Himes V B, Hu W S
Department of Chemical Engineering and Materials Science, University of Minnesota, 421 Washington Ave. SE, Minneapolis, Minnesota 55455.
Biotechnol Bioeng. 1987 Jun;29(9):1155-63. doi: 10.1002/bit.260290917.
In the design of microcarriers for animal cell growth, the exchange capacity has been considered a critical factor. However, charge densities of microcarriers under culture conditions are not the same as the exchange capacities. Furthermore, the charge density requirement for optimum attachment is not necessarily the same as that required for optimum growth. We demonstrate that charge is not the sole factor affecting the attachment and growth of animal cells on microcarriers. We also show that supplemental serum in the growth medium has a negative effect on cell attachment to microcarriers.
在用于动物细胞生长的微载体设计中,交换容量一直被视为关键因素。然而,培养条件下微载体的电荷密度与交换容量并不相同。此外,实现最佳附着所需的电荷密度不一定与实现最佳生长所需的电荷密度相同。我们证明,电荷并非影响动物细胞在微载体上附着和生长的唯一因素。我们还表明,生长培养基中的补充血清对细胞附着于微载体有负面影响。