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PHOTOELECTRIC EFFECTS FROM COVALENTLY LINKED PHTHALOCYANINE COMPLEXES IN BOTH BLM AND SnO_2 PHOTOVOLTAIC CELL
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作者 Zhi Chu BI Xin Li ZHAO +3 位作者 Yue Ying QIAN Shu Yin SHEN Jia Yong YU Hui Jun XU 《Chinese Chemical Letters》 SCIE CAS CSCD 1992年第7期565-568,共4页
Covalently linked phthalocyanine complexes were incorporated in bilayer lipid membranes(BLN) and deposited on SnO_2 transparent electrodes, Their photovoltages were measured and compared. It has been found that a more... Covalently linked phthalocyanine complexes were incorporated in bilayer lipid membranes(BLN) and deposited on SnO_2 transparent electrodes, Their photovoltages were measured and compared. It has been found that a more favorable orientation and closer proximity are attained in the diad compounds between the donor (phthalocyanine)-acceptor(anthraquinone) pair than in the simple compound for efficient light-induced charge separation and transfer. The triad compound is the best among all tested compounds. 展开更多
关键词 BLM PHOTOELECTRIC EFFECTS FROM covalentLY LINKED PHTHALOCYANINE complexES IN BOTH BLM AND SnO2 PHOTOVOLTAIC CELL SNO
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Narciclasine,a novel topoisomerase I inhibitor,exhibited potent anti-cancer activity against cancer cells
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作者 Meichen Wang Leilei Liang +9 位作者 Rong Wang Shutao Jia Chang Xu Yuting Wang Min Luo Qiqi Lin Min Yang Hongyu Zhou Dandan Liu Chen Qing 《Natural Products and Bioprospecting》 CSCD 2023年第1期482-492,共11页
DNA topoisomerases are essential nuclear enzymes in correcting topological DNA errors and maintaining DNA integrity.Topoisomerase inhibitors are a significant class of cancer chemotherapeutics with a definite curative... DNA topoisomerases are essential nuclear enzymes in correcting topological DNA errors and maintaining DNA integrity.Topoisomerase inhibitors are a significant class of cancer chemotherapeutics with a definite curative effect.Natural products are a rich source of lead compounds for drug discovery,including anti-tumor drugs.In this study,we found that narciclasine(NCS),an amaryllidaceae alkaloid,is a novel inhibitor of topoisomerase I(topo I).Our data demonstrated that NCS inhibited topo I activity and reversed its unwinding effect on p-HOT DNA substrate.However,it had no obvious effect on topo II activity.The molecular mechanism of NCS inhibited topo I showed that NCS did not stabilize topo-DNA covalent complexes in cells,indicating that NCS is not a topo I poison.A blind docking result showed that NCS could bind to topo I,suggesting that NCS might be a topo I suppressor.Additionally,NCS exhibited a potent anti-proliferation effect in various cancer cells.NCS arrested the cell cycle at G_(2)/M phase and induced cell apoptosis.Our study reveals the antitumor mechanisms of NCS and provides a good foundation for the development of anti-cancer drugs based on topo I inhibition. 展开更多
关键词 TOPOISOMERASE Narciclasine(NCS) Topo I-DNA covalent complex DNA damage Cell cycle Apoptosis
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