Heterogeneous TiCl4/MgCl_(2) type Ziegler-Natta(Z-N)catalysts with unique advantages like low cost,high activity,high stereoregularity and pretty particle morphology,contribute to more than 130 Mt polyolefin large-sca...Heterogeneous TiCl4/MgCl_(2) type Ziegler-Natta(Z-N)catalysts with unique advantages like low cost,high activity,high stereoregularity and pretty particle morphology,contribute to more than 130 Mt polyolefin large-scale production.However,most researches related with heterogeneous Z-N catalysts focused onα-olefin polymerizations like ethylene,propylene,etc.展开更多
Au sites supported on Ti-containing materials(Au/Ti-containing catalyst)are currently considered as a promising catalyst for the propylene epoxidation owing to the synergistic effect that hydrogen peroxide species for...Au sites supported on Ti-containing materials(Au/Ti-containing catalyst)are currently considered as a promising catalyst for the propylene epoxidation owing to the synergistic effect that hydrogen peroxide species formed on Au sites diffuses to the Ti sites to form the Ti-hydroperoxo intermedi-ates and contributes to the formation of propylene oxide(PO).In principle,thermal treatment will significantly affect the chemical and physical structures of Ti-containing materials.Consequently,the synergy between tailored Ti sites with different surface properties and Au sites is highly expected to enhance the catalytic performance for the reaction.Herein,we systematically studied the intrinsic effects of different microenvironments around Ti sites on the PO adsorption/desorption and conversion,and then effectively improved the catalytic performance by tailoring the number of surface hydroxyl groups.The Ti^(Ⅵ) material with fewer hydroxyls stimulates a remarkable enhancement in PO selectivity and H_(2) efficiency compared to the Ti^(Ⅵ) material that possessed more hydroxyls,offering a 7-fold and 4-fold increase,respectively.As expected,the Ti^(Ⅵ+Ⅳ) and Ti^(Ⅳ) materials also exhibit a similar phenomenon to the Ti^(Ⅵ) materials through the same thermal treatment,which strongly supports that the Ti sites microenvironment is an important factor in suppressing PO con-version and enhancing catalytic performance.These insights could provide guidance for the rational preparation and optimization of Ti-containing materials synergizing with Au catalysts for propylene epoxidation.展开更多
文摘目的检测PP1A与GSDME在结直肠癌组织中的表达与CD8^(+)T淋巴细胞丰度,探讨PP1A与GSDME介导焦亡的相关性和临床意义。方法应用GEPIA数据库分析PP1A与GSDME在结直肠癌组织与正常组织中mRNA的表达。采用Western blot法检测结直肠癌组织与对应癌旁正常黏膜中PP1A蛋白表达水平,运用免疫组化法检测107例结直肠癌与癌旁正常黏膜中PP1A、GSDME蛋白的表达和CD8^(+)T淋巴细胞丰度。利用Spearman等级相关性分析PP1A、GSDME和CD8^(+)T淋巴细胞丰度的相关性。结果GEPIA数据库检索显示,PP1A与GSDME的mRNA在结直肠癌组织和正常组织中的表达差异有统计学意义(P<0.05)。Western blot法检测结果显示,结直肠癌组织中PP1A相对表达量明显高于癌旁组织(0.937 vs 0.643,P<0.001)。免疫组化结果显示,结直肠癌组织中PP1A的表达明显高于正常黏膜,而GSDME的表达明显低于正常黏膜(P<0.05),GSDME表达与结直肠癌患者年龄、临床分期和错配修复蛋白密切相关(P<0.05);CD8^(+)T细胞在癌浸润前沿的分布明显高于癌旁正常黏膜,且CD8^(+)T细胞在癌组织中的分布与pT分期、临床分期及淋巴结转移相关。Spearman相关性分析显示,PP1A与GSDME表达呈负相关(r=-0.196,P<0.05)。PP1A阳性结直肠癌患者的总生存期低于PP1A阴性患者(P<0.05),患者预后与分化程度、淋巴结转移、pT分期和临床分期相关。PP1A表达、肿瘤分化程度、临床分期、pT分期和淋巴结转移均是影响结直肠癌患者预后的独立危险因素。结论PP1A在结直肠癌中高表达,与GSDME介导的细胞焦亡呈负相关,两者表达差异性与结直肠癌的发生、发展及预后均密切相关,可作为判断结直肠癌患者预后的潜在指标,CD8^(+)T细胞的差异性分布可能与GSDME介导的细胞焦亡及肿瘤的发展相关。
基金Supported by National Key Research and Development Program of China(2022 YFB 3704700(2022 YFB 3704702))Major Scientific and Technological Innovation Project of Shandong Province(2021 CXGC 010901)Taishan Scholar Program。
文摘Heterogeneous TiCl4/MgCl_(2) type Ziegler-Natta(Z-N)catalysts with unique advantages like low cost,high activity,high stereoregularity and pretty particle morphology,contribute to more than 130 Mt polyolefin large-scale production.However,most researches related with heterogeneous Z-N catalysts focused onα-olefin polymerizations like ethylene,propylene,etc.
文摘Au sites supported on Ti-containing materials(Au/Ti-containing catalyst)are currently considered as a promising catalyst for the propylene epoxidation owing to the synergistic effect that hydrogen peroxide species formed on Au sites diffuses to the Ti sites to form the Ti-hydroperoxo intermedi-ates and contributes to the formation of propylene oxide(PO).In principle,thermal treatment will significantly affect the chemical and physical structures of Ti-containing materials.Consequently,the synergy between tailored Ti sites with different surface properties and Au sites is highly expected to enhance the catalytic performance for the reaction.Herein,we systematically studied the intrinsic effects of different microenvironments around Ti sites on the PO adsorption/desorption and conversion,and then effectively improved the catalytic performance by tailoring the number of surface hydroxyl groups.The Ti^(Ⅵ) material with fewer hydroxyls stimulates a remarkable enhancement in PO selectivity and H_(2) efficiency compared to the Ti^(Ⅵ) material that possessed more hydroxyls,offering a 7-fold and 4-fold increase,respectively.As expected,the Ti^(Ⅵ+Ⅳ) and Ti^(Ⅳ) materials also exhibit a similar phenomenon to the Ti^(Ⅵ) materials through the same thermal treatment,which strongly supports that the Ti sites microenvironment is an important factor in suppressing PO con-version and enhancing catalytic performance.These insights could provide guidance for the rational preparation and optimization of Ti-containing materials synergizing with Au catalysts for propylene epoxidation.