has been cited by the following article(s):
[1]
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Spontaneously Micropatterned Silk/Gelatin Scaffolds with Topographical, Biological, and Electrical Stimuli for Neuronal Regulation
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2020 |
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[2]
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BIODEGRADABLE POLYMERIC FILMS FROM GELATIN AND SILK SERICIN: DEVELOPMENT AND CHARACTERIZATION FOR PACKAGING APPLICATIONS
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2017 |
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[3]
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BIODEGRADABLE POLYMERIC FILMS FROM GELATIN AND SILK SERICIN: DEVELOPMENT AND CHARACTERIZATION FOR PACKAGING …
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2017 |
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[4]
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IN VIVO ANTICANCER EFFECT OF CURCUMIN RELEASED FROM GELATIN AND THAI SILK FIBROIN MICROSPHERES
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Thesis,
2016 |
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[5]
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Surface Modified Thin Film from Silk and Gelatin for Sustained Drug Release to Heal Wound
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Journal of Materials Chemistry B,
2015 |
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[6]
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Development of antibiotic-loaded silk fibroin/hyaluronic acid polyelectrolyte film coated CoCrMo alloy
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Biomedical Engineering/Biomedizinische Technik,
2015 |
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[7]
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Effects of pH on the silk fibroin coating of CoCrMo alloy
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Scanning,
2015 |
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[8]
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胶原蛋白静电纺丝纳米纤维研究进展
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高分子通报,
2015 |
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[9]
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Role of Chitosan on Some Physical Properties and the Urea Controlled Release of the Silk Fibroin/Gelatin Hydrogel
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Journal of Polymers and the Environment,
2014 |
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[10]
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Effect of Gelatin on Secondary Structure, Crystallinity and Swelling Behavior of Silk Fibroin-Gelatin Hydrogelsand Its Application in ControlledRelease of …
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2013 |
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[11]
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Effect of Gelatin on Secondary Structure, Crystallinity and Swelling Behavior of Silk Fibroin-Gelatin Hydrogels and its Application in Controlled Release of Nitrogen
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Advanced Materials Research ,
2013 |
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[12]
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Comparison of Porosity Improvement of Silk Fibroin Membrane Using Polyethylene Glycol and Glutaraldehyde for Increasing Oxygen Permeability
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Advanced Materials Research,
2013 |
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[1]
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Spontaneously Micropatterned Silk/Gelatin Scaffolds with Topographical, Biological, and Electrical Stimuli for Neuronal Regulation
ACS Biomaterials Science & Engineering,
2020
DOI:10.1021/acsbiomaterials.9b01449
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[2]
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Spontaneously Micropatterned Silk/Gelatin Scaffolds with Topographical, Biological, and Electrical Stimuli for Neuronal Regulation
ACS Biomaterials Science & Engineering,
2020
DOI:10.1021/acsbiomaterials.9b01449
|
|
|
[3]
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Comparison of Porosity Improvement of Silk Fibroin Membrane Using Polyethylene Glycol and Glutaraldehyde for Increasing Oxygen Permeability
Advanced Materials Research,
2013
DOI:10.4028/www.scientific.net/AMR.750-752.1601
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[4]
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Effect of Gelatin on Secondary Structure, Crystallinity and Swelling Behavior of Silk Fibroin - Gelatin Hydrogels and its Application in Controlled Release of Nitrogen
Advanced Materials Research,
2013
DOI:10.4028/www.scientific.net/AMR.750-752.1347
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