Showing 9,241 - 9,260 results of 42,357 for search '(( 50 ((ng decrease) OR (((mean decrease) OR (a decrease)))) ) OR ( a point decrease ))', query time: 1.06s Refine Results
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    Suitability of Porcine Chondrocyte Micromass Culture To Model Osteoarthritis in Vitro by Niels Schlichting (1783198)

    Published 2014
    “…Expression of genes related to cartilage ECM formation (<i>COL2A1</i>, <i>COL9A1</i>, <i>COMP</i>, <i>aggrecan</i>) as well as hypertrophic bone formation (<i>COL1A1</i>, <i>COL10A1</i>) was predominantly found decreased. …”
  8. 9248

    Suitability of Porcine Chondrocyte Micromass Culture To Model Osteoarthritis in Vitro by Niels Schlichting (1783198)

    Published 2014
    “…Expression of genes related to cartilage ECM formation (<i>COL2A1</i>, <i>COL9A1</i>, <i>COMP</i>, <i>aggrecan</i>) as well as hypertrophic bone formation (<i>COL1A1</i>, <i>COL10A1</i>) was predominantly found decreased. …”
  9. 9249

    Suitability of Porcine Chondrocyte Micromass Culture To Model Osteoarthritis in Vitro by Niels Schlichting (1783198)

    Published 2014
    “…Expression of genes related to cartilage ECM formation (<i>COL2A1</i>, <i>COL9A1</i>, <i>COMP</i>, <i>aggrecan</i>) as well as hypertrophic bone formation (<i>COL1A1</i>, <i>COL10A1</i>) was predominantly found decreased. …”
  10. 9250

    Suitability of Porcine Chondrocyte Micromass Culture To Model Osteoarthritis in Vitro by Niels Schlichting (1783198)

    Published 2014
    “…Expression of genes related to cartilage ECM formation (<i>COL2A1</i>, <i>COL9A1</i>, <i>COMP</i>, <i>aggrecan</i>) as well as hypertrophic bone formation (<i>COL1A1</i>, <i>COL10A1</i>) was predominantly found decreased. …”
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    Table 1_Trends and forecasts of vitamin A deficiency burden in China, 1990–2035.docx by Zhongming Ye (21865547)

    Published 2025
    “…However, DALYs rebounded among those aged 50–74 years. Significant age and sex disparities exist. …”
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    Abnormalities of AMPK Activation and Glucose Uptake in Cultured Skeletal Muscle Cells from Individuals with Chronic Fatigue Syndrome by Audrey E. Brown (677895)

    Published 2015
    “…The retention of these differences in cultured muscle cells from CFS subjects points to a genetic/epigenetic mechanism, and provides a system to identify novel therapeutic targets.…”
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