Publications by authors named "Yuezeng Wang"

Article Synopsis
  • The study investigates how the aging of bone marrow mesenchymal stromal cells (MSCs) affects their ability to remain stem-like and differentiate into bone cells, focusing on the role of a gene called stearoyl-CoA desaturase 2 (SCD2).
  • Researchers found that increasing SCD2 levels can reduce the aging process of MSCs and improve their bone-forming abilities by regulating lipid metabolism.
  • Additionally, the study identified that the microRNA miR-200c-3p targets SCD2, reducing its expression in aging MSCs, and that restoring SCD2 levels can counteract the negative effects of miR-200c-3p on MSC function.
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Acute kidney injury (AKI) is a common, multicause clinical condition that, if ignored, often progresses to chronic kidney disease (CKD) and end-stage kidney disease, with a mortality rate of 40-50%. However, there is a lack of universal treatment for AKI. Inflammation is the basic pathological change of early kidney injury, and inflammation can exacerbate AKI.

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The CRISPR/Cas9 system is a powerful genome editing tool that has made enormous impacts on next-generation molecular diagnostics and therapeutics, especially for genetic disorders that traditional therapies cannot cure. Currently, CRISPR-based gene editing is widely applied in basic, preclinical, and clinical studies. In this review, we attempt to identify trends in clinical studies involving CRISPR techniques to gain insights into the improvement and contribution of CRISPR/Cas technologies compared to traditional modified modalities.

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The capacity for endothelial differentiation has been described in mesenchymal stem cells (MSC) from human bone marrow. To identify genes associated with the endothelial differentiation potential of this cell-type, and search for the optimal regulatory factors, the expression profile of MSC was compared with cDNA from primary human umbilical vein endothelial cells as controls, using cDNA chips with 4096 genes. The data were corroborated by quantitative PCR, Western blotting, and immunocytochemistry.

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Objective: To screen and identify differentially expressed proteins of mesenchymal stem cells (MSC) during endothelial differentiation.

Methods: MSCs were induced to endothelial differentiation with vascular endothelial growth factor (VEGF) and epithelial growth factor (EGF) mixture. The whole cell proteins were extracted and isolated by two-dimensional gel electrophoresis.

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Background: Previous results showed that over-expression of the WTH3 gene in MDR cells reduced MDR1 gene expression and converted their resistance to sensitivity to various anticancer drugs. In addition, the WTH3 gene promoter was hypermethylated in the MCF7/AdrR cell line and primary drug resistant breast cancer epithelial cells. WTH3 was also found to be directly targeted and up regulated by the p53 gene.

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Earlier studies identified human TSP50 as a testis-specific gene that encoded a threonine protease. Most importantly, TSP50 could be a cancer/testis antigen since there was a high frequency of reactivation in breast cancer biopsies. It was also found to be negatively regulated by the p53 gene.

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Aim: To analyze gene expression difference between human mesenchymal stem cells and umbilical vein endothelial cells, to discuss the feasibility of inducing hMSCs to differentiate into endothelial cells through in vitro gene transfection as well as the use and prospective as a seeding cell source of vascular tissue engineering.

Methods: hMSCs and hUVECs were isolated, expanded in culture, and characterized by flow-cytometry, immunocytochemistry, immunofluorescence and transmission electron microscopy (TEM). Differential analysis of gene expression profiles between them was performed by Biostar H-40 cDNA microarrays.

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Objective: To study the anti-tumor angiogenesis effect of soluble VEGF receptor fragment by blocking the combination of VEGF and its receptor in vivo and in vitro.

Methods: RT-PCR technique was used to amplify Flk-1/KDR fragment from embryo mouse liver, which was recombinated to expression vector pET-28b(+) and retrovirus vector PLXSN, which was induced to be expressed, purified and identified with EcoR I and Hind III. Mouse endothelial cells were separated, cultured and identified by immunocytochemistrical staining using VIII factor-related antigen antibody.

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The objective of the study is to find out the synergistic effect on apoptosis resulting from the combination of chemotherapeutic drugs and some cytokines. Dexamethasone (DEX), etoposide (VP16), arsenic trioxide (As(2)O(3)) and alltrans-retinoic acid (ATRA) were added to the murine T lymphoma cell line RMA as well as to the cells preincubated with IL-2, IL-6 or GM-CSF, respectively. The effect on apoptosis was observed.

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The objective of the study is to explore the effect of Fas, FasL and Bcl-2 on the process of apoptosis induced by chemotherapeutic drugs through detecting the expression of Fas, FasL and Bcl-2 on murine lymphoma cell line RMA. Dexamethasone(DEX), etoposide (VP-16), arsenic trioxide As(2)O(3) and all trans-retinoic-acid (ATRA) were added to the RMA cells as well as to the cells preincubated with interleukin-2 (IL-2), interleukin-6 (IL-6) or granulocyte-macrophage colony-stimulating factor (GM-CSF), respectively. The effect on apoptosis was observed and the expression of Fas and FasL mRNA as well as the expression of Fas and Bcl-2 antigen were measured.

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To study immunophenotype and cytotoxicity of the immunocytes in bone marrow and peripheral blood after activation by combined cytokines, mononuclear cells (MNC) of bone marrow and peripheral blood were activated by IFN-gamma, IL-1, IL-2 and McAb-CD3 in vitro. The cell amount and morphology during culture were observed. Cytochemical staining and immunophenotype analysis were done before and after culture in two groups of MNC.

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