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Intestinal hephaestin potentiates iron absorption in weanling adult and pregnant mice under physiological conditions

机译:在生理条件下肠肝素能增强断奶成年和妊娠小鼠的铁吸收

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摘要

Regulation of intestinal iron absorption is crucial to maintain body iron levels because humans have no regulated iron-excretory system. Elucidating molecular events that mediate intestinal iron transport is thus important for the development of therapeutic approaches to modify iron absorption in pathological states. The process of iron uptake into duodenal enterocytes is relatively well understood, but less is known about the functional coupling between the iron exporter ferroportin 1 and the basolateral membrane iron oxidase hephaestin (Heph). Initial characterization of intestine-specific Heph knockout (Hephint) mice demonstrated that adult male mice were mildly iron deficient; however, the specific role of intestinal Heph has not been determined in weanling mice, in female mice, or during physiological states which stimulate iron absorption. Furthermore, because ferroportin 1–mediated iron export from some tissues (eg, liver) is impaired in the absence of the Heph homolog, ceruloplasmin, we hypothesized that Heph is rate limiting for intestinal iron absorption, especially when iron demands increase. Our experimental approach was to assess various physiological parameters and iron (59Fe) absorption and tissue distribution in weanling, adult, and pregnant Hephint mice (and controls) under physiological conditions and in adult Hephint mice after dietary iron deprivation or acute hemolysis. Results demonstrate that intestinal Heph is essential for optimal iron transport in weanlings and adults of both sexes and during pregnancy, but not in adult mice with iron-deficiency or hemolytic anemia. Moreover, activation of unidentified, intestinal ferroxidases was noted, which may explain why intestinal Heph is not always required for optimal iron absorption.
机译:肠道铁吸收的调节对于维持人体铁水平至关重要,因为人类没有调节的铁排泄系统。因此,阐明介导肠内铁运输的分子事件对于开发改变病理状态下铁吸收的治疗方法很重要。铁吸收进入十二指肠肠上皮细胞的过程是相当了解的,但对铁输出铁转运蛋白1和基底外侧膜铁氧化酶肝素(Heph)之间的功能偶联了解较少。肠道特异的Heph基因敲除(Heph int )小鼠的初步特征表明成年雄性小鼠轻度缺铁。但是,尚未在断奶小鼠,雌性小鼠或刺激铁吸收的生理状态下确定肠Heph的特殊作用。此外,由于在缺乏Heph同源物ceruloplasmin的情况下,铁转运蛋白1介导的某些组织(例如,肝脏)铁的输出受到损害,因此我们假设Heph限制了肠道铁的吸收,特别是当铁需求增加时。我们的实验方法是评估生理条件下断奶,成年和怀孕的Heph int 小鼠(和对照组)的各种生理参数以及铁( 59 Fe)的吸收和组织分布以及饮食中的铁缺乏或急性溶血后成年Heph int 小鼠。结果表明,肠道Heph对于在断奶和成年男女中以及在怀孕期间的最佳铁运输至关重要,但对于患有铁缺乏症或溶血性贫血的成年小鼠则并非如此。此外,未激活的肠道铁氧化酶被激活,这可以解释为什么最佳的铁吸收并不总是需要肠Heph。

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