Suggestions(1)
Exact(2)
These findings have led to cellular engineering to enable the production of selected glycoforms of antibody that are considered to be optimal for the disease indication to be treated.
Understanding N-glycan biosynthesis and the etiology of microheterogeneity would provide physiological insights, and facilitate cellular engineering to enhance glycoprotein quality.
Similar(58)
Nevertheless, cells are capable of complex sets of behaviors and, in some cases, have proven amenable to the type of cellular engineering required to achieve the desired therapeutic effect (Fischbach et al., 2013; Kalos and June, 2013).
It directs this flexible backwardization towards its phenotypic map through processes of natural cellular engineering, similar to all cells.
In this chapter, we discuss the various nonviral chemical and biochemical cellular engineering approaches to modifying MSCs for improved cell targeting and their utility as delivery vehicles.
This topographical control scheme would be very efficient to control the cell growth for cellular engineering applications and to understand the interactions of the cells with a submicron-scale topographical surface.
In this article, we discuss cellular engineering strategies devised to overcome these limitations within the cell factory, and describe novel approaches to implement control over product flux within the cell.
This is self-referential neoplastic cellular engineering as opposed to simple selection.
The modest increase in efficiency however (43% and 27%), implies that E. coli cells would have to be modified in tandem with other cellular engineering strategies in order to produce an ideal host for human therapeutic protein production.
This makes this cell line readily amenable to cellular engineering experiments involving the ectopic expression of these anti-apoptotic proteins [ 16, 18].
Underpinning this is a vast increase in the productivity of eukaryotic expression systems, with cellular engineering strategies currently in development to improve output even further.
Write better and faster with AI suggestions while staying true to your unique style.
Since I tried Ludwig back in 2017, I have been constantly using it in both editing and translation. Ever since, I suggest it to my translators at ProSciEditing.

Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com