Articles

Radiation Biology & DNA Damage

ROS, calcium and electric signals: Key mediators of rapid systemic signaling in plants

ROS, calcium and electric signals: Key mediators of rapid systemic signaling in plants

Radiation Biology & DNA Damage

Abstractive Summary

Study examining ros, calcium and electric signals: key mediators of. Extended spaceflight causes significant bone loss through increased osteoclast activity and decreased osteoblast function. Calcium metabolism is disrupted, with elevated resorption markers. While countermeasures provide partial protection, complete recovery requires 12-18 months post-flight, presenting major challenges for long-duration missions.

Extractive Summary

Study examining ros, calcium and electric signals: key mediators of. Bone mineral density decreased significantly during extended spaceflight missions. Osteoclast activity increased while osteoblast function declined. Calcium metabolism was disrupted with elevated urinary calcium excretion. Bone resorption markers TRAP and CTX-1 were significantly elevated. Mechanical loading countermeasures showed partial effectiveness. Recovery of bone density post-flight required 12-18 months on average.

175

Keywords

calcium, electric, signals, mediators, rapid, systemic, signaling, plants, calcium, bone, density, significantly, elevated, study, examining, electric, signals, mediators, calcium, study, examining, electric, signals, mediators, extended, spaceflight, causes, significant

Abstractive Keywords

calcium, study, examining, electric, signals, mediators, extended, spaceflight, causes, significant

Extractive Keywords

calcium, bone, density, significantly, elevated, study, examining, electric, signals, mediators

Topic Match Articles

Recent Articles