论布鲁氏菌的发病机制:寻找系统生物学和合成生物学的统一挑战。

Systems and Synthetic Biology Pub Date : 2015-06-01 Epub Date: 2014-12-21 DOI:10.1007/s11693-014-9158-2
Srikanth Chiliveru, Mahesh Appari, Prashanth Suravajhala
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引用次数: 5

摘要

布鲁氏菌病是一种由受感染动物传播给人类的人畜共患病,是广泛传播的人畜共患病之一。最近,在布鲁氏菌属中发现了6种布鲁氏菌,其中被认为对人类有毒性的有梅利伯氏菌、猪伯氏菌和流产伯氏菌。虽然这些物种的代谢活动模式在表型上有所不同,但迫切需要了解布鲁氏菌物种的发病机制。已经预见到,研制人用布鲁氏菌病疫苗需要减少抗生素的剂量。然而,布鲁氏菌发病机制的新作用仍然集中在有机体的分离和各种诊断测试上,从而导致不同的治疗周期策略。鉴于疾病的异质性,我们关注系统和合成生物学挑战,可能会提高我们对布鲁氏菌发病机制的理解。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

On Brucella pathogenesis: looking for the unified challenge in systems and synthetic biology.

On Brucella pathogenesis: looking for the unified challenge in systems and synthetic biology.

Brucellosis is a zoonotic infection transmitted to humans from infected animals and is one of the widely spread zoonoses. Recently, six species were recognized within the genus Brucella wherein B. melitensis, B. suis and B. abortus are considered virulent for humans. While these species differ phenotypically by their pattern of metabolic activities, there has been an imperative need to understand pathogenesis of Brucella species. It has been foreseen that creating a human vaccine for Brucellosis would entail decreased dose of antibiotics. However the emerging role of Brucella pathogenesis still centers on isolation of the organism and various diagnostic tests thereby leading to varying strategies of treatment cycle. In view of disease heterogeneity, we focus systems and synthetic biology challenges that might improve our understanding the Brucella pathogenesis.

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