Electrospun Nano-Fibers for Biomedical and Tissue Engineering Applications: A Comprehensive Review
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Filippo Berto | Hadi Nur | Hamid Reza Bakhsheshi-Rad | Ahmad Fauzi Ismail | Shokoh Parham | Anousheh Zargar Kharazi | Hamid Ghayour | A. Ismail | F. Berto | H. Ghayour | H. Bakhsheshi‐Rad | Hadi Nur | Shokoh Parham | S. Parham | H. R. Bakhsheshi‐Rad
[1] Jian-tao Lin,et al. Co-electrospun nanofibrous membranes of collagen and zein for wound healing. , 2012, ACS applied materials & interfaces.
[2] R. Goodband,et al. Hyaluronic acid nanofiber wound dressing--production, characterization, and in vivo behavior. , 2011, Journal of biomedical materials research. Part B, Applied biomaterials.
[3] R. Hoogenboom,et al. Fabrication of PEOT/PBT Nanofibers by Atmospheric Pressure Plasma Jet Treatment of Electrospinning Solutions for Tissue Engineering. , 2018, Macromolecular bioscience.
[4] Yubo Fan,et al. Performance of a multilayered small-diameter vascular scaffold dual-loaded with VEGF and PDGF. , 2013, Biomaterials.
[5] D. D’Lima,et al. Bioactive proteins delivery through core-shell nanofibers for meniscal tissue regeneration. , 2020, Nanomedicine : nanotechnology, biology, and medicine.
[6] P. Guerrero,et al. Electrospinning of Fish Gelatin Solution Containing Citric Acid: An Environmentally Friendly Approach to Prepare Crosslinked Gelatin Fibers , 2019, Materials.
[7] Jessica D. Schiffman,et al. Current and Emerging Approaches to Engineer Antibacterial and Antifouling Electrospun Nanofibers , 2018, Materials.
[8] Eric Jeffries,et al. Highly elastic and suturable electrospun poly(glycerol sebacate) fibrous scaffolds. , 2015, Acta biomaterialia.
[9] Xiaofeng Chen,et al. Enhanced diabetic wound healing by electrospun core-sheath fibers loaded with dimethyloxalylglycine. , 2018, Journal of materials chemistry. B.
[10] J. Ng,et al. Rotating-disk electrospinning: needleless electrospinning of poly(caprolactone), poly(lactic acid) and poly(vinyl alcohol) nanofiber mats with controlled morphology , 2018, Journal of Polymer Research.
[11] A. Kurniawan,et al. Gold nanoparticles-decorated electrospun poly(N-vinyl-2-pyrrolidone) nanofibers with tunable size and coverage density for nanomolar detection of single and binary component dyes by surface-enhanced raman spectroscopy , 2017, Nanotechnology.
[12] C. Lim,et al. Crosslinking of the electrospun gelatin nanofibers , 2006 .
[13] Younan Xia,et al. Use of electrospinning to directly fabricate hollow nanofibers with functionalized inner and outer surfaces. , 2004, Small.
[14] T. Nguyen,et al. Coaxial electrospun poly(lactic acid)/chitosan (core/shell) composite nanofibers and their antibacterial activity , 2011 .
[15] X. Mo,et al. Current research on electrospinning of silk fibroin and its blends with natural and synthetic biodegradable polymers , 2013, Frontiers of Materials Science.
[16] S. Ramakrishna,et al. Controlled release of dual drugs from emulsion electrospun nanofibrous mats. , 2009, Colloids and surfaces. B, Biointerfaces.
[17] Hadi Nur,et al. In Situ Synthesis of Silver Nanoparticles for Ag-NP/Cotton Nanocomposite and Its Bactericidal Effect , 2017 .
[18] T. Ko,et al. Fabrication of a nanofibrous mat with a human skin pattern. , 2015, Langmuir : the ACS journal of surfaces and colloids.
[19] Chi-Hwa Wang,et al. Electrospun Micro- and Nanofibers for Sustained Delivery of Paclitaxel to Treat C6 Glioma in Vitro , 2006, Pharmaceutical Research.
[20] Yan Li,et al. Modulation of protein release from biodegradable core-shell structured fibers prepared by coaxial electrospinning. , 2006, Journal of biomedical materials research. Part B, Applied biomaterials.
[21] Kwangsok Kim,et al. Incorporation and controlled release of a hydrophilic antibiotic using poly(lactide-co-glycolide)-based electrospun nanofibrous scaffolds. , 2004, Journal of controlled release : official journal of the Controlled Release Society.
[22] Holger Zernetsch,et al. A Review of Developments in Electrospinning Technology: New Opportunities for the Design of Artificial Tissue Structures , 2011, The International journal of artificial organs.
[23] Hubert Rahier,et al. Nanofibers as new-generation materials: From spinning and nano-spinning fabrication techniques to emerging applications , 2019 .
[24] Jyothi U. Menon,et al. Electrospun biodegradable elastic polyurethane scaffolds with dipyridamole release for small diameter vascular grafts. , 2014, Acta biomaterialia.
[25] Ahmad Fauzi Ismail,et al. Improved antibacterial properties of an Mg‐Zn‐Ca alloy coated with chitosan nanofibers incorporating silver sulfadiazine multiwall carbon nanotubes for bone implants , 2019, Polymers for Advanced Technologies.
