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Zhi-cheng Xu

Publications and source records attributed to Zhi-cheng Xu.

2 recordsLinked to original sources

[The effects of the humic substances on Azoreduction by Shewanella spp].

Under anaerobic conditions, Shewanella cinicaD14(T), Shewanella baltica and Shewane-lla putrefaciens are capable of high-rate azoreduction and humus reduction. The results indicated that at low concentration ( <2 mmol/L) AQS was a accelerator for bacterial azoreduction. However, when the concentration of AQS was more than 5 mmol/L a strong inhibition was occurred. On the other hand, the concentration of AQDS as high as 12 mmol/L the inhibition of azoreduction was still not exhibited, but the effect of acceleration was gradually decreased with the concentration of AQDS increasing (1 mmol/L to 12 mmol/L). 6 azo dyes (Table 1) were tested, all of which had a similar results. These results indicated that the humic substances were not only as a redox mediator during the azoreduction, but also as the competitor for electron from respiration chain. Because the humic substances could be act as the terminal electron acceptor for bacterial anaerobic respiration. AQS and AQDS exhibiting different behaviour on the azoreduction were determined by their standard redox potentials.

Anaerobiosis↗

[Experimental study on constructing small-caliber artery by tissue engineering approach].

OBJECTIVE: To investigate the possibility of constructing small-caliber artery by means of tissue engineering. METHODS: Cell-PGA mixtures were made by separately seeding 1 x 10(7) smooth muscle cells and 5 x 10(6) endothelial cells isolated from neonate umbilicus onto PGA scaffold, the cell-PGA constructs were wrapped around a silicone tube before its implantation subcutaneously to nude mice and the mice were sacrificed in 2 and 6 weeks. The tissue engineered artery (TEA) were examined both grossly and immunohistochemically. RESULTS: The gross appearance of TEA was similar to that of the natural counterparts; histologic and immunohistochemical analyses of the neoformed tissues revealed a typical artery structure, including the presence of EC at the luminal surface and the presence of SMC and collagen in the wall. CONCLUSION: TEA with histology similar to natural vessel can be constructed by tissue engineering.

Animals↗