Di Huang
Taiyuan University of Technology
Composite numberSelf-healing hydrogelsFibroinBiomedical engineeringComposite materialFourier transform infrared spectroscopyChemistryPolyamideMaterials scienceScanning electron microscopeBiocompatibilityPolyvinyl alcoholGelatinChitosanBone regenerationCompressive strengthChemical engineeringAdhesionScaffoldNanofiber
52Publications
8H-index
187Citations
Publications 52
Newest
#1Ya Zhao (TUT: Taiyuan University of Technology)H-Index: 5
#2Yonghua Sun (TUT: Taiyuan University of Technology)H-Index: 3
Last. Ruiqiang Hang (TUT: Taiyuan University of Technology)H-Index: 26
view all 8 authors...
Abstract Stenting has been widely adopted for the treatment of cardiovascular diseases, but the complications such as in-stent restenosis and late stent thrombosis cannot be completely avoided, which are closely related to endothelial dysfunction and inflammatory response. In the present work, oxide nanosheets were grown on the surface of nearly equiatomic NiTi alloy by alkaline corrosion (AC), aiming at yielding favorable endothelial functionality and immune microenvironment. The results show n...
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#1Weiwei Lan (TUT: Taiyuan University of Technology)H-Index: 2
#2Mengjie Xu (TUT: Taiyuan University of Technology)H-Index: 3
Last. Weiyi Chen (TUT: Taiyuan University of Technology)H-Index: 9
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Abstract Osteochondral defect regeneration was a great challenge because of limited self-repaired ability for its sophisticated hierarchical inner structure. Hereon, the bi-layer hydrogel with robust osteochondral interfacial bonding was formulated under fully physical crosslinking, which was consisted of polyvinyl alcohol/collagen II for cartilage layer and polyvinyl alcohol/biphasic calcium phosphate/carbon nanotubes for bone layer. The bi-layer hydrogel with irregular pore distribution showed...
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#1Jinlong Kong (TUT: Taiyuan University of Technology)
#2Yang Liu (CAS: Chinese Academy of Sciences)H-Index: 1
Last. Haiyang Mao (CAS: Chinese Academy of Sciences)H-Index: 1
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#1Xiumei Zhang (TUT: Taiyuan University of Technology)H-Index: 3
#2Miao Qin (TUT: Taiyuan University of Technology)H-Index: 1
Last. Di Huang (TUT: Taiyuan University of Technology)H-Index: 8
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Abstract Antimicrobial hydrogels have been proposed to be interesting materials used for wound healing due to their unique properties. Therefore, numerous scientists have made efforts to design and synthesize antibacterial hydrogels. At present, there are two commonly used methods for preparing antibacterial hydrogels. One is combining antibacterial agents with hydrogels. Antibacterial drugs include antibiotics, some biological extracts, natural polymers and some metal nanoparticles. In this rev...
3 CitationsSource
#1Yan Wei (TUT: Taiyuan University of Technology)H-Index: 5
#2Ruize Sun (TUT: Taiyuan University of Technology)H-Index: 1
Last. Xiaojie Lian (TUT: Taiyuan University of Technology)H-Index: 4
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Abstract Using yeast as organic template and PDDA/PSS with opposite charge as polyelectrolyte, CaCO3 was deposited on yeast cells by Layer-by-Layer self-assembly method, and then porous calcium carbonate hybrid microspheres (CaCO3-HMPs) were prepared by calcination. The CaCO3-HMPs were characterized by FT-IR, XRD, SEM and TG. It was found that the prepared CaCO3-HMPs were nearly spherical, with visible pores on the surface, small particle size uniformity (d = 3 μ m) and good dispersion. Doxorubi...
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#1Xiaolian Niu (TUT: Taiyuan University of Technology)H-Index: 1
#2Miao Qin (TUT: Taiyuan University of Technology)H-Index: 1
Last. Di Huang (TUT: Taiyuan University of Technology)H-Index: 8
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Polyamide-6 (PA6) is a synthetic polymer that bears resemblance to collagen in its backbone and has excellent stability in human body fluid. Chitosan (CS) with the similar structure to that of the polysaccharides existing in the extracellular matrix, has a more suitable biodegradation rate for the formation of new-bone. Eelectrospun fiber have nanoscale structure, high porosity and large specific surface area, can simulate the structure and biological function of the natural extracellular matrix...
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Last. Haiyang Mao (CAS: Chinese Academy of Sciences)H-Index: 1
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Electric cell–substrate impedance sensing exhibits a real-time and label-free feature to monitor the response of cells stimulated by various biochemical and mechanical signals. Alterations in the currents passing through the cell–electrode system characterize the impedance variations of cells. The impedance responses of HeLa cells under distinct chemotherapy drugs combine the effects of cell proliferation and cell–substrate adhesion. Optimal interdigitated electrodes were selected to explore the...
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#1Kaiwen Chen (DUT: Dalian University of Technology)H-Index: 4
#2Qiaoxia Lin (TUT: Taiyuan University of Technology)H-Index: 3
Last. Huanan Wang (DUT: Dalian University of Technology)H-Index: 20
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Hydrogels that are mechanically tough and capable of strong underwater adhesion can lead to a paradigm shift in the design of adhesives for a variety of biomedical applications. We hereby innovatively develop a facile but efficient strategy to prepare hydrogel adhesives with strong and instant underwater adhesion, on-demand detachment, high toughness, notch-insensitivity, self-healability, low swelling index, and tailorable surface topography. Specifically, a polymerization lyophilization conjug...
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#1Xiaolian Niu (TUT: Taiyuan University of Technology)H-Index: 1
#2Longfei Wang (TUT: Taiyuan University of Technology)H-Index: 1
Last. Di Huang (TUT: Taiyuan University of Technology)H-Index: 8
view all 12 authors...
Abstract Periodontal defect poses a significant challenge in orthopedics. Guided Bone Regeneration (GBR) membrane is considered as one of the most successful methods applied to reconstruct alveolar bone and then to achieve periodontal defect repair/regeneration. In this paper, a novel polyamide-6/chitosan@nano-hydroxyapatite/polyamide-6 (PA6/CS@n-HA/PA6) bilayered tissue guided membranes by combining a solvent casting and an electrospinning technique was designed. The developed PA6/CS@n-HA/PA6 c...
2 CitationsSource
#1Miao Qin (TUT: Taiyuan University of Technology)H-Index: 1
#2Mengjie Xu (TUT: Taiyuan University of Technology)H-Index: 3
Last. Di Huang (TUT: Taiyuan University of Technology)H-Index: 8
view all 9 authors...
With the rapid improvements in nanomaterials and imaging technology, great progresses have been made in diagnosis and treatment of diseases during the past decades. Fe3O4 magnetic nanoparticles (MNPs) with good biocompatibility and superparamagnetic property are usually used as contrast agent for diagnosis of diseases in magnetic resonance imaging (MRI). Currently, the combination of multiple imaging technologies has been considered as new tendency in diagnosis and treatment of diseases, which c...
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