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1.
Chinese Journal of Radiological Health ; (6): 643-648, 2021.
Article in Chinese | WPRIM | ID: wpr-974669

ABSTRACT

With the rapid development of nuclear technology in the fields of industry and medicine, the possibility of people suffering from radiation damage has also increased. Radiation injury prevention and treatment drugs are the most effective and direct means for the treatment and protection of radiation injury, but the current radiation injury prevention and treatment drugs have limited effects. Due to the unique valence structure of cerium nanomaterials, it has a variety of enzymatic simulation activities and reproducibility. It shows superior oxidation resistance, powerful free radical scavenging function, and can protect cells from radiation damage. It can be used as an ideal it is a radioprotective agent, and is used in a variety of biological fields. A review of relevant literature shows that the antioxidant properties, high SOD mimicking activity, free radical scavenging ability and radiation resistance of ceria nanoparticles are derived from the mutual conversion of Ce3+/Ce4+ and the formation of oxygen vacancies. This article mainly introduces the basis of anti-radiation activity of ceria nanoparticles, radiation protection effects and the research progress of radiotherapy sensitization, and provides theoretical basis and reference for ceria nanoparticles in the field of radiation direction.

2.
Chinese Journal of Radiological Medicine and Protection ; (12): 547-551, 2021.
Article in Chinese | WPRIM | ID: wpr-910356

ABSTRACT

Nuclear energy is widely used in various fields such as military, medicine, scientific research, industry and agriculture.Nuclear accident may lead to radiation damage to the bodyofpractitioners. At present, the treatment of severe bone marrow radiation sickness is still not ideal.Exosomes are small vesicles with a size of 30-130 nm secreted by living cells and carry a variety of active substances including protein, RNA, DNA, which isimportant medium of intercellular communication.The contents of exosomes can be used not only as biomarkers of radiation damage, but also for the treatment of radiation damage. This article reviewsthe research progress of the application of exosomes in radiological medicine and underlying mechanisms.

3.
Chinese Journal of Biotechnology ; (12): 78-89, 2018.
Article in Chinese | WPRIM | ID: wpr-243640

ABSTRACT

The head of the silkworm is a nerve center and a sense organ, contains antennaes and sensory hair, feels the outside signal, and responds to the external signal delivered to the brain. Juvenile hormone is mainly synthesized and secreted by corpora allata, and it needs to be played with the aid of the hormone binding protein, because the juvenile hormone binding protein is the carrier of juvenile hormone transport and plays a functional in vivo, they have an extremely important function in insects. The objective of this study is to screened and identify a novel BmTOL proteins that it has a conserved structure of the juvenile hormone binding protein family by SilkDB and NCBI database. Its coding gene number is BGIBMGA003404 (GenBank Accession No. KY681053). We also expressed the recombinant protein using the prokaryotic expression system, and then successfully purified the recombinant protein by Ni-NTA chromatography column to generate the polyclonal antibodies. The expression patterns analysis in various tissues showed that both in transcriptional and protein levels Bmtol was higher expressed in head. Furthermore, the expression level of Bmtol gene was higher in newly exuviated silkworm, and expression level of Bmtol gene was lower from at 3 days 5th instar to 7 days pupa, began to increase after the moth. Immunohistochemistry showed that BmTOL protein was localized in the cortex, antennaes and brain of the head, It may be related to the information transmission of the head, and provides an important source of information for the growth and development of silkworm.

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