Check out how the transition from water to land and the evolution of bipedalism shaped bone extracellular matrix proteins in our latest preprint. @phylobone@sakurankmr
Ei-kollageenisilla proteiineilla on tärkeitä rooleja luun muodostumisessa ja uusiutumisessa. Uusi tutkimus tunnistaa satoja proteiineja luun matriisissa ja avaa ovia uusille hoidoille ja ennaltaehkäisylle luun uudistumisen ja osteoporoosin tutkimuksessa.
https://t.co/bJog3sra6J
Non-collagenous proteins play a major role in bone regulation and formation. A new study identifies hundreds of these proteins in the bone matrix, opening the door to new treatments and preventive measures in bone regeneration and osteoporosis research.
https://t.co/yIrfWOSVL1
We are thrilled to share that the first article of the @phylobone project is out #BoneResearch!!! 🎉
Here, we describe the Phylobone database, a resource of bone extracellular matrix proteins in human and model organisms. #bone#diseases 🦴
https://t.co/rE8TDlQXtz
First of (hopefully) many is out as @biorxivpreprint 🎉 | With @ppuigbo, @sakurankmr and an amazing work of @phylobone’s firs student, Margalida! Congrats!
If you’re interested in Bone extracellular matrix proteins, check it out! 👇
We have opened a special Call for Applications for scholars displaced by the crisis in Ukraine. Find out how to apply
https://t.co/bKHWVGqxyX
@UniTurku#ScienceForUkraine
A novel approach to stimulate bone cells provide clues on the interaction between bone eating cells and biomaterials with electrical energy, a new research article from @sakurankmr’s group https://t.co/AobkZenjqK
A novel approach to stimulate bone cells provide clues on the interaction between bone eating cells and biomaterials with electrical energy, a new research article from @sakurankmr’s group https://t.co/AobkZenjqK
Surface electric fields increase human osteoclast resorption through improved wettability on carbonate-incorporated apatite https://t.co/Z8vFGDZ9cK #bioRxiv
Surface electric fields increase human osteoclast resorption through improved wettability on carbonate-incorporated apatite https://t.co/Z8vFGDZ9cK #bioRxiv