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      • KCI등재

        Neuroinflammation after Intracerebral Hemorrhage and Potential Therapeutic Targets

        Christine Tschoe,Cheryl D. Bushnell,Pamela W. Duncan,Martha A. Alexander-Miller,Stacey Q. Wolfe 대한뇌졸중학회 2020 Journal of stroke Vol.22 No.1

        Spontaneous intracerebral hemorrhage (ICH) is a catastrophic illness causing significant morbidity and mortality. Despite advances in surgical technique addressing primary brain injury caused by ICH, little progress has been made treating the subsequent inflammatory cascade. Pre-clinical studies have made advancements identifying components of neuroinflammation, including microglia, astrocytes, and T lymphocytes. After cerebral insult, inflammation is initially driven by the M1 microglia, secreting cytokines (e.g., interleukin-1β [IL-1β] and tumor necrosis factor-α) that are involved in the breakdown of the extracellular matrix, cellular integrity, and the blood brain barrier. Additionally, inflammatory factors recruit and induce differentiation of A1 reactive astrocytes and T helper 1 (Th1) cells, which contribute to the secretion of inflammatory cytokines, augmenting M1 polarization and potentiating inflammation. Within 7 days of ICH ictus, the M1 phenotype coverts to a M2 phenotype, key for hematoma removal, tissue healing, and overall resolution of inflammation. The secretion of anti-inflammatory cytokines (e.g., IL-4, IL-10) can drive Th2 cell differentiation. M2 polarization is maintained by the secretion of additional antiinflammatory cytokines by the Th2 cells, suppressing M1 and Th1 phenotypes. Elucidating the timing and trigger of the anti-inflammatory phenotype may be integral in improving clinical outcomes. A challenge in current translational research is the absence of an equivalent disease animal model mirroring the patient population and comorbid pathophysiologic state. We review existing data and describe potential therapeutic targets around which we are creating a bench to bedside translational research model that better reflects the pathophysiology of ICH patients.

      • Energy and environment policy case for a global project on artificial photosynthesis

        Faunce, Thomas A.,Lubitz, Wolfgang,Rutherford, A. W. (Bill),MacFarlane, Douglas,Moore, Gary F.,Yang, Peidong,Nocera, Daniel G.,Moore, Tom A.,Gregory, Duncan H.,Fukuzumi, Shunichi,Yoon, Kyung Byung,Arm The Royal Society of Chemistry 2013 Energy & environmental science Vol.6 No.3

        <P>A policy case is made for a global project on artificial photosynthesis including its scientific justification, potential governance structure and funding mechanisms.</P> <P>Graphic Abstract</P><P>Lord Howe Island August 2011-site of the first International Conference on a Global Artificial Photosynthesis (GAP) Project <IMG SRC='http://pubs.rsc.org/services/images/RSCpubs.ePlatform.Service.FreeContent.ImageService.svc/ImageService/image/GA?id=c3ee00063j'> </P>

      • KCI등재

        High-Rosmarinic Acid Spearmint Tea in the Management of Knee Osteoarthritis Symptoms

        A. Erin Connelly,Amy J. Tucker,Hilary Tulk,Marisa Catapang,Lindsey Chapman,Natasha Sheikh,Svitlana Yurchenko,Ron Fletcher,Laima S. Kott,Alison M. Duncan,Amanda J. Wright 한국식품영양과학회 2014 Journal of medicinal food Vol.17 No.12

        Individuals with medically diagnosed knee osteoarthritis (OA) participated in a randomized, double-blind study to investigate the effects of a high-rosmarinic acid (rosA) spearmint tea. Sixty-two participants were randomized by sex and screening pain score to consume tea brewed from a high-rosA spearmint variety or a commercially available spearmint twice daily for 16 weeks. Pain, quality of life (QoL), and physical function at baseline and week 16 were assessed using the Western Ontario and McMaster Universities Osteoarthritis Index (WOMAC), Short-Form 36-item Health Survey (SF-36), 6-minute walk test (6MWT), and stair climb test (SCT). Data from 46 participants (mean age = 60.7; BMI = 32.9 kg/m2) were analyzed. Pain score significantly decreased from week 0 to 16 for the high-rosA group but not for the control group and scores for stiffness and physical disability significantly decreased from week 0 to 16 for both groups. Increased QoL score on the bodily pain index in the SF-36 was observed at week 16 within the high-rosA group only, although no significant differences were observed between the groups. A nonsignificant improvement was observed in the 6MWT at week 16 in the high-rosA group only. There were no changes in the SCT for either group. Therefore, 16-week daily consumption of the highrosA and commercial spearmint teas significantly improved stiffness and physical disability scores in adults with knee OA, but only the high-rosA tea significantly decreased pain. Consumption of high-rosA tea warrants further consideration as a potential complementary therapy to reduce pain in OA. Clinical Trial Registration Number: NCT01380015.

