PO.TB10.14 · 肿瘤生物学

对胰腺癌驻留微生物的功能性探究揭示其在宿主调节中的作用

Functional interrogation of pancreatic cancer resident microbes reveals their role in host modulation

编号 4908 展板 24 时间 4/21 09:00–12:00 区域 Section 29 主讲 Vidhi Chandra, MS;PhD
分会场 Microbiome-Tumor-Immune Crosstalk
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作者与单位 Authors & Affiliations

Vidhi Chandra1, Le Li1, Seyda Baydogan1, Fuduan Peng1, Thais Bartelli1, Haoyue Liu1, Fernando Jimenez-Arancon1, David Romanin1, Javier A. Gomez1, Steven Maron2, Erick M. Riquelme3, Mark Hurd1, Anirban Maitra1, Luis A. Diaz2, Ismet Sahin4, Adriana Paulucci-Holthauzen1, Jared K. Burks1, Huamin Wang1, Jay Kolls5, James R. White6, Linghua Wang1, Michael P. Kim1, Florencia McAllister1

1UT MD Anderson Cancer Center, Houston, TX,2Memorial Sloan Kettering Cancer Center, New York, NY,3Pontificia Universidad Catolica de Chile, Santiago, Chile,4Texas Southern University, Houston, TX,5Tulane University, New Orleans, LA,6Resphera Biosciences, Baltimore, MD

摘要 Abstract

中文摘要
肿瘤驻留微生物是肿瘤微环境中一个公认的组成部分。微生物在肿瘤中的亚细胞定位及其功能仍有待确定。批量微生物分析技术缺乏亚细胞和空间分辨率,最终无法区分微生物信号或活微生物的存在。为解决这些局限,我们采用了正交方法进行微生物-宿主的功能表征。我们首先开发了先进的定量荧光成像方法,能够可视化微生物在三种不同肿瘤类型(总计n=30)中的细胞区室化分布。使用该方法,我们在区域和单细胞水平进行了空间微生物转录组学分析,以确定微生物分布并探究微生物对人胰腺肿瘤(n=55)中肿瘤细胞信号传导的调节。为确认活微生物的存在,我们对患者肿瘤和正常邻近组织标本(n=80)进行了多重培养组学(culturomics)分析,随后进行全基因组测序(WGS)分析。我们通过体外共培养实验测试了分离的临床菌株对肿瘤细胞信号通路的影响,并在遗传性荧光标记后,在小鼠模型中定义了它们对体内肿瘤生长的作用。这些实验证实了它们在促进肿瘤、驱动对治疗药物的耐药以及调节宿主信号机制中的作用。总体而言,我们的结果鉴定了癌细胞内受微生物调节的若干通路,这些通路可通过损害抗原呈递来驱动免疫逃逸。总之,我们使用多种互补的新方法表征了肿瘤的微生物生态位(MiNT),揭示了微生物对宿主细胞信号传导和患者结局的调节。可能需要采用微生物调节方法来逆转胰腺癌对治疗的耐药性。
查看英文原文 English abstract
Tumor resident microbes are a well-recognized component of the tumor microenvironment. Microbial subcellular location across tumors along with their functionality remains to be determined. Bulk microbial profiling techniques lack subcellular and spatial resolution and ultimately cannot distinguish between microbial signals or live microbial presence. To address these limitations, we performed orthogonal methods for functional microbial-host characterization. We first developed advanced quantitative fluorescent imaging methodologies that allows visualization of microbial cellular compartmentalization across three different tumor types (total n=30). Using this methodology, we performed spatial microbial transcriptomics at the regional and single cell levels to determine microbial distribution and to interrogate microbial regulation of tumor cell signaling in human pancreatic tumors (n=55). To confirm presence of viable microbes, we performed multiplexed culturomics of patient tumors and normal adjacent tissue specimens (n=80), followed by Whole Genomic Sequencing (WGS) analysis. We tested the effect of the isolated clinical strains on tumor cell signaling pathways with in vitro co-culture assays, and upon genetic fluorescent labelling we defined their role on in vivo tumor growth in murine models. These experiments confirmed their role in promoting tumors, driving resistance to therapeutics and modulation of host signaling mechanisms. Overall, our results identified several pathways under microbial regulation within cancer cells that can drive immune evasion through impaired antigen presentation. In summary, using multiple complimentary novel methodologies we characterize the microbial niche of tumors (MiNT) that uncover microbial regulation of host cell signaling and patient outcomes. Microbial modulatory approaches may be needed to reverse resistance to therapies in pancreatic cancer.
利益披露 Disclosure
V. Chandra, None.. S. Baydogan, None.. T. Bartelli, None.. H. Liu, None.. F. Jimenez-Arancon, None.. D. Romanin, None.. J. A. Gomez, None.. M. Hurd, None.. I. Sahin, None.. A. Paulucci-Holthauzen, None.. J. K. Burks, None.. M. P. Kim, None.

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