1- Alborzi, S. 2012. Encapsulation of Folic Acid in Sodium Alginate-Pectin-Poly (Ethylene Oxide) Electrospun Fibers to Increase Its Stability. Ph.D. Thesis, University of Guelph.
2- Zuidam, N. J., and Nedovic, V. A. 2010. Encapsulation Technologies for Active Food Ingredients and Food Processing. Springer, New York.
3- Ghorani, B., Alehosseini, A., and Tucker, N. 2016. Electrospinning as a novel delivery vehicle for bioactive compounds in food nanotechnology, in Innovative processing technologies for foods with bioactive compounds, J.J. Moreno, Editor. CRC Press. p. 259- 292.
4- Hernández-Rodríguez, L., Lobato-Calleros, C., Pimentel-González, D.J., and Vernon-Carter, E.J. 2014. Lactobacillus plantarum protection by entrapment in whey protein isolate: κ-carrageenan complex coacervates. Food Hydrocolloids, 36, 181-188.
5- Pérez-Masiá, R., López-Nicolás, R., Periago, M.J., Ros, G., Lagaron, J.M., and López-Rubio, A. 2015. Encapsulation of folic acid in food hydrocolloids through nanospray drying and electrospraying for nutraceutical applications. Food Chemistry., 168, 124-33.
6- Alehosseini, A., Ghorani, B., Sarabi-Jamab, M., Tucker, N. 2017. Principles of electrospraying: A new approach in protection of bioactive compounds in foods. Critical reviews in food science and nutrition, doi: 10.1080/10408398.2017.1323723.
7- Alehosseini, A., Sarabi-Jamab, M., Ghorani, B., Kadkhodai, R., Wongsasulak, S. 2017. Evaluating the performance of artificial neural networks (ANNs) for predicting the effect of polymer concentration and operating voltage on the physical properties of electrosprayed particles. Journal of Innovative Food Technologies, 4, 31-43. [In Persian]
8- Li, Y., Lim, L. T., and Kakuda, Y. 2009. Electrospun Zein Fibers as Carriers to Stabilize (−)-Epigallocatechin Gallate. Journal of Food Science, 74: 233-240.
9- Wen, P., Wen, Y., Zong, M. H., Linhardt, R. J., and Wu, H. 2017. Encapsulation of Bioactive Compound in Electrospun Fibers and Its Potential Application. J. Agric. Food Chem. 65, 9161-9179.
10- Ramakrishna. S., Fujihara. K., Teo. W., Lim. T., Ma. Z. 2005. An Introduction to Electrospinning and Nanofibers. World Scientific Publishing Co. Singapore.
11- Shadpour, M., Tavakoli, M. 2007. A review on electrospinning and nanofiber. 2006. Almas Danesh Publishing Co. Tehran. [In Persian]
12- Kazemi, M. 2015. Microencapulation of Nicin by electrospining and its effct on Listriamonocitogenesis, M.Sc. Thesis. Ferdowsi University. Mashhad. Iran. [In Persian]
13- Lavik E, Klassen H, Warfvinge K, Langer R, Young M. 2005. Fabrication of degradable polymer scaffolds to direct the integration and differentiation of retinal progenitors. Biomaterials. 26(16):3187-96.
14- Xing, X., Yu, H., Zhu, D., Zheng, J., Chen, H., Chen, W., and Cai, J. 2012. Subwavelength and Nanometer Diameter Optical Polymer Fibers as Building Blocks for Miniaturized Photonics Integration. In book: Optical Communication: Chapter: 12. Publisher: InTech. Editors: Narottam Das.
15- Murugan, R., and Ramakrishna, S. 2007. Design Strategies of Tissue Engineering Scaffolds with Controlled Fiber Orientation, Tissue Engineering. 13(8): 1845-66.
16- Tao SL, Desai TA. 2007. Aligned Arrays of Biodegradable Poly (ϵ-caprolactone) Nanowires and Nanofibers by Template Synthesis. Nano letters. 7(6):1463-8.
17- Deitzel, J.M., Kleinmeyer, J.D., Hirvonen, J.K., Beck Tan, N.C., 2001. Controlled deposition of electrospun poly (ethylene oxide) fibers. Polymer 42 (19), 8163–8170.
18- Sill, T. J., and von Recum, A. 2008. Electrospinning: applications in drug delivery and tissue engineering. Biomaterials, 29 (13), 1989–2006.
