人生长激素洗脱染色生物测定法(ESTA)的建立。

Growth regulation Pub Date : 1995-03-01
P A Ealey, M E Yateman, R Sandhu, M T Dattani, M K Hassan, S J Holt, N J Marshall
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引用次数: 0

摘要

本文描述了静止的Nb2细胞和被胎牛血清或人类生长激素(hGH)激活的Nb2细胞生产MTT-formazan的基本特征。这些特性被用于开发MTT-ESTA生物测定法,用于乳原纯化制剂,如生长激素。所建立的体外生物测定方法灵敏、准确,检出限约为0.05 μ hGH/l (19 ng/l),在0.3 μ hGH/l (114 ng/l)存在时,测定内不精密度为2.5%。当使用静止的Nb2细胞进行生物测定时,可以观察到很大程度的反应。这种反应的主要成分显然来自细胞的代谢激活,而不是细胞增殖的增加。这种反应被抗人类生长激素消除了。延迟添加后者表明,在推荐的生物测定潜伏期的整个96小时内,需要激素的存在才能获得最大的反应。在高剂量时,剂量-反应关系达到一个延长的平台期,覆盖激素浓度增量的4个数量级。在测试的最高剂量为10(6)mU hGH/l (385 mg/l)时,观察到反应下降。这种自我抑制与最近的报告一致,即由于顺序受体二聚化的化学计量阻断,反应减少,这对于生长激素激活体源性和乳源性受体至关重要。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The development of an eluted stain bioassay (ESTA) for human growth hormone.

The basic characteristics of MTT-formazan production by both quiescent Nb2 cells and those activated by fetal calf serum or human growth hormone (hGH) are described. These characteristics are exploited for the development of an MTT-ESTA bioassay for purified preparations of lactogens such as growth hormone. The resulting in vitro bioassay is sensitive and precise, with a detection limit of about 0.05 mU hGH/l (19 ng/l) and a within-assay imprecision of 2.5% in the presence of 0.3 mU hGH/l (114 ng/l). When utilizing quiescent Nb2 cells for bioassays, large magnitudes of response are observed. The major component of the response is clearly derived from metabolic activation of the cells, rather than increased cell proliferation. The response was abolished by anti-human growth hormone. Delayed addition of the latter demonstrated that the presence of the hormone is required for the entire 96 h of the recommended bioassay incubation period to obtain the maximum response. At high doses, the dose-response relationship reaches a prolonged plateau which covers 4 orders of magnitude of incremental hormone concentrations. A decline in response is observed at the highest dose tested, 10(6) mU hGH/l (385 mg/l). This auto-inhibition is consistent with recent reports of a reduction in response due to stoichiometric blockade of sequential receptor dimerisation which is crucial for activation of both somatogenic and lactogenic receptors by hGH.

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