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Tripterygium wilfordii Hook.f., known as Leigongteng (Thunder God Vine) in traditional Chinese medicine, has attracted much attention for its applications in relieving autoimmune disorders such as rheumatoid arthritis and systemic lupus erythematosus, and for treating cancer. Molecular analyses of the ITS and 5S rDNA sequences indicate that T. hypoglaucum and T. doianum are not distinct from T. wilfordii, while T. regelii should be recognized as a separate species. The results also demonstrate potential value of rDNA sequence data in forensic detection of adulterants derived from Celastrusangulatus in commercial samples of Leigongteng. 相似文献
965.
The analysis of structural glucan and xylan in lignocellulose was scaled down from original two-stage sulfuric acid hydrolysis
methods (Moore WE and Johnson DB 1967 Procedures for the chemical analysis of wood and wood products. U.S. Forest Products
Laboratory, U.S. Department of Agriculture., Madison, WI) and integrated into a recently-developed, high throughput pretreatment
and enzymatic saccharification system. Novel 96 × 1.8 ml-well Hastelloy reactor plates (128 × 86 × 51 mm) based on previously
described 96-well pretreatment reactor plates were paired with custom aluminum filler plates (128 × 86 × 18 mm) for use in
Symyx Powdernium solids dispensing systems. The incorporation of glucose oxidase and xylose dehydrogenase linked assays to
speed post-hydrolysis sugar analysis dramatically reduced the time for analysis of large lignocellulosic sample sets. The
current system permits the determination of the glucan and xylan content of 96 replicates (per reactor plate) in under 6 h
and parallel plate processing increases the analysis throughput substantially. 相似文献
966.
This work examines a pH control method using ammonium (NH(4)(+)) as a sustainable proton shuttle in a CEM-equipped BES. Current generation was sustained by adding NH(3) or ammonium hydroxide (NH(4)OH) to the anolyte, controlling its pH at 7. Ammonium ion migration maintained the catholyte pH at approximately 9.25. Such NH(4)(+)/NH(3) migration accounted for 90±10% of the ionic flux in the BES. Reintroducing the volatilized NH(3) from the cathode into the anolyte maintained a suitable anolyte pH for sustained microbial-driven current generation. Hence, NH(4)(+)/NH(3) acted as a proton shuttle that is not consumed in the process. 相似文献
967.
Julia L. Blanchard Richard Law Matthew D. Castle Simon Jennings 《Theoretical Ecology》2011,4(3):289-300
Size-based food-web models, which focus on body size rather than species identity, capture the generalist and transient feeding
interactions in most marine ecosystems and are well-supported by data. Here, we develop a size-based model that incorporates
dynamic interactions between marine benthic (detritus-based) and pelagic (primary producer based) pathways to investigate
how the coupling of these pathways affects food web stability and resilience. All model configurations produced stable steady-state
size spectra. Resilience was measured by the return speed obtained from local stability analysis. Return times following large
perturbations away from steady-state were also measured. Resilience varied nonlinearly with both predator and detrital coupling,
and high resilience came from predators (1) feeding entirely in the slow benthic zone or (2) feeding across the two energy
pathways, with most food coming from the fast pelagic pathway. When most of the energy flowed through the pelagic pathway,
resilience was positively related to turnover rate. When most of the energy flowed through the benthic pathway, resilience
was negatively related to turnover rate. Analysis of the effects of large perturbations revealed that resilience for pelagic
ecosystems depended on the nature of the perturbation and the degree of benthic–pelagic coupling. Areas with very little or
no benthic–pelagic coupling (e.g. deep seas or highly stratified water columns) may return more quickly following pulses of
detrital fallout or primary production but could be much less resilient to the effects of human-induced mortality (harvesting). 相似文献
968.
