目的:探讨circ-0030042与人第10号染色体缺失的磷酸酶(Phosphatase and tensin homolog deleted on chromosome ten,PTEN)的相互作用关系,并分析其在增生性瘢痕(Hypertrophic scar,HS)患者中对成纤维细胞增殖与迁移的影响及作用机制。方...目的:探讨circ-0030042与人第10号染色体缺失的磷酸酶(Phosphatase and tensin homolog deleted on chromosome ten,PTEN)的相互作用关系,并分析其在增生性瘢痕(Hypertrophic scar,HS)患者中对成纤维细胞增殖与迁移的影响及作用机制。方法:通过circRNA序列和定量聚合酶链反应(PCR技术)检测正常皮肤成纤维细胞(NSFBs)和增生性瘢痕患者成纤维细胞(HSFBs)中circ-0030042的表达。用CCK8检测法检测转染48 h后的HSFBs细胞增殖情况。利用stubRFP-sensGFP-LC3基因转染、流式细胞仪及电子显微镜观察circ-0030042对miR-145/PTEN轴调控VEGF水平的表达。利用生物信息学分析、RNA免疫沉淀、免疫荧光检测等方法,揭示circ-0030042介导HS患者成纤维细胞增殖与迁移的作用机制。结果:circ-0030042在增生性瘢痕中显著上调,过表达时作为VEGF海绵抑制miR-145诱导的成纤维细胞,维持体内稳定性。此外,circ-0030042通过海绵化VEGF水平并阻断其miR-145捕获转录因子(FOXO1)mRNA来影响自噬,而circ-0030042诱导FOXO1的抑制被VEGF水平过表达或circ-0030042结合减少所抵消。过表达circ-0030042对成纤维细胞的增殖抑制与VEGF表达的抑制作用被过表达miR-145部分抵消。结论:干扰circ-0030042通过靶向下调miR-145/PTEN轴进而抑制HSFBs细胞的增殖与迁移,进一步诱导恶性细胞凋亡。展开更多
In the restoration of degraded wetlands,fertilization can improve the vegetation-soil-microorganisms complex,thereby affecting the organic carbon content.However,it is currently unclear whether these effects are susta...In the restoration of degraded wetlands,fertilization can improve the vegetation-soil-microorganisms complex,thereby affecting the organic carbon content.However,it is currently unclear whether these effects are sustainable.This study employed Biolog-Eco surveys to investigate the changes in vegetation characteristics,soil physicochemical properties,and soil microbial functional diversity in degraded alpine wetlands of the source region of the Yellow River at 3 and 15 months after the application of nitrogen,phosphorus,and organic mixed fertilizer.The following results were obtained:The addition of nitrogen fertilizer and organic compost significantly affects the soil organic carbon content in degraded wetlands.Three months after fertilization,nitrogen addition increases soil organic carbon in both lightly and severely degraded wetlands,whereas after 15 months,organic compost enhanced the soil organic carbon level in severely degraded wetlands.Structural equation modeling indicates that fertilization decreases the soil pH and directly or indirectly influences the soil organic carbon levels through variations in the soil water content and the aboveground biomass of vegetation.Three months after fertilization,nitrogen fertilizer showed a direct positive effect on soil organic carbon.However,organic mixed fertilizer indirectly reduced soil organic carbon by increasing biomass and decreasing soil moisture.After 15 months,none of the fertilizers significantly affected the soil organic carbon level.In summary,it can be inferred that the addition of nitrogen fertilizer lacks sustainability in positively influencing the organic carbon content.展开更多
文摘目的:探讨circ-0030042与人第10号染色体缺失的磷酸酶(Phosphatase and tensin homolog deleted on chromosome ten,PTEN)的相互作用关系,并分析其在增生性瘢痕(Hypertrophic scar,HS)患者中对成纤维细胞增殖与迁移的影响及作用机制。方法:通过circRNA序列和定量聚合酶链反应(PCR技术)检测正常皮肤成纤维细胞(NSFBs)和增生性瘢痕患者成纤维细胞(HSFBs)中circ-0030042的表达。用CCK8检测法检测转染48 h后的HSFBs细胞增殖情况。利用stubRFP-sensGFP-LC3基因转染、流式细胞仪及电子显微镜观察circ-0030042对miR-145/PTEN轴调控VEGF水平的表达。利用生物信息学分析、RNA免疫沉淀、免疫荧光检测等方法,揭示circ-0030042介导HS患者成纤维细胞增殖与迁移的作用机制。结果:circ-0030042在增生性瘢痕中显著上调,过表达时作为VEGF海绵抑制miR-145诱导的成纤维细胞,维持体内稳定性。此外,circ-0030042通过海绵化VEGF水平并阻断其miR-145捕获转录因子(FOXO1)mRNA来影响自噬,而circ-0030042诱导FOXO1的抑制被VEGF水平过表达或circ-0030042结合减少所抵消。过表达circ-0030042对成纤维细胞的增殖抑制与VEGF表达的抑制作用被过表达miR-145部分抵消。结论:干扰circ-0030042通过靶向下调miR-145/PTEN轴进而抑制HSFBs细胞的增殖与迁移,进一步诱导恶性细胞凋亡。
基金supported by the National Nature Science Foundations of China(32160269)the International Science and Technology Cooperation Project of Qinghai province of China(2022-HZ-817).
文摘In the restoration of degraded wetlands,fertilization can improve the vegetation-soil-microorganisms complex,thereby affecting the organic carbon content.However,it is currently unclear whether these effects are sustainable.This study employed Biolog-Eco surveys to investigate the changes in vegetation characteristics,soil physicochemical properties,and soil microbial functional diversity in degraded alpine wetlands of the source region of the Yellow River at 3 and 15 months after the application of nitrogen,phosphorus,and organic mixed fertilizer.The following results were obtained:The addition of nitrogen fertilizer and organic compost significantly affects the soil organic carbon content in degraded wetlands.Three months after fertilization,nitrogen addition increases soil organic carbon in both lightly and severely degraded wetlands,whereas after 15 months,organic compost enhanced the soil organic carbon level in severely degraded wetlands.Structural equation modeling indicates that fertilization decreases the soil pH and directly or indirectly influences the soil organic carbon levels through variations in the soil water content and the aboveground biomass of vegetation.Three months after fertilization,nitrogen fertilizer showed a direct positive effect on soil organic carbon.However,organic mixed fertilizer indirectly reduced soil organic carbon by increasing biomass and decreasing soil moisture.After 15 months,none of the fertilizers significantly affected the soil organic carbon level.In summary,it can be inferred that the addition of nitrogen fertilizer lacks sustainability in positively influencing the organic carbon content.