All Synthetic Biology articles – Page 4
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Bioaction drafts in pathogens as healing allies
A new treatment approach leverages pathogens as valuable allies in promoting tissue regeneration for better implant integration.
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Bioengineered yeast devouring agricultural waste could close carbon circle
Researchers report making modified yeast that can feed on a wider range of materials, many of which can be derived from agricultural by-products that we don’t use known as waste biomass.
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Artificial cells show that ‘life finds a way’
Scientists studying a synthetically constructed minimal cell that has been stripped of all but its essential genes have found it can evolve just as fast as a normal cell.
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Unravelling Coenzyme Q10 pathway could pave way to industrial production
Scientists have unravelled part of the Coenzyme Q10 biosynthetic pathway in Agrobacterium tumefaciens, paving the way to enhancing the bacterium so that it can produce the probiotic on an industrial scale.
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Hydrogen-fuelled bacteria can produce wide range of chemicals
Researchers probing microbial electrosynthesis have confirmed experimentally for the first time that the bacteria use electrons from hydrogen and can produce more chemical substances than previously known.
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Reichman University announces new Scojen Institute for Synthetic Biology
A new research institute for the development of cutting-edge technologies in the field of synthetic biology is to be set up, acting as a hub for interdisciplinary research.
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Peptide combats multidrug-resistant bacteria in less than one hour
A synthetic peptide inspired by molecules secreted by the probiotic bacterium Lactobacillus plantarum has presented promising antibacterial results within one hour in laboratory trials.
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Pattern-forming bacteria used with AI as sensors
Synthetic biologists have engineered bacterial swarm patterns to visibly record environment and use deep learning to decode patterns - applications could range from monitoring environmental pollution to building living materials.
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New-to-nature reaction could decarbonize industry
Researchers have engineered bacteria to produce new-to-nature carbon products that could provide a powerful route to sustainable biochemicals.
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New method may harness radiation-resistant bacterium
Researchers find a novel way to expand applications of the hardy bacterium Deinococcus radiodurans, using gene deletion techniques.
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Tracking batch culture pinpoints moment when ‘silent’ biosynthetic gene clusters kick in
A team of scientists has mapped the times during a batch culture when core biosynthetic genes surged into action, showing that bursts of biosynthetic gene cluster (BGC) transcriptional activity correlated with surges in net production rates per cell of known natural compounds.
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Scientists reveal how getting physical can tackle a key hurdle in synthetic biology
A team of scientists may have solved one of the biggest hurdles standing in the way of synthetic biology - the difficulty of transferring the resulting large DNA molecules into bacterial host cells.
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What’s stopping bacteria from becoming biofactories that transform toxic metals into metallic nanoparticles?
A research group working on using microbes to transform toxic metals into valuable metallic nanoparticles has designed a form of E. coli that can resist 1,000 times more tellurite than its wild-type counterpart.
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Scientists find new eco-friendly source of nanoparticles in edible seaweed
An edible seaweed could provide a potential environmentally friendly source of silver nanoparticles for antibacterial and anticancer applications.
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Scientists discover how plastic-eating bacteria digest complex carbons
Researchers have deciphered the metabolic mechanisms that enable the bacterium Comamonas testosteroni to digest complex wasste from plants and plastics, potentially leading to novel biotechnology platforms that harness the microbe to help recycle plastic waste.
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Researchers pinpoint enzyme that limits electrosynthesis by Shewanella
Researchers at Michigan State University have identified an enzyme that is a limiting factor to microbial electrosynthesis by Shewanella oneidensis, a bacterium that could potentially capture carbon dioxide emissions to produce useful materials.
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Semi-living cyborg cells could be tools for health and environment
Biomedical engineers at the University of California have created semi-living ’cyborg cells’ retaining the capabilities of living cells, but unable to replicate.
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Genetically engineered bacterium can synthesize melanin nanoparticles
Researchers have heterologously expressed a tyrosinase gene in Escherichia coli to synthesize melanin nanoparticles which offer potential for tumour treatment.
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Lasso peptide points the way to new antibiotics for untreatable infections
Princeton Engineering researchers have isolated a compound that kills bacteria that can cause incurable infections.
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Researchers create simulation that paves way for electrogenetic toggle switch model
A team of scientists has developed a computer simulation that would allow them to create an electronic toggle switch, expanding what a synthetic gene network designed for biocomputations can do.