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Enterocyte expression of epidermal growth factor receptor is not required for intestinal adaptation in response to massive small bowel resection

机译:对于大肠小肠切除术,肠适应性不需要表皮生长因子受体的肠上皮细胞表达

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Purpose: Intestinal adaptation after massive small bowel resection (SBR) permits improved absorption of enteral nutrition despite significant loss of bowel length. Epidermal growth factor (EGF) and its receptor (EGFR) have previously been established to play major roles in the pathogenesis of adaptation. This study tested the hypothesis that EGFR signaling within the epithelial cell compartment (enterocytes) is required for intestinal adaptation. Methods: We developed a tamoxifen-inducible Villin-Cre/LoxP recombinant system for enterocyte-directed EGFR deletion using EGFR-floxed mice. Epidermal growth factor receptor-null mice and wild-type littermates underwent either 50% proximal SBR or sham operation. Ileal tissue was harvested on postoperative day 7. To assess for adaptation, villus height and crypt depth as well as rates of crypt cell proliferation and apoptosis were measured. Results: Adaptation after SBR occurred normally, as demonstrated by significant increases in villus height, crypt depth, and crypt proliferative and apoptotic index in both the wild-type and EGFR-null mice. Conclusion: Enterocyte EGFR expression is not required for the adaptation response to massive SBR. This novel finding suggests that enterocyte proliferation during adaptation is regulated by EGFR signaling in cells other than enterocytes, perhaps within the mesenchymal cell compartment of the bowel wall via factor(s) that are presently unknown.
机译:目的:大肠小肠切除术(SBR)后的肠适应性改善了肠内营养的吸收,尽管肠长明显减少。先前已经建立了表皮生长因子(EGF)及其受体(EGFR)在适应的发病机理中起主要作用。这项研究检验了以下假设:肠道适应需要上皮细胞区室(肠上皮细胞)中的EGFR信号传导。方法:我们开发了他莫昔芬诱导的Villin-Cre / LoxP重组系统,用于使用EGFR固定的小鼠进行肠细胞定向EGFR缺失。对表皮生长因子受体无效的小鼠和野生型同窝小鼠进行近端SBR或假手术50%。在术后第7天收获回肠组织。为了评估适应性,测量了绒毛高度和隐窝深度以及隐窝细胞增殖和凋亡的速率。结果:SBR后的适应正常发生,如野生型和EGFR无效小鼠的绒毛高度,隐窝深度以及隐窝增殖和凋亡指数的显着增加所证明。结论:肠细胞EGFR表达对于大规模SBR的适应性反应不是必需的。这个新发现表明,在适应过程中肠细胞的增殖受肠细胞以外的其他细胞中EGFR信号传导的调节,也许是通过目前未知的因素在肠壁的间充质细胞室内。

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