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991.
华根霉菌丝体结合脂肪酶催化酯合成动力学拆分2-辛醇 总被引:1,自引:0,他引:1
研究了华根霉CCTCC M201021菌丝体结合脂肪酶(RCL)在非水相中催化酯合成动力学拆分外消旋2-辛醇的能力.发现RCL对该反应具有较好的光学选择性(E>100),辛酸和异辛烷分别是最佳的酰基供体和反应溶剂,体系水活度的减少对反应的光学选择性没有明显影响,但能显著提高反应初速度.在相同转化率下,通过添加3A分子筛降低体系水含量可使反应初始速度提高7.3倍.当底物浓度提高到0.230 mol/L,反应40 h时转化率达44.4%,产物酯的ee值为94.7%.与三种商品化脂肪酶进行了比较,发现在相同条件下RCL对2-辛醇的拆分不但具有较好的光学选择性(E=103.1),而且也表现出较高的反应初速度和转化率. 相似文献
992.
Chao-jiang Zhang Shuai-ting Yan Hong-guang Xu Xi-ling Xu Wei-iun Zheng 《化学物理学报(中文版)》2021,34(6):769-776
We measured the photoelectron spectra of AlnC4-(n=2-4) clusters by using size-selected anion photoelectron spectroscopy.The structures of AlnC4-/0 (n=2-4) clust... 相似文献
993.
快速发展的二维层状材料为构建新型高效的微纳发光器件和光电探测器件提供了新的平台.其中碲化镓纳米片备受关注,这是因为碲化镓从少层到块体都具有极强的发光性能,因而可以降低二维微纳器件的制备条件.然而碲化镓纳米片具有单斜和六方等多种晶相,使其发光特性和光谱结构异常复杂,目前还缺少对不同厚度碲化镓纳米片荧光光谱的系统研究.本文研究了不同厚度碲化镓纳米片的荧光光谱和拉曼光谱,以及荧光光谱从低温(4 K)到室温的演化行为.通过光谱分析,发现单斜晶相和六方晶相可能同时共存于多层碲化镓纳米片中.为了阐述相关实验结果,构建了如下原子结构模型:其中六方晶相位于纳米片的顶层与底层,而单斜晶相位于纳米片的中间位置.基于温度依赖的荧光光谱,可以获得六方晶相的光学带隙为1.849 eV,且该激子峰只能在较高温度(>200 K)下和声子辅助下才能表现出显著的荧光发射行为.进一步的实验结果确定了六方晶相的激子-声子相互作用强度约为1.24 meV/K.本工作证实了碲化镓纳米片中单斜晶相与六方晶相共存的实验现象,为研究碲化镓纳米片的晶相变化和激子动力学,以及探究碲化镓的奇异物理化学特性,提供了新的见解. 相似文献
994.
995.
铜/金修饰电极-阴离子交换色谱-直流安培法测定阿米卡星注射液组分 总被引:1,自引:0,他引:1
建立了一种用阴离子交换色谱分离、以自制铜/金修饰电极为工作电极的直流安培电化学法(DC)直接检测硫酸阿米卡星注射液中主要组分及杂质含量的分析方法。考察了流动相浓度、测定电位等参数对色谱分离和测定的影响。在固定相为CarboPacPA10阴离子交换柱、流动相为26 mmol/L NaOH的色谱条件下,检测电位为0.64 V时,阿米卡星在0.0005~0.02 g/L(r=0.9989)和0.02~0.2 g/L(r=0.9991)两个浓度范围内呈线性。与裸Au电极在采用脉冲安培检测模式(PAD)时相比,电化学检测所需要的碱性强度低(pH<13),而且测定灵敏度高,线性范围宽。本方法不需要柱前和柱后衍生化,能同时测定硫酸阿米卡星注射液中的主要组分和杂质组分。修饰电极制作方法简单,催化稳定性好,可望被应用到流动注射、毛细管电泳等其它流动体系中,对硫酸阿米卡星原料药、注射液等实际样品中的各组分进行测定。 相似文献
996.
沸水阻断多聚磷酸盐分解离子色谱法检测水产品中的多聚磷酸盐 总被引:8,自引:0,他引:8
多聚磷酸盐在水产品中的快速分解影响其准确测定.用沸水破坏使多聚磷酸盐分解的物质,并用三氯甲烷去除水产品中蛋白质等杂质,离子色谱准确测定多聚磷酸盐各组分的量.实验中采用淋洗液自动发生器产生的KOH溶液作为流动相,保护柱和分离柱采用Ionpac AG11-HC和Ionpac AS11-HC抑制电导检测,可以较好地分离所检测焦磷酸根和三偏磷酸根.该方法操作简单,检出限为10 mg/kg,当水产品中添加多聚磷酸盐标准物质浓度达到10~1000 mg/kg范围时,回收率在70%~110%之间,相对标准偏差小于12% . 相似文献
997.
In this paper,the symplectic perturbation series methodology of the non-conservative linear Hamiltonian system is presented for the structural dynamic response ... 相似文献
998.
