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Biomedical subjects

Li-na Qu

Publications and source records attributed to Li-na Qu.

2 recordsLinked to original sources

[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↗

[Advances in monoclonal antibody researches].

Monoclonal antibody techniques are very important tools in modern life science research. Despite extensive research efforts paid in recent years, and promising results yielded in the study on the structure and function of genes and proteins, there is still a great need for further researches on the definition, principle and applicability of some immunological methods. This review gives an overview of the advances in immunological researches, including DNA immunization, cellular immunization and preparation of monoclonal antibodies. Using methods of modem molecular immunology, such as genetic immunization, cellular immunization, subtractive immunization and repetitive immunization multiple sites (RIMMS), to construct eukaryotic expression vector and to prepare high-affinity monoclonal antibodies in short time, the conventional method which is time-consuming and laborious could be improved. It is meaningful to the field of basic research and application, such as proteomics, biochip, clinical medicine and diagnosis and therapy of diseases.

Aerospace Medicine↗