Department of Chemical Engineering, The Ohio State University, 140 West 19th Ave, 43210, Columbus, OH, U.S.A..
Cytotechnology. 1996 Jan;20(1-3):163-71. doi: 10.1007/BF00350397.
While insect cells can be easily damaged in bioreactors as a result of hydrodynamic forces, it is also relatively easy to prevent this damage. Of several possible damage mechanisms, the best understood and preventable is the attachment of cells to gas-liquid interfaces and the subjection of these attached cells to the hydro-dynamic forces and/or physical forces associated with these interfaces. For example, cells attached to gas bubbles in a bioreactor can be transported into the foam layer where they are physically removed from the cell suspension, or they can be killed when the gas bubble they are attached to ruptures at the medium-air interface at the top of the bioreactor. The easiest method to prevent this damage is through the use of specific surface active compounds, such as Pluronic F-68 or Methocel E-50 which prevent the cells from attaching to the gas-medium interface.
虽然昆虫细胞在生物反应器中很容易因流体动力而受损,但也相对容易防止这种损伤。在几种可能的损伤机制中,理解得最好且可预防的是细胞附着在气液界面上,以及这些附着的细胞受到与这些界面相关的流体动力和/或物理力的作用。例如,附着在生物反应器中气泡上的细胞可能会被输送到泡沫层中,在那里它们会从细胞悬浮液中被物理去除,或者当它们附着的气泡在生物反应器顶部的介质-空气界面破裂时,它们可能会被杀死。防止这种损伤最简单的方法是使用特定的表面活性剂,如 Pluronic F-68 或 Methocel E-50,这些表面活性剂可以防止细胞附着在气-液界面上。