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不同蛋白质摄入量对幼鼠肾脏生长的影响。

Influence of different protein intake on renal growth in young rats.

作者信息

Jakobsson B, Celsi G, Lindblad B S, Aperia A

出版信息

Acta Paediatr Scand. 1987 Mar;76(2):293-9. doi: 10.1111/j.1651-2227.1987.tb10463.x.

Abstract

We have examined the effect of high protein intake on kidney growth and function in growing rats. The rats were kept on an isocaloric diet containing 12%, 21% and 50% protein, from weaning (16 days) until the time of investigation (18, 20, 24, 40 or 80 days). There was no significant difference between the 12% and 21% protein groups in any of the parameters studied. 50% protein increased body weight (BW) and kidney weight (KW). The increase in kidney weight was already evident after 2 days and exceeded the increase in body weight in all age groups. At 24 days renal cortical DNA and the protein/DNA ratio were significantly increased in the 50% protein group. At 40 days the cortical DNA content, but not the protein/DNA ratio, was significantly increased in the 50% group. The glomerular filtration rate GFR) was studied at 40 days. Total GFR as well as GFR/BW was significantly higher in the 50% group than in the 21% group. In one protocol the diet was discontinued at age 40 days and the rats were studied at age 80 days. In these rats all parameters of renal size and function were the same as in the rats that had had a normal (21%) protein intake from weaning. We conclude that in young rats high protein intake reversibly increases GFR out of proportion to BW and selectively and reversibly stimulates kidney growth by stimulating cell proliferation.

摘要

我们研究了高蛋白摄入量对生长中大鼠肾脏生长和功能的影响。从断奶(16日龄)到研究时(18、20、24、40或80日龄),将大鼠饲养在含12%、21%和50%蛋白质的等热量饮食中。在所研究的任何参数中,12%和21%蛋白质组之间均无显著差异。50%蛋白质组增加了体重(BW)和肾脏重量(KW)。肾脏重量的增加在2天后就已明显,并在所有年龄组中超过了体重的增加。在24日龄时,50%蛋白质组的肾皮质DNA和蛋白质/DNA比值显著增加。在40日龄时,50%蛋白质组的皮质DNA含量显著增加,但蛋白质/DNA比值未增加。在40日龄时研究了肾小球滤过率(GFR)。50%蛋白质组的总GFR以及GFR/BW均显著高于21%蛋白质组。在一个实验方案中,40日龄时停止饮食,在80日龄时对大鼠进行研究。在这些大鼠中,所有肾脏大小和功能参数与从断奶开始摄入正常(21%)蛋白质的大鼠相同。我们得出结论,在幼鼠中,高蛋白摄入量会使GFR不成比例地可逆性增加,并通过刺激细胞增殖选择性地、可逆地刺激肾脏生长。

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