Cellular mechanotransduction of human osteoblasts in microgravity.
Ontology highlight
ABSTRACT: Astronauts experience significant and rapid bone loss as a result of an extended stay in space, making the International Space Station (ISS) the perfect laboratory for studying osteoporosis due to the accelerated nature of bone loss on the ISS. This prompts the question, how does the lack of load due to zero-gravity propagate to bone-forming cells, human fetal osteoblasts (hFOBs), altering their maturation to mineralization? Here, we aim to study the mechanotransduction mechanisms by which bone loss occurs in microgravity. Two automated experiments, microfluidic chips capable of measuring single-cell mechanics via aspiration and cell spheroids incubated in pressure-controlled chambers, were each integrated into a CubeLab deployed to the ISS National Laboratory. For the first experiment, we
SUBMITTER: Wubshet NH
PROVIDER: S-EPMC10957960 | biostudies-literature | 2024 Mar
REPOSITORIES: biostudies-literature
ACCESS DATA