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Itaconate (ITA) is an emerging powerhouse of innate immunity with therapeutic potential that is limited in its ability to be administered in a soluble form. A library of polyester materials that incorporate ITA into polymer backbones resulting in materials with inherent immunoregulatory behavior is developed. Harnessing hydrolytic degradation release from polyester backbones, ITA polymers result in the mechanism specific immunoregulatory properties on macrophage polarization in vitro. In a functional assay, the polymer-released ITA inhibits bacterial growth on acetate. Translation to an in vivo model of biomaterial associated inflammation, intraperitoneal injection of ITA polymers demonstrate a rapid resolution of inflammation in comparison to a control polymer silicone, demonstrating the value of sustained biomimetic presentation of ITA.  相似文献   
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A novel micromachined resonator at 45 GHz based on a defect in a periodic electromagnetic bandgap structure (EBG) and a two-pole Tchebyshev filter with 1.4% 0.15 dB equiripple bandwidth and 2.3 dB loss employing this resonator are presented in this letter. The periodic bandgap structure is realized on a 400 /spl mu/m thick high-resistivity silicon wafer using deep reactive ion etching techniques. The resonator and filter can be accessed via coplanar waveguide feeds.  相似文献   
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A sensor and dosimeter specific to inorganic and organic amine bases composed of Rhodamine B dissolved in Nafion is prepared and evaluated. UV‐vis, emission, and IR spectroscopies are used to monitor the presence of a variety of analytes, including aliphatic and aromatic amines. The Rhodamine B serves as a visual indicator of the presence of an analyte by turning from brown to pink upon exposure to aliphatic amines after sufficient exposure, thus acting as a visual monitor. The Rhodamine B also acts as a fluorescent sensor, which turns on upon exposure to the analyte. The sulfonic acid groups in the Nafion protonate the bases, giving unique signatures in the IR spectra allowing for differentiation of the bases. © 2010 Wiley Periodicals, Inc. J Appl Polym Sci, 2010  相似文献   
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The electronic conductivity of active battery materials has seldom been investigated in detail. The problem is to separate the resistance contributions located in the particle cores and in the particle surfaces. In this paper battery PbO2, the best-known model substance, has been studied.  相似文献   
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Based on a hypothesis that post-mortem cellular (chiefly nuclear) changes in the white blood cells could reliably be correlated with the time interval since death, (ti), serial observations were made on the counts (total, differential) and light-microscopically observable 'degenerations' of white blood cells obtained from 30 non-refrigerated cadavers (experimental group) and similar cells obtained from 200 hospital patients (control group). While neutrophils degenerated rapidly, lymphocytes did so slowly; the eosinophils and monocytes degenerated at rates between these extremes. In cadaveric blood total counts of identifiable leucocytes on average dropped to zero by 84 hours, identifiable eosinophils and monocytes were first to 'disappear' (by 60 hours), followed by neutrophils (by 66 hours), and finally lymphocytes: identifiable lymphocytes disappeared completely at or around 84 hours from the time of death. This 'differential degeneration' was surprising but useful. Based on the use of all four characteristics--total and differential white cell counts, differential degeneration and morphology of cells--a method for a reasonably exact estimation of ti is presented. The method is appropriate for ti up to 84 hrs (3 1/2 days). Zero white cell counts (total, differential) and bizarre morphology (unidentifiable white blood cells) indicate a ti > 84 hrs. Avenues for further research are indicated.  相似文献   
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