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Jingchuan Zheng

Researcher at Dalian Medical University

Publications -  8
Citations -  47

Jingchuan Zheng is an academic researcher from Dalian Medical University. The author has contributed to research in topics: Medicine & Regeneration (biology). The author has an hindex of 1, co-authored 1 publications receiving 6 citations. Previous affiliations of Jingchuan Zheng include Tsinghua University.

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Hierarchically electrospraying a PLGA@chitosan sphere-in-sphere composite microsphere for multi-drug-controlled release.

TL;DR: This research proposed a modified hierarchically electrospraying technique to prepare sphere-in-sphere composite MS with two different drugs loaded, which could be applied in sequential, multi-modality therapy.
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Articular Cartilage Reconstruction with TGF-β1-Simulating Self-Assembling Peptide Hydrogel-Based Composite Scaffold.

TL;DR: In this article , the TGF-β1-simulating peptide LIANAK (CM) was connected with the self-assembling peptide Ac-(RADA)4-GG-LIANAK-CONH2 (RAD-CM).
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Biphasic mineralized collagen-based composite scaffold for cranial bone regeneration in developing sheep

TL;DR: Two previously developed mineralized collagen-based bone scaffolds were applied to construct a biphasic MC composite bone scaffold to repair the large-sized cranial bone defect in developing sheep and exhibited the best status of survival, growth and the repair effect.
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3D bio-printed living nerve-like fibers refine the ecological niche for long-distance spinal cord injury regeneration

TL;DR: In this article , living nerve-like fibers are prepared via extrusion-based 3D bioprinting for spinal cord injury (SCI) therapy, comprised of neural stem cells embedded within a designed hydrogel that mimics the extracellular matrix (ECM), assembled into a highly spatial ordered architecture, similar to densely arranged bundles of the nerve fibers.
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Blow-spun collagen nanofibrous spongy membrane: preparation and characterization.

TL;DR: The results indicate that blow-spinning is an accessible and efficient technique to prepare nanofibers of synthetic and natural polymers, which has a great prospect in the large-scale production of biotextile medical devices and tissue engineered scaffolds.