      • KCI등재

        Differences in Caco-2 Cell Attachment, Migration on Collagen and Fibronectin Coated Polyelectrolyte Surfaces

        N. Zanina,L. Mora,A. Othmane,M. Bénard,A. Duncan,T. Jouenne,D. Vaudry,M. Souiri 한국생물공학회 2013 Biotechnology and Bioprocess Engineering Vol.18 No.1

        Metastasis mechanisms depend on cell metabolism changes, migration and adhesion to different tissues. To understand their choice of interaction site, the tumoral cell adhesion to model surfaces was studied. The response of Caco-2 tumoral cells cultured on polyelectrolyte filmfunctionalized surfaces with or without adhesion proteins (fibronectin or collagen IV) was analyzed. Using the layerby-layer method, multilayer films were prepared with cationic poly(allylamine hydrochloride) and anionic poly(sodium 4-styrenesulfonate) polyelectrolytes. Film surface wettability was evaluated. The electrochemical impedance spectroscopy analyses were carried out to control the elaborated surfaces on which Caco-2 tumoral cells were cultured. The cell velocity was studied by video-microscopy and a cell colorimetric assay (WST-1) was used to quantify cell viability. The film surface parameters as well as the protein nature and localization in the film were found to modulate cell response. Results demonstrated that the cancer cell motility and proliferation were higher when cultured onto pure collagen located above the polyelectrolyte film and that the reverse surprisingly was observed when proteins were inserted into the polyelectrolyte film. Data also showed that cell motility was correlated with a high charge transfer resistance (Rct) and a low surface free energy (SFE)polar component (electron donor character). This relationship was valid only for pure external proteins. Thus, fibronectin exhibited a low Rct and a high SFE polar component,which decreased cell motility and proliferation.

      • SCOPUSSCIE

        The influence of foreign vs. North American emissions on surface ozone in the US

        Reidmiller, D. R.,Fiore, A. M.,Jaffe, D. A.,Bergmann, D.,Cuvelier, C.,Dentener, F. J.,Duncan, B. N.,Folberth, G.,Gauss, M.,Gong, S.,Hess, P.,Jonson, J. E.,Keating, T.,Lupu, A.,Marmer, E.,Park, R.,Schu Copernicus GmbH 2009 Atmospheric Chemistry and Physics Vol.9 No.14

        <P>Abstract. As part of the Hemispheric Transport of Air Pollution (HTAP; http:// www.htap.org) project, we analyze results from 15 global and 1 hemispheric chemical transport models and compare these to Clean Air Status and Trends Network (CASTNet) observations in the United States (US) for 2001. Using the policy-relevant maximum daily 8-h average ozone (MDA8 O3) statistic, the multi-model ensemble represents the observations well (mean r2=0.57, ensemble bias = +4.1 ppbv for all US regions and all seasons) despite a wide range in the individual model results. Correlations are strongest in the northeastern US during spring and fall (r2=0.68); and weakest in the midwestern US in summer (r2=0.46). However, large positive mean biases exist during summer for all eastern US regions, ranging from 10-20 ppbv, and a smaller negative bias is present in the western US during spring (~3 ppbv). In nearly all other regions and seasons, the biases of the model ensemble simulations are ≤5 ppbv. Sensitivity simulations in which anthropogenic O3-precursor emissions (NOx + NMVOC + CO + aerosols) were decreased by 20% in four source regions: East Asia (EA), South Asia (SA), Europe (EU) and North America (NA) show that the greatest response of MDA8 O3 to the summed foreign emissions reductions occurs during spring in the West (0.9 ppbv reduction due to 20% emissions reductions from EA + SA + EU). East Asia is the largest contributor to MDA8 O3 at all ranges of the O3 distribution for most regions (typically ~0.45 ppbv) followed closely by Europe. The exception is in the northeastern US where emissions reductions in EU had a slightly greater influence than EA emissions, particularly in the middle of the MDA8 O3 distribution (response of ~0.35 ppbv between 35-55 ppbv). EA and EU influences are both far greater (about 4x) than that from SA in all regions and seasons. In all regions and seasons O3-precursor emissions reductions of 20% in the NA source region decrease MDA8 O3 the most - by a factor of 2 to nearly 10 relative to foreign emissions reductions. The O3 response to anthropogenic NA emissions is greatest in the eastern US during summer at the high end of the O3 distribution (5-6 ppbv for 20% reductions). While the impact of foreign emissions on surface O3 in the US is not negligible - and is of increasing concern given the recent growth in Asian emissions - domestic emissions reductions remain a far more effective means of decreasing MDA8 O3 values, particularly those above 75 ppb (the current US standard). </P>

