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Human ssues and organs consist of various types of cells that are distributed in an organized manner. These cells exert coordinated funcons through their physical and chemical interacons. An introducon to 3D bioprinng 3D bioprinng is a groundbreaking technology that enables on-demand dispensing of cultured cells, making it possible to build ssue and organ models that more closely resemble their in vivo environments. The in vitro duplicaon of the intricate microenvironment of cells has been a huge challenge for convenonal culturing systems since they offer limited spaal control of cellular assembly. Presented by Ryo Asada, Ph.D CELLINK KK, Kyoto Japan Tuesday, September 8, 2020 16:00 - 17:00 Addive Fabricaon of Biological Structures in Organ and Cell Scale State-Of-The-Art 3D Bioprinng

State-Of-The-Art 3D Bioprinting

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Page 1: State-Of-The-Art 3D Bioprinting

Human tissues and organs consist of various types of cells that are distributed in an organized manner.

These cells exert coordinated functions through their physical and chemical interactions.

An introduction to 3D bioprinting

3D bioprinting is a groundbreaking technology that enables on-demand

dispensing of cultured cells, making it possible to build tissue and organ

models that more closely resemble their in vivo environments.

The in vitro duplication of the intricate microenvironment of cells has been a

huge challenge for conventional culturing systems since they offer limited spatial

control of cellular assembly.

Presented by Ryo Asada, Ph.D CELLINK KK, Kyoto Japan

Tuesday, September 8, 202016:00 - 17:00

Additive Fabrication of Biological Structures in Organ and Cell Scale

State-Of-The-Art 3D Bioprinting