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Keyword [Self-assembling peptide]
Result: 41 - 60 | Page: 3 of 4
41.
The Mechanism Of Self-assembling Peptide In Skin Wound Rapid Repairing
42.
Controlled Release Of Growth Factors "Cocktail" From Functional Self-assembling Peptide Nanofiber Hydrogels For Endogenous Neural Regeneration In Spinal Cord
43.
Study On Wound Healing Of Mice By Self-assembled Short Peptide Hydrogel Combined With HAMSCs
44.
The Osteogenetic Efficacy Of Self-assembling Peptide RADA16/TRSAW Modified HA/?-TCP Based On SCR Technology
45.
Self-assembling Peptide Sciobio-? For Articular Cartilage Injury Repairing
46.
Design Of Multi-targeting "Laso-like" Self-assembling Peptide And It's Anticancer Research
47.
Anti-tumor Effects Of Self-assembling Peptide-emodin In-situ Hydrogels In Vitro And In Vivo
48.
Biosensors Based On Self-assembling Peptide Composites
49.
Functional Self-assembly Peptide/Silk Fibroin Complex Nanohydrogel Promotes Neural Regeneration After Spinal Cord Injury
50.
Self-assembling peptide amphiphile nanostructures for cancer therapy
51.
Structural studies and patterning of self-assembling peptide amphiphiles and tripeptide lipids
52.
Self-Assembling Peptide Amphiphiles for Targeted Drug Delivery
53.
Self-Assembling Peptide Amphiphiles for Therapeutic Delivery of Proteins, Drugs, and Stem Cells
54.
Bacterial expression of self-assembling peptide hydrogelators
55.
The Effect Of Blood Glucose Variability On Arterial Calcification And Supramolecular Peptides Pte-GFFpY Intervention
56.
The Effect And Mechanism Of Telmisartan—Angiotensin 1-7 Based Dual-Drugs Nano-Assemblies On Mice Myocardial Infarction Therapy
57.
Anti-tumor Immunity And Mechanism Of Nanofiber Vaccine Based On Self-assembled Peptide Q11 For HPV-Associated Tumors
58.
Biological Safety And Biological Activity Of Designer Self-assembling Peptide Nanofiber Hydrogel Scaffolds For Bone Repair
59.
Self-assembling Peptide Hydrogel As TGF-? Mimetic For Cartilage Repair
60.
Sa12b-modified Functional Self-assembling Peptide Hydrogel Enhances The Biological Activity Of Nucleus Pulposus Mesenchymal Stem Cells By Inhibiting Acid-sensingion Channels
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