This paper reports on the behaviour of high-energy ions created by ion cyclotron range of frequency (ICRF) heating on the Large Helical Device (LHD). In the third experimental campaign conducted in 1999, it was found that minority heating has good heating performance, and high-energy particles were observed. In the fourth campaign in 2000, the temporal behaviour of high-energy ions was investigated in the minority heating regime using turnoff or modulation of ICRF power. The time evolution of the highenergy particle distribution was measured using a natural diamond detector (NDD) and a time-of-flight neutral particle analyser (TOF-NPA). It was found that the count number of higher-energy particles declines faster than that of lower-energy particles after ICRF turnoff. In the modulation experiments, the phase difference of the flux of high-energy particles with respect to the ICRF power modulation increased with energy. These results were explained qualitatively by the Fokker-Planck equation with a simple model. The
This study aims to investigate whether resveratrol (RES) could inhibit NF-κB activity and protect in vitro cultured chicken lymphocytes from apoptosis induced by continuous LPS stimulation. Blood lymphocytes of chickens were collected and cultured. LPS was added to the samples of treatment group, while the same volume of normal saline (NS) was supplemented to those of the control group. In the treatment groups, four different concentrations of RES (0, 20, 40, and 80 µg/ml) were admixed. Then, the following indicators were tested: lymphocyte apoptotic rate, lymphocyte viability, NF-κB activity, TNF-α level, reactive oxygen species (ROS), and expression of apoptosis-related proteins (Fas/FasL and Caspase-8). The results indicated that the application of different concentrations of RES could significantly increase the viability of lymphocytes and decrease the apoptotic rate (p<0.05) after continuous stimulations by LPS. The activity of NF-κB levels of TNF-α and ROS in the RES treatment subgroups was significantly decreased in comparison with that in the RES-blank subgroup (p<0.05). The cells in the treatment group that had been treated with 20, 40 and 80 μl/ml of RES exhibited a significantly lower Fas and Caspase-8 expression level than that in the RES-blank subgroup (p<0.05). These findings revealed that RES could substantially diminish the concentrations of ROS and TNF-α, down-regulate NF-κB activity, decrease the expression of Fas and Caspase-8, stimulate the activity of peripheral lymphocytes, and lower the rate of their apoptosis, induced by continuous LPS stimulation in chicken lymphocyte cultures.
This experiment aimed to investigate whether Escherichia coli (E. coli) infection could affect the TGF-β/smads signaling pathway in the jejunal tissue of chickens. One-day-old Cobb 500 broilers were randomly divided into 2 groups and treated with intraperitoneal E. coli or broth injection. Clinical signs of the birds were assessed every day. Spleen and bursa of Fabricius of the birds, post-infection (pi), were collected to evaluate immune organ index. Jejunal tissues were collected to ascertain the expression of TGF-βs, TβRs, and Smads. The results showed that the infected birds had significantly higher index of the spleen (24hrs and 48hrs pi) compared with birds in the control group (p<0.05). The relative gene expression of TGF-β4 increased (p<0.05), while the expression of Smad7 down-regulated in the E. coli group (p<0.01). There was no significant difference in TGF-β2, TGF-β3, TβR I, TβR II, Smad2, Smad3 expression (p>0.05). In conclusion, TGF-β/Smad signaling pathway was associated with the immune response of broilers in E. coli infection and TGF-β4 was the main subtype interacting with E. coli infection.
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