🧫 Scientific research project. Bone regeneration in the light of (biological) evolution. Lab based in @BioCityTurku (Finland). Also on Instagram @phylobone
New systematic review article of the Phylobone project! 🦴🧫 Here we explore how the gut-bone axis influences bone health and osteoporosis risk through metabolites, pathways, and beneficial microbes.
https://t.co/Jq8pHKVcld
We are pleased to share our third publication from the #PhyloBone project:
“Bone mechano-response is driven by locomotion transitions during vertebrate evolution,” now published in Communications Biology
https://t.co/J97uoKHSev
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
Kudos to Alba and Margalida for their teamwork! Utilizing the Phylobone database, we've annotated bone extracellular matrix proteins in reindeer (Rangifer tarandus). 🦌 @sakurankmr@ppuigbo#research#phyloboneproject https://t.co/614pTgQwS4
A new paper lead by Miho Nakamura and Pere Puigbò: “Phylobone: A comprehensive database of bone extracellular matrix proteins in human and model organisms” in Bone Research.
DOI: https://t.co/nJUZLP7Lpj
#東京医科歯科#tmdu@BoneRes_Office@phylobone@uniturku#phyloboneproject
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