Warren B K, Mozaffari M S, Patel C
Department of Oral Biology/Pharmacology, Medical College of Georgia School of Dentistry, Augusta, USA.
Methods Find Exp Clin Pharmacol. 1998 Nov;20(9):761-9.
The hypothesis that the diabetic rat is more susceptible to the adverse renal effects (i.e., urine concentrating defect) of inorganic fluoride was tested by comparing fluid and sodium excretion rates in nondiabetic and diabetic rats before and after fluoride administration. Male Fischer 344 rats were injected with either vehicle (0.1 M citrate buffer, i.v.) or streptozotocin (55 mg/kg body weight). Renal excretions of fluid and sodium were determined in conscious animals following administration (i.v.) of a saline volume load containing or lacking inorganic fluoride (0.2 mg/ml). To examine the effect of fluoride without the contribution of a saline load, renal excretions of fluid and sodium were determined following a gradual, graded elevation in plasma fluoride concentration. The natriuretic and diuretic responses to an isotonic saline load were similar between the groups prior to and after fluoride administration. Graded elevations in the fluoride concentration of plasma mediated a slight increase in fluid and sodium excretion in the control rat while the treatment protocol led to a reduction in fluid excretion and an increase in the sodium excretion in the diabetic rat. As a result, the ratio of sodium/fluid excretion following fluoride administration was significantly higher in the diabetic compared to the control rat. These results suggest a differential effect of inorganic fluoride on the renal excretion of sodium and fluid between the nondiabetic and diabetic rat.
通过比较给予氟化物前后非糖尿病大鼠和糖尿病大鼠的液体和钠排泄率,来检验糖尿病大鼠是否更易受到无机氟对肾脏的不良影响(即尿液浓缩缺陷)这一假设。雄性Fischer 344大鼠分别注射赋形剂(0.1 M柠檬酸盐缓冲液,静脉注射)或链脲佐菌素(55 mg/kg体重)。在给予(静脉注射)含或不含无机氟(0.2 mg/ml)的生理盐水容量负荷后,测定清醒动物的肾脏液体和钠排泄量。为了在不考虑生理盐水负荷影响的情况下检查氟的作用,在血浆氟浓度逐渐分级升高后,测定肾脏液体和钠排泄量。在给予氟化物之前和之后,两组对等渗盐水负荷的利钠和利尿反应相似。血浆氟浓度的分级升高介导了对照大鼠液体和钠排泄量的轻微增加,而该治疗方案导致糖尿病大鼠液体排泄减少和钠排泄增加。结果,与对照大鼠相比,糖尿病大鼠在给予氟化物后的钠/液体排泄率显著更高。这些结果表明无机氟对非糖尿病大鼠和糖尿病大鼠的肾脏钠和液体排泄有不同影响。