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Molecular release from scaffolds is desired for tailoring cell-compatible tissue engineering.
The moderate performance achieved by existing methods (see next section) have led us to develop a new cell-specific model building method termed PRIME (Personalized ReconstructIon of Metabolic models), which utilizes both molecular and phenotypic data for tailoring cell-specific GSMMs.
With this methodology, we tailored cell membranes with β-cyclodextrin and subsequently manipulated cell behaviors through introducing photo-switchable guest molecule.
Greater appreciation of these pathways' operation will enable the rational redesign of NDP-sugar metabolism to tailor cell wall compositions in Populus in search of an improved biofuel feedstock with less recalcitrant cell walls.
Furthermore, we summarise the exciting recent developments in strategies to target HSC specifically, and novel techniques to deliver pharmaceutical agents directly to HSC, potentially allowing tailored, cell-specific therapy for HCC.
It is found that stent designs with positive, negative, or zero foreshortening over expansion phase can be designed by tailoring unit cell geometries and hence obtain desired length diameter and pressure diameter characteristics.
Since ferulic acid contributes to the recalcitrance of biomass toward saccharification and fermentation to ethanol [ 37], this variation may be useful in tailoring the cell wall for use as a biomass feedstock.
Clearly, it is the high plasticity of these processes that is instrumental to drive tailored B cell responses that protect the host.
In this review, we will discuss how systems and synthetic biology tools can be integrated to create tailor-made cell factories for efficient production of natural products and fuel molecules in microorganisms.
Then a two-stage culture process was exercised with these optimal conditions tailored for cell growth (first stage) and carotenoid accumulation (second stage), achieving 95.8% higher volumetric yield (18.6 mg/L versus 9.5 mg/L in the single-stage culture) and 22.6% higher volumetric productivity (2.33 mg/(L day) versus 1.90 mg/(L day)) of total carotenoid.
This is not surprising in the absence of methods for tailoring specific cell-surface GAG structures to optimize growth factor association and signaling.
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