京ICP备13020181号-2
© 《China Plastics》
© 《China Plastics》
China Plastics ›› 2024, Vol. 38 ›› Issue (4): 103-108.DOI: 10.19491/j.issn.1001-9278.2024.04.017
• Review • Previous Articles
CHENG En1(), YE Donglei2, CHENG Debao3, TIAN Huafeng1, ZHAO Xiaoying1, XIANG Aimin1(
)
Received:
2024-01-18
Online:
2024-04-26
Published:
2024-04-22
CLC Number:
CHENG En, YE Donglei, CHENG Debao, TIAN Huafeng, ZHAO Xiaoying, XIANG Aimin. Gelatin⁃based electrospun nanofibers and their applications[J]. China Plastics, 2024, 38(4): 103-108.
1 | Zhang Y, Yang L, Dong Q, et al. Fabrication of antibacterial fibrous films by electrospinning and their application for Japanese sea bass (Lateolabrax japonicus) preservation[J]. LWT, 2021, 149: 111870. |
2 | Liu X, Song X, Gou D, et al. A polylactide based multifunctional hydrophobic film for tracking evaluation and maintaining beef freshness by an electrospinning technique[J]. Food Chemistry, 2023, 428: 136784. |
3 | Qin M, Mou X J, Dong W H, et al. In situ electrospinning wound healing films composed of zein and clove essential oil[J]. Macromolecular Materials and Engineering, 2020, 305(3): 1900790. |
4 | Wang P, Li Y, Zhang C, et al. Characterization and antioxidant activity of trilayer gelatin/dextran⁃propyl gallate/gelatin films: Electrospinning versus solvent casting[J]. Lwt, 2020, 128: 109536 |
5 | Liu X, Shi M, Luo Y, et al. Degradable and dissolvable thin⁃film materials for the applications of new⁃generation environmental⁃friendly electronic devices[J]. Applied Sciences, 2020, 10(4): 1 320. |
6 | Ashraf R, Sofi H S, Malik A, et al. Recent trends in the fabrication of starch nanofibers: electrospinning and non⁃electrospinning routes and their applications in biotechnology[J]. Applied Biochemistry and Biotechnology, 2019, 187: 47⁃74. |
7 | Pant B, Park M, Park S J. Drug delivery applications of core⁃sheath nanofibers prepared by coaxial electrospinning: a review[J]. Pharmaceutics, 2019, 11(7): 305. |
8 | Lee J, Moon S, Lahann J, et al. Recent Progress in Preparing Nonwoven Nanofibers via Needleless Electrospinning[J]. Macromolecular Materials and Engineering, 2023: 2300057. |
9 | Partheniadis I, Stathakis G, Tsalavouti D, et al. Essential oil⁃loaded nanofibers for pharmaceutical and biomedical applications: a systematic mini⁃review[J]. Pharmaceutics, 2022, 14(9): 1 799. |
10 | Zare M, Dziemidowicz K, Williams G R, et al. Encapsulation of pharmaceutical and nutraceutical active ingredients using electrospinning processes[J]. Nanomaterials, 2021, 11(8): 1 968. |
11 | Tang Y, Zhou Y, Lan X, et al. Electrospun gelatin nanofibers encapsulated with peppermint and chamomile essential oils as potential edible packaging[J]. Journal of Agricultural and Food Chemistry, 2019, 67(8): 2 227⁃2 234. |
12 | Mohajeri P, Hematian Sourki A, Mehregan Nikoo A, et al. Fabrication, characterisation and antimicrobial activity of electrospun Plantago psyllium L. seed gum/gelatine nanofibres incorporated with Cuminum cyminum essential oil nanoemulsion[J]. International Journal of Food Science & Technology, 2023, 58(4): 1 832⁃1 840. |
13 | Wu J, Liu S, Zhang M, et al. Coaxial electrospinning preparation and antibacterial property of polylactic acid/tea polyphenol nanofiber membrane[J]. Journal of Industrial Textiles, 2022, 51(): 1778S-1792S. |