[26] Hongbing Deng,et al. Poly(vinyl alcohol)/sodium alginate/layered silicate based nanofibrous mats for bacterial inhibition. , 2013, Carbohydrate polymers.
[27] W. Goldmann,et al. Synthesis and Characterization of Silver-Doped Mesoporous Bioactive Glass and Its Applications in Conjunction with Electrospinning , 2018, Materials.
[28] Cheol-Sang Kim,et al. Electrospun antibacterial polyurethane-cellulose acetate-zein composite mats for wound dressing. , 2014, Carbohydrate polymers.
[29] Rushikesh S. Ambekar,et al. Advancements in nanofibers for wound dressing: A review , 2019, European Polymer Journal.
[30] Van Toi Vo,et al. Optimization and characterization of electrospun polycaprolactone coated with gelatin-silver nanoparticles for wound healing application. , 2018, Materials science & engineering. C, Materials for biological applications.
[31] P. Zahedi,et al. In vitro and in vivo evaluations of phenytoin sodium-loaded electrospun PVA, PCL, and their hybrid nanofibrous mats for use as active wound dressings , 2013, Journal of Materials Science.
[32] Liping Guo,et al. Effect of processing parameters on the electrospinning of cellulose acetate studied by response surface methodology , 2020 .
[33] Won Ho Park,et al. Chitin and chitosan nanofibers: electrospinning of chitin and deacetylation of chitin nanofibers , 2004 .
[34] D. Newgreen,et al. Non-linear elasticity of core/shell spun PGS/PLLA fibres and their effect on cell proliferation. , 2013, Biomaterials.
[35] Xingyu Jiang,et al. Pharmaceutical Intermediate-Modified Gold Nanoparticles: Against Multidrug-Resistant Bacteria and Wound-Healing Application via an Electrospun Scaffold. , 2017, ACS nano.
[36] Bong Jin Hong,et al. Acid-degradable polymer-caged lipoplex (PCL) platform for siRNA delivery: facile cellular triggered release of siRNA. , 2013, Journal of the American Chemical Society.
[37] B. Zhang,et al. Electrospun PCL/mupirocin and chitosan/lidocaine hydrochloride multifunctional double layer nanofibrous scaffolds for wound dressing applications , 2018, International journal of nanomedicine.
[38] T. Yamaoka,et al. In vivo tissue response and degradation behavior of PLLA and stereocomplexed PLA nanofibers. , 2009, Biomacromolecules.
[39] Joachim Kohn,et al. Electrospun nanofibrous polymeric scaffold with targeted drug release profiles for potential application as wound dressing. , 2008, International journal of pharmaceutics.
[40] M. Bermejo,et al. Closed-Loop Doluisio (Colon, Small Intestine) and Single-Pass Intestinal Perfusion (Colon, Jejunum) in Rat—Biophysical Model and Predictions Based on Caco-2 , 2017, Pharmaceutical Research.
[41] S. Irusta,et al. Synthesis of a Novel Electrospun Polycaprolactone Scaffold Functionalized with Ibuprofen for Periodontal Regeneration: An In Vitro andIn Vivo Study , 2018, Materials.
[42] R. Reis,et al. Antibacterial activity of chitosan nanofiber meshes with liposomes immobilized releasing gentamicin. , 2015, Acta biomaterialia.
[43] Xuesi Chen,et al. Ultrafine medicated fibers electrospun from W/O emulsions. , 2005, Journal of controlled release : official journal of the Controlled Release Society.
[44] P. Hatton,et al. Electrospun F18 Bioactive Glass/PCL—Poly (ε-caprolactone)—Membrane for Guided Tissue Regeneration , 2018, Materials.
[45] Miqin Zhang,et al. Chitosan-Poly(caprolactone) Nanofibers for Skin Repair. , 2017, Journal of materials chemistry. B.
[46] L. Tammaro,et al. Preparation, characterization and antibacterial activity of poly(epsilon-caprolactone) electrospun fibers loaded with amoxicillin for controlled release in biomedical applications. , 2013, Journal of nanoscience and nanotechnology.
[47] C. Jackson,et al. Inflammation in Chronic Wounds , 2016, International journal of molecular sciences.
[48] Christine Jérôme,et al. Development of a chitosan nanofibrillar scaffold for skin repair and regeneration. , 2011, Biomacromolecules.
[49] The Compatibility of Acyclovir with Polyacrylonitrile in the Electrospun Drug-Loaded Nanofibers , 2010 .
[50] Cato T Laurencin,et al. Bioresorbable nanofiber-based systems for wound healing and drug delivery: optimization of fabrication parameters. , 2004, Journal of biomedical materials research. Part B, Applied biomaterials.
[51] Birgit Glasmacher,et al. The significance of electrospinning as a method to create fibrous scaffolds for biomedical engineering and drug delivery applications , 2016 .
[52] Y. Tseng,et al. Biodegradable drug-eluting poly[lactic-co-glycol acid] nanofibers for the sustainable delivery of vancomycin to brain tissue: in vitro and in vivo studies. , 2013, ACS chemical neuroscience.