19- Li, Y., Lim, L.T., and Kakuda, Y. 2009. Electrospunzein fibers as carriers to stabilize (_)-epigallocatechingallate. Journal of Food Science, 74 (3), C233–C240.
20- Carroll, C. P., and Joo, Y. L. 2006. Electrospinning of viscoelastic Boger fluids: Modeling and experiments. Physics of fluids, 18: 053102.
21- Supaphol, P., Mit-uppatham, C., and Nithitanakul, M. 2005. Ultrafine electrospun polyamide-6 fibers: effects of solvent system and emitting electrode polarity on morphology and average fiber diameter. Macromolecular materials and engineering, 290: 933-942.
22- Haider, A., Haider, S., Kang, I. K. 2015. A comprehensive review summarizing the effect of electrospinning parameters and potential applications of nanofibers in biomedical and biotechnology. Arabian Journal of Chemistry, doi: 10.1016/j.arabjc.2015.11.015.
23- Miri, M. A., Habibi Najafi, M. B., Movaffagh, J. 2016. Optimization of Elecrospinning Process of Zein Using Central Composite Design. Fibers and Polymers. 17(5), 769-777.
24- Bhardwaj, N., & Kundu, S. C. 2010. Electrospinning: a fascinating fiber fabrication technique. Biotechnology advances, 28 (3), 325-347.
25- Jacobs, V., Anandjiwala, R. D., and Maaza, M. 2010. The influence of electrospinning parameters on the structural morphology and diameter of electrospun nanofibers. Journal of Applied Polymer Science, 115: 3130-3136.
26- Lee K, Kim H, Khil M, Ra Y, Lee D. 2003. Characterization of nano-structured poly (ε-caprolactone) nonwoven mats via electrospinning. Polymer, 44(4):1287-94.
27- Ghorani, B., and Tucker, N. 2015. Fundamentals of electrospinning as a novel delivery vehicle for bioactive compounds in food nanotechnology. Food Hydrocolloids, 51: 227-2404.
28- Yuan, X., Zhang, Y., Dong, C., and Sheng, J. 2004. Morphology of ultrafine polysulfone fibers prepared by electrospinning. Polymer International, 53: 1704-1710.
29- Chowdhury, M., and Stylios, G. 2010. Effect of experimental parameters on the morphology of electrospun Nylon 6 fibres. International journal of Basic & Applied Sciences, 10: 116-131
30- Miri, M. A. 2017. Zein Electrospun Nanofibers as Nanocarrier of Vitamin C: Characterisation and Kinetic Stability Study. Ph.D. Thesis. Ferdowsi University. Mashhad. Iran. [In Persian]
31- Mo, X., Xu, C., Kotaki, Mea., Ramakrishna, S. 2004. Electrospun (PLLA-CL) nanofiber: a biomimetic extracellular matrix for smooth muscle cell and endothelial cell proliferation. Biomaterials, 25(10):1883-90.
32- Nangrejo, M., Bragman, F., Ahmad, Z., Stride, E., Edirisinghe, M. 2012. Hot electrospinning of polyurethane fibres. Materials Letters, 68: 482–485.
33- Kostakova, E., Zemnova, E., Mikes, P., Soukupova, J., Matheisova, H., Klouda, K. 2012. Electrospinning and electrospraying of polymer solutions with spherical fullerenes. Brno, Czech Republic, EU.
34- Xie, J., Jiang, J., Davoodi, P., Sirnivasan, M. P., Wang, C. H. 2014. Electrohydrodynamic atomization: A two-decade effort to produce and process micro-/nanoparticulate materials. Chemical Engineering Science, 125, 32-57.
35- Angammana, C. J., Jayaram, S. H. 2015. Fundamentals of electrospinning and processing technologies. Particulate Science and Technology: An International Journal, 34(1): 72-82.
36- Hohman, M. M., Shin, M., Rutledge, G., and Brenner, M. P. 2001. Electrospinning and electrically forced jets. II. Applications, Physics of Fluids, 13, 8, 2221–2236.
37- Natu, M. V., de Sousa, H. C., & Gil, M. H. 2010. Effects of drug solubility, state and loading on controlled release in bicomponent electrospun fibers. International Journal of Pharmaceutics, 397, 50-58.
38- Wang, C., Tong, S. N., Tse, Y. H., & Wang, M. 2012. Conventional electrospinning vs. emulsion electrospinning: A comparative study on the development of nanofibrous drug/biomolecule delivery vehicles. Advanced Materials Research, 410, 118-121.