14 | Liu L, Tao L, Chen J, et al. Fish oil⁃gelatin core⁃shell electrospun nanofibrous membranes as promising edible films for the encapsulation of hydrophobic and hydrophilic nutrients[J]. Lwt, 2021, 146: 111500. |
15 | Saadat S, Emam⁃Djomeh Z, Askari G. Antibacterial and antioxidant gelatin nanofiber scaffold containing ethanol extract of pomegranate peel: design, characterization and in vitro assay[J]. Food and Bioprocess Technology, 2021, 14: 935⁃944. |
16 | Li S, Shi W, Wang X, et al. Electrospinning of gelatin nanofibers containing sesamol nanoparticles[J]. The Journal of The Textile Institute, 2023: 1⁃9. |
17 | Ali M G, Mousa H M, Blaudez F, et al. Dual nanofiber scaffolds composed of polyurethane⁃gelatin/nylon 6⁃gelatin for bone tissue engineering[J]. Colloids and Surfaces A: Physicochemical and Engineering Aspects, 2020, 597: 124817. |
18 | Ji X, Guo J, Guan F, et al. Preparation of electrospun polyvinyl alcohol/nanocellulose composite film and evaluation of its biomedical performance[J]. Gels, 2021, 7(4): 223. |
19 | Jhang J C, Lin J H, Lou C W, et al. Biodegradable and conductive PVA/CNT nanofibrous membranes used in nerve conduit applications[J]. Journal of Industrial Textiles, 2022, 51(): 1048S-1065S. |
20 | Khalafi N, Gharachorloo M, Ganjloo A, et al. Electrospun zein nanofibers containing anthocyanins extracted from red cabbage (Brassica oleracea L.)[J]. Journal of Food Science, 2023, 88(11): 4 620⁃4 629. |
21 | Altan A, Çayır Ö. Encapsulation of carvacrol into ultrafine fibrous zein films via electrospinning for active packaging[J]. Food Packaging and Shelf Life, 2020, 26: 100581. |
22 | Nuge T, Tshai K Y, Lim S S, et al. Characterization and optimization of the mechanical properties of electrospun gelatin nanofibrous scaffolds[J]. World Journal of Engineering, 2020, 17(1): 12⁃20. |
23 | Angammana C J, Jayaram S H. Analysis of the effects of solution conductivity on electrospinning process and fiber morphology[J]. IEEE Transactions on Industry Applications, 2011, 47(3): 1 109⁃1 117. |
24 | Fukushima S, Karube Y, Kawakami H. Preparation of ultrafine uniform electrospun polyimide nanofiber[J]. Polymer Journal, 2010, 42(6): 514⁃518. |
25 | Rezaei B, Shoushtari A M, Rabiee M, et al. Multifactorial modeling and optimization of solution and electrospinning parameters to generate superfine polystyrene nanofibers[J]. Advances in Polymer Technology, 2018, 37(8): 2 743⁃2 755. |
26 | Zhao J, Sun Z, Shao Z, et al. Effect of surface⁃active agent on morphology and properties of electrospun PVA nanofibres[J]. Fibers and Polymers, 2016, 17(6): 896⁃901. |
27 | Hu J, Prabhakaran M P, Ding X, et al. Emulsion electrospinning of polycaprolactone: influence of surfactant type towards the scaffold properties[J]. Journal of Biomaterials Science, polymer edition, 2015, 26(1): 57⁃75. |
28 | Bonino C A, Krebs M D, Saquing C D, et al. Electrospinning alginate⁃based nanofibers: From blends to crosslinked low molecular weight alginate⁃only systems[J]. Carbohydrate Polymers, 2011, 85(1): 111⁃119. |
29 | Otsuka I, Barrett C J. Electrospinning of photo⁃responsive azo⁃cellulose: towards smart fibrous materials[J]. Cellulose, 2019, 26: 6 903⁃6 915. |
30 | Fashandi H, Karimi M. Pore formation in polystyrene fiber by superimposing temperature and relative humidity of electrospinning atmosphere[J]. Polymer, 2012, 53(25): 5 832⁃5 849. |
31 | Celebioglu A, Uyar T. Electrospun porous cellulose acetate fibers from volatile solvent mixture[J]. Materials Letters, 2011, 65(14): 2 291⁃2 294. |
