建立了一种在温和条件下,用可见光催化合成一系列3,4-二氢异喹啉-1(2H)-酮及其衍生物的方法。该方法在室温条件下,以2-烯丙基-N-甲氧基苯甲酰胺为模板底物,以碘化钾作为光催化剂,25 W 460 nm的蓝色LED灯照射下,合成一系列3,4-二氢异喹啉...建立了一种在温和条件下,用可见光催化合成一系列3,4-二氢异喹啉-1(2H)-酮及其衍生物的方法。该方法在室温条件下,以2-烯丙基-N-甲氧基苯甲酰胺为模板底物,以碘化钾作为光催化剂,25 W 460 nm的蓝色LED灯照射下,合成一系列3,4-二氢异喹啉-1(2H)-酮衍生物,最高产率可达到83%。该合成路径具有底物适用范围广、经济实用等特点,为3,4-二氢异喹啉-1(2H)-酮衍生物合成提供了一种经济简便的方法。展开更多
为建立花生致敏蛋白Ara h 2双抗夹心酶联免疫吸附试验(ELISA)检测方法,本研究基于所制备的抗体,采用双抗体夹心检测模式,以Ara h 2鼠源单克隆抗体作为捕获抗体、兔源多克隆抗体作为检测抗体,并通过棋盘法优化抗体工作浓度,对该方法的灵...为建立花生致敏蛋白Ara h 2双抗夹心酶联免疫吸附试验(ELISA)检测方法,本研究基于所制备的抗体,采用双抗体夹心检测模式,以Ara h 2鼠源单克隆抗体作为捕获抗体、兔源多克隆抗体作为检测抗体,并通过棋盘法优化抗体工作浓度,对该方法的灵敏度、准确度、精密度和特异性进行鉴定。结果表明,建立的双抗夹心ELISA检测方法对Ara h 2的检出限为5.04 ng·mL^(-1),线性范围为15.63~1 000 ng·mL^(-1),添加回收率为80.12%~96.03%,批内和批间变异系数均小于10%,且特异性良好、与其他常见食物过敏原无交叉反应。本研究可为致敏蛋白Ara h 2检测提供一种快速高效的方法。展开更多
目的本研究旨在探讨转录共激活因子(transcriptional coactivator with PDZ-binding motif,TAZ)与组蛋白H2A(histone H2A,H2A)的一种组蛋白变体H2A.Z,在缺氧诱导的肺损伤后修复中的作用及其潜在机制。方法利用缺氧模拟仓(5800 m)处理4 d...目的本研究旨在探讨转录共激活因子(transcriptional coactivator with PDZ-binding motif,TAZ)与组蛋白H2A(histone H2A,H2A)的一种组蛋白变体H2A.Z,在缺氧诱导的肺损伤后修复中的作用及其潜在机制。方法利用缺氧模拟仓(5800 m)处理4 d后,构建小鼠缺氧肺损伤模型,肺组织切片HE染色评估肺损伤程度。利用缺氧工作站(1%O_(2)浓度)处理小鼠肺泡上皮细胞系(murine lung epithelial-12,MLE12)24 h,构建MLE12缺氧细胞模型,Western blot分析检测TAZ表达。CCK-8实验评价肺泡上皮细胞(alveolar epithelial cells,AECs)增殖。免疫共沉淀(co-immunoprecipitation,Co-IP)实验验证TAZ与H2A.Z二者之间的相互作用。靶向剪切及转座酶标记技术(cleavage under targets and tagmentation,CUT&Tag)测序分析TAZ影响H2A.Z在染色质沉积情况。结果缺氧显著诱导小鼠肺组织肺泡萎缩及炎症浸润(P<0.01)。缺氧培养显著上调MLE12细胞中TAZ蛋白表达(P<0.05)。CCK-8实验发现,敲低TAZ后AECs增殖能力显著下降(P<0.01)。Co-IP证实TAZ与H2A.Z存在物理相互作用。靶向剪切及转座酶标记技术(cleavage under targets and tagmentation,CUT&Tag)测序显示缺氧促进H2A.Z在染色质上的沉积(常氧结合位点31817,缺氧结合位点44078),而TAZ敲低部分逆转此现象(结合位点37840)。结论缺氧显著上调TAZ表达,后者与H2A.Z的结合并促进H2A.Z在染色质上的沉积,增强AECs增殖以应对缺氧损伤。展开更多
Layered transition metal hydroxides show distinct advantages in separately co-catalyzing CO_(2)reduction and H_(2)O oxidation at the electron-accumulating and hole-accumulating sites of wrapped heterojunction photocat...Layered transition metal hydroxides show distinct advantages in separately co-catalyzing CO_(2)reduction and H_(2)O oxidation at the electron-accumulating and hole-accumulating sites of wrapped heterojunction photocatalysts,while