39- Wang, Y., Wang, B., Qiao, W., & Yin, T. 2010. A novel controlled release drug delivery system for multiple drugs based on electrospun nanofibers containing nanoparticles. Journal of Pharmaceutical Sciences, 99, 4805-4811.
40- Ghorani, B., Goswami, P., Blackburn, R . S., Russell, S. J. 2018. Enrichment of cellulose acetate nanofibre assemblies for therapeutic delivery of l-tryptophan. International Journal of Biological Macromolecules, 108, 1-8.
41- Neo, Y. P. 2013. Electrospinning as a novel encapsulation method for food plications. Ph.D.Thesis, University of Auckland.
42- Su, Y., Liu, Y., Su, Q., Lim, M. W. Q., & Mo, X. 2011. Encapsulation and controlled release of heparin from electrospun poly (L-lactic acid-co-caprolacton) nanofibers. Journal of Biomaterials Science, Polymer Edition, 22, 165-177.
43. Zhang, Y. Z., Wang, X., Feng, Y., Li, J., Lim, C. T., and Ramakrishna, S. 2006. Coaxial electrospinning of (fluoresccein isothiocyanate-conjugated bovine serume albumin) – encapsulated poly (Ɛ-caprolactone) nanofibers for sustained release. Biomacromolecules, 7, i049-1057.
44- Chakraborty, S., Liao, I. C., Adler, A., and Leong, K. W. 2009. Electrohydrodynamics: A facial technique to fabricate drug delivery systems. Advanced Drug Delivery Reviews, 61, 1043-1054.
45- Liao, Y., Zhang, L., Gao, Y., Zhu, Z. T., and Fong, H. 2008. Preparation, characterization, and encapsulation/release studies of a composite nanofiber mat electrospun from an emulsion containing poly (lactic-co-glycolic acid). Polymer, 49, 5294-5299.
46- Xu. X., Zhuang, X., Chen, X., Wang, X., Yang, L., and Jing, X. 2006. Preparation of core-sheath composite nanofibers by emulsion electrospinning. Macromolecular Rapid Communications, 27, 1637-1642.
47- Huang, X. J., Ge, D., Xu, Z. K. 2007. Preparation and characterization of stable chitosan nanofibrous membrane for lipase immobilization. European Polymer Journal, 43, 3710-3718.
48- Choi, J., Kim, H., and Yoo, H. 2015. Electrospinning strategies of drug-incorporated nanofibrous mats for wound recovery. Drug Delivery and Translational Research, 5(2):137-145.
49- Yoo, H. S., Kim, T. G., and Park, T. G. 2009. Surface-functionalized electrospun nanofibers for tissue engineering and drug delivery. Advanced Drug Delivery Reviews, 61, 1033- 1042.
50- Hsieh, Y. L., Abott, A., Ellison, M. S., and Gibson, H. 2005. Functional fibers for immobilization of biomolecules. Project M02-CD05. National Textile Center Research Briefs-Materials Competency Report.
51- Drew, C., Wang, X., Samuelson Lynne, A., and Kumar, J. 2006. Electrostatic assembly of polyelectrolytes on electrospun fibers. In: Polymeric Nanofibers (pp. 137-148): ACS symposium series, American Chemical Society, Washington, DC.
52- Kathpalia, H., & Gupte, A. 2013. An introduction to fast dissolving oral thin film drug delivery systems: a review. Current drug delivery, 10(6), 667-684.
53- Mendes, A. C., Stephansen, K., & Chronakis, I. S. 2017. Electrospinning of food proteins and polysaccharides. Food Hydrocolloids, 68, 53-68.
54- Gouin, S. 2004. Microencapsulation: Industrial appraisal of existing technologies and trends. Trends in Food Science and Technology, 15: 330-347.
55- Fernandez, A., Torres-Giner, S., and Lagaron, J. M. 2009. Novel route to stabilization of bioactive antioxidants by encapsulation in electrospun fibers of zein prolamine. Food Hydrocolloids, 23:1427-1432.
56- Torres-Giner, S., Martinez-Abad, A., Ocio, M. J., and Lagaron, J. M. 2010. Stabilization of a neuraceutical omega-3 fatty acid encapsulation in ultrathin electrosprayed zein prolamin. Journal of food science, 75: N69-N79.
57- Yu, D.-G., Yang, J.-M., Branford-White, C., Lu, P., Zhang, L., and Zhu, L.-M. 2010. Third generation solid dispersions of ferulic acid in electrospun composite nanofibers. International Journal of Pharmaceutics, 400, 158-164.
