Division of General Pediatric Surgery, Johns Hopkins University and Johns Hopkins Children's Center, Baltimore, MD21287, USA.
Department of Surgery, Johns Hopkins University and Johns Hopkins Children's Center, Baltimore, MD21287, USA.
Br J Nutr. 2022 Sep 28;128(6):1050-1063. doi: 10.1017/S0007114521004104. Epub 2021 Oct 11.
Necrotising enterocolitis (NEC) is a devastating gastrointestinal disease of prematurity that typically develops after the administration of infant formula, suggesting a link between nutritional components and disease development. One of the most significant complications that develops in patients with NEC is severe lung injury. We have previously shown that the administration of a nutritional formula that is enriched in pre-digested Triacylglyceride that do not require lipase action can significantly reduce the severity of NEC in a mouse model. We now hypothesise that this 'pre-digested fat (PDF) system' may reduce NEC-associated lung injury. In support of this hypothesis, we now show that rearing newborn mice on a nutritional formula based on the 'PDF system' promotes lung development, as evidenced by increased tight junctions and surfactant protein expression. Mice that were administered this 'PDF system' were significantly less vulnerable to the development of NEC-induced lung inflammation, and the administration of the 'PDF system' conferred lung protection. In seeking to define the mechanisms involved, the administration of the 'PDF system' significantly enhanced lung maturation and reduced the production of reactive oxygen species (ROS). These findings suggest that the PDF system protects the development of NEC-induced lung injury through effects on lung maturation and reduced ROS in the lung and also increases lung maturation in non-NEC mice.
坏死性小肠结肠炎(NEC)是一种严重的早产儿胃肠道疾病,通常在婴儿配方奶粉喂养后发生,提示营养成分与疾病发展之间存在联系。NEC 患者最严重的并发症之一是严重的肺部损伤。我们之前的研究表明,富含不需要脂肪酶作用的预消化三酰甘油的营养配方的给予可以显著减轻小鼠 NEC 的严重程度。我们现在假设这个“预消化脂肪(PDF)系统”可能会减轻与 NEC 相关的肺部损伤。为了支持这个假设,我们现在表明,在基于“PDF 系统”的营养配方上饲养新生小鼠会促进肺部发育,这表现为紧密连接和表面活性剂蛋白表达增加。接受这种“PDF 系统”的小鼠对 NEC 诱导的肺部炎症的发展明显不敏感,并且给予“PDF 系统”具有肺部保护作用。在寻求定义所涉及的机制时,给予“PDF 系统”显著增强了肺成熟度并减少了活性氧(ROS)的产生。这些发现表明,PDF 系统通过对肺成熟度的影响和减少肺中的 ROS 来保护 NEC 诱导的肺损伤的发展,并且还增加了非 NEC 小鼠的肺成熟度。