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造血生长因子增强急性髓系白血病的化学敏感性:MTT 法与克隆形成试验的比较

Enhanced chemosensitivity in acute myeloid leukemia by hematopoietic growth factors: a comparison of the MTT assay with a clonogenic assay.

作者信息

te Boekhorst P A, Löwenberg B, Sonneveld P

机构信息

Department of Hematology, Erasmus University, Rotterdam, The Netherlands.

出版信息

Leukemia. 1993 Oct;7(10):1637-44.

PMID:7692194
Abstract

The MTT assay, a colorimetric assay, is found to be suitable for chemosensitivity testing. Recently, it has been suggested that hematopoietic growth factors (HGF) may enhance the effects of cytostatic drugs in acute myeloid leukemia (AML). We therefore studied the effects of granulocyte colony-stimulating factor (G-CSF), interleukin 3 (IL-3), and granulocyte-macrophage colony-stimulating factor (GM-CSF) combined with cytosine arabinoside (Ara-C), daunorubicin (DNR), mitoxantrone (MXT), or etoposide (VP-16) by using the MTT assay. The results were compared with in vitro clonogenic assays. Briefly, AML cells of nine patients were incubated in the presence or absence of G-CSF, IL-3, or GM-CSF under serum-free conditions for 24 hours. Next, for the MTT assay, Ara-C (final dilution range: 0.0024-240 micrograms/ml), DNR (final dilution range: 0.05-3.2 micrograms/ml), MXT (final dilution range: 0.05-3.2 micrograms/ml), or VP-16 (final dilution range: 0.1-100 micrograms/ml) were added and incubated for 48 hours. Cell survival was determined and IC75 values (75% reduction as compared to control cultures) were calculated. For clonogenic assays, the three lowest drug concentrations were used. After 48 hours, the clonogenic response was determined in serum-free, semi-solid cultures with G-CSF, IL-3, or GM-CSF. The results obtained by the MTT assay showed no significant enhancement of cytotoxicity by HGF on cytostatic drug preincubated cells compared to cytostatic drugs alone. The results obtained by the clonogenic assays showed increased cytotoxicity of Ara-C combined with G-CSF, IL-3, or GM-CSF. The median IC75 values of Ara-C decreased from 0.056 to 0.0168 microgram/ml with G-CSF (p = 0.01), from 0.108 to 0.0168 microgram/ml with IL-3 (p = 0.004) and from 0.12 to 0.0204 microgram/ml for GM-CSF (p = 0.02). Only moderate enhanced cytotoxicity was observed when VP-16 was combined with IL-3 (p = 0.036) or GM-CSF (p = 0.036), but not with G-CSF. No enhanced cytotoxicity of DNR and MXT to clonogenic AML cells was found when these agents were combined with HGF stimulation. The results indicate that the MTT assay underestimates HGF enhanced cytotoxicity of Ara-C or VP-16 to clonogenic cells. Therefore, the assay is not useful for accurately detecting differences of clonogenic response due to the proliferative status of cells. In this paper, the potential explanations for the failure of the MTT assay are discussed.

摘要

MTT 法是一种比色法,被发现适用于化学敏感性测试。最近,有人提出造血生长因子(HGF)可能增强细胞毒性药物对急性髓系白血病(AML)的作用。因此,我们通过 MTT 法研究了粒细胞集落刺激因子(G-CSF)、白细胞介素 3(IL-3)和粒细胞巨噬细胞集落刺激因子(GM-CSF)与阿糖胞苷(Ara-C)、柔红霉素(DNR)、米托蒽醌(MXT)或依托泊苷(VP-16)联合使用的效果。将结果与体外克隆形成试验进行比较。简而言之,9 名患者的 AML 细胞在无血清条件下于有或无 G-CSF、IL-3 或 GM-CSF 的情况下孵育 24 小时。接下来,对于 MTT 法,加入 Ara-C(终浓度稀释范围:0.0024 - 240 微克/毫升)、DNR(终浓度稀释范围:0.05 - 3.2 微克/毫升)、MXT(终浓度稀释范围:0.05 - 3.2 微克/毫升)或 VP-16(终浓度稀释范围:0.1 - 100 微克/毫升)并孵育 48 小时。测定细胞存活率并计算 IC75 值(与对照培养物相比降低 75%)。对于克隆形成试验,使用三种最低药物浓度。48 小时后,在无血清、半固体培养物中用 G-CSF、IL-3 或 GM-CSF 测定克隆形成反应。MTT 法获得的结果显示,与单独使用细胞毒性药物相比,HGF 对预先用细胞毒性药物孵育的细胞的细胞毒性没有显著增强。克隆形成试验获得的结果显示,Ara-C 与 G-CSF、IL-3 或 GM-CSF 联合使用时细胞毒性增加。Ara-C 的中位 IC75 值与 G-CSF 联合时从 0.056 降至 0.0168 微克/毫升(p = 0.01),与 IL-3 联合时从 0.108 降至 0.0168 微克/毫升(p = 0.004),与 GM-CSF 联合时从 0.12 降至 0.0204 微克/毫升(p = 0.02)。当 VP-16 与 IL-3(p = 0.036)或 GM-CSF(p = 0.036)联合使用时,仅观察到中等程度的细胞毒性增强,但与 G-CSF 联合时未观察到。当 DNR 和 MXT 与 HGF 刺激联合使用时,未发现对克隆形成性 AML 细胞的细胞毒性增强。结果表明,MTT 法低估了 HGF 增强的 Ara-C 或 VP-16 对克隆形成细胞的细胞毒性。因此,该试验对于准确检测由于细胞增殖状态导致的克隆形成反应差异无用。本文讨论了 MTT 法失败的潜在原因。

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