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Molecular mechanism of bacterial drug resistance based on embedded system and rapid detection method of drug resistance gene

机译:基于嵌入式系统的细菌耐药性分子机制及耐药基因的快速检测方法

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摘要

The Molecular Mechanism of More clearly due to the current irresistible professionals and anti-microbial drug resistance. Over time, microbes became more intelligent, and, besides, the overly vigilant use of antioxidants in clinical practice brought microbial resistance to microbiologists. Anti-microbial drug resistance has been identified as an important problem in the treatment of microbial diseases. Rapid detection method based biochemical barrier systems used by microorganisms includes anti-toxin inactivation, target modification, modified penetration and "sidestep" of the metabolic pathway. Ensuring the protection of bacteria from anti-toxins, changes responsible for the protection of bacteria from all considered substances (aggregates) and anti-infective agents (genetic research) can be useful. Components of anti-toxin resistance may help physicians concerning the use of anti-microbials in a variety of situations. The system is installed for anti-infective agents to keep adverse results from contamination and their use of anti-microbial (treatment) safe disease. Movements have been made to control the spread of anti-infection safe organisms, and restrictions on the use of anti-microbes both provide an ascent to ethical species. Rules are used to select a unique range of weights and benefits related to anti-infective agents' evaluation structure and use.
机译:由于目前的不可抗拒的专业人员和抗微生物耐药性,更清晰的分子机制。随着时间的推移,微生物变得更加聪明,而且,此外,在临床实践中过度警惕地使用抗氧化剂为微生物学家带来了微生物抗性。抗微生物耐药性已被鉴定为治疗微生物疾病的重要问题。微生物使用的基于快速检测方法的生化屏障系统包括代谢途径的抗毒素灭活,靶分改性,修饰的渗透和“偏僻的渗透”。确保保护细菌免受抗毒素,负责保护来自所有所认为的物质(聚集体)和抗感染剂(遗传研究)的细菌的变化可能是有用的。抗毒素抗性的组分可以帮助医生在各种情况下使用抗微生物的使用。该系统安装用于抗感染剂,以防止污染的不利结果及其使用抗微生物(治疗)安全疾病。已经进行了控制抗感染安全生物的传播,并对抗微生物的使用的限制既提供了伦理物种的上升。规则用于选择与抗感染剂评估结构相关的独特的重量和益处。

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