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Статті в журналах з теми "+546.57+601.2"

1

Zhang, Zhili, Fengfeng Li, Xingxiang Ji, Jiachuan Chen, Guihua Yang, and Lucian A. Lucia. "Facile synthesis of lignosulfonate-graphene porous hydrogel for effective removal of Cr(VI) from aqueous solution." BioResources 14, no. 3 (July 12, 2019): 7001–14. http://dx.doi.org/10.15376/biores.14.3.7001-7014.

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A green and facile fabrication strategy for synthesis of lignosulfonate-graphene porous hydrogel (LGPH) was designed via incorporation of lignosulfonate (LS) into graphene oxide (GO). This process was achieved by a simple self-assembly method at low temperature, with LS serving as surface functionalization agent. Benefiting from the abundant functional groups of LS and the large surface areas of graphene oxide, the prepared LGPH hydrogel displayed 3D interconnected pores and exhibited an excellent adsorption capacity for Cr(VI) (601.2 mg/g) ions dissolved in water. Importantly, the free-standing LGPH was easily separated from water after the adsorption process, and the adsorption capacities of Cr(VI) onto LGPH maintained 439.1 mg/g after 5 adsorption-desorption cycles. The cost-effectiveness and environmental friendliness of LGPH make it a promising material for removing heavy metals from wastewater.
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Agudelo-Botero, Marcela, Rafael Valdez-Ortiz, Liliana Giraldo-Rodríguez, María Cecilia González-Robledo, Dolores Mino-León, María Fernanda Rosales-Herrera, Lucero Cahuana-Hurtado, Mario Enrique Rojas-Russell, and Claudio Alberto Dávila-Cervantes. "Overview of the burden of chronic kidney disease in Mexico: secondary data analysis based on the Global Burden of Disease Study 2017." BMJ Open 10, no. 3 (March 2020): e035285. http://dx.doi.org/10.1136/bmjopen-2019-035285.

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ObjectiveTo describe the evolution of the burden of chronic kidney disease (CKD) in Mexico by states, sex and subtypes from 1990 to 2017.DesignSecondary data analysis based on the Global Burden of Disease Study (GBD) 2017.ParticipantsMexico and its 32 states. Data were publicly available and de-identified and individuals were not involved.MethodsWe analysed age-standardised mortality rates, years of life lost (YLL) due to premature death, years lived with disability (YLD) and disability-adjusted life years (DALY), as well as the percentage of change of these indicators between 1990 and 2017.ResultsFrom 1990 to 2017, the number of deaths, YLL, YLD and DALY due to CKD increased from 12 395 to 65 033, from 330 717 to 1 544 212, from 86 416 to 210 924 and from 417 133 to 1 755 136, respectively. Age-standardised rates went from 28.7 to 58.1 for deaths (% of change 102.3), from 601.2 to 1296.7 for YLL (% of change 115.7), from 158.3 to 175.4 for YLD (% of change 10.9) and from 759.4 to 1472.2 for DALY (% of change 93.8). The highest burden of CKD was for Puebla and the lowest for Sinaloa. It was also greater for men than women. By subtypes of CKD, diabetes and hypertension were the causes that contributed most to the loss of years of healthy life in the Mexican population.ConclusionsMexico has experienced exponential and unprecedented growth in the burden of CKD with significant differences by states, sex and subtypes. Data from the GBD are key inputs to guide decision-making and focus efforts towards the reduction of inequities in CKD. These results should be considered a valuable resource that can help guide the epidemiological monitoring of this disease and prioritise the most appropriate health interventions.
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Mai, Kaile, and Roger A. Williams. "Response of Oak and Maple Seed Germination and Seedling Growth to Different Manganese Fertilizers in a Cultured Substratum." Forests 10, no. 7 (June 29, 2019): 547. http://dx.doi.org/10.3390/f10070547.

