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16篇 您的检索式:作者名="Regla"
    题名 作者 年代 出处 被引量
1Novel applications of Raney nickel/isopropanol:effcient system for the reduction of organic compounds显示文摘Regla I Reyes A Korber C 0,,05:1
2Chromatographic and Taxonomic evaluation of Anmnita citrina (Agaricales)显示文摘Silva E Regla M Alfonso A 1983Mycologia1983,75,6:1
3Novel applications of Raney nickel/isopropanol: efficient system for the reduction of organic compounds 显示文摘Regla I Reyes A Korber C 1997Synth Commun1997,27,5:1
4Novel applications of Raney nickel/isopropanol: effcient system for the reduction of organic compounds 显示文摘Regla I Reyes A Korber C 1997Synth Commun1997,27,5:1
5'Easy-on, easy-off' resolution of chiral l-phenylethylamine catalyzed by Candida antarctica lipase B 显示文摘Gavilan A T Escalante J Regla 1 2007Tetrahedron: Asymmetry2007,18,22:1
6' Easy-on, easy-off' resolution of chiral 1 -phenylethylamine catalyzed by Candida antarctica lipase B 显示文摘A Tones- Gavilan J Esealante I Regla 2007Tetrahedron : Asymmetry2007,18,22:1
7HzS Corrosion Inhibition of Carbon Steel by a Coconut-modi-fled Imidazoline显示文摘RINERA-GRAU L M CASALES M REGLA I 2012Intemational Journal of Electrochem Science2012,7,12:1
8H2S corrosion inhibition of carbon steel by a coconut-modified imidazoline 显示文摘RIVERA-GRAU L M CASALES M REGLA I 2012International Journal of Electrochemical Science2012,7,12:1
9One century of arsenic exposure in Latin America: A review of history and occurrence from 14 countries显示文摘Jochen Bundschuh Marta I. Litter Faruque Parvez Gabriela Román-Ross Hugo B. Nicolli Jiin-Shuh Jean Chen-Wuing Liu Dina López María A. Armienta Luiz R.G. Guilherme Alina Gomez Cuevas Lorena Cornejo Luis Cumbal Regla Toujaguez 2011Science of the Total Environment2011,,:1
10Plant hormones and nutrient signaling 显示文摘Vicente Rubio Regla Bustes Maria Luisa Irigoyen 2008Plant Molecular Biology2008,69,4:1
11Roles of Ubiquitination in the Control of Phosphate Starvation Responses in Plants显示文摘Throughout evolution, plants have evolved sophisticated adaptive responses that allow them to grow with a limited supply of phos- phate, the preferential form in which the essential macronutrient phosphorus is absorbed by plants. Most of these responses are aimed to increase phosphate availability and acquisition through the roots, to optimize its usage in metabolic processes, and to protect plants from the deleterious effects of phosphate deficiency stress. Regulation of these adaptive responses requires fine percep- tion of the external and internal phosphate levels, and a complex signal transduction pathway that integrates information on the phosphate status at the whole-plant scale. The molecular mecha-nisms that participate in phosphate homeostasis include transcriptional control of gene expression, RNA silencing mediated by microRNAs, regulatory non-coding RNAs of miRNA activity, phosphate transporter trafficking, and post-translational modification of proteins, such as phosphorylation, sumoylation and ubiquitination. Such a varied regulatory repertoire reflects the complexity intrinsic to phosphate surveying and signaling pathways. Here, we describe these regulatory mechanisms, emphasizing the increasing importance of ubiquitination in the control of phosphate starvation responses.Mónica Rojas-Triana Regla Bustos Ana Espinosa-Ruiz Salom Prat Javier Paz-Ares Vicente Rubio 2013Journal of Integrative Plant Biology2013,55,1:1
12Starch granule initiation is controlled by a heteromultimeric isoamylase in potato tubers显示文摘Regla Bustos Brendan Fahy Christopher M Hylton 2004Plant Biol2004,101,7:1
13The efficiency of CAMDEX in the diagnosis of dementia and its subtypes显示文摘Llinas Regla J Lopez Pousa S Vilalta Franch J 1995Neurologia1995,10,:1
14Inhibition of NF - :B - mediated inflammation in severe acuterespiratory syndrome eorena- virus -infected mice increases survival显示文摘DeDiego MLI N - Y J Regla - Nava JA 2014Virol2014,88,2:1
15Oxidative stress and labile plasmatic iron in anemic patients following blood therapy显示文摘AIM: To determine the plasmatic iron content and evaluate the oxidative stress(OS) markers in subjects receiving blood therapy.METHODS: Thirty-nine individuals with unspecified anemia receiving blood transfusions and 15 healthy subjects were included in the study. Anemic subjects were divided into three subgrou P:(1) those that received up to five blood transfusions(n = 14);(2) those that received from five to ten transfusions(n = 11); and(3) those that received more than ten transfusions(n = 14). Blood samples were collected by venous arm puncture and stored in tubes containing heparin. The plasma and cells were separated by centrifugation and subsequently used for analyses. Statistical analyses were performed using Kruskal-Wallis analysis of variance followed by Dunn's multiple comparison tests when appropriate.RESULTS: The eletrophoretic hemoglobin profiles of the subjects included in this study indicated that no patients presented with hemoglobinopathy. Labile plasmatic iron, ferritin, protein carbonyl, thiobarbituric acidreactive substances(TBARS) and dichlorofluorescein diacetate oxidation were significantly higher(P < 0.05), whereas total thiol levels were significantly lower(P < 0.05) in transfused subjects compared to controls. Additionally, the activity of catalase, superoxide dismutase and glutathione peroxidase were significantly lower in the transfused subjects(P < 0.05). Antioxidant enzyme activities and total thiol levels were positively correlated(P < 0.05), and negatively correlated with the levels of protein carbonyl and TBARS(P < 0.05). In contrast, protein carbonyl and TBARS were positively correlated(P < 0.05). Altogether, these data confirm the involvement of OS in patients following therapy with repeated blood transfusions.CONCLUSION: Our data reveal that changes in OS markers are correlated with levels of labile plasmatic iron and ferritin and the number of transfusions.Marília Sabo Fernandes Tatiana Tamborena Rissi Luisa Zuravski Juliana Mezzomo Carmen Regla Vargas Vanderlei Folmer Félix Alexandre Antunes Soares Vanusa Manfredini Mushtaq Ahmed Robson Luiz Puntel 2014World Journal of Experimental Medicine2014,4,3:0
16Eight Things You Can Do to Protect Sea Turtles显示文摘1. Don't leave litter on the beach. 不要在海滩上留下垃圾。deTraci Regla 2012英语画刊(初二版)2012,,2:0
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