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为证实正常大鼠肾皮质有高、低亲和力糖皮质激素受体(GRH、GRL)。方法利用放射配体结合法。结果GRL的平衡解离常数(kd)在10-6M数量级,最大结合容量(Bmax)为8.60±1.30pmol/mg.pro。被动性海曼氏肾炎(PHN组)大鼠GRL的Bmax为10.7±3.40pmol/mg.pro。经小剂量(LD组)、大剂量(HD组)糖皮质激素(GC)治疗PHN大鼠后,其GRL的Bmax分别增加3倍左右,GC对GRL无反向调节。HD组同LD组比,血GC浓度高,可和相当数量的GRL结合而起到抗炎效应,从而疗效好。HD组大剂量GC治疗后24h尿蛋白减少量与肾皮质GRL的Bmax呈正相关。结论大剂量GC可能通过GRL介导而起到强有力的抗炎效应
In order to confirm the normal rat renal cortex with high and low affinity glucocorticoid receptor (GRH, GRL). Method using radioligand binding method. Results The equilibrium dissociation constant (kd) of GRL was in the order of 10-6M and the maximum binding capacity (Bmax) was 8.60 ± 1.30pmol / mg. pro. The Bmax of Passive Hahn Nephritis (PHN group) rats was 10.7 ± 3.40 pmol / mg. pro. After treatment of PHN rats with low dose (LD group) and high dose (HD group) glucocorticoid (GC), the Bmax of GRL increased by about 3-fold, respectively. There was no reverse regulation of GRL by GC. Compared with LD group HD group, blood GC concentration, and a considerable amount of GRL combined anti-inflammatory effect, which has good curative effect. The decrease of urinary protein in HD group was positively correlated with Bmax of renal cortex GRL after high-dose GC treatment. Conclusion High-dose GC may play a powerful anti-inflammatory effect through GRL