[53] Sabu Thomas,et al. Morphology and hydroscopic properties of acrylic/thermoplastic polyurethane core–shell electrospun micro/nano fibrous mats with tunable porosity , 2016 .
[54] M. Kotaki,et al. A review on polymer nanofibers by electrospinning and their applications in nanocomposites , 2003 .
[55] Birgit Glasmacher,et al. Dipyridamole embedded in Polycaprolactone fibers prepared by coaxial electrospinning as a novel drug delivery system , 2015 .
[56] Behzad Sharif Makhmalzadeh,et al. Indomethacin electrospun nanofibers for colonic drug delivery: preparation and characterization. , 2013, Advanced pharmaceutical bulletin.
[57] Saeed Ur Rahman,et al. Nanoscale and Macroscale Scaffolds with Controlled-Release Polymeric Systems for Dental Craniomaxillofacial Tissue Engineering , 2018, Materials.
[58] L. El-Khordagui,et al. A quality by design approach to optimization of emulsions for electrospinning using factorial and D-optimal designs. , 2014, European journal of pharmaceutical sciences : official journal of the European Federation for Pharmaceutical Sciences.
[59] B. Mandal,et al. Role of non-mulberry silk fibroin in deposition and regulation of extracellular matrix towards accelerated wound healing. , 2017, Acta biomaterialia.
[60] D. Fang,et al. Electrospinning of Hyaluronic acid (HA) and HA/Gelatin Blends , 2006 .
[61] Peixi Liu,et al. Electrospun poly(L-lactic acid-co-ɛ-caprolactone) fibers loaded with heparin and vascular endothelial growth factor to improve blood compatibility and endothelial progenitor cell proliferation. , 2015, Colloids and surfaces. B, Biointerfaces.
[62] A. Ismail,et al. Antibacterial activity and in vivo wound healing evaluation of polycaprolactone-gelatin methacryloyl-cephalexin electrospun nanofibrous , 2019 .
[63] Gaurav Chauhan,et al. Development and characterization of cefazolin loaded zinc oxide nanoparticles composite gelatin nanofiber mats for postoperative surgical wounds. , 2016, Materials science & engineering. C, Materials for biological applications.
[64] Xiabin Jing,et al. The release behavior of doxorubicin hydrochloride from medicated fibers prepared by emulsion-electrospinning. , 2008, European journal of pharmaceutics and biopharmaceutics : official journal of Arbeitsgemeinschaft fur Pharmazeutische Verfahrenstechnik e.V.
[65] Mahesh Kumar Joshi,et al. Electrospun bioactive poly (ɛ-caprolactone)–cellulose acetate–dextran antibacterial composite mats for wound dressing applications , 2015 .
[66] Francis Kamau Mwiiri,et al. Electrospun nanofibers for biomedical applications , 2020, Delivery of Drugs.
[67] N. Magan,et al. Electrospinning alginate/polyethylene oxide and curcumin composite nanofibers , 2020 .
[68] R. Sedghi,et al. Electrospun biocompatible core/shell polymer-free core structure nanofibers with superior antimicrobial potency against multi drug resistance organisms , 2016 .
[69] Gary E. Wnek,et al. Processing of Polymer Nanofibers Through Electrospinning as Drug Delivery Systems , 2009 .
[70] Assunta Borzacchiello,et al. Metal‐Based Nanomaterials in Biomedical Applications: Antimicrobial Activity and Cytotoxicity Aspects , 2020, Advanced Functional Materials.
[71] M. H. Fernandes,et al. Influence of PLLA/PCL/HA Scaffold Fiber Orientation on Mechanical Properties and Osteoblast Behavior , 2019, Materials.
[72] A. Ehrmann,et al. Needleless Electrospinning of Pure and Blended Chitosan , 2017 .
[73] Horst A von Recum,et al. Electrospinning: applications in drug delivery and tissue engineering. , 2008, Biomaterials.
[74] Holger Zernetsch,et al. Electrospun cellular microenvironments: Understanding controlled release and scaffold structure. , 2011, Advanced drug delivery reviews.
[75] Dimitrios I. Zeugolis,et al. The Multifaceted Potential of Electro-spinning in Regenerative Medicine , 2014 .
[76] Myungwoong Kim,et al. The Chemical Deposition Method for the Decoration of Palladium Particles on Carbon Nanofibers with Rapid Conductivity Changes , 2016, Nanomaterials.
[77] Amandeep Singh,et al. Nanofibers: An Effective Tool for Controlled and Sustained Drug Delivery. , 2017, Current drug delivery.
[78] Martin Möller,et al. Human neural cell interactions with orientated electrospun nanofibers in vitro. , 2009, Nanomedicine.
[79] Yasser A. Elnakady,et al. Fabrication of core-shell structured nanofibers of poly (lactic acid) and poly (vinyl alcohol) by coaxial electrospinning for tissue engineering , 2018 .
[80] S. Dhara,et al. Carbon nanodot impregnated fluorescent nanofibers for in vivo monitoring and accelerating full-thickness wound healing. , 2017, Journal of materials chemistry. B.
[81] M. Mandal,et al. Prospects of nonmulberry silk protein sericin-based nanofibrous matrices for wound healing - In vitro and in vivo investigations. , 2018, Acta biomaterialia.
