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Research Article

Antimicrobial Edible Films and Coatings based on N,O-Carboxymethyl Chitosan incorporated with Ferula Asafoetida (Hing) and Adhatoda Vasica (Adulsa) extract

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Pages 2699-2715 | Accepted 04 Jun 2021, Published online: 15 Jul 2021

References

  • Cagri A, Ustunol Z, Ryser ET. Antimicrobial edible films and coatings. J Food Prot. 2004;67(4):833–848.
  • Sánchez-Ortega I, García-Almendárez BE, Santos-López EM, et al. Antimicrobial edible films and coatings for meat and meat products preservation. Sci World J. 2014;2014:1–18.
  • Iturriaga L, Olabarrieta I, de Marañón IM. Antimicrobial assays of natural extracts and their inhibitory effect against Listeria innocua and fish spoilage bacteria, after incorporation into biopolymer edible films. Int J Food Microbiol. 2012;158(1):58–64.
  • Valdés A, Ramos M, Beltrán A, et al. State of the art of antimicrobial edible coatings for food packaging applications. Coatings. 2017;7(4):56.
  • Kumari M, Mahajan H, Joshi R, et al. Development and structural characterization of edible films for improving fruit quality. Food Packag Shelf Life. 2017;12:42–50.
  • Palou L, Valencia-Chamorro SA, Pérez-Gago MB. Antifungal edible coatings for fresh citrus fruit: a review. Coatings. 2015;5(4):962–986.
  • Erginkaya Z, Kalkan S, Ünal E, et al. Use of antimicrobial edible films and coatings as packaging materials for food safety. In: Malik A, Erginkaya Z, Ahmad S, editors. Food processing: strategies for quality assessment. New York (NY): Springer; 2014. p. 261–295.
  • Rezaei F, Shahbazi Y. Shelf-life extension and quality attributes of sauced silver carp fillet: a comparison among direct addition, edible coating and biodegradable film. LWT - Food Sci Technol. 2018;87:122–133.
  • Bonilla J, Sobral PJA. Investigation of the physicochemical, antimicrobial and antioxidant properties of gelatin-chitosan edible film mixed with plant ethanolic extracts. Food Biosci. 2016;16:17–25.
  • Theivendran S, Hettiarachchy NS, Johnson MG. Inhibition of Listeria monocytogenes by nisin combined with grape seed extract or green tea extract in soy protein film coated on Turkey frankfurters. J Food Sci. 2006;71(2):M39–M44.
  • Liu X, Jia Y, Hu Y, et al. Effect of Citrus wilsonii Tanaka extract combined with alginate-calcium coating on quality maintenance of white shrimps (Litopenaeus vannamei Boone). Food Control. 2016;68:83–91.
  • Cerqueira MA, Bourbon AI, Pinheiro AC, et al. Galactomannans use in the development of edible films/coatings for food applications. Trends Food Sci Technol. 2011;22(12):662–671.
  • Das DK, Dutta H, Mahanta CL. Development of a rice starch-based coating with antioxidant and microbe-barrier properties and study of its effect on tomatoes stored at room temperature. LWT - Food Sci Technol. 2013;50(1):272–278.
  • Bourtoom T. Edible films and coatings: characteristics and properties. Int Food Res J. 2008;15(3):237–248.
  • Silva-Weiss A, Ihl M, Sobral PJA, et al. Natural additives in bioactive edible films and coatings: functionality and applications in foods. Food Eng Rev. 2013;5(4):200–216.
  • Campos CA, Gerschenson LN, Flores SK. Development of edible films and coatings with antimicrobial activity. Food Bioprocess Technol. 2011;4(6):849–875.
  • Yang HJ, Lee JH, Lee KY, et al. Application of gelatin film and coating prepared from dried alaska pollock by-product in quality maintanance of grape berries. J Food Process Preserv. 2017;41(6):1–9.
  • Badwaik LS, Borah PK, Deka SC. Antimicrobial and enzymatic antibrowning film used as coating for bamboo shoot quality improvement. Carbohydr Polym. 2014;103:213–220.
