PO.MCB09.02 · 分子与细胞生物学
胰腺导管腺癌导致全身铁分布改变
Pancreatic ductal adenocarcinoma causes altered whole-body iron distribution
作者与单位 Authors & Affiliations
摘要 Abstract
中文摘要
慢性病贫血是一种常见的贫血形式,发生于伴有急性或慢性免疫激活的多种疾病(包括癌症)患者中。慢性病贫血的一个特征是铁稳态紊乱,即网状内皮系统和外周组织内的铁摄取与滞留增加,从而将铁从循环中转移至储存部位,限制其用于红细胞生成的可及性。我们观察到,PDAC小鼠和患者表现出慢性病贫血,并在不同的PDAC小鼠模型中发现,循环中的铁可及性降低,而铁被储存于外周组织,如肌肉、胰腺、肝脏、脾脏以及许多其他器官和组织中。我们实验室已证明,外分泌功能受损是PDAC中外周组织消耗的关键驱动因素,且胰酶分泌减少可用于PDAC的早期诊断。因此,我们想知道PDAC中肠道铁吸收是否减少,令人意外的是,我们发现PDAC中肠道铁吸收增加,其原因是肠上皮细胞铁转入蛋白DMT1和铁转出蛋白Ferroportin的上调。膳食铁摄取和铁向外周组织的储存可通过同位素示踪实验研究。Fe56是自然界中主要的丰富铁同位素,因此我们使用Fe57灌注饮食来研究Fe57摄入的动力学,发现与野生型小鼠相比,PDAC小鼠血清中Fe57的丰度更低,提示铁被迅速从循环中隔离并转入外周组织。我们目前正专注于鉴定PDAC背景下肠道铁吸收增加和铁隔离的调控因子。
查看英文原文 English abstract
Anemia of chronic disease is a prevalent form of anemia that occurs in patients with acute or chronic immune activation associated with multiple diseases, including cancer. A hallmark of anemia of chronic disease is disturbed iron homeostasis, where iron uptake and retention within the reticuloendothelial system and within peripheral tissues is increased to divert iron away from circulation and into storage sites, limiting availability for erythropoiesis. We observe in PDAC mice and patients that they exhibit anemia of chronic disease and find in different mouse models of PDAC that iron availability is decreased in circulation and that instead iron is being stored in peripheral tissues such as muscle, pancreas, liver, spleen, and many other organs and tissues. Our laboratory has shown that impaired exocrine function is a key driver of peripheral tissue wasting in PDAC and that decreased pancreatic enzyme secretion can be used for early diagnosis of PDAC. Therefore, we wondered whether intestinal iron absorption is decreased in PDAC and surprisingly found increased intestinal iron absorption in PDAC due to upregulation of the enterocyte iron importer DMT1 and iron exporter Ferroportin. Iron uptake from diet and iron sequestration into peripheral tissues can be studied through isotope tracing experiments. Fe56 is the predominant naturally abundant iron isotope so we used an Fe57-infused diet to study the kinetics of Fe57 intake and found that Fe57 is less abundant in the serum from PDAC mice compared to wildtype mice, suggesting that iron is quickly sequestered from circulation and into peripheral tissues. We are now focusing on identifying the regulators of increased intestinal iron absorption and iron sequestration in the context of PDAC.
利益披露 Disclosure
A. Roopan, None..
S. Pyo, None..
Y. Zhang, None..
A. Barbeau, None..
C. Feng, None.