抑制神经元胰岛素受体后脑葡萄糖/能量代谢的长期异常:tau蛋白的含义。

S Hoyer, H Lannert
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引用次数: 62

摘要

采用低剂量致糖尿病化合物链脲佐菌素(STZ)三次脑室灌胃诱导1岁雄性Wistar大鼠神经元胰岛素信号转导(IST)系统的损伤,并观察其己糖激酶(HK)、磷酸果糖激酶(PFK)、甘油醛-3-磷酸脱氢酶(GDH)、丙酮酸激酶(PK)、葡萄糖激酶(PK)、葡萄糖激酶(PK)的活性。乳酸脱氢酶(LDH)和α -酮戊二酸脱氢酶(α - kgdh)在损伤后9周的额顶颞叶皮质(ct)和海马(h)。同时测定三磷酸腺苷(ATP)、二磷酸腺苷(ADP)、三磷酸鸟苷(GTP)和磷酸肌酸(CrP)的浓度。我们发现HK降低到53% (ct)和60% (h), PFK降低到63/64% (ct/h);GDH增加到56/61% (ct/h), PFK增加到57/59% (ct/h), α - kgdh增加到37/35% (ct/h), LDH增加到300/240% (ct/h)。对照组ATP降至82/87% (ct/h), GTP降至69/81% (ct/h), CrP降至82/81% (ct/h),约P降至82/82% (ct/h),而ADP升高至189/154% (ct/h)。损伤9周后,糖酵解酶HK、PFK、GDH和PK活性的下降比损伤3周和6周时更为明显,而富能化合物浓度的下降则比对照稳定地减少了20% ~ 10%。葡萄糖/能量代谢异常与实验动物的tau蛋白代谢异常和散发性AD的关系进行了讨论。
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Long-term abnormalities in brain glucose/energy metabolism after inhibition of the neuronal insulin receptor: implication of tau-protein.

The triplicate intracerebroventricular (icv) application of the diabetogenic compound streptozotocin (STZ) in low dosage was used in 1-year-old male Wistar rats to induce a damage of the neuronal insulin signal transduction (IST) system and to investigate the activities of hexokinase (HK), phosphofructokinase (PFK), glyceraldehyde-3-phosphate dehydrogenase (GDH), pyruvate kinase (PK), lactate dehydrogenase (LDH) and alpha-ketoglutarate dehydrogenase (alpha-KGDH) in frontoparietotemporal brain cortex (ct) and hippocampus (h) 9 weeks after damage. In parallel, the concentrations of adenosine triphosphate (ATP), adenosine diphosphate (ADP), guanosine triphosphate (GTP) and creatine phosphate (CrP) were determined. We found reductions of HK to 53% (ct) and 60% (h) of control, PFK to 63/64% (ct/h); GDH to 56/61% (ct/h), PFK to 57/59% (ct/h), alpha-KGDH to 37/35% (ct/h) and an increase of LDH to 300/240% (ct/h). ATP decreased to 82/87% (ct/h) of control, GTP to 69/81% (ct/h), CrP to 82/81% (ct/h), approximately P to 82/82% (ct/h), whereas ADP increased to 189/154% (ct/h). The fall of the activities of the glycolytic enzymes HK, PFK, GDH and PK was found to be more marked after 9 weeks of damage when compared with 3- and 6-week damage whereas the diminution in the concentration of energy rich compound was stably reduced by between 20 and 10% relative to control. The abnormalities in glucose/energy metabolism were discussed in relation to tau-protein mismetabolism of experimental animals, and of sporadic AD.

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