Tooley K L, Howarth G S, Butler R N, Lymn K A, Penttila I A
Women's and Children's Health Research Institute, 72 King William Road, North Adelaide, South Australia.
Dig Dis Sci. 2009 Jul;54(7):1432-9. doi: 10.1007/s10620-008-0513-6. Epub 2008 Oct 31.
A unique model of formula feeding in the neonatal rat was utilized to investigate the effects of an enterally delivered artificial milk formula on clinically relevant immunological and biological characteristics in the gut, compared to naturally reared pups. Hooded Wistar rat pups were randomly allocated to two treatment groups: formula-fed (FF) or naturally suckled (NS). A flexible silastic intra-gastric cannula was surgically implanted into the FF pups, through which an artificial rat milk supplement was continuously delivered from day 4 to day 10 of life. Rat pups were sacrificed at 10 days of age. Body weight, small intestinal weight, mucosal CD8(+) cell numbers, and ileal lactase activity in FF animals were significantly decreased compared to their NS counterparts (P < 0.05). Numbers of eosinophils, mucosal mast cells, CD4(+) T-cells, ileal villus height and gastric emptying times were significantly increased in FF pups (P < 0.05). We have developed a new rat model of artificial feeding which possesses important immunological and biological similarities to the premature human infant.
利用一种独特的新生大鼠配方奶喂养模型,与自然饲养的幼崽相比,研究经肠道给予人工乳配方奶对肠道中临床相关免疫和生物学特性的影响。将带帽的Wistar大鼠幼崽随机分为两个治疗组:配方奶喂养组(FF)或自然哺乳组(NS)。通过手术将一根柔软的硅橡胶胃内插管植入FF组幼崽体内,从出生后第4天到第10天通过该插管持续给予人工鼠奶补充剂。在10日龄时处死大鼠幼崽。与NS组幼崽相比,FF组动物的体重、小肠重量、黏膜CD8(+)细胞数量和回肠乳糖酶活性显著降低(P < 0.05)。FF组幼崽的嗜酸性粒细胞、黏膜肥大细胞、CD4(+) T细胞数量、回肠绒毛高度和胃排空时间显著增加(P < 0.05)。我们开发了一种新的人工喂养大鼠模型,该模型在重要的免疫和生物学方面与早产人类婴儿相似。