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| 1 | Angular Dependence of Critical Current in Ag-Seathed Bi(2223)-Superconductor Tape显示文摘The critical current Ic(B.T.)of Ag-slcatled Bi(223)tape was uuceasured at 4.2 and 77K in magnetic field up to CT as a function of the tield direction.The maximn Ie is observed when the fnx line are along the CuO:planes.This effect is due to an in trinsic pinning between CuO_(2) layers.When H>0.5 T at 4.2K.I_(c) decreascs very slowly with the mlaguetic field.The resnlts nre colusistent with our early-proposed scaling luws for flux pining in Ag-sheathed tape. | GUO Shuquan QIN Xiaonnei ZHANG Jinlong WU Zu'an YE Bin ZENG Roung ZHOU Yiru ZHOU Min | 1993 | Chinese Physics Letters1993,10,9: | 0 |
| 2 | Micheliolide exerts effects in myeloproliferative neoplasms through inhibiting STAT3/5 phosphorylation via covalent binding to STAT3/5 proteins显示文摘Ruxolitinib is a cornerstone of management for some subsets of myeloproliferative neoplasms(MPNs);however,a considerable number of patients respond suboptimally.Here,we evaluated the efficacy of micheliolide(MCL),a natural guaianolide sesquiterpene lactone,alone or in combination with ruxolitinib in samples from patients with MPNs,JAK2V617F-mutated MPN cell lines,and a Jak2V617F knock-in mouse model.MCL effectively suppressed colony formation of hematopoietic progenitors in samples from patients with MPNs and inhibited cell growth and survival of MPN cell lines in vitro.Co-treatment with MCL and ruxolitinib resulted in greater inhibitory effects compared with treatment with ruxolitinib alone.Moreover,dimethylaminomicheliolide(DMAMCL),an orally available derivative of MCL,significantly increased the efficacy of ruxolitinib in reducing splenomegaly and cytokine production in Jak2V617F knock-in mice without evident effects on normal hematopoiesis.Importantly,MCL could target the Jak2V617F clone and reduce mutant allele burden in vivo.Mechanistically,MCL can form a stable covalent bond with cysteine residues of STAT3/5 to suppress their phosphorylation,thus inhibiting JAK/STAT signaling.Overall,these findings suggest that MCL is a promising drug in combination with ruxolitinib in the setting of suboptimal response to ruxolitinib. | Huijun Huang Jinqin Liu Lin Yang Yiru Yan Meng Chen Bing Li Zefeng Xu Tiejun Qin Shiqiang Qu Liang Wang Gang Huang Yue Chen Zhijian Xiao | 2023 | Blood Science2023,5,4: | 0 |
| 3 | Potential contribution of increased soluble IL-2R to lymphopenia in COVID-19 patients显示文摘Since the outbreak of coronavirus disease 2019(COVID-19)caused by severe acute respiratory syndrome coronavirus 2(SARS-CoV-2),more than 6 million cases are confirmed and over 300,000 cases are dead after infection.Dysfunction of immunity in COVID-19 patients has been considered as one of the fatal factors for patients,especially cytokine release syndrome and lymphopenia.1,2,3 The reduced number and increased exhaustion level of lymphocyte are associated with elevated inflammatory cytokines in COVID-19 patients.4,5 However,the mechanism of cytokine-induced lymphopenia in COVID-19 is very unclear.IL-2 is critical for the proliferation,differentiation,and function of T cells,including Tregs,CD4+,and CD8+effector cells.6 Here,we reported the negative relationship between the concentration of soluble IL-2 receptor(sIL-2R)and T-cell number in blood from COVID-19 patients.In vitro addition of recombinant CD25 could inhibit the proliferation and function of T cells from PBMC after stimulated with TCR signaling,which could be rescued by strong IL-2 signaling.Our data suggested the importance of IL-2 signaling in lymphopenia of COVID-19 patients. | Yaguang Zhang Xiaojing Wang Xuezhen Li Dong Xi Ruizhi Mao Xiaohui Wu Shipeng Cheng Xiaoyu Sun Chunyan Yi Zhiyang Ling Liyan Ma Qin Ning Yiru Fang Bing Sun Di Wu | 2020 | Cellular & Molecular Immunology2020,17,8: | 0 |
| 4 | Surface-rare-earth-rich upconversion nanoparticles induced by heterovalent cation exchange with superior loading capacity显示文摘Surface modification of different functional molecules onto NaREF_(4)(RE=rare earth)upconversion nanoparticles(UCNPs)impart their multiple functionalities.Functional molecules can be loaded onto NaREF_(4) UCNPs through the formation of coordination bonds between the surface-exposed RE^(3+) ions and the appropriate chemical groups of functional molecules.The density of surface RE^(3+) ions directly determines the loading efficiency of Na REF4 UCNPs.However,NaREF_(4) is a binary cation system,rendering the surface-distributed Na;and RE^(3+) ions remains a mystery.Here,we develop an effective strategy to significantly enhance the density of surface RE^(3+) ions,thus maximizing the loading capacity of NaREF_(4) UCNPs.This strategy is based on a heterovalent cation exchange(HCE)reaction in the surface region in which Na^(+)ions are replaced by RE^(3+) ions.The density of surface ligands enhances from 3.6 to 8.8 molecules/nm^(2) after reaction,suggesting that the loading efficiency increases by approximately 150%.Benefiting from the improved loading capacity,we demonstrate such surface-RE-rich nanoparticles have the ability to offer higher colloidal stability and more desirable photodynamic therapy(PDT)efficacy.This work not only advances our understanding of cation exchange reactions in RE-based nanoparticles,but also provides significant value for considerable applications such as sensing,bioimaging,and therapy. | Meifeng Wang Yiru Qin Wei Shao ZhiWang Cai Xiaoyu Zhao Yongjun Hu Tao Zhang Sheng Li Mark T.Swihart Yang Liu Wei Wei | 2022 | Journal of Materials Science & Technology2022,,2: | 0 |