Udrisar D P, Camberos M C, Justel E, Cresto J C
Acta Physiol Lat Am. 1981;31(3):211-6.
The increase in protein adsorption by charcoal as ionic strength increases (salting-out adsorption), was used to separate the bound and free fractions of glucagon, insulin, hGH, hLH and hPRL in the radioimmunoassay. The hormones were labelled with 125I and to express the immunocomplex, gamma-globulin was labelled with 125I. The charcoal used to produce the separation was suspended in magnesium sulfate 3 M (charcoal-SO4Mg). The optimum amount of charcoal and the final concentration of magnesium sulfate determined for each hormone were: glucagon (charcoal 5 mg/tube, 0.125 M); insulin (charcoal 5 mg/tube, 0.131 M); hGH (charcoal 40 mg/tube, 0. 447 M); hLH (charcoal 40 mg/tube, 0.447 M) and hPRL (charcoal 60 mg/tube, 0.321 M). The serum concentration was 1/20 for all hormones, excepting glucagon, where 1/10 was used. The stability of the immunocomplex was studied and it was shown that, under suitable conditions, increased ionic strength does not cause the dissociation of the bound fraction.
随着离子强度增加,活性炭对蛋白质的吸附量增加(盐析吸附),利用这一特性在放射免疫分析中分离胰高血糖素、胰岛素、人促生长激素、人促黄体生成素和人催乳素的结合部分和游离部分。这些激素用¹²⁵I标记,为了显示免疫复合物,γ-球蛋白用¹²⁵I标记。用于分离的活性炭悬浮于3M硫酸镁中(活性炭-SO₄Mg)。为每种激素确定的活性炭最佳用量和硫酸镁最终浓度分别为:胰高血糖素(活性炭5mg/管,0.125M);胰岛素(活性炭5mg/管,0.131M);人促生长激素(活性炭40mg/管,0.447M);人促黄体生成素(活性炭40mg/管,0.447M);人催乳素(活性炭60mg/管,0.321M)。除胰高血糖素使用血清浓度为1/10外,所有激素的血清浓度均为1/20。对免疫复合物的稳定性进行了研究,结果表明,在合适的条件下,离子强度增加不会导致结合部分的解离。