32 | Wang Q, Liu S, Lu W, et al. Fabrication of Curcumin@ Ag loaded core/shell nanofiber membrane and its synergistic antibacterial properties[J]. Frontiers in Chemistry, 2022, 10: 870666. |
33 | Li S F, Wu J H, Hu T G, et al. Encapsulation of quercetin into zein⁃ethyl cellulose coaxial nanofibers: Preparation, characterization and its anticancer activity[J]. International Journal of Biological Macromolecules, 2023, 248: 125797. |
34 | Liu Y, Chen X, Gao Y, et al. Elaborate design of shell component for manipulating the sustained release behavior from core–shell nanofibres[J]. Journal of Nanobiotechnology, 2022, 20(1): 244. |
35 | Chen J, Yu Z, Li C, et al. Review of the principles, devices, parameters, and applications for centrifugal electrospinning[J]. Macromolecular Materials and Engineering, 2022, 307(8): 2200057. |
36 | Ebrahimi S, Fathi M, Kadivar M. Production and characterization of chitosan⁃gelatin nanofibers by nozzle⁃less electrospinning and their application to enhance edible film’s properties[J]. Food Packaging and Shelf Life, 2019, 22: 100387. |
37 | Ricaurte L, Tello⁃Camacho E, Quintanilla⁃Carvajal M X. Hydrolysed gelatin⁃derived, solvent⁃free, electrospun nanofibres for edible applications: physical, chemical and thermal behaviour[J]. Food Biophysics, 2020, 15: 133⁃142. |
38 | Li M, Yu H, Xie Y, et al. Fabrication of eugenol loaded gelatin nanofibers by electrospinning technique as active packaging material[J]. LWT,2021,139:110 800. |
39 | Shi Y, Cao X, Zhu Z, et al. Fabrication of cellulose acetate/gelatin⁃eugenol core–shell structured nanofiber films for active packaging materials[J]. Colloids and Surfaces B: Biointerfaces, 2022, 218: 112743. |
40 | Liu Y, Wang D, Sun Z, et al. Preparation and characterization of gelatin/chitosan/3⁃phenylacetic acid food⁃packaging nanofiber antibacterial films by electrospinning[J]. International Journal of Biological Macromolecules, 2021, 169: 161⁃170. |
41 | Huang Z, Wang W, Wang Q, et al. Coaxial nanofiber scaffold with super⁃active platelet lysate to accelerate the repair of bone defects[J]. RSC Advances, 2020, 10(59): 35 776⁃35 786. |
42 | Irani S, Honarpardaz A, Choubini N, et al. Chondro‐inductive nanofibrous scaffold based gelatin/polyvinyl alcohol/chondroitin sulfate for cartilage tissue engineering[J]. Polymers for Advanced Technologies, 2020, 31(6): 1 395⁃1 402. |
43 | Farahani H, Barati A, Arjomandzadegan M, et al. Nanofibrous cellulose acetate/gelatin wound dressing endowed with antibacterial and healing efficacy using nanoemulsion of Zataria multiflora[J]. International Journal of Biological Macromolecules, 2020, 162: 762⁃773. |
44 | Mirbehbahani F S, Hejazi F, Najmoddin N, et al. Artemisia annua L. as a promising medicinal plant for powerful wound healing applications[J]. Progress in Biomaterials, 2020, 9: 139⁃151. |
45 | Golipour H, Ezzatzadeh E, Sadeghianmaryan A. Investigation of co‐electrospun gelatin: TiO2/polycaprolactone: silk fibroin scaffolds for wound healing applications[J]. Journal of Applied Polymer Science, 2022, 139(27): e52505. |
46 | You Y, Chen F, Qian J, et al. Nonhazardous electrospun biopolymer nanofibrous membrane for antibacterial filter[J]. Nano, 2020, 15(7): 2050085. |
