Nanofiber: An Immerging Novel Drug Delivery System
暂无分享,去创建一个
G. Rath | G. Ghosh | D. Sahu | Goutam Rath
[1] Challa V. Kumar,et al. Correction to "Stirred Not Shaken: Facile Production of High-Quality, High-Concentration Graphene Aqueous Suspensions Assisted by a Protein". , 2021, ACS applied materials & interfaces.
[2] E. Arkan,et al. The application of nanomaterial science in the formulation a novel antibiotic: Assessment of the antifungal properties of mucoadhesive clotrimazole loaded nanofiber versus vaginal films. , 2020, Materials science & engineering. C, Materials for biological applications.
[3] F. Oktar,et al. Glioblastoma cell adhesion properties through bacterial cellulose nanocrystals in polycaprolactone/gelatin electrospun nanofibers. , 2020, Carbohydrate polymers.
[4] Zongbin Hao,et al. Controllable Subtractive Nanoimprint Lithography for Precisely Fabricating Paclitaxel-loaded PLGA Nanocylinders to Enhance Anticancer Efficacy. , 2020, ACS applied materials & interfaces.
[5] A. Cimmino,et al. The incorporation and release of ungeremine, an antifungal Amaryllidaceae alkaloid, in poly(lactic acid)/poly(ethylene glycol) nanofibers , 2020 .
[6] Kevin M. Tyo,et al. Sustained-release Griffithsin nanoparticle-fiber composites against HIV-1 and HSV-2 infections. , 2020, Journal of controlled release : official journal of the Controlled Release Society.
[7] F. Khademi,et al. Glioblastoma multiforme: a glance at advanced therapies based on nanotechnology , 2020, Journal of chemotherapy.
[8] Y. Tseng,et al. Treating Intracranial Abscesses in Rats with Stereotactic Injection of Biodegradable Vancomycin-Embedded Microparticles , 2020, Pharmaceutics.
[9] A. Kara,et al. Peptide-protein based nanofibers in pharmaceutical and biomedical applications. , 2020, International journal of biological macromolecules.
[10] Yoonwon Jung,et al. Core/Sheath-Structured Composite Nanofibers Containing Cinnamon Oil: Their Antibacterial and Antifungal Properties and Acaricidal Effect against House Dust Mites , 2020, Polymers.
[11] T. Webster,et al. Advances in Antimicrobial and Osteoinductive Biomaterials , 2020 .
[12] İmren Esentürk,et al. Voriconazole incorporated nanofiber formulations for topical application: preparation, characterization and antifungal activity studies against Candida species , 2019, Pharmaceutical development and technology.
[13] P. Arantes,et al. Electrospun PVA-Dacarbazine nanofibers as a novel nano brain-implant for treatment of glioblastoma: in silico and in vitro characterization. , 2019, European journal of pharmaceutical sciences : official journal of the European Federation for Pharmaceutical Sciences.
[14] Q. Ni,et al. Characterizations and application of CA/ZnO/AgNP composite nanofibers for sustained antibacterial properties. , 2019, Materials science & engineering. C, Materials for biological applications.
[15] M. El-Aassar,et al. Loading of some quinoxaline derivatives in poly (l-lactic) acid/Pluronic® F-127 nanofibers enhances their anticancer efficiency and induces a p53 and p21 apoptotic-signaling pathway. , 2019, Colloids and surfaces. B, Biointerfaces.
[16] Ming‐Wei Chang,et al. Precision Printing of Customized Cylindrical Capsules with Multifunctional Layers for Oral Drug Delivery. , 2019, ACS applied materials & interfaces.
[17] M. Doble,et al. Drug loaded electrospun polymer/ceramic composite nanofibrous coatings on titanium for implant related infections , 2019, Ceramics International.
[18] Lifeng Zhang,et al. Polyacrylonitrile nanofibrous mat from electrospinning: Born with potential anti-fungal functionality , 2019, European Polymer Journal.
[19] Menglin Chen,et al. Injectable PLCL/Gelatin Core-shell Nanofibers Support Noninvasive 3D delivery of Stem Cells. , 2019, International journal of pharmaceutics.
[20] Zhuxian Zhou,et al. Acidity-responsive shell-sheddable camptothecin-based nanofibers for carrier-free cancer drug delivery. , 2019, Nanoscale.
[21] M. Irani,et al. Simultaneous controlled release of 5-FU, DOX and PTX from chitosan/PLA/5-FU/g-C3N4-DOX/g-C3N4-PTX triaxial nanofibers for breast cancer treatment in vitro. , 2019, Colloids and surfaces. B, Biointerfaces.
[22] X. Bai,et al. Layered nanofiber sponge with an improved capacity for promoting blood coagulation and wound healing. , 2019, Biomaterials.
[23] R. Pei,et al. Improved Stability, Antitumor Effect, and Controlled Release of Recombinant Soluble TRAIL by Combining Genetic Engineering with Coaxial Electrospinning , 2019, ACS Applied Bio Materials.
[24] V. Guarino,et al. In vitro degradation of zein nanofibres for propolis release in oral treatments , 2019, Materials Research Express.
[25] K. Koenig,et al. A new prototype melt-electrospinning device for the production of biobased thermoplastic sub-microfibers and nanofibers , 2019, Biomaterials Research.
[26] R. Ambrus,et al. Electrospun nanofiber‐based niflumic acid capsules with superior physicochemical properties , 2019, Journal of pharmaceutical and biomedical analysis.
