma cells. Carbohyd Poly Technol Appl. 2021;2:100106. doi: 10.1016/j.carpta.2021.100106.
  • Julaeha E, Puspita WR, Permadi N, et al. Optimization of citrus aurantifolia peel extract encapsulation in alginate-gelatin hydrogel microbeads for antibacterial wound dressing applications. Carbohyd Poly Technol Appl. 2024;7:100406. doi: 10.1016/j.carpta.2023.100406.
  • Sholikhah AM, Edi SC. Pengaruh variasi konsentrasi tween 80 terhadap enkapsulasi glibenklamid menggunakan Alginat-Kitosan. UNESA J Chem. 2020;9:162–169.
  • Frent OD, Vicas LG, Duteanu N, et al. Sodium alginate—natural microencapsulation material of polymeric microparticles. Int J Mol Sci. 2022;23(20):23.
  • Jayanudin J, Rochmadi R, Yulvianti M, et al. Kinetika release mikrokapsul oleoresin jahe merah. Reaktor. 2017;16(3):128. doi: 10.14710/reaktor.16.3.128.
  • Sultana A, Yoshii H. Kinetic study of controlled release of flavor compounds from spray-dried encapsulated yeast powder using dynamic vapor sorption–gas chromatography. Biosci Biotechnol Biochem. 2019;83(4):738–746. doi: 10.1080/09168451.2018.1564618.
  • Dima C, Pătraşcu L, Cantaragiu A, et al. The kinetics of the swelling process and the release mechanisms of coriandrum sativum L. essential oil from chitosan/alginate/inulin microcapsules. Food Chem. 2016;195:39–48. doi: 10.1016/j.foodchem.2015.05.044.
  • Kelsey C, Martin Mhatre V, Ho J-AL, et al. Thermodynamics, kinetics, and activation energy studies of the sorption of chromium(III) and chromium(VI) to a Mn3 O4 nanomaterial. Bone. 2008;23:1–7.
  • Furuya DC, Da Costa SA, De Oliveira RC, et al. Fibers obtained from alginate, chitosan and hybrid used in the development of scaffolds. Mat. Res. 2017;20(2):377–386. doi: 10.1590/1980-5373-mr-2016-0509.
  • Anbinder PS, Deladino L, Navarro AS, et al. Yerba mate extract encapsulation with alginate and chitosan systems: interactions between active compound encapsulation polymers. JEAS. 2011;01(04):80–87. doi: 10.4236/jeas.2011.14011.
  • Yuvarani I, Kumar SS, Venkatesan J, et al. Preparation and characterization of curcumin coated chitosan-alginate blend for wound dressing application. J Biomat Tissue Engng. 2012;2(1):54–60. doi: 10.1166/jbt.2012.1037.
  • Vinceković M, Jurić S, Šegota S, et al. Morphological, rheological and thermal characteristics of biopolymeric microcapsules loaded with plant stimulants. J Polym Res. 2022;29(5):204. doi: 10.1007/s10965-022-03057-8.
  • Tummino ML, Magnacca G, Cimino D, et al. The innovation comes from the sea: chitosan and alginate hybrid gels and films as sustainable materials for wastewater remediation. Int J Mol Sci. 2020;21:1–16.
  • Jia C, Huang S, Liu R, et al. Storage stability and in-vitro release behavior of microcapsules incorporating fish oil by spray drying. Colloids Surf A Physicochem Eng Asp. 2021;628:127234. doi: 10.1016/j.colsurfa.2021.127234.
  • Shahidi Noghabi M, Molaveisi M. The effect of wall formulation on storage stability and physicochemical properties of cinnamon essential oil microencapsulated by spray drying. Chem. Pap. 2020;74(10):3455–3465. doi: 10.1007/s11696-020-01171-9.
  • Ibrahim NA, Eid BM, Abd El-Ghany NA, et al. Polyfunctional cotton cellulose fabric using proper biopolymers and active ingredients. J Text Inst. 2020;111(3):381–393. doi: 10.1080/00405000.2019.1634459.
  • McClements DJ. Designing biopolymer microgels to encapsulate, protect and deliver bioactive components: physicochemical aspects. Adv Colloid Interface Sci. 2017;240:31–59. doi: 10.1016/j.cis.2016.12.005.
  • Aizpurua-Olaizola O, Navarro P, Vallejo A, et al. Microencapsulation and storage stability of polyphenols from Vitis vinifera grape wastes. Food Chem. 2016;190:614–621. doi: 10.1016/j.foodchem.2015.05.117.
  • Zanrosso CD, Lansarin MA. Application of polycarboxylic acids as binders for TiO2 immobilization on cotton textiles. Braz. J. Chem. Eng. 2019;36(1):181–190. doi: 10.1590/0104-6632.20190361s20170258.
  • Ojstršek A, Jug L, Plohl O. A review of electro conductive textiles utilizing the Dip-Coating technique: their functionality, durability and sustainability. Polymers (Basel). 2022;14(21):4713. doi: 10.3390/polym14214713.
  • Bouarioua A, Zerdaoui M. Photocatalytic activities of TiO2 layers immobilized on glass substrates by dip-coating technique toward the decolorization of methyl orange as a model organic pollutant. J Environ Chem Eng. 2017;5(2):1565–1574.
  • Stan MS, Chirila L, Popescu A, et al. Essential oil microcapsules immobilized on textiles and certain induced effects. Materials. 2019;12(12):2029. doi: 10.3390/ma12122029.
  • de Araújo JSF, de Souza EL, Oliveira JR, et al. Microencapsulation of sweet orange essential oil (citrus aurantium var. dulcis) by liophylization using maltodextrin and maltodextrin/gelatin mixtures: preparation, characterization, antimicrobial and antioxidant activities. Int J Biol Macromol. 2020;143:991–999. doi: 10.1016/j.ijbiomac.2019.09.160.
  • Permadi N, Nurzaman M, Alhasnawi AN, et al. Managing lethal browning and microbial contamination in musa spp. tissue culture: synthesis and perspectives. Horticulturae [Internet]. 2023;9(4):453. Available from: https://www.mdpi.com/2311-7524/9/4/453 doi: 10.3390/horticulturae9040453.
  • Sharkawy A, Fernandes IP, Barreiro MF, et al. Aroma-Loaded microcapsules with antibacterial activity for Eco-Friendly textile application: synthesis, characterization, release, and green grafting. Ind Eng Chem Res. 2017;56(19):5516–5526. doi: 10.1021/acs.iecr.7b00741.
  • Pandiangan NS, Pratiwi L, Eddy DR, et al. Aktivitas antinyamuk mikrokapsul minyak asiri citrus aurantifolia terhadap Aedes aegypti. AT. 2021;36(2):73–82. doi: 10.31266/at.v36i2.7337.

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