[82] Jung Soon Lee,et al. Handspinning Enabled Highly Concentrated Carbon Nanotubes with Controlled Orientation in Nanofibers , 2016, Scientific Reports.
[83] A. Crawford,et al. Fabrication and evaluation of electrospun PCL-gelatin micro-/nanofiber membranes for anti-infective GTR implants. , 2014, Journal of materials chemistry. B.
[84] Diana Serbezeanu,et al. Functional Polyimide-Based Electrospun Fibers for Biomedical Application , 2019, Materials.
[85] Gareth R. Williams,et al. A systematic study of captopril-loaded polyester fiber mats prepared by electrospinning. , 2012, International journal of pharmaceutics.
[86] Dedy H. B. Wicaksono,et al. Antimicrobial Treatment of Different Metal Oxide Nanoparticles: A Critical Review , 2016 .
[87] Xuelin Zhou,et al. Antimicrobial Effects of Chemical Compounds Isolated from Traditional Chinese Herbal Medicine (TCHM) Against Drug-Resistant Bacteria: A Review Paper. , 2018, Mini reviews in medicinal chemistry.
[88] Lixin Yang,et al. Influence of the drug compatibility with polymer solution on the release kinetics of electrospun fiber formulation. , 2005, Journal of controlled release : official journal of the Controlled Release Society.
[89] I. Alghoraibi,et al. Different Methods for Nanofiber Design and Fabrication , 2018 .
[90] Amparo Ribes-Greus,et al. Electrospun Poly(ethylene-co-vinyl alcohol)/Graphene Nanoplatelets Composites of Interest in Intelligent Food Packaging Applications , 2018, Nanomaterials.
[91] B. Hsiao,et al. Development of a nanostructured DNA delivery scaffold via electrospinning of PLGA and PLA-PEG block copolymers. , 2003, Journal of controlled release : official journal of the Controlled Release Society.
[92] A. Ruys,et al. Modelling and Optimization of Polycaprolactone Ultrafine-Fibres Electrospinning Process Using Response Surface Methodology , 2018, Materials.
[93] P. Hu,et al. Encapsulation of drug reservoirs in fibers by emulsion electrospinning: morphology characterization and preliminary release assessment. , 2006, Biomacromolecules.
[94] I. Shakir,et al. Electrospun fibers for tissue engineering, drug delivery, and wound dressing , 2013, Journal of Materials Science.
[95] Qingsheng Wu,et al. Encapsulating drugs in biodegradable ultrafine fibers through co-axial electrospinning. , 2006, Journal of biomedical materials research. Part A.
[96] M. Khorasani,et al. Potential of novel electrospun core-shell structured polyurethane/starch (hyaluronic acid) nanofibers for skin tissue engineering: In vitro and in vivo evaluation. , 2019, International journal of biological macromolecules.
[97] L. Draghi,et al. Cross-Linking Strategies for Electrospun Gelatin Scaffolds , 2019, Materials.
[98] Evzen Amler,et al. Core/shell nanofibers with embedded liposomes as a drug delivery system. , 2012, Biomacromolecules.
[99] B. Vasile,et al. Antimicrobial Wound Dressings as Potential Materials for Skin Tissue Regeneration , 2019, Materials.
[100] K. Woodrow,et al. Manufacturing scale-up of electrospun poly(vinyl alcohol) fibers containing tenofovir for vaginal drug delivery. , 2014, International journal of pharmaceutics.
[101] S. Miguel,et al. Production and characterization of polycaprolactone- hyaluronic acid/chitosan- zein electrospun bilayer nanofibrous membrane for tissue regeneration. , 2016, International journal of biological macromolecules.
[102] P. T. Perumal,et al. Synthesis and Fabrication of Collagen-Coated Ostholamide Electrospun Nanofiber Scaffold for Wound Healing. , 2017, ACS applied materials & interfaces.
[103] Yun-Ze Long,et al. Advances in three-dimensional nanofibrous macrostructures via electrospinning , 2014 .
[104] Kyle T. Packer,et al. A Parameter Study for 3D-Printing Organized Nanofibrous Collagen Scaffolds Using Direct-Write Electrospinning , 2019, Materials.
[105] Mohammad Raoufi,et al. One-pot reactive electrospinning of chitosan/PVA hydrogel nanofibers reinforced by halloysite nanotubes with enhanced fibroblast cell attachment for skin tissue regeneration. , 2019, Colloids and surfaces. B, Biointerfaces.
[106] I. Kang,et al. In vitro assessment of antibacterial activity and cytocompatibility of silver-containing PHBV nanofibrous scaffolds for tissue engineering. , 2010, Biomacromolecules.
[107] S. Baumgartner,et al. Local delivery of resveratrol using polycaprolactone nanofibers for treatment of periodontal disease , 2015 .
[108] Marleen Temmerman,et al. Electrospun cellulose acetate phthalate fibers for semen induced anti-HIV vaginal drug delivery. , 2012, Biomaterials.
[109] J. Nie,et al. Electrospun water-soluble carboxyethyl chitosan/poly(vinyl alcohol) nanofibrous membrane as potential wound dressing for skin regeneration. , 2008, Biomacromolecules.
