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Compensatory changes in villus morphology of lactating Mus musculus in response to insufficient dietary protein

机译:泌乳毒蕈Musculus患者患者响应膳食蛋白不足的患者形态的补偿变化

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摘要

Energetic challenges match intestinal size to dietary intake but less is known about how the intestine responds to specific macronutrient challenges. We examined how intestinal size responds to insufficient dietary protein at the microscopic level. Villi, enterocytes and surface area were measured across the length of the small intestine in non-reproductive and lactating Mus musculus fed isocaloric control or protein-deficient diets. Lactating mice on the protein-deficient diet exhibited a 24% increase in villus height and a 30% increase in enterocyte width in the proximal small intestine and an overall similar increase in surface area; on the control diet, changes in villus height were localized in the mid region. Flexibility localized to the proximal small intestine suggests that enterokinase, a localized enzyme, may be a candidate enzyme that promotes compensation for a protein-deficient diet. Such flexibility could allow species to persist in the face of anthropogenically induced changing dietary profiles.
机译:精力充沛的挑战与肠尺寸相匹配到饮食摄入量,但尚不清楚肠道如何应对特定的MACRONURRICTS挑战。我们检查了肠尺寸如何在显微镜水平上响应饮食蛋白质不足。在非生殖和哺乳期血液中的小肠的长度上测量绒毛,肠细胞和表面积,喂养异蜂鸣或蛋白质缺乏饮食。患有蛋白质缺乏饮食的哺乳期小鼠表现出绒毛高度增加24%,近距离小肠的肠细胞宽度增加30%,表面积相似的总体增加;在对照饮食中,绒毛高度的变化在中部地区定位。定位于近端小肠的柔韧性表明肠促酶是局部化酶,可以是促进蛋白质缺乏饮食补偿的候选酶。这种柔韧性可以允许物种在人为诱导的变化膳食型材面前持续存在。

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