PO.TB07.01 · 肿瘤生物学
母体肥胖重编程肠道干细胞以升高后代结直肠癌风险
Maternal obesity reprograms intestinal stem cells to elevate colorectal cancer risk in offspring
作者与单位 Authors & Affiliations
摘要 Abstract
中文摘要
母体肥胖在流行病学上已被关联到后代散发性结直肠癌(CRC)风险的增加,而CRC是全球第三大最常见的癌症。这一关联凸显了早期生命暴露对长期健康和疾病易感性的持久影响。肠道干细胞(ISC)是维持上皮更新的长寿命细胞,常作为肠道癌症的起源,被认为在介导这种升高的癌症风险中发挥核心作用。然而,母体肥胖如何塑造其后代ISC的早期生命编程和成熟仍知之甚少。利用饮食诱导肥胖的小鼠模型,我们发现,在出生前和出生后发育期间暴露于母体高脂西方饮食(HFD)的后代表现出结肠增殖增加、干细胞自我更新增强以及一种持续至成年的高代谢状态,即使在饮食恢复正常后依然如此。除干细胞特性的改变外,我们还观察到上皮细胞组成发生显著变化,其特征是分泌谱系细胞增加而以吸收性肠上皮细胞为代价,且这些变化持续至成年生活。此外,这些变化还伴随着Apc杂合性缺失模型中肿瘤负荷的增加。我们的数据表明,促炎细胞因子IL-17a在介导这些变化中起关键作用。具体而言,在母体HFD暴露的后代中,受体IL-17RA/C在ISC和分泌细胞中的表达显著上调。向肠道类器官施加IL-17a通过模拟母体致肥表型证明了其充分性,表明免疫-上皮相互作用影响ISC功能,可能是持久分子模式形成的驱动因素。这些发现强调了母体HFD暴露对肠道干细胞活性和上皮组成的长期后果,并可能在后代日后更高的CRC风险中起作用。
查看英文原文 English abstract
Maternal obesity has been epidemiologically linked to an increased risk of sporadic colorectal cancer (CRC) in offspring, the third most prevalent cancer worldwide. This association underscores the lasting influence of early-life exposures on long-term health and disease susceptibility. Intestinal stem cells (ISCs), the long-lived cells that sustain epithelial renewal and often serve as the origin of intestinal cancers, are thought to play a central role in mediating this elevated cancer risk. However, how maternal obesity shapes the early-life programming and maturation of ISCs in their offspring remains poorly understood. Using mouse models of diet-induced obesity, we show that offspring exposed to a maternal high-fat Western diet (HFD) during pre- and postnatal development exhibit increased colonic proliferation, enhanced stem cell self-renewal, and a hypermetabolic state that persists into adulthood, even after dietary normalization. Alongside changes in stem cell properties, we observe a significant shift in epithelial cell composition, characterized by an increase in cells of secretory lineage at the expense of absorptive enterocytes, and these changes endure into adult life. Additionally, these changes are accompanied by an increased tumor burden in the loss of Apc heterozygosity model. Our data indicate that IL-17a, a pro-inflammatory cytokine, is critical in mediating these changes. Specifically, receptor IL-17RA/C expression is significantly upregulated in ISCs and secretory cells in maternal HFD-exposed offspring. Administration of IL-17a to intestinal organoids demonstrates sufficiency by mimicking the maternal obesogenic phenotype, indicating that immune-epithelial interactions influence ISC function and may be a driver of durable molecular patterning. These findings emphasize the long-term consequences of maternal HFD exposure on intestinal stem cell activity and epithelial composition, and possibly contribute to a higher risk of CRC in offspring later in life.
利益披露 Disclosure
G. Lahiri, None..
K. Mullen, None..
Y. B. Millan, None..
S. Sankar, None..
D. R. Saiz, None..
T. H. McDermott, None..
M. Blatt, None..
A. Shukla, None..
K. Khazaie, None..
M. D. Mana, None.