Giachetti A
Diabetes. 1978 Oct;27(10):969-74. doi: 10.2337/diab.27.10.969.
I investigated biochemical parameters of sympathetic nerve function in spontaneously diabetic mice(C57 BL/KsJdb/db) and in their lean littermates. The concentration of norepinephrine (NE) in organs innervated by sympathetic nerves was significantly reduced in the heart, kidney, and salivary glands of mice (24 weeks old) with severe diabetic-like symptoms (blood glucose is greater than 300 mg./100ml.). In the spleen, vas deferens, and adrenal glands of the same animals the NE levels were not changed in relation to control. Other measurements of NE in young (six weeks old) diabetic mice revealed no differences between diabetic and nondiabetic controls. The turnover of NE, a measure of the functional state of sympathetic nerves, decreased significantly in the heart and salivary glands of 24-week-old mice but remained unchanged in the kidney and spleen. In young, diabetic mice the rates of NE turnover in several organs were similar to those found in age-matched controls. The hearts of 24-week-old diabetic mice contained significantly less dopamine-beta-hydroxylase (DBH), an intraneuronal enzyme active in the terminal step of NE biosynthesis. The kidney of the same animals was hypertrophic and showed a massive elevation of monoamine oxidase (MAO), an enzyme that degrades NE to inactive products. Other experiments showed that the regeneration of sympathetic neurons that follows the reversible chemical denervation with 6-hydroxydopamine was comparable in diabetic and nondiabetic animals. It appears that mice with spontaneous diabetes show changes of sympathetic nerve function similar to those noted in diabetic patients with autonomic neuropathy.
我研究了自发性糖尿病小鼠(C57 BL/KsJdb/db)及其瘦型同窝小鼠交感神经功能的生化参数。在出现严重糖尿病样症状(血糖大于300mg/100ml)的(24周龄)小鼠的心脏、肾脏和唾液腺中,受交感神经支配的器官去甲肾上腺素(NE)浓度显著降低。在同一批动物的脾脏、输精管和肾上腺中,NE水平与对照组相比没有变化。对年轻(六周龄)糖尿病小鼠NE的其他测量显示,糖尿病组和非糖尿病对照组之间没有差异。作为交感神经功能状态指标的NE周转率,在24周龄小鼠的心脏和唾液腺中显著降低,但在肾脏和脾脏中保持不变。在年轻的糖尿病小鼠中,几个器官的NE周转率与年龄匹配的对照组相似。24周龄糖尿病小鼠的心脏中多巴胺-β-羟化酶(DBH)含量显著减少,DBH是一种在NE生物合成终末步骤中起作用的神经元内酶。同一批动物的肾脏肥大,单胺氧化酶(MAO)大量升高,MAO是一种将NE降解为无活性产物的酶。其他实验表明,用6-羟基多巴胺进行可逆性化学去神经后交感神经元的再生在糖尿病和非糖尿病动物中相当。自发性糖尿病小鼠似乎表现出与患有自主神经病变的糖尿病患者类似的交感神经功能变化。