PO.TB07.02 · 肿瘤生物学
Trib3被鉴定为胰腺癌干细胞的关键治疗靶点
Trib3 identified as a key therapeutic target for pancreatic cancer stem cells
作者与单位 Authors & Affiliations
摘要 Abstract
中文摘要
背景:胰腺导管腺癌(PDAC)是最致命的癌症之一,表现出早期播散和化疗耐药。这些特征归因于一个特化的癌症干细胞(CSC)亚群。我们实验室已在胰腺导管腺(PDG)干细胞区室内界定了PDAC的起源细胞,该区域对上皮更新至关重要。CSC库的形成与维持被假设为侵袭性肿瘤生物学的基础,但该区室内的转录网络仍知之甚少。
目的:界定胰腺癌干细胞(CSC)所特有的分子通路,从而可作为靶向治疗加以利用,在根除CSC的同时保留正常的胰腺干细胞。
方法:采用基因工程小鼠模型和单细胞RNA测序,对富含CSC的(TTKS)和正常的(TT)PDG类器官进行追踪和比较。关键发现在其他小鼠和人源PDAC模型中得到验证。
结果:单细胞分析揭示干细胞和CSC标志物(Mthfd2、Slc7a5、Gadd45a)广泛上调,支持CSC中保守的干性样特征。有12个基因在PDAC CSC中特异性上调,揭示了新的CSC选择性通路。其中Trib3上调最为强烈和广泛,多个下游调控因子(beta-catenin、FOXO1、ATF4)也富集,表明Trib3驱动的网络被强力激活。
结论:确定PDAC具有独立的PDG干细胞起源,使得能够对CSC生物学进行详细探究。我们的模型表明,PDAC CSC激活了独特的存活和适应通路,其中Trib3成为核心调控因子。总体而言,这提供了新的机制见解,并将Trib3定位为一个极具吸引力的CSC靶向治疗候选对象。目前正在开展工作以理解Trib3在PDAC中CSC进展中的生物学作用。
查看英文原文 English abstract
Background: Pancreatic ductal adenocarcinoma (PDAC) is among the most lethal cancers, exhibiting early dissemination and chemoresistance. These features are attributed to a specialized subpopulation of cancer stem cells (CSCs). Our lab has defined the cell of origin for PDAC within the pancreatic duct gland (PDG) stem cell compartment, a region crucial for epithelial renewal. Creation and maintenance of the CSC pool is hypothesized to underlie aggressive tumor biology, but transcriptional networks in this compartment remain poorly characterized.
Objective: To define molecular pathways unique to pancreatic cancer stem cells (CSCs) that can be exploited as targeted therapies to eradicate CSCs while sparing normal pancreatic stem cells.
Methods: Genetically engineered mouse models and single-cell RNA sequencing were used to trace and compare CSC-enriched (TTKS) and normal (TT) PDG organoids. Key findings were validated in other mouse and human PDAC models.
Results: Single-cell analysis revealed broad upregulation of stem cell and CSC markers (Mthfd2, Slc7a5, Gadd45a), supporting conserved stem-like signatures in CSCs. Twelve genes were uniquely upregulated in PDAC CSCs, revealing new CSC-selective pathways. Trib3 was most strongly and widely upregulated among these, with multiple downstream regulators (beta-catenin, FOXO1, ATF4) also enriched, indicating robust Trib3-driven network activation.
Conclusion: Identification of a discrete PDG stem cell origin for PDAC enables detailed interrogation of CSC biology. Our model demonstrates that PDAC CSCs activate unique survival and adaptation pathways, with Trib3 emerging as a central regulator. Collectively, this provides new mechanistic insight and positions Trib3 as a compelling CSC-targeted therapeutic candidate. Work is going on to understand the biological role of Trib3 in progression of CSCs in PDAC.
利益披露 Disclosure
N. M. Aloy, None..
K. McAndrews, None..
A. Zulli, None..
K. Baldwin, None..
K. Von Maltzan, None..
S. Thayer, None.