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101.
Improving the sensitivity of DNA biosensors is extremely important in clinical diagnostics, gene therapy, and a variety of other biomedical studies. In this regard, we have developed a highly sensitive single molecule DNA assay platform with a 1fM experimental detection limit using enzymatic amplification in an array of femtoliter-sized reaction wells. To validate the utility of this technology in our study, we employed a fiber optic array to create thousands of femtoliter-sized reaction wells, each specifically functionalized with oligonucleotide probes capable of capturing biotinylated target DNA. After hybridization, the fiber was incubated with streptavidin-labeled enzyme solution. The bound single enzyme molecules were confined to individual reaction vessels containing excess fluorogenic substrate and catalyzed the production of a sufficient number of fluorescent product molecules to generate a detectable signal. At low target DNA concentrations with relatively short incubation times, only a small percentage of the capture sites bind target DNA, enabling a binary readout of target concentration from the high-density fiber array. This simple binary readout-based scheme is easy to perform and exhibits a high signal-to-noise ratio in the presence of trace amounts of DNA target. Furthermore, it also should be possible to extend this technology to protein detection by modifying the reaction wells with specific capture antibodies. We expect this assay to be useful in a number of biomedical applications where accurate and highly sensitive target analysis is critical. 相似文献
102.
Structural and mechanistic investigation of a phosphate-modified HZSM-5 catalyst for methanol conversion 总被引:1,自引:0,他引:1
Abubakar SM Marcus DM Lee JC Ehresmann JO Chen CY Kletnieks PW Guenther DR Hayman MJ Pavlova M Nicholas JB Haw JF 《Langmuir : the ACS journal of surfaces and colloids》2006,22(10):4846-4852
Phosphorus modification of a HZSM-5 (MFI) zeolite by wet impregnation has long been known to decrease aromatic formation in methanol conversion chemistry. We prepared and studied a catalyst modified by introducing trimethylphosphine under reaction conditions followed by oxidation. Magic-angle spinning (MAS) NMR shows that extensive dealumination occurs, resulting in a catalyst with a much higher framework SiO2/Al2O3 ratio, as well as extraframework aluminum and approximately 1.4 equiv of entrained phosphoric acid (under working conditions) per aluminum. Upon dehydration or regeneration, the phosphoric acid is converted, reversibly, to entrained P4O10. The aromatic selectivity of the modified catalyst is significantly lower than that of an unmodified zeolite with a similar, increased framework SiO2/Al2O3 ratio. By comparing the rates of H/D exchange in propene under conditions similar to those in methanol conversion chemistry, we determined that the acid site strength is indistinguishable on modified and unmodified zeolites, and this is consistent with theoretical modeling. On the phosphorus-modified zeolite, the rate of propene oligomerization is greatly suppressed, suggesting that entrained phosphate is an impediment to sterically demanding reactions. 相似文献
103.
W. R. Kirner H. C. Howard F. Breuer H. Sternberg D. F. Hayman F. Schneider H. L. van Mater E. Abrahamczik E. B. Hershberg Gertrude W. Welwood E. V. Britzke E. Hoffmann P. Röscheisen P. Brettner F. Pavelka F. Canal A. Friedrich K. Schwarz E. Abel F. Fabian F. Hecht D. S. Binnington M. L. Nichols W. McNevin und K. T. R. Lundgren 《Fresenius' Journal of Analytical Chemistry》1939,116(1-2):46-57
Ohne Zusammenfassung 相似文献
104.
Felix Hugo Hayman 《Monatshefte für Chemie / Chemical Monthly》1888,9(1):1055-1066
Ohne ZusammenfassungZum Schlusse sei es mir gegönnt, meinem hochverehrten Lehrer, Herrn Professor Lieben, sowie Herrn Dr. Zeisel für die berathende Unterstützung, die sie mir während des Verlaufs der Arbeit in freundlichster Weise angedeihen Hessen, meinen innigsten Dank auszusprechen. 相似文献