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Structured Review

CELLINK Inc 3d bioprinted constructs
Plant-derived NC applied to cartilage tissue engineering.
3d Bioprinted Constructs, supplied by CELLINK Inc, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/3d+bioprinted+constructs/3d+bioprinted+constructs/pmc08415884-443-1-7
Average 90 stars, based on 1 article reviews
3d bioprinted constructs - by Bioz Stars, 2026-09
90/100 stars

Images

1) Product Images from "Nanocellulose-Based Scaffolds for Chondrogenic Differentiation and Expansion"

Article Title: Nanocellulose-Based Scaffolds for Chondrogenic Differentiation and Expansion

Journal: Frontiers in Bioengineering and Biotechnology

doi: 10.3389/fbioe.2021.736213

Plant-derived NC applied to cartilage tissue engineering.
Figure Legend Snippet: Plant-derived NC applied to cartilage tissue engineering.

Techniques Used: In Vitro, Lyophilization, Gene Expression, Labeling, Staining, In Vivo, Cell Culture, Expressing, Produced, Suspension, Injection, Microscopy, Imaging, Lactate Dehydrogenase Assay, Cell Attachment Assay, Formulation, Construct, Electron Microscopy, Zymography, Generated, Irradiation, Fluorescence, Encapsulation, Isolation, Synthesized, Preserving, Cell Function Assay, Polymer, Binding Assay, Phospho-proteomics, Membrane, Solvent, Marker, Starch

Cellulose derivatives applied to cartilage tissue engineering.
Figure Legend Snippet: Cellulose derivatives applied to cartilage tissue engineering.

Techniques Used: Cell Culture, In Vitro, Membrane, Imaging, Staining, Control, Expressing, In Situ, Incubation, In Vivo, Dispersion, Pore Size, Gene Expression, Activity Assay, Synthesized, Produced, Isolation, Positive Control, Construct, Injection, Labeling, Ex Vivo, Microscopy, Adhesive, Modification, Irradiation, Luciferase, Micro-CT, Plasmid Preparation, Transfection, Migration, Concentration Assay, Comparison

BNC applied to cartilage tissue engineering.
Figure Legend Snippet: BNC applied to cartilage tissue engineering.

Techniques Used: Cell Culture, In Vitro, Construct, Ex Vivo, Synthesized, Gene Expression, Functional Assay, Modification, Phospho-proteomics, Pore Size, Injection, Imaging, Micro-CT, Generated, In Vivo, Membrane, Concentration Assay, Produced, Metabolic Labelling, Purification, Genetically Modified, Derivative Assay, Confocal Microscopy, In Situ, Homogenization, Incubation

Related Articles

Construct:

Article Title: Nanocellulose-Based Scaffolds for Chondrogenic Differentiation and Expansion.
Article Snippet: CELLINK® was used to bioprint human nasal chondrocyte-laden patient-specific auricular constructions with an open inner structure and good shape fidelity. hNCs proliferated and underwent chondrogenesis, resulting in the formation of cartilage-specific ECM components (Martínez Ávila et al., 2016). .. Additionally, 3D bioprinted constructs were produced using CELLINK® with hBM-MSCs alone (Apelgren et al., 2017; Möller et al., 2017) or with hBM-MSCs in combination along with hNCs (Apelgren et al., 2017; Möller et al., 2017; Apelgren et al., 2018). ..

Article Title: Nanocellulose-Based Scaffolds for Chondrogenic Differentiation and Expansion
Article Snippet: CELLINK ® was used to bioprint human nasal chondrocyte-laden patient-specific auricular constructions with an open inner structure and good shape fidelity. hNCs proliferated and underwent chondrogenesis, resulting in the formation of cartilage-specific ECM components ( ). .. Additionally, 3D bioprinted constructs were produced using CELLINK ® with hBM-MSCs alone ( ; ) or with hBM-MSCs in combination along with hNCs ( ; ; ). ..

