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中文摘要
翻译
摘要 戈登沙门氏菌生物学和发病机制研究会议(GRC)是一个国际科学会议, 会议汇集了对理解基础生物学有共同兴趣的研究人员, 致病性和对沙门氏菌血清型的免疫应答。这次会议是一次长期的会议, 最初是在美国微生物学会的赞助下举行的; 2023年会议 (因2019冠状病毒病大流行而从2021年改期)将是第二届GRC,并将在 文艺复兴时期的托斯卡纳Il Ciocco(意大利),GRC组织的一个完善的网站。2023年会议将 将于7月23日至28日举行,并将有一个相关的戈登研究研讨会(i)提供学生和博士后 沙门氏菌生物学不同领域所涉及的概念,原理和机制的基本背景 和发病机制;(ii)促进初级研究人员与同行和选定的高级研究人员的互动 该领域的成员(主旨发言人和讨论领导人); ㈢就其研究提供反馈, 在为主要会议做准备时,提高他们的演讲技巧和讨论的复杂性 以及更远的地方有必要召开一次专门讨论沙门氏菌感染生物学的会议,因为 沙门氏菌不仅是一种重要的致病原因,而且其良好的生物学、遗传学和 感染模型使其成为询问生物学许多基本方面的病原体, 包括先天免疫和适应性免疫、转录后基因调控和肠道功能 微生物群GRC将涵盖广泛的主题,从流行病学和疫苗到细胞生物学 和基因调控。与会者将包括平等分布的独立研究人员,博士后 学者和研究生。将有九个研讨会会议与会议领导人,将提供一个 概述主题并激发与会者的讨论。2023年会议将由主席组织 Renée Tsolis(加州大学戴维斯分校)和Michael Hensel(布伦瑞克大学,德国), 副主席Leigh Knodler(华盛顿州立大学)和Dirk Bumann(瑞士巴塞尔生物中心)。 这次会议提供了一个论坛,前沿研究将提出。有预留的插槽, 为博士后研究员和研究生举办专题研讨会, 有机会分享他们的发现并获得曝光。本次会议的首届GRS将由 作者:Lizbeth Camacho(加州大学戴维斯分校)和约书亚纽森(瑞士苏黎世联邦理工学院)。这 会议提供了一个环境,使调查人员之间能够建立网络和协作,并提供了后, 博士研究人员和研究生获得沙门氏菌生物学和相关领域的领导者。的 该计划包括以前没有在这次会议上介绍他们的研究的新研究人员, 包括反映耐药性沙门氏菌的重要性和新的战略, 克服抗生素耐药性。
英文摘要
ABSTRACT The Gordon Research Conference (GRC) on Salmonella Biology and Pathogenesis is an international scientific conference that brings together researchers with a shared interest in understanding the fundamental biology, pathogenesis, and immune response to Salmonella serovars. This meeting is a longstanding conference, that was originally held under the auspices of the American Society of Microbiology; the 2023 conference (rescheduled from 2021 due to the COVID-19 pandemic) will be the second GRC, and will be held at the Renaissance Tuscany Il Ciocco (Italy), a well-established site for the GRC organization. The 2023 meeting will be held July 23-28 and will have an associated Gordon Research Seminar to (i) provide students and postdocs a basic background in the concepts, principles, and mechanisms involved in different areas of Salmonella biology and pathogenesis; (ii) promote the interaction of junior investigators with their peers and selected senior members of the field (keynote speaker and discussion leaders); (iii) provide feedback on their research, thereby sharpening their presentation skills and the sophistication of their discussions in preparation for the main meeting and beyond. There is a need for a conference dedicated to the biology of Salmonella infections, because Salmonella is studied not only as an important cause of disease, but its well-characterized biology, genetics and infection models have made it the pathogen of choice to interrogate many fundamental aspects of biology, including innate and adaptive immunity, post-transcriptional gene regulation, and the function of the gut microbiota. The GRC will encompass a broad range of topics, from epidemiology and vaccines to cell biology and gene regulation. Attendees will include an equal distribution of independent investigators, post-doctoral scholars, and graduate students. There will be nine seminar sessions with session leaders that will provide an overview of the topic and stimulate discussion from the attendees. The 2023 meeting will be organized by Chairs Renée Tsolis (University of California, Davis) and Michael Hensel (University of Braunschweig, Germany) and the vice-chairs Leigh Knodler (Washington State University) and Dirk Bumann (Biozentrum, Basel, Switzerland). This meeting provides a forum where cutting edge research will be presented. There are slots reserved in thematic seminar sessions for presentations by postdoctoral fellows and graduate students, giving them an opportunity to share their discoveries and gain exposure. The inaugural GRS of this conference will be co-chaired by Lizbeth Camacho (University of California, Davis) and Joshua Newson (ETH, Zürich, Switzerland). This meeting provides an environment that enables networking and collaboration among investigators and gives post- doctoral researchers and graduate students access to leaders in Salmonella biology and related fields. The program includes new investigators that have not previously presented their research at this meeting, and includes sessions that reflect the emerging importance of antibiotic-resistant Salmonella and novel strategies to overcome antibiotic resistance.
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会议论文
Neutrophil-intrinsic role of SLC11A1/NRAMP1 in control of bacterial infection
Neutrophil-intrinsic role of SLC11A1/NRAMP1 in control of bacterial infection
Neutrophil-intrinsic role of SLC11A1/NRAMP1 in control of bacterial infection
2019 Microbial Adhesion and Signal Transduction GRC/GRS
  • 批准号:
    9752745
  • 项目类别:
  • 资助金额:
    $0.75万
  • 财政年份:
    2019
  • 负责人:
    Renee M Tsolis
  • 依托单位:
海外基金