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6篇 您的检索式:作者名="Mao Caiping"
    题名 作者 年代 出处 被引量
1High-salt diet during pregnancy and angiotensin-related cardiac changes 显示文摘Yang Ding Juanxiu Lv Caiping Mao 2010Hypertension2010,28,:1
2The effect of tanshinone IIA on the cardiovascular system in o- vine fetus in utero 显示文摘Mao Caiping Zhang Yifan Zhang Yuying 2009Am J Chin Med2009,37,6:1
3Two angioten- sin converting enzymes and their roles in the cardiovascular diseases显示文摘Shi Lijun Mao Caiping Zhang Lubo 2010Drug Discovery Today2010,15,9:1
4High - salt diet during pregnancy and angiotensin - related cardiac changes 显示文摘Yang Ding Juanxiu Lv Caiping Mao 2010Hyperten- sion2010,28,:1
5Changed salt appetite and central angiotensin Ⅱ-induced cellular acti-vation in rat offspring following hypoxia during fetal stages 显示文摘Weili Yang Caiping Mao Fei Xia 2010Peptides2010,31,6:1
6The development of an iridium(Ⅲ) complex functionalized G-quadruplex probe for the stability of G-quadruplex and lifetime image in cytoplasm显示文摘G-quadruplex(G4) is widely known as a non-classical secondary structure of nucleic acid. With the indepth study of G4, it is an urgent need for a phosphorescent probe with a high G4 binding ability to evaluate the level of G4 in the cytoplasm. Thus, this study designed and synthesized Ir-PDP where an Ir(Ⅲ)complex was used as a phosphorescent emitter. Meanwhile, two installed PDPs(pyridostatin derivatives)were used to improve the combination ability with G4 and reduced the cytotoxicity of the Ir(Ⅲ) complex.Compared with other nucleic acid secondary structures, Ir-PDP produced a higher phosphorescence lifetime after interacting with G4. Ir-PDP was distributed in the cytoplasm of living cells, and two-photon phosphorescence lifetime imaging can detect the binding events of the probe in the cytoplasm. The addition of G4 binder PDS significantly regulated cytoplasmic phosphorescence lifetime. The project explored a new sensing pathway to observe the binding manners of probes in the cytoplasm through the phosphorescence lifetime of probes.Shaokang Jia Wenjin Wang Shanshan Qin Shengjie Xie Lisi Zhan Qi Wei Ziang Lu Xiaolu Zhou Cong Chen Kun Chen Shen Yan Caiping Tan Zongwan Mao Xiang Zhou 2023Chinese Chemical Letters2023,34,2:0
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