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6 q&more articles about the topic antibiotics

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Diet, gut microbiota and host lipid metabolism

Multi-omics approach opens up new insights into the microbiome and mammalian lipid synthesis

Nature provides an enormous diversity of lipid molecules that originate from various pathways. Fatty acids are key modules for various lipids, including cell membrane lipids such as phospholipids or triacylglycerols, which are the major components of lipid droplets. Excess lipids or defects in ...

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Extracellular vesicles as biogenic transporters of antibiotics

Development of new drug carriers based on the principles of nature

Developing new antimicrobial treatment strategies is becoming a key challenge in today's medical research. The targeted delivery of drugs into infected human tissue could significantly improve the antibiotic therapies to combat difficult-to-treat microorganisms.

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Fit and healthy to 120

Not least thanks to bioanalysis!

I turned 63 recently. My secret to staying optimistic as you age towards your inevitable death? “The idea is to die young, but as late as humanly possible…” A noble aim, indeed…

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Learning from insects

Insect biotechnology as a means of exploiting biotechnology for the bioeconomy

With over a million documented species, insects are the most successful group of organisms from the perspective of biodiversity. In the course of their evolution, they have developed a giant arsenal of active ingredients and enzymes, which they use to defend themselves against enemies and disease ...

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Antibiotic resistance

A never-ending challenge for drug research

Do you also find it tiresome and disagreeable when tasks long-since done and dusted suddenly resurface, appear never to have been finished in the first place and now need your urgent attention? In drug research, the topic of antibiotics is a shining – and simultaneously appalling – example of ...

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From RNA World to Protein World

RNase P – a possible antibiotics target?

Within the various domains of life, the evolution of the tRNA processing enzyme (RNase P) has led to a set of highly diverse architectonic solutions. Bacterial RNase P thus has a fundamentally different structure to human RNase P enzymes in the cell nucleus and mitochondria. This structural and ...

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