Publications by authors named "Guo-bin Yang"

Article Synopsis
  • - Fu-Fang-Jin-Qian-Cao is a traditional Chinese herbal remedy aimed at treating urinary stones by protecting kidney cells from damage caused by calcium oxalate and oxidative stress, although its exact mechanisms are still under investigation.
  • - The study utilized comprehensive metabolomics and network pharmacology to analyze how Fu-Fang-Jin-Qian-Cao inhibits autophagy in a mouse model of renal injury induced by calcium oxalate, identifying several key proteins involved in this process.
  • - Results indicated that treatment with Fu-Fang-Jin-Qian-Cao effectively reversed damage related to two major signaling pathways (MAPK and PI3K-Akt) and restored the function of several autophagy-related proteins, suggesting its potential in mitigating kidney
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Gonadotropin-releasing hormone (GnRH) is secreted from neurons within the hypothalamus and is necessary for reproductive function in all vertebrates. GnRH is also found in organs outside of the brain and plays an important role in Leydig cell steroidogenesis in the testis. However, the signalling pathways mediating this function remain largely unknown.

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INTRODUCTION: Dentin sialoprotein (DSP) is a dentin extracellular matrix protein, a unique marker of dentinogenesis and plays a vital role in odontoblast differentiation and dentin mineralization. Recently, studies have shown that DSP induces differentiation and mineralization of periodontal ligament stem cells and dental papilla mesenchymal cells in vitro and rescues dentin deficiency and increases enamel mineralization in animal models. THE HYPOTHESIS: DSP as a nature therapeutic agent stimulates dental tissue repair by inducing endogenous dental pulp mesenchymal stem/progenitor cells into odontoblast-like cells to synthesize and to secrete dentin extracellular matrix forming new tertiary dentin as well as to regenerate a functional dentin-pulp complex.

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Objective: To compare the shaping ability of rotary ProTaper and Flexofile in simulated resin root canals.

Methods: Forty simulated resin root canals were randomly assigned to two groups, one group for rotary ProTaper with crown-down technique and the other for Flexofile with balanced force technique. Change of working length and incidence of canal aberration and instruments failure were recorded.

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