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喹诺酮类耐药机制
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作者 钱海伦 《四川生理科学杂志》 1991年第3期101-102,共2页
喹诺酮类药物在临床应用已近30年,耐药菌株逐年增加。据报道,1988年纽约市分离到的2833株耐药金葡菌中有149株是喹诺酮类耐药菌。除金葡菌外,主要的临床耐药菌还有绿脓杆菌、肺炎克雷伯氏菌、阴沟肠杆菌等。这类药物中最早出现耐药性的... 喹诺酮类药物在临床应用已近30年,耐药菌株逐年增加。据报道,1988年纽约市分离到的2833株耐药金葡菌中有149株是喹诺酮类耐药菌。除金葡菌外,主要的临床耐药菌还有绿脓杆菌、肺炎克雷伯氏菌、阴沟肠杆菌等。这类药物中最早出现耐药性的是萘啶酸,氟喹诺酮类对此种耐药菌仍然敏感,不产生交叉耐药性。 展开更多
关键词 耐药机制 耐药菌 喹诺酮类药物 阴沟肠杆菌 肺炎克雷伯氏菌 萘啶酸 孔蛋白通道 药金 耐药水平 高水平耐药
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Water wettability in nanoconfined environment 被引量:2
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作者 ZHOU YaHong GUO Wei JIANG Lei 《Science China(Physics,Mechanics & Astronomy)》 SCIE EI CAS 2014年第5期836-843,共8页
Water confined in nanoscale space behaves quite differently from that in the bulk.For example,in biological aquaporins and in carbon nanotubes,the traversing water molecules form a single file configuration.Water woul... Water confined in nanoscale space behaves quite differently from that in the bulk.For example,in biological aquaporins and in carbon nanotubes,the traversing water molecules form a single file configuration.Water would stay in vapor state in extremely hydrophobic narrow nanopores owing to the physicochemical interactions between the water molecules and the surface of the nanopore.A spontaneous wet-dry transition has been identified in both biological and artificial nanopores.The nanopore is either fulfilled with liquid water or completely empty.Based on this mechanism,the wetting and dewetting processes inside nanopores have been further developed into highly efficient nanofluidic gates that can be switched by external stimuli,such as light irradiation,electric potential,temperature,and mechanical pressure.This review briefly covers the recent progress in the special wettability in nanoconfined environment,water transportation through biological or artificial nanochannels,as well as the smart nanofluidic gating system controlled by the water wettability. 展开更多
关键词 WETTABILITY NANOPORE hydrophobic interaction ion channels GATING
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