concurrently preventing side reactions and photocorrosion on the semiconductor surface.Herein,Ni-Co bimetallic hydroxides with varying Ni/Co molar ratios(Ni_(x)Co_(1-x)(OH)_(2),x=1,0.75,0.5,0.25,and 0)were grown in situ on a model 2D/2D S-scheme heterojunction composed of Cu_(2)O nanosheets and Fe_(2)O_(3)nanoplates to form a series of Cu_(2)O/Fe_(2)O_(3)@Ni_(x)Co_(1-x)(OH)_(2)(CF@NiCo)photocatalysts.The combined experimental and theoretical investigation demonstrates that incorporating an appropriate amount of Co into Ni(OH)_(2)not only modulates the energy band structure of Ni_(x)Co_(1-x)(OH)_(2),balances the electron-and hole-trapping abilities of the bifunctional cocatalyst and maximizes the charge separation efficiency of the heterojunction,but also regulates the d-band center of Ni_(x)Co_(1-x)(OH)_(2),reinforcing the adsorption and activation of CO_(2)and H_(2)O on the cocatalyst surface and lowering the rate-limiting barriers in the CO_(2)-to-CO and H_(2)O-to-O_(2)conversion.Benefiting from the Ni-Co synergy,the redox reactions proceed stoichiometrically.The optimized CF@Ni_(0.75)Co_(0.25)achieves CO and O_(2)yields of 552.7 and 313.0μmol gcat^(-1)h^(-1),respectively,11.3/9.9,1.6/1.7,and 4.5/5.9-fold higher than those of CF,CF@Ni,and CF@Co.This study offers valuable insights into the design of bifunctional noble-metal-free cocatalysts for high-performance artificial photosynthesis.展开更多
文摘建立了一种在温和条件下,用可见光催化合成一系列3,4-二氢异喹啉-1(2H)-酮及其衍生物的方法。该方法在室温条件下,以2-烯丙基-N-甲氧基苯甲酰胺为模板底物,以碘化钾作为光催化剂,25 W 460 nm的蓝色LED灯照射下,合成一系列3,4-二氢异喹啉-1(2H)-酮衍生物,最高产率可达到83%。该合成路径具有底物适用范围广、经济实用等特点,为3,4-二氢异喹啉-1(2H)-酮衍生物合成提供了一种经济简便的方法。
文摘为建立花生致敏蛋白Ara h 2双抗夹心酶联免疫吸附试验(ELISA)检测方法,本研究基于所制备的抗体,采用双抗体夹心检测模式,以Ara h 2鼠源单克隆抗体作为捕获抗体、兔源多克隆抗体作为检测抗体,并通过棋盘法优化抗体工作浓度,对该方法的灵敏度、准确度、精密度和特异性进行鉴定。结果表明,建立的双抗夹心ELISA检测方法对Ara h 2的检出限为5.04 ng·mL^(-1),线性范围为15.63~1 000 ng·mL^(-1),添加回收率为80.12%~96.03%,批内和批间变异系数均小于10%,且特异性良好、与其他常见食物过敏原无交叉反应。本研究可为致敏蛋白Ara h 2检测提供一种快速高效的方法。
