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6. Photocuring 3D printing technology as an advanced tool for promoting angiogenesis in hypoxia-related diseases.

8. 3D printing modality effect: Distinct printing outcomes dependent on selective laser sintering (SLS) and melt extrusion.

16. Enhancing viability and angiogenic efficacy of mesenchymal stem cells via HSP90α and HSP27 regulation based on ROS stimulation for wound healing.

18. Additional file 4 of Subaqueous 3D stem cell spheroid levitation culture using anti-gravity bioreactor based on sound wave superposition

21. Additional file 2 of Subaqueous 3D stem cell spheroid levitation culture using anti-gravity bioreactor based on sound wave superposition

22. Additional file 5 of Subaqueous 3D stem cell spheroid levitation culture using anti-gravity bioreactor based on sound wave superposition

24. Advanced In VitroThree-Dimensional Skin Models of Atopic Dermatitis

28. Self‐Enclosable External Support: Dilation‐Responsive Microshape Programing Prevents Vascular Graft Stenosis (Small 18/2021)

29. Dilation‐Responsive Microshape Programing Prevents Vascular Graft Stenosis

32. Nanovesicles derived from iron oxide nanoparticles–incorporated mesenchymal stem cells for cardiac repair

33. Anti‐Atherogenic Effect of Stem Cell Nanovesicles Targeting Disturbed Flow Sites

34. Hydrogel cross-linking–programmed release of nitric oxide regulates source-dependent angiogenic behaviors of human mesenchymal stem cell

38. Direct Control of Stem Cell Behavior Using Biomaterials and Genetic Factors

39. Development of a Shape‐Memory Tube to Prevent Vascular Stenosis

40. Potential roles of aquaporin 9 in the pathogenesis of endometriosis

44. Microneedle Vascular Couplers with Heparin-Immobilized Surface Improve Suture-Free Anastomosis Performance

46. Therapeutic Efficacy-Potentiated and Diseased Organ-Targeting Nanovesicles Derived from Mesenchymal Stem Cells for Spinal Cord Injury Treatment

48. Thermosensitive, Stretchable, and Piezoelectric Substrate for Generation of Myogenic Cell Sheet Fragments from Human Mesenchymal Stem Cells for Skeletal Muscle Regeneration

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