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Paneth cell ablation in the presence of Klebsiella pneumoniae induces necrotizing enterocolitis (NEC)-like injury in the small intestine of immature mice

机译:肺炎克雷伯氏菌存在下的Paneth细胞消融诱导未成熟小鼠小肠坏死性小肠结肠炎(NEC)样损伤

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Necrotizing enterocolitis (NEC) is a leading cause of morbidity and mortality in premature infants. During NEC pathogenesis, bacteria are able to penetrate innate immune defenses and invade the intestinal epithelial layer, causing subsequent inflammation and tissue necrosis. Normally, Paneth cells appear in the intestinal crypts during the first trimester of human pregnancy. Paneth cells constitute a major component of the innate immune system by producing multiple antimicrobial peptides and proinflammatory mediators. To better understand the possible role of Paneth cell disruption in NEC, we quantified the number of Paneth cells present in infants with NEC and found that they were significantly decreased compared with age-matched controls. We were able to model this loss in the intestine of postnatal day (P)14-P16 (immature) mice by treating them with the zinc chelator dithizone. Intestines from dithizone-treated animals retained approximately half the number of Paneth cells compared with controls. Furthermore, by combining dithizone treatment with exposure to Klebsiella pneumoniae , we were able to induce intestinal injury and inflammatory induction that resembles human NEC. Additionally, this novel Paneth cell ablation model produces NEC-like pathology that is consistent with other currently used animal models, but this technique is simpler to use, can be used in older animals that have been dam fed, and represents a novel line of investigation to study NEC pathogenesis and treatment.
机译:坏死性小肠结肠炎(NEC)是早产儿发病和死亡的主要原因。在NEC发病机理中,细菌能够穿透先天的免疫防御系统并侵入肠道上皮层,从而引起随后的炎症和组织坏死。通常,Paneth细胞在人类怀孕的前三个月出现在肠隐窝中。 Paneth细胞通过产生多种抗菌肽和促炎介质,构成先天免疫系统的主要组成部分。为了更好地了解Paneth细胞破坏在NEC中的可能作用,我们量化了NEC婴儿中Paneth细胞的数量,发现与年龄匹配的对照组相比,Paneth细胞的数量明显减少。通过用锌螯合剂双硫zone处理小鼠,我们能够模拟出生后第(P)14-P16(未成熟)小鼠肠道中的这种损失。与对照相比,用双硫zone处理过的动物的肠保留了大约Paneth细胞数的一半。此外,通过将双硫zone治疗与肺炎克雷伯菌的暴露相结合,我们能够诱导肠损伤和类似于人NEC的炎症诱导。此外,这种新颖的Paneth细胞消融模型产生的NEC样病理学与当前使用的其他动物模型一致,但是该技术更易于使用,可用于已被水坝喂养的年长动物,并且代表了一种新颖的研究思路研究NEC的发病机理和治疗方法。

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