文摘目的本研究旨在探讨转录共激活因子(transcriptional coactivator with PDZ-binding motif,TAZ)与组蛋白H2A(histone H2A,H2A)的一种组蛋白变体H2A.Z,在缺氧诱导的肺损伤后修复中的作用及其潜在机制。方法利用缺氧模拟仓(5800 m)处理4 d后,构建小鼠缺氧肺损伤模型,肺组织切片HE染色评估肺损伤程度。利用缺氧工作站(1%O_(2)浓度)处理小鼠肺泡上皮细胞系(murine lung epithelial-12,MLE12)24 h,构建MLE12缺氧细胞模型,Western blot分析检测TAZ表达。CCK-8实验评价肺泡上皮细胞(alveolar epithelial cells,AECs)增殖。免疫共沉淀(co-immunoprecipitation,Co-IP)实验验证TAZ与H2A.Z二者之间的相互作用。靶向剪切及转座酶标记技术(cleavage under targets and tagmentation,CUT&Tag)测序分析TAZ影响H2A.Z在染色质沉积情况。结果缺氧显著诱导小鼠肺组织肺泡萎缩及炎症浸润(P<0.01)。缺氧培养显著上调MLE12细胞中TAZ蛋白表达(P<0.05)。CCK-8实验发现,敲低TAZ后AECs增殖能力显著下降(P<0.01)。Co-IP证实TAZ与H2A.Z存在物理相互作用。靶向剪切及转座酶标记技术(cleavage under targets and tagmentation,CUT&Tag)测序显示缺氧促进H2A.Z在染色质上的沉积(常氧结合位点31817,缺氧结合位点44078),而TAZ敲低部分逆转此现象(结合位点37840)。结论缺氧显著上调TAZ表达,后者与H2A.Z的结合并促进H2A.Z在染色质上的沉积,增强AECs增殖以应对缺氧损伤。
文摘Layered transition metal hydroxides show distinct advantages in separately co-catalyzing CO_(2)reduction and H_(2)O oxidation at the electron-accumulating and hole-accumulating sites of wrapped heterojunction photocatalysts,while concurrently preventing side reactions and photocorrosion on the semiconductor surface.Herein,Ni-Co bimetallic hydroxides with varying Ni/Co molar ratios(Ni_(x)Co_(1-x)(OH)_(2),x=1,0.75,0.5,0.25,and 0)were grown in situ on a model 2D/2D S-scheme heterojunction composed of Cu_(2)O nanosheets and Fe_(2)O_(3)nanoplates to form a series of Cu_(2)O/Fe_(2)O_(3)@Ni_(x)Co_(1-x)(OH)_(2)(CF@NiCo)photocatalysts.The combined experimental and theoretical investigation demonstrates that incorporating an appropriate amount of Co into Ni(OH)_(2)not only modulates the energy band structure of Ni_(x)Co_(1-x)(OH)_(2),balances the electron-and hole-trapping abilities of the bifunctional cocatalyst and maximizes the charge separation efficiency of the heterojunction,but also regulates the d-band center of Ni_(x)Co_(1-x)(OH)_(2),reinforcing the adsorption and activation of CO_(2)and H_(2)O on the cocatalyst surface and lowering the rate-limiting barriers in the CO_(2)-to-CO and H_(2)O-to-O_(2)conversion.Benefiting from the Ni-Co synergy,the redox reactions proceed stoichiometrically.The optimized CF@Ni_(0.75)Co_(0.25)achieves CO and O_(2)yields of 552.7 and 313.0μmol gcat^(-1)h^(-1),respectively,11.3/9.9,1.6/1.7,and 4.5/5.9-fold higher than those of CF,CF@Ni,and CF@Co.This study offers valuable insights into the design of bifunctional noble-metal-free cocatalysts for high-performance artificial photosynthesis.