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6篇 您的检索式:作者名="Yaling TONG"
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1Collagen-binding basic fibroblast growth factor improves functional remodeling of scarred endometrium in uterine infertile women: a pilot study显示文摘Intrauterine adhesion(IUA) is a common cause of uterine infertility and one of the most severe clinical features is endometrial fibrosis namely endometrial scarring for which there are few cures currently. Blocked angiogenesis is the main pathological change in the scarred endometrium. The fibroblast growth factor 2(b FGF), a member of FGF family, is usually applied to promote healing of refractory ulcer and contributes to angiogenesis of tissues. In this study, the sustained-release system of b FGF100 μg was administrated around scarred endometrium guiding by ultrasound every 4 weeks in 18 patients(2–4 times). Results showed that after treatment, the menstrual blood volume, endometrial thickness and the scarred endometrial area were improved.Histological study showed blood vessel density increased obviously. Three patients(3/18) achieved pregnancy over 20 gestational weeks. Therefore, administrating the b FGF surrounding scarred endometrium may provide a new therapeutic approach for the patients with endometrial fibrosis.Peipei Jiang Xiaoqiu Tang Huiyan Wang Chenyan Dai Jing Su Hui Zhu Minmin Song Jingyu Liu Ziqing Nan Tong Ru Yaling Li Jingmei Wang Jun Yang Bing Chen Jianwu Dai Yali Hu 2019Science China(Life Sciences)2019,62,12:16
2A viral protein orchestrates rice ethylene signaling to coordinate viral infection and insect vector-mediated transmission显示文摘Arthropod-borne viruses cause serious threats to human health and global agriculture by rapidly spreading via insect vectors. Southern rice black-streaked dwarf virus (SRBSDV) is the most damaging rice-infecting virus that is frequently transmitted by planthoppers. However, the molecular mechanisms underlying its propagation in the host plants and epidemics in the field are largely unknown. Here, we showed that the SRBSDV-encoded P6 protein is a key effector that regulates rice ethylene signaling to coordinate viral infection and transmission. In early SRBSDV infection, P6 interacts with OsRTH2 in the cytoplasm to activate ethylene signaling and enhance SRBSDV proliferation;this also repels the insect vector to reduce infestation. In late infection, P6 enters the nucleus, where it interacts with OsEIL2, a key transcription factor of ethylene signaling. The P6-OsEIL2 interaction suppresses ethylene signaling by preventing the dimerization of OsEIL2, thereby facilitating viral transmission by attracting the insect vector. Collectively, these findings reveal a novel molecular mechanism by which an arbovirus modulates the host defense system to promote viral infection and transmission.Yaling Zhao Xue Cao Weihua Zhong Shunkang Zhou Zhanbiao Li Hong An Xiahua Liu Ruifeng Wu Surakshya Bohora Yan Wu Zhenyi Liang Jiahao Chen Xin Yang Guohui Zhou Tong Zhang 2022Molecular Plant2022,15,4:4
3Cimbined therapy of captopril and spironolactone for refractory congestive heart failure显示文摘Han Yaling Tong Ming Jing Quanmin 1994Chinese Medical Journal1994,107,9:1
4Peripheral nerve injury in patients exposed to n-hexane:an analysis of eight cases显示文摘Poisoning is often characterized by the acute onset,rapid progress,or specific manifestations of pathological symptoms,such as pulmonary fibrosis due to paraquat poisoning or high mortality arising from dinitrophenol intoxication (Jiang et al.,2016;Wang et al.,2017;Feng et al.,2018;Lu,2018;Xu and Lu,2019).Unlike general poisoning,however,the manifestation of n-hexane intoxication is subacute,and its clinical symptoms are dormant,and thus the provision of a timely and correct diagnosis is often difficult.Xiaping ZHANG Yaling TONG Yuanqiang LU 2021Journal of Zhejiang University-Science B(Biomedicine & Biotechnology)2021,22,3:1
5Molecular dynamics simulation of alkaline electrolyte diffusion in anion exchange membrane显示文摘During the operation of alkaline direct liquid fuel cells,the alkaline electrolyte is usually needed in the anode electrode to accelerate the electrochemical reaction kinetics of the liquid fuel.However,the crossover of the alkaline solution in the anode through the anion exchange membrane to the cathode can increase the transfer resistance of the oxygen in the cathode.In order to reduce the crossover of the alkaline solution,the diffusion process of the alkaline solution in the anion exchange membrane needs to be fully understood.In this work,interface models of anion exchange membrane-alkaline electrolytes are established based on the cell structure of the quaternary ammonium polysulfone(QAPS)membrane to simulate the dynamic process of the alkaline solution in the membrane.The effect of the type and the concentration of the alkaline solution on the transportation of the metal ions and OH^-in the membrane are studied.The results show that the agglomeration of Na+is formed more easily than K^+in the interface model.Because of the strong interaction of Na^+on OH^-,OH^-ions appear to be concentrated,resulting in that the diffusion coefficients of the metal ion and OH^-in the in Na^+solution are lower than those in the K^+solution.In addition,with the raised concentration of electrolyte solution,the aggregation degrees of the metal ions and OH^-can be increased,which means an enlarged mass transfer resistance of the components.Furthermore,by adding a polytetrafluoroethylene(PTFE)layer on the QAPS membrane,the distribution of metal ions tends to be concentrated,and the number of hydrophilic channels in the QAPS membrane is reduced,which significantly increases the alkali resistance of the anion exchange membrane.SONG BingYe LI Dong HE YaLing HUANG Dong TONG ZiXiang 2020Science China(Technological Sciences)2020,63,11:0
6Bulky Thiolate-Protected Silver Nanocluster Ag_(213)(Adm-S)_(44)Cl_(33)with Excellent Electrocatalytic Performance toward Oxygen Reduction显示文摘Atomically precise gold and/or silver nanoclusters play a key role in crystallography and coordination chemistry.Compared with gold nanoclusters,silver nanoclusters become unstable and difficult to crystallize due to the high reactivity ofmetal silver.Herein,we report a silver nanocluster Ag_(213)(Adm-S)_(44)Cl_(33)(Ag_(213))coprotected by bulky thiolates and chlorides.The low surface thiolate coverage(about 45%)endows Ag_(213)with high catalytic activity.Supported on activated carbon,Ag_(213)nanoclusters exhibit excellent electrocatalytic oxygen reduction performance with Eonset and E_(1/2)values of 0.89 and 0.72 V,respectively,close to the values of commercial Pt/C catalyst.This is the first report on the electrocatalytic oxygen reduction reaction of nanoclusters with more than 100 silver atoms.Ag_(213)with the diameter of 2.75 nm comprises a core–shell structure Ag_(7)@Ag_(32)@Ag_(77)@Ag_(97).The strong plasmonic absorption band at 454 nm reveals the metallic nature of Ag_(213).Interestingly,halide is of importance.Chloride facilitates the formation of Ag_(213)and Ag_(56)(Adm-S)_(33)Cl_(16)(Ag_(56)^(Cl))while bromide can promote the formation of Ag_(56)(Adm-S)_(33)Br_(16)(Ag_(56)Br).This work provides an example for the study of largesized metal nanoclusters and nanocluster-based electrocatalysts.Chen-Guang Shi Jian-Hua Jia Yaling Jia Guangqin Li Ming-Liang Tong 2023CCS Chemistry2023,5,5:0
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