Read the latest #SMIMemberPaper from @BenJMarsland and colleagues in @ImmunityCP on how early life #Antiboitics reduce systemic indole-3-propionic acid levels required to maintain mitochondrial respiration in the lung. https://t.co/muD4cucaYz
‘@cellhostmicrobe special issue illustrates how microbial composition of specific tissues and organs systemically contributes to maintenance of homeostasis (health) or drives disease development and progression. Take a look. https://t.co/xCfXPKCU1a
Antibiotic-driven dysbiosis in early life disrupts indole-3-propionic acid production and exacerbates allergic airway inflammation in adulthood https://t.co/zECRY6ELmh
"Antibiotic-driven #dysbiosis in early life disrupts indole-3-propionic acid production and exacerbates allergic airway inflammation in adulthood," concludes a study in @ImmunityCP.
@OPerdijk#microbiota👇
https://t.co/bX0TVFRY58
I am very grateful to @NatRevImmunol for highlighting our recent publication! Special thanks to Lucy Bird for doing a fantastic job in summarizing our findings in such detailed yet concise way. https://t.co/S9MwSwyi8H
Systems immunology is not only immunology with more data. It is a new way of thinking about immune systems as integrated multiagent systems w particular value for making variable human immune system more interpretable: https://t.co/qPFWAMqHKn
📚 Just published a BCR repertoire sequencing protocol! This is the result of a great collaboration with Prasanti Kotagiri, Rachael Bashford-Rogers and @vanessabryantoz. Thanks to editor @KimLJacobson for the opportunity! https://t.co/QwvwzDLF3O
Proteins, proteins, proteins.
How 3,000 blood proteins can help predict 10-year risk of >200 common and rare diseases, beyond genomic markers
https://t.co/4HdgIRigXt
@uk_biobank@NatureMedicine
Media coverage continues on research led by @BenJMarsland and @OPerdijk on #asthma and antibiotic use in infancy, centring on the molecule IPA.
https://t.co/3jfptBAguz
Melbourne researchers have unlocked why children are more likely to develop asthma after early exposure to antibiotics. Professor Ben Marsland speaks to @mikeamor7 about the research. https://t.co/5zYfOfGqUb #7NEWS
🇦🇺 Asthma Breakthrough
▫It’s one of asthma’s biggest causes and can begin in babies, but doctors did not know why – and therefore how to prevent it – until now
▫@sarahbooth_14#frontpagestoday#Australia@theheraldsun 🇦🇺
Viruses, OTT cleanliness, genetics … all these have been linked to a higher chance of having #asthma.
Now, @Benjmarsland has led research isolated the molecule IPA: when subjected to antibiotic onslaught, IPA disappears from the airways, taking with it valuable protection against asthma.
Here’s Ben being interviewed in the lab with reporters from @7NewsMelbourne and @10NewsFirstMelb
Incredibly proud to showcase our work published today in @ImmunityCP!
Our findings reveal that the early-life gut microbiota produces metabolites with the potential to prime the airway epithelium and prevent allergic inflammation in adulthood. https://t.co/z2bq9au5J0
Online now: Antibiotic-driven dysbiosis in early life disrupts indole-3-propionic acid production and exacerbates allergic airway inflammation in adulthood https://t.co/YKMa9bhKDF