Yanlin Feng Jiali Lin Gang He Li Liang Qijun Liu Jun Yan Qian Yao 《Molecules (Basel, Switzerland)》2022,27(15)
Pomegranate peel extract (PPE), which is abundant in polyphenols, holds immerse prospects for the treatment of airway infection. In this study, water and ethanol of 30%, 50%, and 80% were used to prepare PPE. A total of 18 phenols belonging to 8 categories of polyphenols were identified in PPE by HPLC-MS/MS. The PPE from the four extraction solvents possessed different antioxidant, antibacterial, and anti-inflammatory activities. Principal component analysis revealed that though total flavonoids (TFs), total polyphenols (TPs), and total tannins (TTs) were responsible for the reducing power of PPE, only TFs contributed to the effect of PPE in inhibiting lipid membrane peroxidation. TPs, TTs, and punicalagin were positively correlated with the antibacterial strength against S. aureus while TTs alone contributed to the inhibition of methicillin-resistant S. aureus, implying the crucial role of TT in suppressing bacteria. Meanwhile, TTs was associated with the prevention of IL-6 release. The PPE with higher contents of TPs, TTs, and punicalagin had a weaker capacity to decrease nitric oxide secretion. PPE of 30% ethanol gained the highest integrated score due to its stronger antioxidant, antibacterial, and anti-inflammatory activities. It is a suitable candidate for the therapy of respiratory tract infection. 相似文献
999.
Bingchao Qi Liqiang Song Lang Hu Dong Guo Gaotong Ren Tingwei Peng Mingchuan Liu Yexian Fang Chunyu Li Mingming Zhang Yan Li 《Experimental & molecular medicine》2022,54(7):946
Myocardial infarction (MI) is the leading cause of premature death among adults. Cardiomyocyte death and dysfunction of the remaining viable cardiomyocytes are the main pathological factors of heart failure after MI. Mitochondrial complexes are emerging as critical mediators for the regulation of cardiomyocyte function. However, the precise roles of mitochondrial complex subunits in heart failure after MI remain unclear. Here, we show that NADH:ubiquinone oxidoreductase core subunit S1 (Ndufs1) expression is decreased in the hearts of heart failure patients and mice with myocardial infarction. Furthermore, we found that cardiac-specific Ndufs1 overexpression alleviates cardiac dysfunction and myocardial fibrosis in the healing phase of MI. Our results demonstrated that Ndufs1 overexpression alleviates MI/hypoxia-induced ROS production and ROS-related apoptosis. Moreover, upregulation of Ndufs1 expression improved the reduced activity of complex I and impaired mitochondrial respiratory function caused by MI/hypoxia. Given that mitochondrial function and cardiomyocyte apoptosis are closely related to heart failure after MI, the results of this study suggest that targeting Ndufs1 may be a potential therapeutic strategy to improve cardiac function in patients with heart failure.Subject terms: Heart failure, Myocardial infarction, Myocardial infarction 相似文献
1000.
Jiamei Zhou Wenjie Wang Qiuyang Zhang Zijun Zhang Jiangna Guo Feng Yan 《Chemical science》2022,13(23):6967
Pandemic and epidemic spread of antibiotic-resistant bacterial infections would result in a huge number of fatalities globally. To combat antibiotic-resistant pathogens, new antimicrobial strategies should be explored and developed to confront bacteria without acquiring or increasing drug-resistance. Here, oxygen saturated perfluorohexane (PFH)-loaded mesoporous carbon nanoparticles (CIL@ICG/PFH@O2) with photothermal therapy (PTT) and enhanced photodynamic therapy (PDT) utility are developed for antibacterial applications. Ionic liquid groups are grafted onto the surface of mesoporous carbon nanoparticles, followed by anion-exchange with the anionic photosensitizer indocyanine green (ICG) and loading oxygen saturated PFH to prepare CIL@ICG/PFH@O2. These CIL@ICG/PFH@O2 nanoparticles exhibit effective PTT and enhanced PDT properties simultaneously upon 808 nm light irradiation. In vitro assays demonstrate that CIL@ICG/PFH@O2 shows a synergistic antibacterial action against antibiotic-resistant pathogens (methicillin-resistant Staphylococcus aureus and kanamycin-resistant Escherichia coli). Moreover, CIL@ICG/PFH@O2 could effectively kill drug-resistant bacteria in vivo to relieve inflammation and eliminate methicillin-resistant Staphylococcus aureus-wound infection under NIR irradiation, and the released oxygen can increase collagen deposition, epithelial tissue formation and blood vessel formation to promote wound healing while enhancing the PDT effect. This study proposes a platform with enhanced PTT/PDT effects for effective, controlled, and precise treatment of topical drug-resistant bacterial infections.We report oxygen saturated perfluorohexane (PFH)-loaded mesoporous carbon nanoparticles (CIL@ICG/PFH@O2) with photothermal therapy (PTT) and enhanced photodynamic therapy (PDT) utility for antibacterial applications. 相似文献