58- Li, X., Kanjwal, M. A., Lin, L., and Chronakis, I. S. 2013. Electrospun polyvinyl-alcohol nanofibers as oral fast-dissolving delivery system of caffeine and riboflavin. Colloids and Surfaces B: Biointerfaces, 103: 182-188.
59- Arecchi, A., Mannino, S., and Weiss, J. 2010. Electrospinning of poly(vinyl alcohol) nanofibers loaded with hexadecane nanodroplets. Journal of Food Science, 75: N80-N88.
60- Kriegel, C., Kit, K. M., McClements, D. J., and Weiss, J. 2009. Nanofibers as carrier systems for antimicrobial microemulsions. Part I: Fabrication and characterization. Langmuir, 25, 1154-1161.
61- Kriegel, C., Kit, K. M., McClements, D. J., and Weiss, J. 2010. Nanofibers as carrier systems for antimicrobial microemulsions. II. Release characteristics and antimicrobial activity. Journal of Applied Polymer Science, 118, 2859-2868.
62- Kayaci, F., and Uyar, T. 2012a. Electrospun zein nanofibers incorporating cyclodextrins. Carbohydrate Polymers, 90: 558-568.
63- Kayaci, F., and Uyar, T. 2012b. Encapsulation of vanillin/cyclodextrin inclusion complex in electrospun polyvinyl alcohol (PVA) nanowebs: Prolonged shelf-life and high temperature stability of vanillin. Food Chemistry, 133: 641-649.
64- Wang, Z.-G., Wan, L.-S., Liu, Z.-M., Huang, X.-J., and Xu, Z.-K. 2009. Enzyme immobilization on electrospun polymer nanofibers: An overview. Journal of Molecular Catalysis B: Enzymatic, 56: 189-195.
65- Wang, Z.-G., Wang, J.-Q., and Xu, Z.-K. 2006. Immobilization of lipase from Candida rugosa on electrospun polysulfone nanofibrous membranes by adsorption. Journal of Molecular Catalysis B: Enzymatic, 42: 45-51.
66- Wang, Y., and Hsieh, Y. L. 2008. Immobilization of lipase enzyme in polyvinyl alcohol (PVA) nanofibrous membranes. Journal of Membrane Science, 309: 73-81.
67- Li, S.-F., and Wu, W. T. 2009. Lipase-immobilized electrospun PAN nanofibrous membranes for soybean oil hydrolysis. Biochemical Engineering Journal, 45: 48-53.
68- Ge, L., Zhao, Y.-S., Mo, T., Li, J.-R., and Li, P. 2012. Immobilization of glucose oxidase in electrospun nanofibrous membranes for food preservation. Food Control, 26: 188-193.
70- Arecchi, A., Scampicchio, M., Drusch, S., and Mannino, S. 2010. Nanofibrous membrane based tyrosinase-biosensor for the detection of phenolic compounds. Analytica Chimica Acta, 659: 133-136.
71- Hung, T. C., Fu, C. C., Su, C.-H., Chen, J.-Y., Wu, W. T., and Lin, Y. S. 2011.Immobilization of cellulase onto electrospun polyacrylonitrile (PAN) nanofibrous membranes and its application to the reducing sugar production from microalgae. Enzyme and Microbial Technology, 49: 30-37.
72- López-Rubio, A., Sanchez, E., Sanz, Y., and Lagaron, J. M. 2009. Encapsulation of living bifidobacteria in ultrathin PVOH electrospun fibers. Biomacromolecules, 10: 2823-2829.
73- Lopez-Rubio, A., & Lgaron, J. M. 2012. Whey protein capsules obtained through electrospraying for the encapsulation of bioactives. Innovative Food Science and Emerging Technologies, 13, 200-206.
74- Brahatheeswaran, D., Mathew, A., Aswathy, R. G., Nagaoka, Y., Venugopal, K., Yoshida, Y., Maekawa, T., and Sakthikumar, D. 2012. Hybrid fluorescent curcumin loaded zein electrospun nanofibrous scaffold for biomedical applications. Biomedical Materials, 7: 045001.
75- Karami, Z., Rezaeian, I., Zahedi, P., and Abdollahi, M. 2013. Preparation and performance evaluations of electrospun poly (ε-caprolactone), poly (lactic acid), and their hybrid (50/50) nanofibrous mats containing thymol as an herbal drug for effective wound healing. Journal of Applied Polymer Science, 129: 756-766.