47 | Baburaj M S, Veeran M G, Painuly D, et al. Fabrication and characterisation of polycaprolactone/gelatin/chitosan (PCL/GEL/CHI) electrospun nano⁃membranes for wastewater purification[J]. Desalination, 2023: 116709. |
48 | Kadam V, Truong Y B, Schutz J, et al. Gelatin/β–Cyclodextrin Bio–Nanofibers as respiratory filter media for filtration of aerosols and volatile organic compounds at low air resistance[J]. Journal of Hazardous Materials, 2021, 403: 123841. |
[1] | TAN Jing, WANG Zhi, WANG Shuo, FU Hongyan, LI Changjin, LI Haoyi, YANG Weimin, ZHANG Yang. Study on toughening modification of poly(lactic acid) melt differential electrospun fiber membrane by dendrimer [J]. China Plastics, 2024, 38(2): 7-13. |
[2] | LI Jie, LU Yiyi, SHI Wentian, GUO Yunjie, WANG Yuke. Preparation and oil⁃water separation performance of PDMS/PVDF electrospun membranes [J]. China Plastics, 2024, 38(1): 28-34. |
[3] | WANG Yuwei, XIAO Runxiang, ZHANG Hongkai, GUAN Wenjin, DENG Yafeng. Research progress in nanofiber⁃based air filtration materials [J]. China Plastics, 2023, 37(9): 115-124. |
[4] | GUAN Guotao, LIU Chenze, HE Shiquan, SONG Chaoyang, ZHANG Xiang, ZHAO Na, WANG Chao. Preparation and properties of antibacterial biodegradable poly (lactic acid) membrane [J]. China Plastics, 2023, 37(9): 8-13. |
[5] | WANG Rongrong, JIANG Tao, SUN Shaoyang, ZHOU Zhou, WANG Xiang, SHEN Ying, XING Jian. Preparation and performance of electrospun polyimide/multi⁃wall carbon nanotubes hybrid nanofibers [J]. China Plastics, 2023, 37(12): 23-28. |
[6] | LI Haoyi, WANG Yiming, DING Xi, ZHANG Yi, BAI Jingyu, LI Feifei, ZHANG Yueyong, YANG Weimin. Research progress in electrospinning drug loading and its applications [J]. China Plastics, 2023, 37(12): 60-69. |
[7] | . Preparation and performance of electrospun polyimide/multi-wall carbon nanotubes hybrid nanofibers [J]. , 2023, 37(12): 23-28. |
[8] | SONG Danyang, ZHENG Hongjuan, LI Yilong. Research progress in PLA⁃based oil⁃water separation materials [J]. China Plastics, 2022, 36(9): 187-192. |
[9] | DU Qing, HE Yi, YU Tanjing, LAN Yanjiao, ZHAO Yanzhi, ZHOU Juying. Preparation and characterization of oriented thermoplastic polyolefin/PAN/ MWCNT composites [J]. China Plastics, 2022, 36(8): 49-55. |
[10] | LIN Wen, ZHAO Jingjing, SU Tingting, WANG Zhanyong. Research progress in biodegradation of polystyrene [J]. China Plastics, 2022, 36(7): 143-149. |
[11] | ZHOU Shuyi, ZHU Min, LIU Yiying, CAO Shuhui, CAI Qixuan, NIE Hui, ZHANG Yuxia, ZHOU Hongfu. Research progress in polymer⁃based hemostatic materials [J]. China Plastics, 2022, 36(7): 74-84. |
[12] | SHAO Linying, XI Yuewei, WENG Yunxuan. Research progress in degradation characteristics of poly(lactic acid) composites [J]. China Plastics, 2022, 36(6): 155-164. |
[13] | WANG Rongchen, ZHANG Heng, SUN Huanwei, DUAN Shuxia, QIN Zixuan, LI Han, ZHU Feichao, ZHANG Yifeng. Research progress in preparation and hydrophilic modification of polylactic acid nonwovens for medical and health applications [J]. China Plastics, 2022, 36(5): 158-166. |
[14] | SUI Zhenquan, MAO Jinchao, FAN Jinshi. Preparation and applications of chitosan/poly(vinyl alcohol) liquid mulch films [J]. China Plastics, 2022, 36(3): 21-25. |
[15] | HE Xuetao, ZHANG Yi, MO Zhenyu, LI Changjin, WANG Shuo, YANG Weimin, LI Haoyi. Preparation process of PBAT fiber membrane by melt differential electrospinning [J]. China Plastics, 2022, 36(12): 1-5. |
Viewed | ||||||
Full text |
|
|||||
Abstract |
|
|||||