All The Microbiologist articles in Future Technologies – Page 2
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Antibacterial material developed for use with internal medical devices
Researchers have developed an effective and flexible antimicrobial material that could be used to coat medical devices placed inside the body, such as hip replacements or pacemakers.
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Yeast cells can produce drugs for treatment of psychotic disorders
An international team of researchers has demonstrated that genetically engineered yeast cells can produce the natural plant product alstonine, which has shown positive effects in treating schizophrenia.
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Artificial bladders shine light on bugs that cause urinary tract infections
The first study to use a sophisticated human tissue model to explore the interaction between host and pathogen for six common species that cause urinary tract infections suggest that the ‘one size fits all’ approach is inadequate.
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Scientists take major step towards completing the world’s first synthetic yeast
Scientists have completed construction of a synthetic chromosome as part of a major international project to build the world’s first synthetic yeast genome.
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Learning more about how flu strains evolved may help guide future vaccine development
Researchers studying the evolutionary history of flu viruses have found that a new quantitative analysis of how they evolved may help predict future strains.
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Vaginal film that dissolves in 30 days may offer HIV prevention method for women
A vaginal film designed to slowly dissolve over the course of 30 days is being put to the test for the first time in a study that aims to determine its feasibility and acceptability as a potential HIV prevention method for women.
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‘Lab on a chip’ genetic test device can accurately identify viruses within 3 minutes
A virus diagnosis device that gives lab-quality results within just three minutes has been invented by engineers who describe it as the ‘world’s fastest Covid test’.
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UK Space Agency and Axiom Space sign up to historic human spaceflight mission
Astronauts from the United Kingdom could fly to space on a future Axiom Space mission, thanks to a new agreement signed between the UK Space Agency and the Houston-based space company.
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Biological fingerprints in soil point the way to diamond-containing ore
Researchers have identified buried kimberlite, the rocky home of diamonds, by testing the DNA of microbes in the surface soil.
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Oxygen vacancy boosting Fenton reaction helps to fight bacterial infection in bone scaffold
A groundbreaking approach to address bacterial infection in artificial bone transplantation works by enriching H2O2 from the microenvironment and amplifying the ability of Fenton reaction to functionalize bone scaffold with antibacterial properties.
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Soft, living materials made with algae glow under stress
A team of researchers has developed soft yet durable materials that glow in response to mechanical stress, such as compression, stretching or twisting, and deriving their luminescence from single-celled algae known as dinoflagellates.
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Lactate-producing bacteria inside tumors promote resistance to radiation therapy
Researchers have discovered that lactate-producing intratumoral bacteria drives resistance to radiation therapy, suggesting that lactic acid-producing bacteria present in various cancers may serve as novel therapeutic targets.
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Spaceflight could alter behaviour of human microbiome, bobtail squid study suggests
Microgravity changes how effectively symbiotic bacteria colonise the light organ of the bobtail squid, according to a new study which has implications for how the human microbiome may respond to spaceflight. Source: Joseph Emhof Bobtail squid just after hatching The research by a University of Florida team, ...
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Desert bacterium paves way for paint that produces oxygen whilst capturing carbon
‘Green Living Paint’ features Chroococcidiopsis cubana, a bacterium that undergoes photosynthesis to produce oxygen while capturing CO2. This species is usually found in the desert and requires little water for survival.
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Researchers awarded $2m to create carbon-negative ‘living’ construction materials
Researchers are working towards a future when homes and other buildings can be constructed using low-cost, sustainable materials that also can repair themselves and capture carbon dioxide from the atmosphere.
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Lab-grown skin helps unlock secrets of mpox virus infection
A new model system for studying mpox virus infections in the laboratory is providing valuable insights into the virus’s mechanisms of attack on skin cells.
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Engineered bacteria paint targets on tumors for cancer-killing T cells to see
Columbia engineers are the first to program bacteria to act as beacons that guide the activity of engineered T cells. This work is also the first to design interactions between these two “living” medicines to enable targeting of a range of solid tumor.
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Engineered bacteria guide CAR-T cells to poorly infiltrated solid tumors
A new probiotic-guided chimeric antigen receptor (CAR)-T platform uses engineered bacteria to infiltrate and produce synthetic antigen targets, enabling CAR-T cells to find, identify, and destroy tumor cells in situ, according to a new study.
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Metal-organic frameworks could someday deliver antibacterial nitric oxide
Because metal-organic frameworks (MOFs) — highly porous metal complexes — are so structurally and chemically diverse, they could be used for many applications, such as drug delivery and environmental clean-up. But researchers still need to get a better understanding of how they function, especially when embedded in polymers. ...
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Plasma technology transforms microalgae for faster wound healing
Researchers have taken a major step in the field of wound care by using plasma technology to ‘transform’ Spirulina microalgae into ultrathin bioactive coatings.