首页> 外文期刊>Journal of Animal Science >HORSE SPECIES SYMPOSIUM: A novel approach to monitoring pathogen progression during uterine and placental infection in the mare using bioluminescence imaging technology and lux-modified bacteria1,2
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HORSE SPECIES SYMPOSIUM: A novel approach to monitoring pathogen progression during uterine and placental infection in the mare using bioluminescence imaging technology and lux-modified bacteria1,2

机译:马种专题讨论会:一种使用生物发光成像技术和勒克斯修饰细菌1,2监测母马子宫和胎盘感染期间病原体进展的新方法1,2

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摘要

Uterine and placental infections are the leading cause of abortion, stillbirth, and preterm delivery in the mare. Whereas uterine and placental infections in women have been studied extensively, a comprehensive examination of the pathogenic processes leading to this unsatisfactory pregnancy outcome in the mare has yet to be completed. Most information in the literature relating to late-term pregnancy loss in mares is based on retrospective studies of clinical cases submitted for necropsy. Here we report the development and application of a novel approach, whereby transgenically modified bacteria transformed with lux genes of Xenorhabdus luminescens or Photorhabdus luminescens origin and biophotonic imaging are utilized to better understand pathogen-induced preterm birth in late-term pregnant mares. This technology uses highly sensitive bioluminescence imaging camera systems to localize and monitor pathogen progression during tissue invasion by measuring the bioluminescent signatures emitted by the lux-modified pathogens. This method has an important advantage in that it allows for the potential tracking of pathogens in vivo in real time and over time, which was hitherto impossible. Although the application of this technology in domestic animals is in its infancy, investigators were successful in identifying the fetal lungs, sinuses, nares, urinary, and gastrointestinal systems as primary tissues for pathogen invasion after experimental infection of pregnant mares with lux-modified Escherichia coli. It is important that pathogens were not detected in other vital organs, such as the liver, brain, and cardiac system. Such precision in localizing sites of pathogen invasion provides potential application for this novel approach in the development of more targeted therapeutic interventions for pathogen-related diseases in the equine and other domestic species. [PUBLICATION ABSTRACT]
机译:子宫和胎盘感染是流产,死产和早产的主要原因。尽管已经对妇女的子宫和胎盘感染进行了广泛研究,但是导致母马妊娠结果不理想的致病过程的综合检查尚未完成。文献中有关母马后期妊娠流产的大多数信息都是基于对尸检的临床病例的回顾性研究。在这里,我们报告了一种新方法的开发和应用,其中利用Xenorhabdus luminescens或Photorhabdus luminescens起源和生物光子成像的lux基因转化的转基因修饰细菌可更好地了解病原体诱导的晚期妊娠母马的早产。该技术使用高灵敏度的生物发光成像相机系统,通过测量由lux修饰的病原体发出的生物发光信号来定位和监视组织入侵过程中的病原体进程。该方法具有重要的优点,因为它允许实时和随时间推移在体内实时追踪病原体,这是迄今为止不可能的。尽管该技术在家畜中的应用尚处于起步阶段,但研究人员已成功地将胎儿的肺,鼻窦,鼻孔,泌尿系统和胃肠道系统确定为实验性感染母马的lux-修饰的大肠杆菌感染后病原体入侵的主要组织。 。重要的是,在其他重要器官(例如肝脏,大脑和心脏系统)中未检测到病原体。这种在病原体入侵部位的精确定位为这种新方法提供了潜在的应用,可用于开发针对马和其他家养物种中病原体相关疾病的更具针对性的治疗性干预措施。 [出版物摘要]

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