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91.
Yan Cao Jin Wu Tao Meng Jun Zhang Jiasong He Huiquan Li Yi Zhang 《Carbohydrate polymers》2007,69(4):665-672
Cellulose samples extracted from cornhusk have been successfully acetylated in an ionic liquid 1-allyl-3-methylimidazolium chloride (AmimCl). Without using any catalyst, cornhusk cellulose acetates (CCAs) with the degree of substitution (DS) in a range from 2.16 to 2.63 were prepared in one-step. Under the homogeneous state, the DS value of CCAs was easily controlled by the acetylation time. The obtained CCAs were characterized by means of FT-IR, 13C NMR, DSC, TGA, and a mechanical test. The NMR results showed that the distribution of the acetyl moiety among the three OH groups of the anhydroglucose unit shows a preference at the C6 position. The CCAs exhibited good solubility in some organic solvents, such as acetone and DMSO. The cast CCA films from their acetone solutions had good mechanical properties. At the end of each acetylation of cornhusk cellulose, the ionic liquid AmimCl could be effectively recovered. Therefore, this study presents a promising approach and “green process” to make use of crop by-products. 相似文献
92.
鸡肉源沙门氏菌对喹诺酮和氟喹诺酮类抗生素耐药状况及相关基因 总被引:1,自引:0,他引:1
【目的】研究分离于陕西、河南、四川和北京四省(市)鸡肉源沙门氏菌对喹诺酮和部分氟喹诺酮类抗生素的药敏性及相关耐药基因,更好地了解耐药性的产生和传播途径,确保食品安全。【方法】用琼脂稀释法测定沙门氏菌的药敏性,用PCR和基因序列测定法确定耐药沙门氏菌中与(氟)喹诺酮类抗生素耐药相关的喹诺酮类抗性决定区基因突变及质粒携带的耐药基因。【结果】390株沙门氏菌中,63.59%的菌株对萘啶酮酸产生抗性,21.28%、16.67%和14.62%的菌株分别对环丙沙星、左氧氟沙星和加替沙星产生抗性。248株萘啶酮酸抗性菌中,aac(6’)-Ib-cr、qnrA、qnrB和qnrS基因的检出率分别为20.16%、10.89%、10.08%和1.61%。83株耐环丙沙星的菌株中,gyrA和parC基因的点突变共199个;其中gyrA基因中以Ser83Phe和Asp87Gly双突变最为常见,其次分别为Ser83Phe和Asp87Asn双突变、Ser83Tyr、Ser83Phe、Asp87Gly;parC基因的65个点突变均为Ser80Arg突变。【结论】四省市中鸡肉源沙门氏菌耐药状况严重,其解旋酶和拓扑异构酶基因突变及质粒携带的耐药基因是导致沙门氏菌耐药的重要机制。 相似文献
93.
盐生植物盐地碱蓬(Suaeda salsa)的幼苗分别用0、50、100和200 mmol·L-1的NaCl、KCl和NaNO3处理15和30 d后取样并测定干鲜重、肉质化和离子含量的变化的结果显示(1)NaCl处理后植株鲜重和干重均随着NaCl浓度的增大而升高,NaNO3的效应次之,KCl则起抑制作用;(2)三种盐处理后植株肉质化水平依次为NaCl>NaNO3>KCl1(3)离子含量变化为,Na 含量依次为NaCl>NaNO3>KCl;K 含量依次为KCl>NaCl>NaNO3;Cl-含量依次为KCl>NaCl>NaNO3;(4)盐地碱蓬对NaCl的响应特别显著并具有很强的依赖性,200mmol·L-1NaCl处理30d后植物体内Na 和Cl-含量分别占干重的13.5%和10.1%.显然,盐地碱蓬是一种专性盐生植物,是一种钠和氯的超富集植物. 相似文献
94.
