207 results on '"Hong, Zhongkui"'
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2. Advancements in the application of biomaterials in neural tissue engineering: A review
3. “Non-cytotoxic” doses of metal-organic framework nanoparticles increase endothelial permeability by inducing actin reorganization
4. Electrospun nanofiber scaffold for vascular tissue engineering
5. Low doses of zeolitic imidazolate framework-8 nanoparticles alter the actin organization and contractility of vascular smooth muscle cells
6. Gelatin-crosslinked pectin nanofiber mats allowing cell infiltration
7. On-Site Differentiation of Human Mesenchymal Stem Cells into Vascular Cells on Extracellular Matrix Scaffold Under Mechanical Stimulations for Vascular Tissue Engineering
8. Potential Benefits and Risks Associated with the Use of Statins
9. Vascular extracellular matrix and fibroblasts-coculture directed differentiation of human mesenchymal stem cells toward smooth muscle-like cells for vascular tissue engineering
10. Tailoring weight ratio of PCL/PLA in electrospun three-dimensional nanofibrous scaffolds and the effect on osteogenic differentiation of stem cells
11. Functionalization of PCL-3D electrospun nanofibrous scaffolds for improved BMP2-induced bone formation
12. The interplay of membrane cholesterol and substrate on vascular smooth muscle biomechanics
13. Abstract 454: The Effect Of High-fat Diet On Vascular Smooth Muscle Cell Mechanics And Migration In Apoe -/- Mice
14. Cancer exosomes induce tumor innervation
15. Exploring the difference in the mechanics of vascular smooth muscle cells from wild-type and apolipoprotein-E knockout mice
16. Abstract 314: The Alteration In Cell Mechanics In Atherosclerosis
17. Polymer/bioactive glass nanocomposites for biomedical applications: A review
18. Pleiotropic effect of statin on vascular smooth muscle cell mechanics and migration
19. Preparation of bioactive glass ceramic nanoparticles by combination of sol–gel and coprecipitation method
20. In vivo mineralization and osteogenesis of nanocomposite scaffold of poly(lactide- co-glycolide) and hydroxyapatite surface-grafted with poly( l-lactide)
21. Abstract ISRA12: Role of the vascular smooth muscle cytoskeleton on the inward remodeling of resistance arteries: Session ID: 5.4
22. Vasoactive agonists exert dynamic and coordinated effects on vascular smooth muscle cell elasticity, cytoskeletal remodelling and adhesion
23. Electrospun poly( l-lactide)-grafted hydroxyapatite/poly( l-lactide) nanocomposite fibers
24. Elastic Mineralized 3D Electrospun PCL Nanofibrous Scaffold for Drug Release and Bone Tissue Engineering
25. Chapter Eight - The interplay of membrane cholesterol and substrate on vascular smooth muscle biomechanics
26. Poly( l-lactide)/starch blends compatibilized with poly( l-lactide)- g-starch copolymer
27. Coordination of fibronectin adhesion with contraction and relaxation in microvascular smooth muscle
28. Temporal analysis of vascular smooth muscle cell elasticity and adhesion reveals oscillation waveforms that differ with aging
29. Tumor-infiltrating nerves create an electro-physiologically active microenvironment and contribute to treatment resistance
30. Extracellular Matrix Proteins and Substrate Stiffness Synergistically Regulate Vascular Smooth Muscle Cell Migration and Cortical Cytoskeleton Organization
31. Statin‐mediated cholesterol depletion exerts coordinated effects on the alterations in rat vascular smooth muscle cell biomechanics and migration
32. Nano-composite of poly( l-lactide) and surface grafted hydroxyapatite: Mechanical properties and biocompatibility
33. The starch grafted poly( l-lactide) and the physical properties of its blending composites
34. Grafting polymerization of l-lactide on the surface of hydroxyapatite nano-crystals
35. Study on crystalline morphology of poly( l-lactide)-poly(ethylene glycol) diblock copolymer
36. Fabrication and Characterization of Pectin Hydrogel Nanofiber Scaffolds for Differentiation of Mesenchymal Stem Cells into Vascular Cells
37. Vessel graft fabricated by the on-site differentiation of human mesenchymal stem cells towards vascular cells on vascular extracellular matrix scaffold under mechanical stimulation in a rotary bioreactor
38. Correction: Vessel graft fabricated by the on-site differentiation of human mesenchymal stem cells towards vascular cells on vascular extracellular matrix scaffold under mechanical stimulation in a rotary bioreactor
39. Membrane cholesterol and substrate stiffness co-ordinate to induce the remodelling of the cytoskeleton and the alteration in the biomechanics of vascular smooth muscle cells
40. Temporal and molecular dynamics of human metastatic breast carcinoma cell adhesive interactions with human bone marrow endothelium analyzed by single-cell force spectroscopy
41. Abstract 596: Disruption of Cholesterol Metabolism and Substrate Stiffness Coordinate to Regulate Cellular Biomechanics and Induce Cytoskeletal Remodeling in Vascular Smooth Muscle Cells
42. Spontaneous oscillation in cell adhesion and stiffness measured using atomic force microscopy
43. Cancer exosomes induce tumor neo-neurogenesis potentiating tumor growth
44. Abstract 46: The Effects of Membrane Cholesterol on Vascular Smooth Muscle Cell Stiffness and Adhesion to Fibronectin
45. Abstract 429: The Effects of Fluvastatin and Methyl-β-Cyclodextrin-Mediated Cholesterol Depletion on the Biomechanics of Vascular Smooth Muscle Cells in Atherosclerosis
46. The effects of membrane cholesterol on the mechanics of vascular smooth muscle cell
47. Membrane cholesterol and substrate stiffness co-ordinate to induce the remodelling of the cytoskeleton and the alteration in the biomechanics of vascular smooth muscle cells.
48. Mechanical activation of angiotensin II type 1 receptors causes actin remodelling and myogenic responsiveness in skeletal muscle arterioles
49. Vascular Smooth Muscle Cell Stiffness and Adhesion to Collagen I Modified by Vasoactive Agonists
50. Augmented Vascular Smooth Muscle Cell Stiffness and Adhesion When Hypertension Is Superimposed on Aging
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