[110] Sabu Thomas,et al. Collagen coated electrospun polycaprolactone (PCL) with titanium dioxide (TiO2) from an environmentally benign solvent: preliminary physico-chemical studies for skin substitute , 2014, Journal of Polymer Research.
[111] M. Edirisinghe,et al. Preparation, Characterization, and Release of Amoxicillin from Electrospun Fibrous Wound Dressing Patches , 2013, Pharmaceutical Research.
[112] T. Thundat,et al. Sustained drug release and antibacterial activity of ampicillin incorporated poly(methyl methacrylate)-nylon6 core/shell nanofibers , 2013 .
[113] M. Buzgo,et al. Blend electrospinning, coaxial electrospinning, and emulsion electrospinning techniques , 2018 .
[114] Xian Jun Loh,et al. Biodegradable polymers for electrospinning: towards biomedical applications. , 2014, Materials science & engineering. C, Materials for biological applications.
[115] Abdellah Ajji,et al. A fundamental study of chitosan/PEO electrospinning , 2011 .
[116] Kwangsok Kim,et al. Structure and process relationship of electrospun bioabsorbable nanofiber membranes , 2002 .
[117] R. Oldinski,et al. Antimicrobial effects of nanofiber poly(caprolactone) tissue scaffolds releasing rifampicin , 2012, Journal of Materials Science: Materials in Medicine.
[118] Dilayda Kanmaz,et al. Electrospun Polylactic Acid Based Nanofibers for Biomedical Applications , 2018, Material Science Research India.
[119] M. Prabhakaran,et al. Emulsion electrospun vascular endothelial growth factor encapsulated poly(l-lactic acid-co-ε-caprolactone) nanofibers for sustained release in cardiac tissue engineering , 2012, Journal of Materials Science.
[120] Li‐Ming Zhang,et al. Electrospun Zein/Gelatin Scaffold-Enhanced Cell Attachment and Growth of Human Periodontal Ligament Stem Cells , 2017, Materials.
[121] M. Edirisinghe,et al. Cellular interactions with bacterial cellulose: Polycaprolactone nanofibrous scaffolds produced by a portable electrohydrodynamic gun for point‐of‐need wound dressing , 2018, International wound journal.
[122] M. Schoenfisch,et al. Active Release of Nitric Oxide-Releasing Dendrimers from Electrospun Polyurethane Fibers. , 2016, ACS biomaterials science & engineering.
[123] Deng-Guang Yu,et al. Electrospun drug-loaded core-sheath PVP/zein nanofibers for biphasic drug release. , 2012, International journal of pharmaceutics.
[124] Sabu Thomas,et al. Electrospun polycaprolactone membranes incorporated with ZnO nanoparticles as skin substitutes with enhanced fibroblast proliferation and wound healing , 2014 .
[125] S. Hribernik,et al. Needleless electrospun carboxymethyl cellulose/polyethylene oxide mats with medicinal plant extracts for advanced wound care applications , 2020, Cellulose.
[126] Cheng Wang,et al. Biocompatible core-shell electrospun nanofibers as potential application for chemotherapy against ovary cancer. , 2014, Materials science & engineering. C, Materials for biological applications.
[127] H. Turkoglu Sasmazel,et al. Development of core-shell coaxially electrospun composite PCL/chitosan scaffolds. , 2016, International journal of biological macromolecules.
[128] Ahmad Fauzi Ismail,et al. Coating biodegradable magnesium alloys with electrospun poly-L-lactic acid-åkermanite-doxycycline nanofibers for enhanced biocompatibility, antibacterial activity, and corrosion resistance , 2019, Surface and Coatings Technology.
[129] W. Park,et al. Collagen-based biomimetic nanofibrous scaffolds: preparation and characterization of collagen/silk fibroin bicomponent nanofibrous structures. , 2008, Biomacromolecules.
[130] Rajiv Padhye,et al. Recent advances in nanofibre fabrication techniques , 2012 .
[131] M. Stevanović,et al. Poly(lactide-co-glycolide)-based Micro and Nanoparticles for the Controlled Drug Delivery of Vitamins , 2009 .
[132] Mohammad Morshed,et al. Controlled release of metronidazole benzoate from poly epsilon-caprolactone electrospun nanofibers for periodontal diseases. , 2010, European journal of pharmaceutics and biopharmaceutics : official journal of Arbeitsgemeinschaft fur Pharmazeutische Verfahrenstechnik e.V.
[133] V. Kundŕat,et al. Drug Release Kinetics of Electrospun PHB Meshes , 2019, Materials.
[134] S. Zhang,et al. The effect of poly (L-lactic acid) nanofiber orientation on osteogenic responses of human osteoblast-like MG63 cells. , 2011, Journal of the mechanical behavior of biomedical materials.
[135] Ali Khademhosseini,et al. PGS:Gelatin nanofibrous scaffolds with tunable mechanical and structural properties for engineering cardiac tissues. , 2013, Biomaterials.
[136] P. Laktionov,et al. General Study and Gene Expression Profiling of Endotheliocytes Cultivated on Electrospun Materials , 2019, Materials.
