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3D Bioprinting

- Modeling In Vitro Tissues and Organs Using Tissue-Specific Bioinks

3D Bioprinting

- Modeling In Vitro Tissues and Organs Using Tissue-Specific Bioinks
Tjek vores konkurrenters priser
This text advances fundamental knowledge in modeling in vitro tissues/organs as an alternative to 2D cell culture and animal testing. Prior to engineering in vitro tissues/organs,the descriptions of prerequisites (from pre-processing to post-processing) in modeling in vitro tissues/organs are discussed. The most prevalent technologies that have been widely used for establishing the in vitro tissue/organ models are also described, including transwell, cell spheroids/sheets, organoids, and microfluidic-based chips. In particular, the authors focus on 3D bioprinting in vitro tissue/organ models using tissue-specific bioinks. Several representative bioprinting methods and conventional bioinks are introduced. As a bioink source, decellularized extracellular matrix (dECM) are importantly covered, including decellularization methods, evaluation methods for demonstrating successful decellularization, and material safety. Taken together, the authors delineate various application examples of 3D bioprinted in vitro tissue/organ models especially using dECM bioinks. 
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This text advances fundamental knowledge in modeling in vitro tissues/organs as an alternative to 2D cell culture and animal testing. Prior to engineering in vitro tissues/organs,the descriptions of prerequisites (from pre-processing to post-processing) in modeling in vitro tissues/organs are discussed. The most prevalent technologies that have been widely used for establishing the in vitro tissue/organ models are also described, including transwell, cell spheroids/sheets, organoids, and microfluidic-based chips. In particular, the authors focus on 3D bioprinting in vitro tissue/organ models using tissue-specific bioinks. Several representative bioprinting methods and conventional bioinks are introduced. As a bioink source, decellularized extracellular matrix (dECM) are importantly covered, including decellularization methods, evaluation methods for demonstrating successful decellularization, and material safety. Taken together, the authors delineate various application examples of 3D bioprinted in vitro tissue/organ models especially using dECM bioinks. 
Produktdetaljer
Sprog: Engelsk
Sider: 114
ISBN-13: 9783030322212
Indbinding: Hardback
Udgave:
ISBN-10: 3030322211
Udg. Dato: 16 dec 2019
Længde: 0mm
Bredde: 155mm
Højde: 235mm
Forlag: Springer Nature Switzerland AG
Oplagsdato: 16 dec 2019
Forfatter(e) Narendra K. Singh, Ge Gao, Jinah Jang, Byoung Soo Kim, Wonil Han, Dong-Woo Cho


Kategori Biomedicinsk teknik


ISBN-13 9783030322212


Sprog Engelsk


Indbinding Hardback


Sider 114


Udgave


Længde 0mm


Bredde 155mm


Højde 235mm


Udg. Dato 16 dec 2019


Oplagsdato 16 dec 2019


Forlag Springer Nature Switzerland AG

Kategori sammenhænge