Fucheng He Pin Lv Xue Zhao Xi Wang Xuehan Ma Weiwei Meng Xianchun Meng Shuling Dong 《Molecular and cellular biochemistry》2014,394(1-2):137-144
MicroRNA (miRNAs) is demonstrated to be present in the blood of humans and has been increasingly suggested as a novel biomarker for various pathological processes in the heart, including myocardial infarction, myocardial remodeling and progression to heart failure. In this study, we aim to evaluate the diagnostic and prognostic value of circulating miR-328 and miR-134 in patients with acute myocardial infarction (AMI). Circulating levels of miR-328 and miR-134 were detected by quantitative real-time PCR in plasma samples from 359 AMI patients and 30 healthy volunteers. Concentrations of high-sensitivity cardiac troponin T (hs-cTnT) were measured using electrochemiluminescence-based methods. MiRNAs were assessed for discrimination of a clinical diagnosis of AMI and for association with primary clinical endpoint defined as a composite of cardiogenic death and development of heart failure within 6 months after infarction. Results showed that levels of plasma miR-328 and miR-134 were significantly higher in AMI patients than in healthy controls. Receiver operating characteristic curve analyses showed significant diagnostic value of miR-328 and miR-134 for AMI. However, neither of them was superior to hs-cTnT for the diagnosis. Additionally, increased miRNA levels were strongly associated with increased risk of mortality or heart failure within 6 months for miR-328 (OR 7.35, 95 % confidence interval 1.07–17.83, P < 0.001) and miR-134 (OR 2.28, 95 % confidence interval 1.03–11.32 P < 0.001). In conclusion, circulating miR-328 and miR-134 could be potential indicators for AMI, and the miRNA levels are associated with increased risk of mortality or development of heart failure. 相似文献
95.
Inhibition of severe acute respiratory syndrome virus replication by small interfering RNAs in mammalian cells 总被引:18,自引:0,他引:18 下载免费PDF全文
Severe acute respiratory syndrome (SARS) is an acute respiratory infectious disease that spread worldwide in early 2003. The cause was determined as a novel coronavirus (CoV), SARS-associated CoV (SARS-CoV), with a single-stranded, plus-sense RNA. To date, no effective specific treatment has been identified. To exploit the possibility of using RNA interference as a therapeutic approach to fight the disease, plasmid-mediated small interfering RNAs (siRNAs) were generated to target the SARS-CoV genome. The expression of siRNAs from two plasmids, which specifically target the viral RNA polymerase, effectively blocked the cytopathic effects of SARS-CoV on Vero cells. These two plasmids also inhibited viral replication as shown by titer assays and by an examination of viral RNA and protein levels. Thus, our results demonstrated the feasibility of developing siRNAs as effective anti-SARS drugs. 相似文献
96.
Gueorgui Kratassiouk Linda L. Pritchard Sylvain Cuvellier Andrii Vislovukh Qingwei Meng Regina Groisman 《Cell cycle (Georgetown, Tex.)》2016,15(5):667-677
MicroRNAs (miRNAs) in the AGO-containing RISC complex control messenger RNA (mRNA) translation by binding to mRNA 3′ untranslated region (3′UTR). The relationship between miRNAs and other regulatory factors that also bind to mRNA 3′UTR, such as CPEB1 (cytoplasmic polyadenylation element-binding protein), remains elusive. We found that both CPEB1 and miR-15b control the expression of WEE1, a key mammalian cell cycle regulator. Together, they repress WEE1 protein expression during G1 and S-phase. Interestingly, the 2 factors lose their inhibitory activity at the G2/M transition, at the time of the cell cycle when WEE1 expression is maximal, and, moreover, rather activate WEE1 translation in a synergistic manner. Our data show that translational regulation by RISC and CPEB1 is essential in cell cycle control and, most importantly, is coordinated, and can be switched from inhibition to activation during the cell cycle. 相似文献
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以3个菊花品种的试管苗叶片为材料,通过探讨5种抗生素硫酸卡那霉素,氨苄青霉素,头孢噻肟钠,头孢唑林钠和羧苄青霉素对其再生的影响,结果表明,硫酸卡那霉素浓度为5mg/L时能完全抑制JB、Jc的再生,15mg/L时能完全抑制JA的再生。其它4种抗生素对3个菊花品种再生影响差异很大。随着浓度升高,头孢噻肟钠使JA、JB再生率持续下降,再生率持续上升;头孢唑林钠使JA、JB、Jc再生率都持续下降;羧苄青霉素使JA、JB、Jc再生率先上升,后下降,均在400mg/L时达到峰值。对于农杆菌LBA4404,头孢噻肟钠的抑菌效果最好,其次是羧苄青霉素。 相似文献