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      • KCI등재

        MicroRNA-375 is a therapeutic target for castration-resistant prostate cancer through the PTPN4/STAT3 axis

        Gan Junqing,Liu Shan,Zhang Yu,He Liangzi,Bai Lu,Liao Ran,Zhao Juan,Guo Madi,Jiang Wei,Li Jiade,Li Qi,Mu Guannan,Wu Yangjiazi,Wang Xinling,Zhang Xingli,Zhou Dan,Lv Huimin,Wang Zhengfeng,Zhang Yanqiao,Q 생화학분자생물학회 2022 Experimental and molecular medicine Vol.54 No.-

        The functional role of microRNA-375 (miR-375) in the development of prostate cancer (PCa) remains controversial. Previously, we found that plasma exosomal miR-375 is significantly elevated in castration-resistant PCa (CRPC) patients compared with castration-sensitive PCa patients. Here, we aimed to determine how miR-375 modulates CRPC progression and thereafter to evaluate the therapeutic potential of human umbilical cord mesenchymal stem cell (hucMSC)-derived exosomes loaded with miR-375 antisense oligonucleotides (e-375i). We used miRNA in situ hybridization technique to evaluate miR-375 expression in PCa tissues, gain- and loss-of-function experiments to determine miR-375 function, and bioinformatic methods, dual-luciferase reporter assay, qPCR, IHC and western blotting to determine and validate the target as well as the effects of miR-375 at the molecular level. Then, e-375i complexes were assessed for their antagonizing effects against miR-375. We found that the expression of miR-375 was elevated in PCa tissues and cancer exosomes, correlating with the Gleason score. Forced expression of miR-375 enhanced the expression of EMT markers and AR but suppressed apoptosis markers, leading to enhanced proliferation, migration, invasion, and enzalutamide resistance and decreased apoptosis of PCa cells. These effects could be reversed by miR-375 silencing. Mechanistically, miR-375 directly interfered with the expression of phosphatase nonreceptor type 4 (PTPN4), which in turn stabilized phosphorylated STAT3. Application of e-375i could inhibit miR-375, upregulate PTPN4 and downregulate p-STAT3, eventually repressing the growth of PCa. Collectively, we identified a novel miR-375 target, PTPN4, that functions upstream of STAT3, and targeting miR-375 may be an alternative therapeutic for PCa, especially for CRPC with high AR levels.

      • KCI등재

        Strength criterion of plain recycled aggregate concrete under biaxial compression

        Zhen-Jun He,Gan-Wen Liu,Wan-Lin Cao,Chang-Yang Zhou,Zhang Jia-Xing 사단법인 한국계산역학회 2015 Computers and Concrete, An International Journal Vol.16 No.2

        This paper presents results of biaxial compressive tests and strength criterion on two replacement percentages of recycled coarse aggregate (RPRCA) by mass for plain structural recycled aggregate concrete (RAC) at all kinds of stress ratios. The failure mode characteristic of specimens and the direction of the cracks were observed and described. The two principally static strengths in the corresponding stress state were measured. The influence of the stress ratios on the biaxial strengths of RAC was also analyzed. The experimental results showed that the ratios of the biaxial compressive strength  3f to the corresponding uniaxial compressive strength c for the two RAC are higher than that of the conventional concrete (CC), and dependent on the replacement percentages of recycled coarse aggregate, stress states and stress ratios; however, the differences of tensile-compressive ratios for the two RAC and CC are smaller. On this basis, a new failure criterion with the stress ratios is proposed for plain RAC under biaxial compressive stress states. It provides the experimental and theoretical foundations for strength analysis of RAC structures subject to complex loads.

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        Modelling of Acoustic Waves Propagating in Nesting Fibonacci Super-Lattice Phononic Crystal

        Min Zhao,Hai-Feng Qi,Jia-Hui Xu,Ya-Zhuo Xie,Xing-Gan Zhang,Jian Gao 대한금속·재료학회 2014 METALS AND MATERIALS International Vol.20 No.4

        Herein, we report construction of one kind of nesting-Fibonacci-super-lattice phononic crystal, in whichthe super-lattice cell is a well-defined Fibonacci generation sequence. We present a comparative study onband-gap structures of acoustic waves propagating in one-dimensional, nesting Fibonacci-periodic structureand simple-periodic structure. We find that there are more band gaps in nesting Fibonacci super-latticemodels, and that they present behavior different from the split-up of band gaps with different generationnumbers. With the increase of generation number, more band gaps split and occur. Additionally, whengeneration number becomes larger, Bragg scattering becomes more significant: the characteristic curvesbecome flatter and band gaps become wider. Furthermore, we study the effect of various parameters suchas density, thickness and defects on band-gap structures. Our work is significant both for understandingthe intrinsic physical properties of nesting Fibonacci sequences and for providing flexible choices to meetreal engineering requirements.

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