- Prof. Wenguo Cui
- Shanghai Jiao Tong University School of Medicine
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- Fabrication of patterned PDLLA/PCL composite scaffold by electrospinning
- Promoted healing of femoral defects with in situ grown fibrous composites of hydroxyapatite and poly(DL-lactide)
- Targeted therapy for glioma using cyclic RGD-entrapped polyionic complex nanomicelles.
- Biomimetic sheath membrane via electrospinning for antiadhesion of repaired tendon.
- Prevention of peritendinous adhesions with electrospun ibuprofen-loaded PELA fibrous membranes.
- Fabrication and surface characterization of electrosprayed poly (L-lactide) microspheres
- Hierarchical Structure of Electrospun Composite Fibers for Long-term controlled Drug Release Carriers.
- Preparation of hydrophilic poly(L-lactide) electrospun fibrous scaffolds modified with chitosan for enhanced cell bi...
- Study on the Effect of Inorganic Salts on the Alignment of Electrospun Fiber
- Hierarchically structured nanocrystalline hydroxyapatite assembled hollow fibers as a promising protein delivery sys...
- Degradation behaviors of electrospun fibrous composites of hydroxyapatite and chemically modified poly(DL-lactide)
- Fibrous Composites With Anisotropic Distribution of Mechanical Properties After Layer-by-Layer Deposition of Aligned...
- In situ grown fibrous composites of poly(DL-lactide) and hydroxyapatite as potential tissue engineering scaffolds
- Release Modulation and Cytotoxicity of Hydroxycamptothecin-loaded Electrospun Fibers with 2-hydroxypropyl-cyclodextr...
- Electrospun Nanofibrous Materials for Tissue Engineering and Drug Delivery
- Controllable Growth of Hydroxyapatite on Electrospun Poly(DL-lactide) Fibrous Membranes with Chitosan Grafted for Bo...
- Hydroxyapatite Nucleation and Growth Mechanism on Electrospun Fibers Functionalized with Different Chemical Groups a...
- Blending Electrospinning of Poly(d,l-lactide) and Poly(ethylene glycol) as Fibrous Scaffolds for Cell Growth
- Electrospun Composite Mats of Poly[(D,Llactide)-co-glycolide] and Collagen with High Porosity as Potential Scaffolds...
- Electrospun Fibrous Mats with High Porosity as Potential Scaffolds for Skin Tissue Engineering