Manning L Laman M Law I Bona C Aipit S Teine D Warrell J Rosanas-Urgell A Lin E Kiniboro B Vince J Hwaiwhanje I Karunajeewa H Michon P Siba P Mueller I Davis TM 《PloS one》2011,6(12):e29203
Background
Mortality from severe pediatric falciparum malaria appears low in Oceania but Plasmodium vivax is increasingly recognized as a cause of complications and death. The features and prognosis of mixed Plasmodium species infections are poorly characterized. Detailed prospective studies that include accurate malaria diagnosis and detection of co-morbidities are lacking.Methods and Findings
We followed 340 Papua New Guinean (PNG) children with PCR-confirmed severe malaria (77.1% P. falciparum, 7.9% P. vivax, 14.7% P. falciparum/vivax) hospitalized over a 3-year period. Bacterial cultures were performed to identify co-incident sepsis. Clinical management was under national guidelines. Of 262 children with severe falciparum malaria, 30.9%, 24.8% and 23.2% had impaired consciousness, severe anemia, and metabolic acidosis/hyperlactatemia, respectively. Two (0.8%) presented with hypoglycemia, seven (2.7%) were discharged with neurologic impairment, and one child died (0.4%). The 27 severe vivax malaria cases presented with similar phenotypic features to the falciparum malaria cases but respiratory distress was five times more common (P = 0.001); one child died (3.7%). The 50 children with P. falciparum/vivax infections shared phenotypic features of mono-species infections, but were more likely to present in deep coma and had the highest mortality (8.0%; P = 0.003 vs falciparum malaria). Overall, bacterial cultures were positive in only two non-fatal cases. 83.6% of the children had alpha-thalassemia trait and seven with coma/impaired consciousness had South Asian ovalocytosis (SAO).Conclusions
The low mortality from severe falciparum malaria in PNG children may reflect protective genetic factors other than alpha-thalassemia trait/SAO, good nutrition, and/or infrequent co-incident sepsis. Severe vivax malaria had similar features but severe P. falciparum/vivax infections were associated with the most severe phenotype and worst prognosis. 相似文献969.
Liwei Liu Hong Ding Ken-Tye Yong Indrajit Roy Wing-Cheung Law Atcha Kopwitthaya Rajiv Kumar Folarin Erogbogbo Xihe Zhang Paras N. Prasad 《Plasmonics (Norwell, Mass.)》2011,6(1):105-112
We report the use of biocompatible gold nanorods (GNRs) as multimodal (plasmonic and magnetic) probes for cancer cell labeling
in vitro. These multifunctional and multimodal bioconjugates were prepared by replacing cetyltrimethylammonium bromide with
a mixture of functionalized PEGylation molecules so that a variety of functionalities (e.g., magnetic resonance imaging agent
gadolinium (Gd) and biorecognition molecule transferrin (Tf)) can be easily integrated using simple chemistry. It was shown
that Gd incorporation did not interfere with the plasmonic properties of the GNRs and a strong T1 relaxivity was estimated
(10.0 mM−1 s−1), which is more than twice that of the clinical MRI agent Gd-DTPA. The large observed T1 relaxivity was possibly due to the
huge surface to volume ratio of GNR, which allowed huge amount of amine-terminated molecule to anchor on the surface, coupled
with Gd (III) ions for the enhanced relaxation of water protons. Pancreatic cancer cell overexpressing the transferring receptor
was served as the in vitro model, and the Tf-mediated uptake was demonstrated and confirmed by dark-field imaging and transmission
electron microscopy. More importantly, cell viability (MTS) assay did not reveal any sign of toxicity in these treated cells,
suggesting that PEGylated GNRs can serve as a biocompatible, multifunctional, and multimodal platform for variable bio-applications. 相似文献
970.
Background aimsCharacterization of endothelial cell–biomaterial interaction is crucial for the development of blood-contacting biomedical devices and implants. However, a crucial parameter that has largely been overlooked is the cell-seeding density.MethodsThis study investigated how varying cell-seeding density influences human umbilical vein endothelial cell (HUVEC) proliferation on three different substrata: gelatin, tissue culture polystyrene (TCPS) and poly-l-lactic acid (PLLA).ResultsThe fastest proliferation was seen on gelatin, followed by TCPS and PLLA, regardless of seeding density. On both TCPS and gelatin, maximal proliferation was attained at an initial seeding density of 1000 cells/cm2. At seeding densities above and below 1000 cells/cm2, the proliferation rate decreased sharply. On PLLA, there was a decrease in cell numbers over 7 days of culture, below a certain threshold seeding density (c. 2500–3000 cells/cm2), which meant that some of the cells were dying off rather than proliferating. Above this threshold seeding density, HUVEC displayed slow proliferation. Subsequently, quantitative real-time polymerase chain reaction (RT-qPCR) analysis of eight gene markers associated with adhesion and endothelial functionality (VEGF-A, integrin-α5, VWF, ICAM1, ICAM2, VE-cadherin, endoglin and PECAM1) was carried out on HUVEC seeded at varying densities on the three substrata. A significant downregulation of gene expression was observed at an ultralow cell-seeding density of 100 cells/cm2. This was accompanied by an extremely slow proliferation rate, probably because of an acute lack of intercellular contacts and paracrine signaling.ConclusionHence, this study demonstrates that seeding density has a profound effect on the proliferation and gene expression profile of endothelial cells seeded on different biomaterial surfaces. 相似文献