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P Y Yang

Publications and source records attributed to P Y Yang.

5 recordsLinked to original sources

Acidosis inhibits 1,25-(OH)2D3 but not cAMP production in response to parathyroid hormone in the rat.

Parathyroid hormone (PTH) is a major activator of renal proximal tubule 25-hydroxyvitamin D3-1-hydroxylase (1-OHase). Chronic metabolic acidosis (CMA) inhibits 1-OHase and reduces circulating 1,25-dihydroxyvitamin D3 [1,25-(OH)2D3] levels in rats fed a low-Ca diet (LCD, 0.002% Ca). To examine the cellular mechanism whereby CMA inhibits 1-OHase, PTH-dependent renal 1-OHase activity and cAMP were measured in proximal tubules isolated from rats fed LCD for 14 days and made acidotic by the addition of 1.5% ammonium chloride to the drinking water. Serum 1,25-(OH)2D3 and proximal tubule 1-OHase activity and cAMP content were lower in acidotic rats. hPTH-(1-34) (10(-7) M) in vitro increased cAMP content to equivalent concentrations in tubules from rats with CMA and from nonacidotic controls; however, PTH increased 1-OHase activity only in tubules from nonacidotic animals. Although forskolin increased tubule cAMP content to equivalent levels in tubules from acidotic and nonacidotic rats, 1-OHase activity declined in tubules from nonacidotic rats and remained suppressed in acidotic tubules. The results suggest that chronic metabolic acidosis inhibits the PTH activation of 1-OHase through alteration of one or more steps in a cAMP-independent messenger system. PTH and forskolin can increase cAMP production by acidotic and nonacidotic proximal tubules; however, 1-OHase activity is not restored to normal in acidotic tubules and nonacidotic tubule 1-OHase may be inhibited.

Acidosis

[Antigen signature analysis of dengue-2 viruses strains in Hainan China].

In this paper, we try to define the extent of antigenic variation between dengue-2 viruses from Hainan province, which had been isolated over a period of 3 years (1985-1987). The dengue-2 viruses were compared with the prototype New Guinea B strain and were subjected to antigen signature analysis. Eight strains of dengue-2 virus were analyzed by three monoclonal antibodies: flavivirus group, subcomplex dengue-2 type-specific reactive epitopes, over a range of antigen concentration. Five out of eight dengue-2 virus strains showed them to be antigenically homogeneous, and the remaining three strains showed them to be heterogeneous. Signature analysis provides a rapid and simple means to different strains derived from different sources, thus permit monitoring changes or introductions of hew dengue virus populations in certain geographic region.

Antibodies, Monoclonal

Effects of quantitative shock loadings on the constant recycle sludge concentration activated-sludge process.

The reliability of the process of Ramanathau and Gandy (Biotechnical Bioeng., 13, 125 (1971) for the completely mixed activated-sludge process holding the recycle cell concentration, Xr, as a system constant with respect to step changes in hydraluic retention time was investigated. The experiments were run at initial dilution rates of 1/8, 1/6, 1/4, and 1/2 hr-1 treating a soft drink bottling wastewater. The influent substrate concentration was maintained at 1000 mg/liter chemical oxygen demand and the hydraulic recycle ratio at 0.3. The recycle sludge concentration was maintained at about 7000 mg/liter. It was found that the system could accomodate hydraulic shock loads up to 200% positive changes and down to 50% negative changes without disruption of the effluent quality. Shorter retention time of the range studied, from 2 to 8 hr, has the advantage of shorter response time with respect to the response of the concentration of biological solids in the reactor.

Biodegradation, Environmental

The application of constant recycle solids concentration in activated sludge process.

The applicability of the model derived by Ramanathan and Gaudy (Biotechnol. Bioeng., 11, 207, (1969)) for completely mixed activated sludge treatment holding the recycle solids concentration as a system constant was investigated using an actual industrial organic wastewater. Short-term experiments were conducted at various dilution rates (1/8, 1/6, 1/4, 1/2, 1/1.5 hr-1) for two recycle solids concentration values (5000 and 7000 mg/liter). The influent substrate concentration was maintained at 1000 mg/liter COD and the hydraulic recycle ratio- alpha, was kept at 0.3. It was found that for bottling plant (Pepsi Cola) wastewaters, a steady state with respect to reactor biological solids and effluent COD, at different dilution rates, could be attained, lending experimental evidence to the assumption that a steady state could be reached in developing the model and also affecting the applicability of the model in industrial organic wastewater. The reactor biological solids and effluent COD calculated from the model closely agreed with the observed values at dilution rates lower than 0.5 hr-1. Operation at dilution rates higher than 0.5 hr-1 will washout the biological solids from the reactor and the recycle substrate concentration will be apparent if the concentration of XR were not increased.

Biodegradation, Environmental