  • Perez-Perez C, Regalado-González C, Rodríguez-Rodríguez CA. et al. Incorporation of antimicrobial agents in food packaging films and coatings. Adv Agric Food Biotechnol. 2006;37/661(2):193–216.
  • Gadang VP, Hettiarachchy NS, Johnson MG, et al. Evaluation of antibacterial activity of whey protein isolate coating incorporated with nisin, grape seed extract, malic acid, and EDTA on a Turkey frankfurter system. J Food Sci. 2008;73(8):M389–M394.
  • Pinzon MI, Garcia OR, Villa CC. The influence of Aloe vera gel incorporation on the physicochemical and mechanical properties of banana starch-chitosan edible films. J Sci Food Agric. 2018;98(11):4042–4049.
  • Settier-Ramírez L, López-Carballo G, Gavara R, et al. Antilisterial properties of PVOH-based films embedded with Lactococcus lactis subsp. lactis. Food Hydrocoll. 2019;87:214–220.
  • Sebti I, Martial-Gros A, Carnet-Pantiez A, et al. Chitosan polymer as bioactive coating and film against aspergillus niger contamination. J Food Sci. 2005;70(2):M100–M104.
  • Ali A, Chen Y, Liu H, et al. Starch-based antimicrobial films functionalized by pomegranate peel. Int J Biol Macromol. 2019;129:1120–1126.
  • Gutiérrez TJ. Polymers for food applications. Cham: Springer; 2018.
  • Hashemi SMB, Zahabi N, Rezaee Z, et al. Evaluation of a starch-based edible film as carrier of adiantum capillus-veneris extract to improve the shelf life of fresh-cut pears. J Food Saf. 2016;36(3):291–298.
  • Abedini A, Roumy V, Mahieux S, et al. Antimicrobial activity of selected Iranian medicinal plants against a broad spectrum of pathogenic and drug multiresistant micro-organisms. Lett Appl Microbiol. 2014;59(4):412–421.
  • De Britto AJ, Gracelin DHS, Benjamin P, et al. Antibacterial potency and synergistic effects of a few South Indian spices against antibiotic resistant bacteria. Indian J Nat Prod Resour. 2012;3(4):557–562.
  • Choulitoudi E, Bravou K, Bimpilas A, et al. Antimicrobial and antioxidant activity of Satureja thymbra in gilthead seabream fillets edible coating. Food Bioprod Process. 2016;100:570–577.
  • Dixit AS, Patwardhan AV, Pandit AB. Parameter optimization of prodigiosin based dye-sensitized solar cell. Int J Pharm Chem Biol Sci. 2021;11(1):19–29.
  • Dixit AS, Nagula KN, Patwardhan AV, et al. Alternative and remunerative solid culture media for pigment-producing serratia marcescens NCIM 5246. J Text Assoc. 2020;81(2):99-103.
  • Mohan Ch M, Smitha PV. Phytochemical composition and antimicrobial activity of three plant preparations used in folk medicine and their synergistic properties. J Herbs Spices Med Plants. 2011;17:339–350.
  • Ahmed W, Azmat R, Khan SU, et al. Pharmacological studies of isolated compounds from adhatoda vasica and calotropis procera as an antioxidant and antimicrobial bioactive sources. Pakistan J Bot. 2018;50(6):2363–2367.
  • Gangwar AK, Ghosh AK. Medicinal uses and Pharmacological activity of Adhatoda vasica. Int J Herb Med. 2014;2(1):88–91.
  • Karthikeyan A, Shanthi V, Nagasathaya A. Preliminary phytochemical and antibacterial screening of crude extract of the leaf of Adhatoda vasica. L. Int J Green Pharm. 2009;3(1):78–80.
  • Shrivastava N, Srivastava A, Banerjee A, et al. Anti-ulcer activity of adhatoda vasica nees. J Herb Pharmacother. 2006;6(2):43–49.
  • Bhatnager R, Rani R, Dang AS. Antibacterial activity of Ferula asafoetida: a comparison of red and white type. J Appl Biol Biotechnol. 2015;3(2):18–21.
  • Patil SD, Shinde S, Kandpile P, et al. Evaluation of antimicrobial activity of asafoetida. Int J Pharm Sci Res. 2015;6(2):722–727.
