Integrating biological redesign: where synthetic biology came from and where it needs to go
about
Selection platforms for directed evolution in synthetic biologySynthetic biology approaches to engineer T cellsEngineering formation of multiple recombinant Eut protein nanocompartments in E. coli.Different RNA splicing mechanisms contribute to diverse infective outcome of classical swine fever viruses of differing virulence: insights from the deep sequencing data in swine umbilical vein endothelial cellsSynthetic biology to access and expand nature's chemical diversityEngineering Sugar Utilization and Microbial Tolerance toward Lignocellulose ConversionEnd-to-end automated microfluidic platform for synthetic biology: from design to functional analysisArtificial cell-cell communication as an emerging tool in synthetic biology applicationsAchievements and challenges in structural bioinformatics and computational biophysicsDevelopments in the tools and methodologies of synthetic biologyAn engineering design approach to systems biology.Identification of line-specific strategies for improving carotenoid production in synthetic maize through data-driven mathematical modeling.Biofuel production: an odyssey from metabolic engineering to fermentation scale-up.Systematic transfer of prokaryotic sensors and circuits to mammalian cellsMultilayered genetic safeguards limit growth of microorganisms to defined environmentsIntrinsic biocontainment: multiplex genome safeguards combine transcriptional and recombinational control of essential yeast genes.Dual-use decision making: relational and positional issues.Synthetic biology's self-fulfilling prophecy--dangers of confinement from within and outside.Rapid prototyping of microbial cell factories via genome-scale engineering.Engineered biosynthesis of natural products in heterologous hostsMulti-objective optimization framework to obtain model-based guidelines for tuning biological synthetic devices: an adaptive network case.Synthetic biology: insights into biological computation.Mapping the Emergence of Synthetic BiologyPulse Detecting Genetic Circuit - A New Design Approach.Efficient Switches in Biology and Computer Science.New tools for reconstruction and heterologous expression of natural product biosynthetic gene clusters.Bringing next-generation diagnostics to the clinic through synthetic biologyEngineering dynamical control of cell fate switching using synthetic phospho-regulons.Synthetic biology advances for pharmaceutical production.Mammalian designer cells: Engineering principles and biomedical applications.Synthetic biology in cell-based cancer immunotherapy.Monitoring of genetically modified Escherichia coli in laboratory wastewater.Artificial cell mimics as simplified models for the study of cell biology.Synthetic Biology Parts for the Storage of Increased Genetic Information in Cells.A Synthetic-Biology-Inspired Therapeutic Strategy for Targeting and Treating Hepatogenous Diabetes.Synthetic Protein Switches: Theoretical and Experimental Considerations.Engineering Therapeutic T Cells: From Synthetic Biology to Clinical Trials.Synthetic microbial ecology and the dynamic interplay between microbial genotypes.Towards programmable plant genetic circuits.Brewing Painkillers: A Yeast Cell Factory for the Production of Opioids from Sugar.
P2860
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P2860
Integrating biological redesign: where synthetic biology came from and where it needs to go
description
2014 nî lūn-bûn
@nan
2014 թուականի Մարտին հրատարակուած գիտական յօդուած
@hyw
2014 թվականի մարտին հրատարակված գիտական հոդված
@hy
2014年の論文
@ja
2014年論文
@yue
2014年論文
@zh-hant
2014年論文
@zh-hk
2014年論文
@zh-mo
2014年論文
@zh-tw
2014年论文
@wuu
name
Integrating biological redesig ...... from and where it needs to go
@ast
Integrating biological redesig ...... from and where it needs to go
@en
Integrating biological redesig ...... from and where it needs to go
@nl
type
label
Integrating biological redesig ...... from and where it needs to go
@ast
Integrating biological redesig ...... from and where it needs to go
@en
Integrating biological redesig ...... from and where it needs to go
@nl
prefLabel
Integrating biological redesig ...... from and where it needs to go
@ast
Integrating biological redesig ...... from and where it needs to go
@en
Integrating biological redesig ...... from and where it needs to go
@nl
P2093
P3181
P1433
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Integrating biological redesig ...... from and where it needs to go
@en
P2093
James J Collins
Jeffrey C Way
Pamela A Silver
P304
P3181
P356
10.1016/J.CELL.2014.02.039
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P50
P577
2014-03-27T00:00:00Z