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0
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Programmable-bacteria-macrophage backpacks for enhanced solid tumor therapy via mechanobiological interplay.
(linkinghub.elsevier.com)
|
Fan Z
…
Chen Y
Cell Reports Medicine
2026-07-17
|
#cancer
#immunotherapy
#macrophage
#synthetic biology
|
|
0
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Biocatalytic synthesis of alkoxylated phenazine derivatives using methyltransferases.
(link.springer.com)
|
Wang C
…
Hou F
Microbial Cell Factories
2026-07-17
|
#biosynthesis
#biocatalysis
#enzymatic
#synthetic biology
|
|
0
|
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Restoring intracellular homeostasis disrupted by synthetic nanoassemblies.
(nature.com)
|
Xing J
…
Synatschke CV
Nature Chemical Biology
2026-07-17
|
#nanoparticles
#homeostasis
#redox
#synthetic biology
#abiotic-stress
|
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0
|
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Harnessing natural RNA triplex elements found in lncRNAs MALAT1 and NEAT1 for engineering of novel riboswitch platforms.
(academic.oup.com)
|
Gommeringer P
…
Hartig JS
Nucleic Acids Research
2026-07-17
|
#rna
#riboswitches
#gene expression
#synthetic biology
#aptamers
|
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0
|
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SoPPIs: a highly parallelized protein-protein-interaction screening method in prokaryotic and eukaryotic hosts.
(academic.oup.com)
|
Collani S
…
Schmid M
Nucleic Acids Research
2026-07-17
|
#protein-protein-interactions
#screening
#sequencing
#synthetic biology
|
|
0
|
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Multi-level precise regulation of gene transcription in the yeast Saccharomyces cerevisiae based on light-sensitive CRISPR/Cas systems.
(academic.oup.com)
|
Liang Y
…
An Y
Nucleic Acids Research
2026-07-17
|
#crispr
#transcriptomics
#gene regulation
#neuromodulation
#synthetic biology
|
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0
|
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ETTAS: a modular aptamer-recruited platform for programmable translational activation.
(academic.oup.com)
|
Li A
…
Cao C
Nucleic Acids Research
2026-07-17
|
#aptamer
#translational-activation
#synthetic biology
#cas13
#cancer
|
|
0
|
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In vitro properties of large serine integrase hybrids derived from varphiC31 and TG1 integrases.
(academic.oup.com)
|
Lawson-Williams M
…
Olorunniji FJ
Nucleic Acids Research
2026-07-17
|
#genome engineering
#recombinases
#synthetic biology
#protein design
|
|
0
|
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Cas3-mediated genome reduction: demonstration in Cupriavidus necator H16 improves growth on heterotrophic and autotrophic carbon sources.
(academic.oup.com)
|
Fulk EM
…
Johnson CW
Nucleic Acids Research
2026-07-17
|
#genome editing
#synthetic biology
#metabolic-engineering
#bioprocessing
|