  • Shrivastava V, Bhardwaj U, Sharma V, et al. Antimicrobial activities of Asafoetida resin extracts (A potential Indian spice). J Pharm Res. 2012;5(10):5022–5024.
  • Apriyanti D, Rokhati N, Mawarni N, et al. Edible coating from green tea extract and chitosan to preserve strawberry (Fragaria vesca L.). MATEC Web Conf. 2018;156:1–5.
  • Alsaggaf MS, Moussa SH, Tayel AA. Application of fungal chitosan incorporated with pomegranate peel extract as edible coating for microbiological, chemical and sensorial quality enhancement of Nile tilapia fillets. Int J Biol Macromol. 2017;99:499–505.
  • Khalifa I, Barakat H, EI-Mansy HA, et al. Improving the shelf-life stability of apple and strawberry fruits applying chitosan-incorporated olive oil processing residues coating. Food Packag Shelf Life. 2016;9:10–19.
  • Mourya VK, Inamdar NN, Tiwari A. Carboxymethyl chitosan and its applications. Adv Mater Lett. 2010;1(1):11–33.
  • de Abreu FR, Campana-Filho SP. Characteristics and properties of carboxymethylchitosan. Carbohydr Polym. 2009;75(2):214–221.
  • Tan Y, Han F, Ma S, et al. Carboxymethyl chitosan prevents formation of broad-spectrum biofilm. Carbohydr Polym. 2011;84(4):1365–1370.
  • Liu XF, Guan YL, Yang DZ, et al. Antibacterial action of chitosan and carboxymethylated chitosan. J Appl Polym Sci. 2001;79(7):1324–1335.
  • Gupta D, Haile A. Multifunctional properties of cotton fabric treated with chitosan and carboxymethyl chitosan. Carbohydr Polym. 2007;69(1):164–171.
  • Rabea EI, Badawy MET, Stevens CV, et al. Chitosan as antimicrobial agent: applications and mode of action. Biomacromolecules. 2003;4(6):1457–1465.
  • Rojhan M, Nouri L. Antimicrobial, physicochemical, mechanical, and barrier properties of tapioca starch films incorporated with eucalyptus extract. J Chem Health Risks. 2013;3(3):43–52.
  • Singh C, Parmar RS. Antimicrobial activity of resin of Asafoetida (Hing) against certain human pathogenic bacteria. Adv Biores. 2018;9(1):161–164.
  • Hajirostamlou B, Mortazavi SA, Zenoozian MS. Incorporation of antimicrobial extract into packaging materials, a case study: starch antimicrobial film against Bacillus cereus. Int J Biol Pharm Allied Sci. 2016;5(1):137–143.
  • Kusnadi J, Budyanto P. Antibacterial active packaging edible film formulation with addition teak (Tectona grandis) leaf extract. Int J Life Sci Biotechnol Pharm Res. 2015;4(2):79–84.
  • Makinoshima H, Glickman MS. Site-2 proteases in prokaryotes: regulated intramembrane proteolysis expands to microbial pathogenesis. Microbes Infect. 2006;8(7):1882–1888.
  • Samadi N, Shahani S, Akbarzadeh H, et al. Essential oil analysis and antibacterial activity of Ferula assafoetida L aerial parts from Neishabour mountains. Res J Pharmacogn. 2016;3:35–42.
  • Panche AN, Diwan AD, Chandra SR. Flavonoids: an overview. J Nutr Sci. 2016;5(47):1–15.
  • Haque E, Irfan S, Kamil M, et al. Terpenoids with antifungal activity trigger mitochondrial dysfunction in Saccharomyces cerevisiae. Microbiology. 2016;85(4):436–443.
  • Yang CR, Zhang Y, Jacob MR, et al. Antifungal activity of C-27 steroidal saponins. Antimicrob Agents Chemother. 2006;50(5):1710–1714.
  • Selvadharshini S, Argho B, Nandhini Devi G. Development and efficacy comparison of curry leaves incorporated edible film and coating on fresh cut produce. Indian J Sci. 2016;23(82):482–491.
  • Upadhyaya L, Singh J, Agarwal V, et al. Biomedical applications of carboxymethyl chitosans. Carbohydr Polym. 2013;91:452–466.
  • Vásconez MB, Flores SK, Campos CA, et al. Antimicrobial activity and physical properties of chitosan-tapioca starch based edible films and coatings. Food Res Int. 2009;42(7):762–769.

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