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发育中大鼠肝脏胆汁酸摄取不存在腺泡梯度。

Absence of an acinar gradient for bile acid uptake in developing rat liver.

作者信息

Suchy F J, Balistreri W F, Breslin J S, Dumaswala R, Setchell K D, Garfield S A

出版信息

Pediatr Res. 1987 Apr;21(4):417-21. doi: 10.1203/00006450-198704000-00020.

Abstract

We studied the acinar distribution for uptake of the bile acid analogue [125I]-cholylglycyltyrosine in livers from adult and 14-day-old suckling rats. Portal and peripheral (systemic) serum bile acid concentrations were also measured by combined gas chromatography-mass spectrometry as an independent index of hepatic bile acid clearance from portal blood. Utilizing light microscopic autoradiography, a steep, decreasing portal to centrilobular gradient for cholylglycyltyrosine uptake was noted in adult rat liver. In contrast, there was no lobular gradient for cholylglycyltyrosine uptake visible in the 14-day-rat liver; all hepatocytes within the acinus contained a similar number of silver grains. Portal vein total bile acid concentrations were significantly higher in serum of adult compared to 14-day-old rats. In contrast, bile acid concentrations were 10-fold higher in the peripheral serum of developing versus adult rats. The peripheral to portal serum bile acid concentration ratio was 0.23 in the adult and 6.48 in the 14-day-old rat. We conclude that the entire hepatic lobule participates in the uptake of bile acids in the 14-day-old rat even under the basal conditions of this study. The normal "reserve" function of centrilobular hepatocytes is not sufficient to compensate for the decreased transport capacity of the developing liver with the result that increased concentrations of bile acids enter and accumulate in the systemic circulation.

摘要

我们研究了成年大鼠和14日龄乳鼠肝脏中胆汁酸类似物[125I]-胆酰甘氨酰酪氨酸摄取的腺泡分布情况。还通过气相色谱-质谱联用技术测量了门静脉和外周(体循环)血清中的胆汁酸浓度,以此作为肝从门静脉血中清除胆汁酸的独立指标。利用光学显微镜放射自显影技术,在成年大鼠肝脏中发现,胆酰甘氨酰酪氨酸摄取呈现出从门静脉到中央小叶逐渐降低的陡峭梯度。相比之下,在14日龄大鼠肝脏中未观察到胆酰甘氨酰酪氨酸摄取的小叶梯度;腺泡内所有肝细胞所含银颗粒数量相似。成年大鼠血清中的门静脉总胆汁酸浓度显著高于14日龄大鼠。相反,发育中大鼠外周血清中的胆汁酸浓度比成年大鼠高10倍。成年大鼠外周与门静脉血清胆汁酸浓度之比为0.23,14日龄大鼠为6.48。我们得出结论,即使在本研究的基础条件下,14日龄大鼠的整个肝小叶都参与胆汁酸的摄取。中央小叶肝细胞正常的“储备”功能不足以弥补发育中肝脏转运能力的下降,结果导致更多的胆汁酸进入并积聚在体循环中。

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