Yan et al., 2018 - Google Patents
Photocontrolled multidirectional differentiation of mesenchymal stem cells on an upconversion substrateYan et al., 2018
- Document ID
- 15926039710687190881
- Author
- Yan Z
- Qin H
- Ren J
- Qu X
- Publication year
- Publication venue
- Angewandte Chemie International Edition
External Links
Snippet
The effective guidance of mesenchymal stem cell (MSC) differentiation on a substrate by near‐infrared (NIR) light is particularly attractive for tissue engineering and regenerative medicine. However, most of current substrates cannot control multidirectional differentiation …
- 239000000758 substrate 0 title abstract description 65
Similar Documents
Publication | Publication Date | Title |
---|---|---|
Yan et al. | Photocontrolled multidirectional differentiation of mesenchymal stem cells on an upconversion substrate | |
Sun et al. | NIR laser‐triggered microneedle‐based liquid band‐aid for wound Care | |
Zhai et al. | 3D‐bioprinted osteoblast‐laden nanocomposite hydrogel constructs with induced microenvironments promote cell viability, differentiation, and osteogenesis both in vitro and in vivo | |
Qiu et al. | Effects of graphene quantum dots on the self‐renewal and differentiation of mesenchymal stem cells | |
Park et al. | An injectable, click-crosslinked, cytomodulin-modified hyaluronic acid hydrogel for cartilage tissue engineering | |
Zhang et al. | Multifunctional injectable hydrogel dressings for effectively accelerating wound healing: enhancing biomineralization strategy | |
Ma et al. | A bifunctional biomaterial with photothermal effect for tumor therapy and bone regeneration | |
Shao et al. | Black‐phosphorus‐incorporated hydrogel as a sprayable and biodegradable photothermal platform for postsurgical treatment of cancer | |
Sakai et al. | Differentiation potential of human adipose stem cells bioprinted with hyaluronic acid/gelatin‐based bioink through microextrusion and visible light‐initiated crosslinking | |
Gaharwar et al. | Physically crosslinked nanocomposites from silicate‐crosslinked PEO: mechanical properties and osteogenic differentiation of human mesenchymal stem cells | |
Bai et al. | Dual crosslinked chondroitin sulfate injectable hydrogel formed via continuous Diels-Alder (DA) click chemistry for bone repair | |
Kim et al. | Controlling differentiation of adipose-derived stem cells using combinatorial graphene hybrid-pattern arrays | |
Wei et al. | Mussel‐inspired dendritic polymers as universal multifunctional coatings | |
Dinescu et al. | Biocompatibility Assessment of Novel Collagen‐Sericin Scaffolds Improved with Hyaluronic Acid and Chondroitin Sulfate for Cartilage Regeneration | |
Li et al. | Multifunctional quantum dot nanoparticles for effective differentiation and long‐term tracking of human mesenchymal stem cells in vitro and in vivo | |
Xu et al. | Silicon‐phosphorus‐nanosheets‐integrated 3D‐printable hydrogel as a bioactive and biodegradable scaffold for vascularized bone regeneration | |
Zhu et al. | Excessive sodium ions delivered into cells by nanodiamonds: implications for tumor therapy | |
Shu et al. | Metal‐organic framework functionalized bioceramic scaffolds with antioxidative activity for enhanced osteochondral regeneration | |
García‐Astrain et al. | 3D‐printed biocompatible scaffolds with built‐in nanoplasmonic sensors | |
Liu et al. | Scaffold-free spheroids with two-dimensional heteronano-layers (2DHNL) enabling stem cell and osteogenic factor codelivery for bone repair | |
Wang et al. | Synthesis of thermal polymerizable alginate‐GMA hydrogel for cell encapsulation | |
Tajima et al. | Preparation and functional evaluation of cell aggregates incorporating gelatin microspheres with different degradabilities | |
Lee et al. | Osteogenic and adipogenic differentiation of mesenchymal stem cells in gelatin solutions of different viscosities | |
Weng et al. | Development of a ZIF‐91‐Porous‐Liquid‐Based Composite Hydrogel Dressing System for Diabetic Wound Healing | |
Zan et al. | Facile general injectable gelatin/metal/tea polyphenol double nanonetworks remodel wound microenvironment and accelerate healing |