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研究成果
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1. J. Mater. Chem.. 2012,22,16906.
Lei B*, Chen X, Han X.
Versatile fabrication of nanoscale sol-gel bioactive glass particles for efficient bone tissue regeneration.
 
2. J. Mater. Chem. B.. 2013, 1,5153-5162.
Lei B *, Wang L, et al.
Biomimetic and molecular level-based silicate bioactive glass-gelation hybrid implants for loading-bearing bone fixation and repair.  
 
3. RSC advances. 2014, 4: 13652–13661.
Ma X.J., Ge J., Li Y., Guo B.L., Ma P.X.
Nanofibrous electroactive scaffolds from a chitosan-grafted-aniline tetramer by electrospinning for tissue engineering.
 
4. RSC advances. 2014, 4, 17736-17742.
Zhao J., Guo B.L., Ma P.X.
Injectable alginate microsphere/PLGA-PEG-PLGA composite hydrogels for sustained drug release.
 
5. Journal of Materials Chemistry B. 2014, 2, 3674-3685.
Wu Y., Wang L., Guo B.L., Ma P.X.
Injectable biodegradable hydrogels and microgels based on methacrylated poly(ethylene glycol)-co-poly(glycerol sebacate) multi-block copolymers: synthesis, characterization, and cell encapsulation.
 
6. RSC advances. 2014, 4: 13652–13661.
Ma X.J., Ge J., Li Y., Guo B.L., Ma P.X.
Nanofibrous electroactive scaffolds from a chitosan-grafted-aniline tetramer by electrospinning for tissue engineering.
 
7. RSC advances. 2014, 4, 17736-17742.
Zhao J., Guo B.L., Ma P.X.
Injectable alginate microsphere/PLGA-PEG-PLGA composite hydrogels for sustained drug release.
 
8. Journal of Materials Chemistry B. 2014, 2, 3674-3685.
Wu Y., Wang L., Guo B.L., Ma P.X.
Injectable biodegradable hydrogels and microgels based on methacrylated poly(ethylene glycol)-co-poly(glycerol sebacate) multi-block copolymers: synthesis, characterization, and cell encapsulation.
 
9. ACS Macro Letters. 2014, 3: 1145-1150.
Wu Y., Guo B.L.*, Ma P.X.*
Injectable Electroactive Hydrogels Formed via Host-Guest Interactions.
 
10. Biomacromolecules. 2014, 15:3246-3252.
Zhao J., Zhao X., Guo B.L.*, Ma P.X.*
Multi-functional Interpenetrating Polymer Network Hydrogels Based on Methacrylated Alginate for Delivery of Small Molecule Drugs and Sustained Protein Release.
 
11. Journal of Materials Chemistry B. 2014, 2:6119-6130.
Li L, Ge J., Wang L., Guo B.L.*, Ma P.X.*
Electroactive nanofibrous biomimetic scaffolds by thermal induced phase separation.
 
12. Chem. Eng. J.. 2014,251,158-164.
Xue Y, Wang L, Shao Y, Lei B*
Facile and green fabrication of biomimetic gelatin-siloxane hybrid hydrogel with highly elastic properties for biomedical applications.
 
13. ACS Nano, 2015, 9: 9167-9179.
Wang L., Wu Y, Guo B.L.*, Ma P.X.*
Nanofiber Yarn/Hydrogel Core–Shell Scaffolds Mimicking Native Skeletal Muscle Tissue for Guiding 3D Myoblast Alignment, Elongation, and Differentiation.
 
 
14. Advanced Functional Materials, 2015, 25,31,5016–5029.
Yuzhang Du, Meng Yu, Juan Ge, Peter X. Ma,*, Xiaofeng Chen, and Bo Lei *
Development of a Multifunctional Platform Based on Strong, Intrinsically Photoluminescent and Antimicrobial Silica-Poly(citrates)-Based Hybrid Biodegradable Elastomers for Bone Regeneration
 
15. Biomaterials, 2015, 59, 21-29.
Jin Yan, Wangxiao He, Na Li, Meng Yu, Yaping Du, Bo Lei*, Peter X. Ma.
Simultaneously targeted imaging cytoplasm and nucleus in living cell by biomolecules capped ultra-small GdOF nanocrystals.
 
 


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