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Yan-hong Yuan

Publications and source records attributed to Yan-hong Yuan.

2 recordsLinked to original sources

[Effects of simulated weightlessness and mechanical loading on bone interstitial fluid flow in rats].

OBJECTIVE: To investigate the effects of simulated weightlessness and mechanical loading on bone interstitial fluid flow. METHOD: Thirty-six male Sprague-Dawley [correction of Spargue-Danley] rats were divided into 3 groups: the control group, the tail-suspension group, and the tail-suspension plus mechanical loading group, with four rats in each group. All the rats were injected via a lateral tail vein with horseradish peroxidase on the 21st day of the experiment. Tibial tissue specimens were explanted, fixed, decalcified and cut into 30 micrometers frozen sections 3 h after the intravenous injection. RESULT: There were less peroxidase reaction product in the bony matrix and bone lacunae in tail-suspended rats than the control and tail-suspended plus mechanical loading rats. CONCLUSION: Tail-suspension decreased fluid movement through the bone, while mechanical loading increased it.

Animals↗

[Space flight and peroxidative damage].

Space flight is associated with an increase of peroxidative damage after returning to 1 g. The effect is more pronounced after long-duration space flight and can even last for several weeks after landing. In humans there is increased lipid peroxidation in erythrocyte membranes, reduced blood antioxidants, and increased urinary excretion of 8-iso-prostaglandin F2alpha, and 8-oxo-7, 8 dihydro-2 deoxyguanosine. Isoprostane 8-iso-prostaglandin F2alpha and 8-oxo-7, 8 dihydro-2 deoxyguanosine are markers for oxidative damage to lipids and DNA, respectively. The changes are attributed to a combination of energy deficiency that occurs during flight and substrate competition for amino acids occurring between repleted muscle and other tissues during the recovery phase. The observations in humans have been complemented by studies in rodents, which showed increased production of lipid peroxidation products and decreased antioxidant enzyme activity afterflight. The changes in rodents were attributed to the stress associated with re-entry into Earth's gravity. Reducing the imbalance between the production of endogenous oxidant defenses and oxidant production by increasing the supply antioxidants in diet may lessen the severity of the postflight increase in oxidative stress.

Animals↗