[137] R. Srivastava,et al. Nano-Graphene Oxide Functionalized Bioactive Poly(lactic acid) and Poly(ε-caprolactone) Nanofibrous Scaffolds , 2018, Materials.
[138] S. MacNeil,et al. A Novel Bilayer Polycaprolactone Membrane for Guided Bone Regeneration: Combining Electrospinning and Emulsion Templating , 2019, Materials.
[139] Jiang Yuan,et al. Electrospun polyurethane/keratin/AgNP biocomposite mats for biocompatible and antibacterial wound dressings. , 2016, Journal of materials chemistry. B.
[140] A. Hekmati,et al. Preparation, process optimization and characterization of core-shell polyurethane/chitosan nanofibers as a potential platform for bioactive scaffolds , 2018, Research in pharmaceutical sciences.
[141] V. Kale,et al. A nano zinc oxide doped electrospun scaffold improves wound healing in a rodent model , 2016 .
[142] David L Kaplan,et al. Human bone marrow stromal cell responses on electrospun silk fibroin mats. , 2004, Biomaterials.
[143] C. Forbes. Secondary stroke prevention with low-dose aspirin, sustained release dipyridamole alone and in combination. ESPS Investigators. European Stroke Prevention Study. , 1998, Thrombosis research.
[144] Zhenbei Wang,et al. Evaluation of emulsion electrospun polycaprolactone/hyaluronan/epidermal growth factor nanofibrous scaffolds for wound healing , 2016, Journal of biomaterials applications.
[145] M. Windbergs,et al. Functional electrospun fibers for the treatment of human skin wounds , 2017, European journal of pharmaceutics and biopharmaceutics : official journal of Arbeitsgemeinschaft fur Pharmazeutische Verfahrenstechnik e.V.
[146] Esah Hamzah,et al. Drug delivery and cytocompatibility of ciprofloxacin loaded gelatin nanofibers-coated Mg alloy , 2017 .
[147] D. Paneva,et al. Antibacterial electrospun poly(ɛ-caprolactone)/ascorbyl palmitate nanofibrous materials. , 2011, International journal of pharmaceutics.
[148] R. Gorga,et al. Fabrication and characterization of electrospun chitosan nanofibers formed via templating with polyethylene oxide. , 2008, Biomacromolecules.
[149] A. Khademhosseini,et al. Overview of Silk Fibroin Use in Wound Dressings. , 2018, Trends in biotechnology.
[150] J. L. Gomez Ribelles,et al. Electrospun PVA/Bentonite Nanocomposites Mats for Drug Delivery , 2017, Materials.
[151] Xichang Wang,et al. Resorbable polymer electrospun nanofibers: History, shapes and application for tissue engineering , 2020 .
[152] M. Shahrousvand,et al. Antibacterial nanofibers based on poly(l-lactide-co-d, l-lactide) and poly(vinyl alcohol) used in wound dressings potentially: a comparison between hybrid and blend properties , 2020, Journal of biomaterials science. Polymer edition.
[153] P. Kingshott,et al. Electrospun nanofibers as dressings for chronic wound care: advances, challenges, and future prospects. , 2014, Macromolecular bioscience.
[154] Al Mamun. Review of Possible Applications of Nanofibrous Mats for Wound Dressings , 2019, TEKSTILEC.
[155] Mohsen Akbari,et al. In vitro and in vivo evaluation of chitosan-alginate/gentamicin wound dressing nanofibrous with high antibacterial performance , 2020 .
[156] Abolfazl Akbarzadeh,et al. Nanofiber: Synthesis and biomedical applications , 2016, Artificial cells, nanomedicine, and biotechnology.
[157] Meilin Yang,et al. Electrospun polyurethane nanofiber scaffolds with ciprofloxacin oligomer versus free ciprofloxacin: Effect on drug release and cell attachment , 2017, Journal of controlled release : official journal of the Controlled Release Society.
[158] Mahdi Omidi,et al. Antibacterial activity and corrosion resistance of Ta2O5 thin film and electrospun PCL/MgO-Ag nanofiber coatings on biodegradable Mg alloy implants , 2019, Ceramics International.
[159] K. Leong,et al. Electrohydrodynamics: A facile technique to fabricate drug delivery systems. , 2009, Advanced drug delivery reviews.
[160] J. Deprest,et al. Biomechanical Behaviour and Biocompatibility of Ureidopyrimidinone-Polycarbonate Electrospun and Polypropylene Meshes in a Hernia Repair in Rabbits , 2019, Materials.
[161] J. Nie,et al. Paclitaxel loaded electrospun porous nanofibers as mat potential application for chemotherapy against prostate cancer , 2011 .
[162] Tae Gwan Park,et al. Surface-functionalized electrospun nanofibers for tissue engineering and drug delivery. , 2009, Advanced drug delivery reviews.
[163] Mingzhong Li,et al. Bombyx mori Silk Fibroin Scaffolds with Antheraea pernyi Silk Fibroin Micro/Nano Fibers for Promoting EA. hy926 Cell Proliferation , 2017, Materials.
[164] Dedy H. B. Wicaksono,et al. A proposed mechanism of action of textile/Al2O3–TiO2 bimetal oxide nanocomposite as an antimicrobial agent , 2018, The Journal of The Textile Institute.