[27] Katja Škrlec,et al. Development of electrospun nanofibers that enable high loading and long‐term viability of probiotics , 2019, European journal of pharmaceutics and biopharmaceutics : official journal of Arbeitsgemeinschaft fur Pharmazeutische Verfahrenstechnik e.V.
[28] M. Rahmati-Yamchi,et al. Chitosan-based nanotherapeutics for ovarian cancer treatment , 2019, Journal of drug targeting.
[29] F. Acartürk,et al. Development and characterization of methylprednisolone loaded delayed release nanofibers , 2019, Journal of Drug Delivery Science and Technology.
[30] Chi‐Hwa Wang,et al. Localized Delivery of Pilocarpine to Hypofunctional Salivary Glands through Electrospun Nanofiber Mats: An Ex Vivo and In Vivo Study , 2019, International journal of molecular sciences.
[31] I. Kim,et al. Silver sulfadiazine loaded zein nanofiber mats as a novel wound dressing , 2018, RSC advances.
[32] M. Farzaei,et al. Natural product-based nanomedicines for wound healing purposes: therapeutic targets and drug delivery systems , 2018, International journal of nanomedicine.
[33] J. Rudra,et al. Nanoscale Peptide Self-assemblies Boost BCG-primed Cellular Immunity Against Mycobacterium tuberculosis , 2018, Scientific Reports.
[34] Gareth R. Williams,et al. Electrospun amorphous solid dispersions of poorly water‐soluble drugs: A review , 2018, Journal of controlled release : official journal of the Controlled Release Society.
[35] K. Leong,et al. Sustained delivery of siRNA/mesoporous silica nanoparticle complexes from nanofiber scaffolds for long-term gene silencing. , 2018, Acta biomaterialia.
[36] Laszlo Szekely,et al. Cellular-resolution 3D virtual histology of human coronary arteries using x-ray phase tomography , 2018, Scientific Reports.
[37] Gareth R. Williams,et al. Dual temperature and pH responsive nanofiber formulations prepared by electrospinning. , 2018, Colloids and surfaces. B, Biointerfaces.
[38] S. Batra,et al. Emerging Roles of Electrospun Nanofibers in Cancer Research , 2018, Advanced healthcare materials.
[39] A. Ismail,et al. Response surface modeling of electrospinning parameters on titanium oxide nanofibers’ diameter: a Box-Behnken design (BBD) , 2017 .
[40] Hidetoshi Kotera,et al. Human Pluripotent Stem Cell-Derived Cardiac Tissue-like Constructs for Repairing the Infarcted Myocardium , 2017, Stem cell reports.
[41] Justin T. Harris,et al. Sustained Release of Recombinant Human Growth Hormone from Bioresorbable Poly(ester urea) Nanofibers , 2017 .
[42] T. Uyar,et al. Antioxidant Vitamin E/Cyclodextrin Inclusion Complex Electrospun Nanofibers: Enhanced Water Solubility, Prolonged Shelf Life, and Photostability of Vitamin E. , 2017, Journal of agricultural and food chemistry.
[43] Z. Nagy,et al. Novel Alternating Current Electrospinning of Hydroxypropylmethylcellulose Acetate Succinate (HPMCAS) Nanofibers for Dissolution Enhancement: The Importance of Solution Conductivity. , 2017, Journal of pharmaceutical sciences.
[44] Z. Ahmad,et al. Fabrication of patterned polymer-antibiotic composite fibers via electrohydrodynamic (EHD) printing , 2016 .
[45] D. Kaplan,et al. Injectable and pH-Responsive Silk Nanofiber Hydrogels for Sustained Anticancer Drug Delivery. , 2016, ACS applied materials & interfaces.
[46] A. Sarac,et al. Voriconazole loaded electrospun nanofibers as topical drug carriers , 2016 .
[47] C. Li,et al. Tailoring mechanical and antibacterial properties of chitosan/gelatin nanofiber membranes with Fe3O4 nanoparticles for potential wound dressing application , 2016 .
[48] Jiaoyan Ren,et al. Design of nanomaterial based systems for novel vaccine development. , 2016, Biomaterials science.
[49] Hongyan Xu,et al. Amphiphilic block copolymers-based mixed micelles for noninvasive drug delivery , 2016, Drug delivery.
[50] D. Lamprou,et al. A novel hot-melt extrusion formulation of albendazole for increasing dissolution properties. , 2016, International journal of pharmaceutics.
[51] Pyung-Hwan Kim,et al. Myocardial tissue engineering using electrospun nanofiber composites , 2016, BMB reports.
[52] T. Garg,et al. Development, optimization, and characterization of polymeric electrospun nanofiber: a new attempt in sublingual delivery of nicorandil for the management of angina pectoris , 2015, Artificial cells, nanomedicine, and biotechnology.
[53] Y. Tseng,et al. Concurrent delivery of carmustine, irinotecan, and cisplatin to the cerebral cavity using biodegradable nanofibers: In vitro and in vivo studies. , 2015, Colloids and surfaces. B, Biointerfaces.
[54] G. Marosi,et al. Melt-blown and electrospun drug-loaded polymer fiber mats for dissolution enhancement: a comparative study. , 2015, Journal of pharmaceutical sciences.
[55] C. Kothapalli,et al. Nanofibers based tissue engineering and drug delivery approaches for myocardial regeneration. , 2015, Current pharmaceutical design.
[56] G. Rathna,et al. Bioactive thermoresponsive polyblend nanofiber formulations for wound healing. , 2015, Materials science & engineering. C, Materials for biological applications.
[57] Anna K Blakney,et al. Electrospun fibers for vaginal anti-HIV drug delivery. , 2013, Antiviral research.