1.Short-term effect of video-thoracoscope in the treatment of chronic obstructive pulmonary diseases accompanied with pneumothorax
Honggang KE ; Fei CAO ; Hanxuan DONG ; Yu YAN ; Qingsheng YOU ; Xiaotan WAN ; Haibing DIGN
Clinical Medicine of China 2009;25(8):861-863
Objective To study the short-term(≤1 year) effect of video-thoracoscope in the treatment of chronic obstructive pulmonary diseases (COPD) accompanied with pneumothorax.Methods 52 COPD cases with pneumothorax from June 2005 to June 2007 were divided into thoracoscope group(n=28) and open heart group(n=24).The patients were followed up at 1,6 and 12 month after surgery,for determination of BODE index,including body mass index,air block,difficulty in respiratory and motor ability.Results No operative death and servere complicatins occurred.Pneumothorax did not relapse.One month after surgery,air block was[(58.62±15.73)% vs (50.12±11.38)%],difficulty in respiratory was[(1.04±0.37)s vs( 1.72±0.45)s] and motor ability was [(387.32±52.07)m vs (318.35±61.52)m] in thoracoscope group and open heart group (P<0.05).At the six month after surgery,body mass index was[(27.19±2.18)kg/m2 vs (20.90±2.35)kg/m2] in thoracoscope group and open heart group(P<0.05);At the 12 month after operation,there was no significant difierence in BODE index between the two groups(P>0.05).Conclusions Video-thoracoscope in treating COPD with pneumothorax can remarkably improve the quality of life early after surgery.
2.Study on synthesis and antifungal activities of galloyl piperazine derivatives
Hanxuan WANG ; Jiaxiao DONG ; Ying MA ; Yue GAO ; Yongsheng JIN
Journal of Pharmaceutical Practice 2020;38(6):506-508
Objective To design, synthesize and measure antifungal activities of galloyl piperazine derivatives. Methods Trimethoxyl gallic acid was used as starting material, reacted with piperazine in the presence of PyBOP/DIEA to afford the intermediates. The target compounds were obtained through the reaction with corresponding acids after deprotection gave. The antifungal activities of the target compounds were evaluated by FLC-resistant Candida albican isolated according to the CLSI recommended method. Results 11 target compounds were synthesized and six of them showed more potent antifungal activities than gallic acid. Conclusion Galloyl piperazine derivatives could enhance antifungal activities. Galloyl moiety was an important pharmacophore, which could improve antifungal activities with the introduction of cinnamic acid and 2,3-dichlorobenzoic acid.