[165] N. L. Thomas,et al. Electrospun poly lactic acid (PLA) fibres: Effect of different solvent systems on fibre morphology and diameter , 2014 .
[166] K. Cornetta,et al. Encapsulation of Nucleic Acids and Opportunities for Cancer Treatment , 2007, Pharmaceutical Research.
[167] Mei Zhang,et al. Preparation of PVA/PEG Phase Change Composite Nanofibers by Electrospinning , 2011 .
[168] Anousheh Zargar Kharazi,et al. Preparation and evaluation of poly glycerol sebacate/poly hydroxy butyrate core-shell electrospun nanofibers with sequentially release of ciprofloxacin and simvastatin in wound dressings , 2018 .
[169] Chun Gwon Park,et al. A nanofibrous sheet-based system for linear delivery of nifedipine. , 2011, Journal of controlled release : official journal of the Controlled Release Society.
[170] R. Saidur,et al. Fabrication and Characterization of an Electrospun PHA/Graphene Silver Nanocomposite Scaffold for Antibacterial Applications , 2018, Materials.
[171] R. Salazar-Aranda,et al. Antimicrobial and Antioxidant Activities of Plants from Northeast of Mexico , 2011, Evidence-based complementary and alternative medicine : eCAM.
[172] J. Bonvent,et al. Tetracycline hydrochloride-loaded electrospun nanofibers mats based on PVA and chitosan for wound dressing. , 2017, Materials science & engineering. C, Materials for biological applications.
[173] A. Majdi. Fabrication and Comparison of Electro-Spun Poly Hydroxy Butyrate Valrate Nanofiber and Normal Film and its Cellular Study , 2011 .
[174] Mohsen Akbari,et al. Development of the PVA/CS nanofibers containing silk protein sericin as a wound dressing: In vitro and in vivo assessment. , 2020, International journal of biological macromolecules.
[175] A. Szumny,et al. Essential Oils as Antimicrobial Agents—Myth or Real Alternative? , 2019, Molecules.
[176] John Layman,et al. Release of tetracycline hydrochloride from electrospun poly(ethylene-co-vinylacetate), poly(lactic acid), and a blend. , 2002, Journal of controlled release : official journal of the Controlled Release Society.
[177] Elizabeth R Balmayor,et al. Strategies to engineer tendon/ligament-to-bone interface: Biomaterials, cells and growth factors. , 2015, Advanced drug delivery reviews.
[178] Solmaz Maleki Dizaj,et al. Electrospun nanofibers as versatile platform in antimicrobial delivery: current state and perspectives , 2019, Pharmaceutical development and technology.
[179] O. Kwon,et al. Electrospinning of chitosan dissolved in concentrated acetic acid solution. , 2005, Biomaterials.
[180] Dedy H. B. Wicaksono,et al. Textile/Al2O3-TiO2 nanocomposite as an antimicrobial and radical scavenger wound dressing , 2016 .
[181] E. Poveda,et al. Europe and Asia , 2022 .
[182] Y. Wen,et al. Preparation of PAN@TiO2 Nanofibers for Fruit Packaging Materials with Efficient Photocatalytic Degradation of Ethylene , 2019, Materials.
[183] Tejal A. Desai,et al. Methods for Fabrication of Nanoscale Topography for Tissue Engineering Scaffolds , 2006, Annals of Biomedical Engineering.
[184] Xungai Wang,et al. Needleless Electrospinning of Nanofibers With a Conical Wire Coil , 2009 .
[185] Xuesi Chen,et al. Co-electrospun poly(lactide-co-glycolide), gelatin, and elastin blends for tissue engineering scaffolds. , 2006, Journal of biomedical materials research. Part A.
[186] Zheng-ming Huang,et al. Coaxial Electrospun Poly(L‐Lactic Acid) Ultrafine Fibers for Sustained Drug Delivery , 2006 .
[187] Bin Ding,et al. Electro-spinning/netting: A strategy for the fabrication of three-dimensional polymer nano-fiber/nets , 2013, Progress in Materials Science.
[188] T. Błachowicz,et al. Conductive Electrospun Nanofiber Mats , 2019, Materials.
[189] J. Nie,et al. Electrospun Core−Shell Structure Nanofibers from Homogeneous Solution of Poly(ethylene oxide)/Chitosan , 2009 .
[190] S. Torres‐Giner,et al. Controlled Delivery of Gentamicin Antibiotic from Bioactive Electrospun Polylactide‐Based Ultrathin Fibers , 2012 .
[191] M. Sadri,et al. Preparation and characterization of CS/ PEO/ cefazolin nanofibers with in vitro and in vivo testing , 2017 .
[192] R. Sen,et al. Oleoyl-Chitosan-Based Nanofiber Mats Impregnated with Amniotic Membrane Derived Stem Cells for Accelerated Full-Thickness Excisional Wound Healing. , 2017, ACS biomaterials science & engineering.
[193] E. Coy,et al. Cilostazol-Loaded Poly(ε-Caprolactone) Electrospun Drug Delivery System for Cardiovascular Applications , 2018, Pharmaceutical Research.
[194] E. Syková,et al. Nanofibers prepared by needleless electrospinning technology as scaffolds for wound healing , 2012, Journal of Materials Science: Materials in Medicine.
