Studies on a Novel Bioreactor Design for Chondrocyte Culture
Author(s) -
Harshad Patil,
Ishan Saurav Chandel,
Amit Rastogi,
Pradeep Srivastava
Publication year - 2013
Publication title -
international journal of tissue engineering
Language(s) - English
Resource type - Journals
eISSN - 2314-4416
pISSN - 2314-4408
DOI - 10.1155/2013/976894
Subject(s) - bioreactor , chondrocyte , baffle , airlift , materials science , biomedical engineering , cartilage , chemistry , mechanics , engineering , mechanical engineering , anatomy , biology , physics , organic chemistry
A bioreactor system plays an important role in tissue engineering and enables reproduction and controlled changes in the environmental factor. The bioreactor provides technical means to perform controlled processes in safe and reduced reproducible generation of time. Cartilage cells were grown in vitro by mimicking the in vivo condition. The basic unit of cartilage, that is, chondrocyte, requires sufficient shear, strain, and hydrodynamic pressure for regular growth as it is nonvascular tissue. An attempt has been made to design a novel airlift reactor for chondrocyte culture, and the reactor has been evaluated for its performance. The design includes internal loop wavy riser airlift reactor for chondrocyte culture with 5% CO 2 sparging which gives a good yield of chondrocyte after 28 days. The wavy riser provides more surfaces for collision of fluid flow so to create the turbulence. Also, the horizontal semicircular baffles create an angle of 180° which helps in high shear rate. The optimized L/D ratio of the designed airlift reactor (for chondrocyte culture) is 5.67, and it also exhibits good mixing performance.
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