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Intrauterine Infections and Birth Defects 被引量:2
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作者 XIAO-YING ZHENG TING ZHANG +14 位作者 YI-FEI WANG CHEN XU GONG CHEN RuO-LEI XIN JIA-PENG CHEN XU-MEI HU QING YANG XIN-MING SONG li-hua pang YING JI HONG-MEI SUN LEI ZHANG JU-FEN LIU YAN-LING GUO YAN ZHANG 《Biomedical and Environmental Sciences》 SCIE CAS CSCD 2004年第4期476-491,共16页
Intrauterine infection is an important cause of some birth defects worldwide. The most common pathogens include rubella virus, cytomegaloviurs, ureaplasma urealyticum, toxoplasma, etc. General information about these ... Intrauterine infection is an important cause of some birth defects worldwide. The most common pathogens include rubella virus, cytomegaloviurs, ureaplasma urealyticum, toxoplasma, etc. General information about these pathogens in epidemiology, consequence of birth defects, and the possible mechanisms in the progress of birth defects, and the interventions to prevent or treat these pathogens?infections are described. The infections caused by rubella virus, cytomegaloviurs, ureaplasma urealyticum, toxoplasma, etc. are common, yet they are proved to be fatal during the pregnant period, especially during the first trimester. These infections may cause sterility, abortion, stillbirth, low birth weight, and affect multiple organs that may induce loss of hearing and vision, even fetal deformity and the long-term effects. These pathogens?infections may influence the microenvironment of placenta, including levels of enzymes and cytokines, and affect chondriosome that may induce the progress of birth defect. Early diagnosis of infections during pregnancy should be strengthened. There are still many things to be settled, such as the molecular mechanisms of birth defects, the effective vaccines to certain pathogens. Birth defect researches in terms of etiology and the development of applicable and sensitive pathogen detection technology and methods are imperative. 展开更多
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Spectroscopic investigation on chirality transfer in additive-driven self-assembly of block polymers 被引量:2
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作者 li-hua pang Jing-Min Li +1 位作者 Xue-Min Lu Qing-Hua Lu 《Chinese Chemical Letters》 SCIE CAS CSCD 2017年第7期1358-1364,共7页
Chiral supramolecules prepared by the additive-driven self-assembly of block copolymers provide a facile method to construct helical nanostructures. In this study, we investigated the chiral transfer from chiral tarta... Chiral supramolecules prepared by the additive-driven self-assembly of block copolymers provide a facile method to construct helical nanostructures. In this study, we investigated the chiral transfer from chiral tartaric acid to poly(styrene)-b-poly(ethylene oxide) using small-angle X-ray scattering,transmission electron microscopy, circular dichroism, and vibrational circular dichroism. The results showed that the chirality was transferred to both the segments of block copolymer irrespective of the interaction with the chiral additives and formation of helical phase structure. However, the chirality transfer was carried out using different methods: for poly(ethylene oxide) segments, the chirality transfer was carried out via direct hydrogen bond formation; for polystyrene segments, the chirality transfer was carried out via the cooperative motion of block copolymers during the thermal annealing. 展开更多
关键词 Block polymer Chirality Additive-driven Hydrogen bond Helical structure
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