[195] A. Tamayol,et al. The Effect of Poly (Glycerol Sebacate) Incorporation within Hybrid Chitin–Lignin Sol–Gel Nanofibrous Scaffolds , 2018, Materials.
[196] M. Prabhakaran,et al. Drug-loaded emulsion electrospun nanofibers: characterization, drug release and in vitro biocompatibility , 2015 .
[197] Jaehoon Shin,et al. Enhanced skin wound healing by a sustained release of growth factors contained in platelet-rich plasma , 2011, Experimental & Molecular Medicine.
[198] J. Feijen,et al. Mechanical properties of single electrospun collagen type I fibers. , 2008, Biomaterials.
[199] Yan Li,et al. A facile technique to prepare biodegradable coaxial electrospun nanofibers for controlled release of bioactive agents. , 2005, Journal of controlled release : official journal of the Controlled Release Society.
[200] P. Coutinho,et al. Electrospun polymeric nanofibres as wound dressings: A review. , 2018, Colloids and surfaces. B, Biointerfaces.
[201] H. Yoo,et al. Coaxial electrospun nanofibers for treatment of diabetic ulcers with binary release of multiple growth factors , 2011 .
[202] Jessica D. Schiffman,et al. Transport of microorganisms into cellulose nanofiber mats , 2016 .
[203] Jianyong Yu,et al. Electrospun nanofibrous materials: a versatile medium for effective oil/water separation , 2016 .
[204] M. Costache,et al. Fabrication and Biocompatibility Evaluation of Nanodiamonds-Gelatin Electrospun Materials Designed for Prospective Tissue Regeneration Applications , 2019, Materials.
[205] Pooja S. Panicker,et al. Steered Pull Simulation to Determine Nanomechanical Properties of Cellulose Nanofiber , 2020, Materials.
[206] Susheel Kumar Nethi,et al. Electrospun polycaprolactone (PCL) scaffolds embedded with europium hydroxide nanorods (EHNs) with enhanced vascularization and cell proliferation for tissue engineering applications. , 2017, Journal of materials chemistry. B.
[207] Yang Wang,et al. Electrospun Nanofibrous Membranes: A Novel Solid Substrate for Microfluidic Immunoassays for HIV , 2008 .
[208] Mei Zhang,et al. Using co-axial electrospray deposition to eliminate burst release of simvastatin from microparticles and to enhance induced osteogenesis , 2019, Journal of biomaterials science. Polymer edition.
[209] Somiraa S. Said,et al. Antimicrobial PLGA ultrafine fibers: interaction with wound bacteria. , 2011, European journal of pharmaceutics and biopharmaceutics : official journal of Arbeitsgemeinschaft fur Pharmazeutische Verfahrenstechnik e.V.
[210] Jooyoun Kim,et al. Doxorubicin Release Controlled by Induced Phase Separation and Use of a Co-Solvent , 2018, Materials.
[211] Špela Zupančič. Core-shell nanofibers as drug delivery systems , 2019, Acta pharmaceutica.
[212] Hang Liu,et al. Antimicrobial Properties and Release Profile of Ampicillin from Electrospun Poly(εepsilon;-caprolactone) Nanofiber Yarns , 2010 .
[213] K. D. Clerck,et al. An alternative solvent system for the steady state electrospinning of polycaprolactone , 2011 .
[214] Franziska Kinzel,et al. New Polymers for Needleless Electrospinning from Low-Toxic Solvents , 2019, Nanomaterials.
[215] Y. Skorik,et al. Electrospun Bilayer Chitosan/Hyaluronan Material and Its Compatibility with Mesenchymal Stem Cells , 2019, Materials.
[216] Li Li,et al. A review on biodegradable polymeric materials for bone tissue engineering applications , 2009 .
[217] Usman Ali,et al. Electrospun Fibrous Scaffolds for Small-Diameter Blood Vessels: A Review , 2018, Membranes.
[218] Z. Yi,et al. An aligned porous electrospun fibrous membrane with controlled drug delivery - An efficient strategy to accelerate diabetic wound healing with improved angiogenesis. , 2018, Acta biomaterialia.
[219] Serrano-Medina Aracely,et al. Electrospinning for Drug Delivery Systems: Drug Incorporation Techniques , 2016 .
[220] Fabrication of Stable Nanofiber Matrices for Tissue Engineering via Electrospinning of Bare Laser-Synthesized Au Nanoparticles in Solutions of High Molecular Weight Chitosan , 2019, Nanomaterials.
[221] Mohsen Akbari,et al. Hyaluronic Acid (HA)-Based Silk Fibroin/Zinc Oxide Core-Shell Electrospun Dressing for Burn Wound Management. , 2020, Macromolecular bioscience.
[222] F. Gao,et al. Needleless electrospinning for scaled-up production of ultrafine chitosan hybrid nanofibers used for air filtration , 2016 .
[223] Emmanuel Rotimi Sadiku,et al. Electrospun Alginate Nanofibers Toward Various Applications: A Review , 2020, Materials.
[224] Shaobing Zhou,et al. In vitro degradation and release profiles for electrospun polymeric fibers containing paracetanol. , 2008, Colloids and surfaces. B, Biointerfaces.