5-Ethyl-2脱氧尿苷。细胞毒性和DNA结合与人白血病细胞和pha刺激淋巴细胞在体外证明。

H Tuominen, D Bergstrom, J A Vilpo
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引用次数: 3

摘要

5-乙基-2'-脱氧尿嘧啶(5EtdUrd)是一种具有生物活性的胸腺嘧啶类似物。5EtdUrd在7个已建立的人白血病细胞系以及人外周血pha刺激淋巴细胞中进行了细胞毒性研究。所有类型的白血病细胞都对5EtdUrd的毒性敏感,用为本研究开发的[U-14C]- l -亮氨酸掺入系统进行了检测。在白血病细胞中,1.3-3.8 μ m 5EtdUrd可诱导3天培养中50%的亮氨酸结合抑制,但在pha刺激的淋巴细胞中诱导类似抑制所需的浓度约为100倍。5EtdUrd的毒性似乎需要活跃的DNA合成,因为只有在培养的第一个24小时后,对亮氨酸掺入的抑制才变得明显。DNA掺入研究基于我们实验室合成的新的同位素标记的5EtdUrd衍生物[2-14C]5EtdUrd。首次证明了DNA中[2-14C]5EtdUrd产生的大部分放射性是在5-乙基尿嘧啶中。etdurd在体外具有强大的抗白血病效力。它在体内对人类白血病的作用还有待检验。
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5-Ethyl-2'-deoxyuridine. Cytotoxicity and DNA incorporation demonstrated with human leukemic cells and PHA-stimulated lymphocytes in vitro.

5-Ethyl-2'-deoxyuridine (5EtdUrd) is a biologically active thymidine analogue. The cytotoxicity of 5EtdUrd was investigated with seven established human leukemia cell lines as well as with human peripheral blood PHA-stimulated lymphocytes. All types of leukemia cells were susceptible to the toxicity of 5EtdUrd as assayed with a [U-14C]-L-leucine incorporation system developed for this study. A 50% inhibition of leucine incorporation in 3-day cultures was induced by 1.3-3.8 microM 5EtdUrd with leukemic cells, but the concentration required to induce similar inhibition with PHA-stimulated lymphocytes was approximately was approximately 100-fold. The toxicity of 5EtdUrd seemed to require active DNA synthesis, since the inhibition of leucine incorporation became obvious only after the first 24 hours of culture. The DNA incorporation studies were based on a new isotopically labeled 5EtdUrd derivative, [2-14C]5EtdUrd, synthesized for this study in our laboratory. It was demonstrated for the first time that most of the radioactivity derived from [2-14C]5EtdUrd in DNA was in 5-ethyluracil. 5EtdUrd has a powerful antileukemic potency in vitro. Its effects against human leukemia in vivo remain to be tested.

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