1.Exploration and practice of teaching reform in Synthetic Biology.
Bo ZHANG ; Lianggang HUANG ; Aiping PANG ; Zheyan WU ; Junping ZHOU ; Xue CAI ; Lijuan WANG ; Kun NIU ; Liqun JIN ; Zhiqiang LIU ; Yuguo ZHENG
Chinese Journal of Biotechnology 2025;41(8):3311-3317
Synthetic biology is a crucial tool for the development of the bio-industry and bio-economy, representing a significant aspect of new quality productive forces. As a core course for graduate students in bioengineering, Synthetic Biology plays a vital role in ensuring the supply of essential talents for the development of the bio-industry in the new era. To better serve regional economic development and provide high-level talents for China's progress in the bio-industry, we analyzed typical issues encountered in the past teaching activities, set up a multi-disciplinary teaching team, optimized the course contents, adjusted the teaching mode, and mobilized students' learning interest. With the application of scientific research project as the starting point, we guided students to think and discuss deeply through the simulation of application writing and project defense, which improved students' critical thinking and innovative thinking. With industrialization as a focus, we explored a new training model combining production, education, and research through the joint practice base of the university and enterprises introduced typical cases of biomanufacturing to encourage students to engage in scientific research. The teaching reform significantly enhances the comprehensive abilities and national sentiments of graduate students. This paper hopes to serve as a reference for colleagues engaged in teaching in this field.
Synthetic Biology/education*
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Teaching
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China
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Humans
2.Effects of dexmedetomidine on the glycometabolism rate-limiting enzymes in erythrocytes and the plasma levels of glucose and malondialdehyde in patients undergoing radicalgastrectomy for cancer
Mingyan SU ; Xiaokun ZHANG ; Zheyan WANG ; Wei GU ; Yao WU ; Xiaoping GU ; Zhengliang MA
The Journal of Clinical Anesthesiology 2016;32(12):1162-1164
Objective To investigate the effects of dexmedetomidine on the activities of glycome-tabolism rate-limiting enzymes in erythrocytes and the plasma levels of glucose and malondialdehyde in pa-tients undergoing radical gastrectomy for cancer.Methods Sixty patients,38 males and 22 females,aged 60-80 years,scheduled for radical gastrectomy for cancer were randomly divided into dexmedetomidine group (group D)and control group (group C),30 cases in each group.The patients in group D were intra-venously infused 0.5 μg/kg dexmedetomidine 10 minutes before operation and perioperatively followed by an infusion at a rate of 0.3 μg·kg-1 ·h-1 until the abdomen were closed.Group C was infused the same a-mount of normal saline.Venous blood samples were collected for the measurement of phosphofructokinase (PFK),glucose-6-phasphate dehydrogenase (G-6PD)and aldose reductase (AR)activities in erythrocytes and the plasma levels of glucose and malondialdehyde (MDA)before induction (T0 ),60 min following the incision (T1 ),60 min (T2 ),day 1 (T3 )and day 2 (T4 )after operation.Results Compared with these at T0 ,the activity of PFK was decreased significantly and the activities of G-6PD and AR were increased markedly at T3 in both groups (P <0.05 or P <0.01),however the activity of the PFK was significantly higher,G-6PD and AR were significantly lower in group D than those in group C (P <0.05).The levels of plasma glucose elevated significantly at T1 (P <0.01),reached high peak values at T3 (P <0.01)and fell at T4 in both groups.The values of plasma glucose in group D were lower than those in group C at T1 ,T2 and T3 (P <0.01).The MDA concentration in both groups increased significantly at T3 (P <0.01),while that of group D was lower than group C (P < 0.05 ).Conclusion Dexmedetomidine could markedly decrease glucose level and alleviate oxidative stress and improve these erythrocyte glucose metabolism changes after radical gastrectomy for cancer in old patients.

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