Lingling Zhao
Ningbo University
30 Papers
21 Citations
Lingling Zhao is an academic researcher from Ningbo University. The author has contributed to research in topics: Chemistry & Ionic liquid. The author has an hindex of 5, co-authored 14 publications. Previous affiliations of Lingling Zhao include University College London & Shenzhen University.
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Papers
pH and Glucose Dual-Responsive Injectable Hydrogels with Insulin and Fibroblasts as Bioactive Dressings for Diabetic Wound Healing
TL;DR: The results revealed that the incorporation of insulin and L929 in the hydrogels could promote neovascularization and collagen deposition and enhance the wound-healing process of diabetic wounds and have promising potential in wound healing as a medicated system for various therapeutic proteins and live cells.
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Self-Assembling Hydrophilic Magnetic Covalent Organic Framework Nanospheres as a Novel Matrix for Phthalate Ester Recognition.
TL;DR: This work synthesized a unique COF-functionalized hydrophilic magnetic nanosphere with strong magnetic response, high surface area, and good hydrophilicity that exhibited great potential in phthalate analysis and was applied to analyze nine PAEs in the human plasma sample.
81
pH and glucose dually responsive injectable hydrogel prepared by in situ crosslinking of phenylboronic modified chitosan and oxidized dextran
TL;DR: The injectable hydrogels had good biocompatibility with viable and proliferated cells cultured in the three dimensional matrix, and the cell proliferation was suppressed when a small amount of DOX was added, which is benefit for the application of the hydrogel as smart anticancer drug delivery system.
74
Natural Polymer-Based Hydrogels: From Polymer to Biomedical Applications
Lingling Zhao,Yifan Zhou,Jiaying Zhang,Hongze Liang,Xianwu Chen,Hui Tan +5 more
TL;DR: The commonly used natural polymer in hydrogel preparation, including cellulose, chitosan, collagen/gelatin, alginate, hyaluronic acid, starch, guar gum, agarose, and dextran are outlined.
72
Protein–Carbon Dot Nanohybrid-Based Early Blood–Brain Barrier Damage Theranostics
TL;DR: A novel type of protein-carbon dot nanohybrids is reported by the incorporation of carbon dots on thrombolytic agents through covalent linkage, which may provide a promising indicator for early BBB damage and throm bolytic agent distribution to estimate the possibility of symptomatic intracranial hemorrhage after thROMbolysis and supply tissue window evidence for clinical thrombotic agent application.
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