Produced:

Article Title: Nanocellulose-Based Scaffolds for Chondrogenic Differentiation and Expansion.
Article Snippet: CELLINK® was used to bioprint human nasal chondrocyte-laden patient-specific auricular constructions with an open inner structure and good shape fidelity. hNCs proliferated and underwent chondrogenesis, resulting in the formation of cartilage-specific ECM components (Martínez Ávila et al., 2016). .. Additionally, 3D bioprinted constructs were produced using CELLINK® with hBM-MSCs alone (Apelgren et al., 2017; Möller et al., 2017) or with hBM-MSCs in combination along with hNCs (Apelgren et al., 2017; Möller et al., 2017; Apelgren et al., 2018). ..

Article Title: Nanocellulose-Based Scaffolds for Chondrogenic Differentiation and Expansion
Article Snippet: CELLINK ® was used to bioprint human nasal chondrocyte-laden patient-specific auricular constructions with an open inner structure and good shape fidelity. hNCs proliferated and underwent chondrogenesis, resulting in the formation of cartilage-specific ECM components ( ). .. Additionally, 3D bioprinted constructs were produced using CELLINK ® with hBM-MSCs alone ( ; ) or with hBM-MSCs in combination along with hNCs ( ; ; ). ..



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Image Search Results


Plant-derived NC applied to cartilage tissue engineering.

Journal: Frontiers in Bioengineering and Biotechnology

Article Title: Nanocellulose-Based Scaffolds for Chondrogenic Differentiation and Expansion

doi: 10.3389/fbioe.2021.736213

Figure Lengend Snippet: Plant-derived NC applied to cartilage tissue engineering.

Article Snippet: Additionally, 3D bioprinted constructs were produced using CELLINK ® with hBM-MSCs alone ( ; ) or with hBM-MSCs in combination along with hNCs ( ; ; ).

Techniques: In Vitro, Lyophilization, Gene Expression, Labeling, Staining, In Vivo, Cell Culture, Expressing, Produced, Suspension, Injection, Microscopy, Imaging, Lactate Dehydrogenase Assay, Cell Attachment Assay, Formulation, Construct, Electron Microscopy, Zymography, Generated, Irradiation, Fluorescence, Encapsulation, Isolation, Synthesized, Preserving, Cell Function Assay, Polymer, Binding Assay, Phospho-proteomics, Membrane, Solvent, Marker, Starch

Cellulose derivatives applied to cartilage tissue engineering.

Journal: Frontiers in Bioengineering and Biotechnology

Article Title: Nanocellulose-Based Scaffolds for Chondrogenic Differentiation and Expansion

doi: 10.3389/fbioe.2021.736213

Figure Lengend Snippet: Cellulose derivatives applied to cartilage tissue engineering.

Article Snippet: Additionally, 3D bioprinted constructs were produced using CELLINK ® with hBM-MSCs alone ( ; ) or with hBM-MSCs in combination along with hNCs ( ; ; ).

Techniques: Cell Culture, In Vitro, Membrane, Imaging, Staining, Control, Expressing, In Situ, Incubation, In Vivo, Dispersion, Pore Size, Gene Expression, Activity Assay, Synthesized, Produced, Isolation, Positive Control, Construct, Injection, Labeling, Ex Vivo, Microscopy, Adhesive, Modification, Irradiation, Luciferase, Micro-CT, Plasmid Preparation, Transfection, Migration, Concentration Assay, Comparison

BNC applied to cartilage tissue engineering.

Journal: Frontiers in Bioengineering and Biotechnology

Article Title: Nanocellulose-Based Scaffolds for Chondrogenic Differentiation and Expansion

doi: 10.3389/fbioe.2021.736213

Figure Lengend Snippet: BNC applied to cartilage tissue engineering.

Article Snippet: Additionally, 3D bioprinted constructs were produced using CELLINK ® with hBM-MSCs alone ( ; ) or with hBM-MSCs in combination along with hNCs ( ; ; ).

Techniques: Cell Culture, In Vitro, Construct, Ex Vivo, Synthesized, Gene Expression, Functional Assay, Modification, Phospho-proteomics, Pore Size, Injection, Imaging, Micro-CT, Generated, In Vivo, Membrane, Concentration Assay, Produced, Metabolic Labelling, Purification, Genetically Modified, Derivative Assay, Confocal Microscopy, In Situ, Homogenization, Incubation