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Oak regeneration failures have been causing a slow decline in the occurrence of oak forest ecosystems in eastern North America. Accordingly, our study sought to determine a means of creating more vigorous and competitive oak seedlings by the addition of manganese (Mn) fertilizers. Seeds of northern red oak (Quercus rubra L.), chestnut oak (Quercus prinus L.), and red maple (Acer rubrum L.), one of oak’s major competitors in North America oak forest ecosystems, were sown in 0.7 liter pots that contained a growing medium mixture of peat moss, perlite, and sand in a ratio of 2:1:2, and germinated in a greenhouse. Three different chemical compound Mn fertilizer treatments—manganese chloride (0.16 mg L−1 Mn, MnCl2·4H2O), nanoparticle manganese in the form of manganese hydroxide (0.01 mg/L Mn, nanoparticle Mn(OH)2), and manganese hydroxide (0.01 mg L−1 Mn, Mn(OH)2)—and a treatment of Hoagland solution were applied to the planted seed. These treatments were compared to a control consisting of water, and treatments were applied twice a week over a 12 week period. Germination rates and seedling growth were measured over this period of time. At the end of 12 weeks seedlings were harvested, separated into roots, stem, and foliage for the purpose of biomass and nutrient analysis by seedling component. Northern red oak displayed a 100% germination success rate with MnCl2·4H2O and Mn(OH)2 treatments, while red maple germination was reduced with the MnCl2·4H2O and nanoparticle Mn(OH)2 treatments with only a 32% and 24% germination rate, respectively. The MnCl2·4H2O treatment produced the largest overall seedling size (basal diameter squared times the seedling height) of red maple with a 191.6% increase; however, the MnCl2·4H2O treatment produced the largest overall seedling size (basal diameter squared times the seedling height) of northern red oak and chestnut oak with an increase of 503.7% and 339.5%, respectively. The greatest increase in overall seedling size for northern red oak was with the Mn(OH)2 treatment at 507.2%, and 601.2% for chestnut oak with the nanoparticle Mn(OH)2 treatment. MnCl2·4H2O treatment significantly increased the oak foliar nitrogen (N) content. It appears that the application of Mn fertilizer can increase the germination and growth of these oak species while suppressing or having a lesser effect on red maple, thus creating a competitive advantage for oak over its competitor.
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Kim, Doman, Jun-Seong Park, Hee-jung Lim, Thi Thanh Hanh Nguyen, Nahyun M. Kim, Ghahyun J. Kim, Kyeonghwan Hwang, and Atsuo Kimura. "Enhancement of water soluble wheat bran polyphenolic compounds using different steviol glucosides." Functional Foods in Health and Disease 6, no. 10 (October 31, 2016): 650. http://dx.doi.org/10.31989/ffhd.v6i10.302.