      • THE EVOLUTION OF THE GALAXY STELLAR MASS FUNCTION AT<i>z</i>= 4-8: A STEEPENING LOW-MASS-END SLOPE WITH INCREASING REDSHIFT

        Song, Mimi,Finkelstein, Steven L.,Ashby, Matthew L. N.,Grazian, A.,Lu, Yu,Papovich, Casey,Salmon, Brett,Somerville, Rachel S.,Dickinson, Mark,Duncan, K.,Faber, Sandy M.,Fazio, Giovanni G.,Ferguson, He American Astronomical Society 2016 The Astrophysical Journal Vol.825 No.1

        <P>We present galaxy stellar mass functions (GSMFs) at z = 4-8 from a rest-frame ultraviolet (UV) selected sample of similar to 4500 galaxies, found via photometric redshifts over an area of similar to 280 arcmin(2) in the Cosmic Assembly Near-infrared Deep Extragalactic Legacy Survey (CANDELS)/Great Observatories Origins Deep Survey (GOODS) fields and the Hubble Ultra Deep Field. The deepest Spitzer/IRAC data to date and the relatively large volume allow us to place a better constraint at both the low- and high-mass ends of the GSMFs compared to previous space-based studies from pre-CANDELS observations. Supplemented by a stacking analysis, we find a linear correlation between the rest-frame UV absolute magnitude at 1500 angstrom (M-UV) and logarithmic stellar mass (log M-*) that holds for galaxies with log(M-*/M-circle dot) less than or similar to 10. We use simulations to validate our method of measuring the slope of the log M-*-M-UV relation, finding that the bias is minimized with a hybrid technique combining photometry of individual bright galaxies with stacked photometry for faint galaxies. The resultant measured slopes do not significantly evolve over z = 4-8, while the normalization of the trend exhibits a weak evolution toward lower masses at higher redshift. We combine the log M-*-M-UV distribution with observed rest-frame UV luminosity functions at each redshift to derive the GSMFs, finding that the low-mass-end slope becomes steeper with increasing redshift from alpha = -1.55(-0.07)(+0.08) at z = 4 to alpha = -2.25(-0.35)(+0.72) at z = 8. The inferred stellar mass density, when integrated over M-* = 10(8)-10(13) M-circle dot, increases by a factor of 10(-2)(+30) between z = 7 and z = 4 and is in good agreement with the time integral of the cosmic star formation rate density.</P>

      • KCI등재
      • Will CFD ever Replace Wind Tunnels for Building Wind Simulations?

        Phillips, Duncan A.,Soligo, Michael J. Council on Tall Building and Urban Habitat Korea 2019 International journal of high-rise buildings Vol.8 No.2

