Xuewei Bi
Beihang University
Surface modificationBiological activityFibroinBiophysicsEngineeringBiomedical engineeringSurgeryElectrospinningMatrix (biology)Regeneration (biology)BibliometricsLiposomeChemistryExtracellular matrixDecellularizationChinaMaterials scienceIn vitroIn vivoData scienceInstitution (computer science)BiocompatibilityGlutaraldehydeCell membraneCitationDura materClinical PracticeCoatingCerebrospinal Fluid LeakageChinese academy of sciencesIn vitro cytotoxicitySoft tissue engineeringHost tissueMechanical propertySubcutaneous implantationRepair materialSurgical proceduresTissue repairVisualizationClick chemistryMedicineScaffold
Publications 6
#1Zhinan Mao (Beihang University)H-Index: 3
#2Xuewei Bi (Beihang University)H-Index: 3
Last. Sujun Wu (Beihang University)H-Index: 16
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Abstract Biologically active scaffolds with tunable mechano- and bio-performance remain desirable for soft tissue engineering. Previously, highly elastic and robust silk fibroin (SF) scaffolds were prepared via cryogelation. In order to get more insight into the role of ethylene glycol diglycidyl ether (EGDE) on the structure and properties of SF scaffolds, we investigated the fate of SF scaffolds with different usages of the crosslinking agent in vitro and in vivo. Although SF scaffolds with va...
#1Lingbing Yang (Beihang University)H-Index: 2
#2Xubo Lin (Beihang University)
Last. Yubo Fan (Beihang University)H-Index: 64
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Abstract The foreign-body reaction (FBR) caused by the implantation of synthetic polymer scaffolds seriously affects the tissue-biomaterial integration and tissue repair. To address this issue, we developed a cell membrane-biomimetic coating formed by “click”-mediated liposomes immobilization and fusion on the surface of electrospun fibers to mitigate the FBR. Utilization of electrospun polystyrene microfibrous scaffold as a model matrix, we deposited azide-incorporated silk fibroin on the surfa...
#1Bo LiuH-Index: 2
#2Xuewei BiH-Index: 3
Last. Xiaoming LiH-Index: 16
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#1Xuewei Bi (Beihang University)H-Index: 3
#2Bo Liu (Beihang University)H-Index: 2
Last. Xiaoming Li (Beihang University)H-Index: 105
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Abstract The dura mater provides a barrier to protect the tissue underneath and cerebrospinal fluid. However, dural defects normally cause cerebrospinal fluid leakage and other complications, such as wound infections, meningitis, etc. Therefore, the reconstruction of dura mater has important clinical significance. Current dural reconstruction materials include: homologous, acellular, natural, synthetic, and composite materials. This review comprehensively summarizes the characteristics and effic...
3 CitationsSource
#1Xuewei Bi (Beihang University)H-Index: 3
#2Linhao Li (Beihang University)H-Index: 12
Last. Xiaoming Li (Beihang University)H-Index: 105
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Naturally derived extracellular matrix scaffolds can effectively promote tissue repair and regeneration due to its remarkable bioactivity. However, its rapid degradation leads to the decrease of mechanical retention and the failure of physical support in vivo which limits its applications. In this paper, we modified a classic extracellular matrix scaffold-small intestinal submucosa (SIS) by silk fibroin (SF) layer-by-layer (LbL) assembly to replace the existing chemical crosslinking methods for ...
5 CitationsSource
#1Dandan Hou (Beihang University)H-Index: 1
#2Xuewei Bi (Beihang University)H-Index: 3
Last. Xiaoming Li (Beihang University)H-Index: 105
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Objectives: This study aims to evaluate the changes of development trends and research hotspots of biomaterials research from 2013 to 2017, which can identify the general information of papers and explore the changes of research content, thus providing perspectives for the development of biomaterials in China and other countries. Methods: Data of the paper were retrieved from the Web of Science Core Collection, and then analyzed by the bibliometric and CiteSpace visualization analysis. Results: ...
6 CitationsSource