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Background: Production of wheat bran (WB) for human consumption is estimated to be about 90 million tons per year. WB contains abundant source of dietary fiber, minerals, vitamins, and bioactive compounds. WB is a by-product of milling and contains abundant source carbohydrate (60%), protein (12%), fat (0.5%), minerals (2%), and bioactive compounds such as phenolic acids, arabinoxylans, flavonoids, caroteinoids alkylresorcinol and phytosterols. These are known for health promoting properties such as controlling glycemic index, reducing plasma cholesterol level, and reducing the human colon cancer cell growth antioxidant, antimicrobial, anti-inflammatory, and anticarcinogenic activities. Several terpene glycosides such as mogroside V, paenoiflorin, geniposide, rubusoside (Ru), stevioside (Ste), rebaudioside A (RebA), steviol monoside, and stevioside glucoside have been discovered to enhance the solubility of a number of pharmaceutically and medically important compounds that normally show poor solubility in water.Context and purpose of this study: In this study, to increase soluble extraction of polyphenol compounds of WB using Ru, the expression of β-galactosidase from Thermus thermophilus was optimized with different E. coli hosts and with different concentration of lactose inducer instead of isopropyl-1-thio-β-D-galactopyranoside (IPTG) for industrial production. Furthermore, the effect of different steviol glucosides (Ru, Ste, RebA, and SG) on the enhancement of polyphenol compounds extraction from wheat bran was studied. Results: β-galactosidase from Thermus thermophilus was used for the specific conversion of stevioside (Ste) to rubusoside (Ru) with 92% productivity. The enzyme was optimized to be expressed in E. coli. With 7 mM lactose, the β-galactosidase activity expressed was 34.3, 14.2, or 34.4 ± 0.5 U/mL in E. coli BL21(DE3)plysS, Rosetta(DE3)plysS, or BL21(DE3) at 37°C, and 9.8 ± 0.2, 7.0 ± 0.5, or 7.4 ± 0.2 U/mL at 28°C, respectively. The expression of β-galactosidase was dependent on the lactose concentration and the highest activity was obtained with the conditions of 5 mM lactose in E. coli Rosetta(DE3)plysS, 53.3 ± 1.5 U/mL. 78% of the mesophilic proteins was eliminated by heating at 70°C for 15 min with 89% β-galactosidase activity recovery. The total polyphenol content of WB extracted by water, Ru, Ste, rebaudioside A (RebA), and steviol glucosides (SG) were 533.8 ± 9.6 µg/mL, 633.3 ± 1.25 µg/mL, 604.4 ± 10.1 µg/mL, 654.8 ± 26.5 µg/mL, and 601.2 ± 33.4 µg/mL, respectively. The DPPH radical scavenging activity prepared by water, Ru, Ste, RebA, and SG extraction were 8.76 ± 0.3 mg/mL, 4.87 ± 0.3 mg/mL, 5.34 ± 0.22 mg/mL, 7.27 ± 0.1 mg/mL, and 7.82 ± 0.02 mg/mL, respectively.Conclusions: To increase soluble extraction of polyphenol compounds of WB using Ru, the expression of β-galactosidase from Thermus thermophilus was optimized with different E. coli hosts and with different concentration of lactose inducer instead of isopropyl-1-thio-β-D-galactopyranoside (IPTG) for industrial production of the enzyme. The highest antioxidant activity was shown in WB extracted by Ru. The number of glucosyl units attached to steviol can possibly affect the efficiency of antioxidant activity of WB extracted by steviol glucosides. Keywords: Rubusoside, ß-galactosidase, lactose induction, immobilized enzyme, wheat bran, steviol glucosides
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Rice, Corey A., Jan Fulara, Iryna Garkusha, Ádám Nagy, François-Xavier Hardy, Oliver Gause, and John P. Maier. "Electronic Spectra of Corannulenic Cations and Neutrals in Neon Matrices and Protonated Corannulene in the Gas Phase at 15 K." Zeitschrift für Physikalische Chemie 229, no. 10-12 (January 28, 2015). http://dx.doi.org/10.1515/zpch-2015-0598.

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Clements, Richard T., Alexander R. Ivanov, Gary Smejkal, Cesario Bianchi, and Frank W. Sellke. "Phosphoproteomic profile of differentially phosphorylated proteins in human myocardium before and after cardiac surgery utilizing cardioplegia and cardiopulmonary bypass." FASEB Journal 24, S1 (April 2010). http://dx.doi.org/10.1096/fasebj.24.1_supplement.601.2.

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Jang, Hye In, Myoungjun Jeoung, and Emilia Galperin. "The Role of Shoc2 in Regulating Cell Motility." FASEB Journal 27, S1 (April 2013). http://dx.doi.org/10.1096/fasebj.27.1_supplement.601.2.

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Giger, Julia, Fadia Haddad, and Kenneth M. Baldwin. "Thyroid hormone affects diabetes‐induced changes on cardiac myosin heavy chain gene expression." FASEB Journal 23, S1 (April 2009). http://dx.doi.org/10.1096/fasebj.23.1_supplement.601.2.

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Kim, Donghee, and James O. Hogan. "Properties of Ca 2+ oscillations in rat carotid body chemoreceptor cells." FASEB Journal 32, S1 (April 2018). http://dx.doi.org/10.1096/fasebj.2018.32.1_supplement.601.2.

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Agosto, Abby Joyce, Iván Cajigas, Paloma Guzzardo, Heike Krebber, and Carlos González. "An interaction between Mex67p and Upf1p at the terminal step of mRNA export facilitates mRNA translation." FASEB Journal 22, S1 (March 2008). http://dx.doi.org/10.1096/fasebj.22.1_supplement.601.2.

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Дисертації з теми "+546.57+601.2"

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Сирватка, Василь Ярославович. "Біотехнологічні аспекти використання функціоналізованих наночастинок срібла в репродуктивних технологіях та аналітичній біохімії". Doctoral thesis, Львів, 2015. https://ela.kpi.ua/handle/123456789/14344.

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