        The use of computational fluid dynamics (CFD) is becoming an increasingly popular means to model wind flows in and around buildings. The first published application of CFD to both indoor and outdoor building airflows was in the 1970's. Since then, CFD usage has expanded to include different aspects of building design. Wind tunnel testing (WTT) on buildings for wind loads goes back as far as 1908. Gustave Eiffel built a pair of wind tunnels in 1908 and 1912. Using these he published wind loads on an aircraft hangar in 1919 as cited in Hoerner (1965 - page 74). The second of these wind tunnels is still in use today for tests including building design ($Damljanovi{\acute{c}}$, 2012). The Empire State Building was tested in 1933 in smooth flow - see Baskaran (1993). The World Trade Center Twin Towers in New York City were wind tunnel tested in the mid-sixties for both wind loads, at Colorado State University (CSU) and the [US] National Physical Laboratory (NPL), as well as pedestrian level winds (PLW) at the University of Western Ontario (UWO) - Baskaran (1993). Since then, the understanding of the planetary boundary layer, recognition of the structures of turbulent wakes, instrumentation, methodologies and analysis have been continuously refined. There is a drive to replace WTT with computational methods, with the rationale that CFD is quicker, less expensive and gives more information and control to the architects. However, there is little information available to building owners and architects on the limitations of CFD for flows around buildings and communities. Hence building owners, developers, engineers and architects are not aware of the risks they incur by using CFD for different studies, traditionally conducted using wind tunnels. This paper will explain what needs to happen for CFD to replace wind tunnels. Ultimately, we anticipate the reader will come to the same conclusion that we have drawn: both WTT and CFD will continue to play important roles in building and infrastructure design. The most pressing challenge for the design and engineering community is to understand the strengths and limitations of each tool so that they can leverage and exploit the benefits that each offers while adhering to our moral and professional obligation to hold paramount the safety, health, and welfare of the public.

      • SCISCIESCOPUS

        Challenges and Opportunities for Typhoid Fever Control: A Call for Coordinated Action

        Steele, A. Duncan,Hay Burgess, Deborah C.,Diaz, Zoey,Carey, Megan E.,Zaidi, Anita K. M. Oxford University Press 2016 Clinical Infectious Diseases Vol.62//SUP1 No.-

        <P>The burden of enteric fever caused by <I>Salmonella enterica</I> serovars Typhi and Paratyphi is substantial and has high impact in toddlers and young children. This burden is relatively well documented in Asia, and this supplement provides new data on the substantial burden in several sub-Saharan African countries. Challenges in standardized surveillance and imperfect diagnostic tools have resulted in patchy local disease data, which are not well acknowledged or integrated into local country evidence and health awareness for decision making. There is a need to strengthen diagnostics for the generation of burden data in country. Furthermore, the guidelines and training for treatment of enteric fever cases in Africa are sorely needed to help mitigate the inappropriate use of antimicrobial treatment. Classic water safety and access to sanitation development remain powerful tools for the control of typhoid fever, yet the huge economic costs and long timelines are unlikely to provide a short- to middle-term solution. Emerging threats, including multidrug resistance and increasing urbanization in regions such as sub-Saharan Africa, warrant focused attention to shorter-term interventions including immunization, and must include vaccine strategies with the new typhoid conjugate vaccines.</P>

      • KCI등재

        Monitoring of E. coli Immobilization on Modified Gold Electrode: A New Bacteria-based Glucose Sensor

        N. Borghol,A. Othmane,L. Mora,T. Jouenne,A. C. Duncan,N. Jaffézic-Renault,N. Sakly,Y. Chevalier,P. Lejeune 한국생물공학회 2010 Biotechnology and Bioprocess Engineering Vol.15 No.2

        Electrochemical impedance spectroscopy (EIS)technique has proved to be an effective method for monitoring the immobilization of various bioactive species such as enzymes, DNA, whole cells, and so forth. In this work we describe the development of an electrochemical whole cell based biosensor. Biotinylated fluorescent E. coli are immobilized onto a cysteamine, Sulfo-NHS-LC-biotin,and avidin modified gold electrodes. Immobilized bacteria are clearly observed using confocal microscopy. Electrochemical measurements are based on the charge-transfer kinetics of [Fe (CN)6]3−/4− redox couple. The experimental impedance data were modelised with a computer. SAM assembly and the subsequent immobilization of bacteria on the gold bare electrodes greatly increased the electrontransfer resistance (Ret) and reduced the constant phase element (CPE). It’s interesting to note, the hard immobilization of bacteria on the surface of electrode and do not remove during measurements. The effect of glucose addition was studied in the range of 10−7 μM to 10 μM. The relation between the evolution of Ret and D-glucose concentration was found to be linear for values ranging from 10−5 μM to 10−1 μM and reached saturation for higher concentrations. Such biosensor could be applied to a more fundamental study of cell metabolism and drugs effect.

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