首页> 外文期刊>British Journal of Cancer >In vitro effect of amifostine on haematopoietic progenitors exposed to carboplatin and non-alkylating antineoplastic drugs: haematoprotection acts as a drug-specific progenitor rescue
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In vitro effect of amifostine on haematopoietic progenitors exposed to carboplatin and non-alkylating antineoplastic drugs: haematoprotection acts as a drug-specific progenitor rescue

机译:氨磷汀对暴露于卡铂和非烷基化抗肿瘤药的造血祖细胞的体外作用:血液保护作用可作为药物特异性祖细胞的拯救

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We evaluated the protective ability of amifostine on peripheral blood mononuclear cell (PBMC)-derived colony-forming unit (CFU) and PB CD34+ cells which were previously exposed in vitro to etoposide, carboplatin, doxorubicin and taxotere. Amifostine pretreatment protected PBMC-derived CFU from the toxic effect of etoposide, carboplatin and taxotere. A significant detrimental effect was exerted by amifostine on the growth of doxorubicin-treated PBMC-derived CFU. Liquid cultures of PB CD34+ cells reproduced faithfully the effects observed on growth of PBMC-derived CFU and confirmed amifostine chemoprotection against etoposide and carboplatin with its detrimental effect on doxorubicin-treated progenitors. Combining the data of viable cell count, cytometric estimation of apoptosis, cell cycle and viable cell replication rate, we found that amifostine protects from etoposide and carboplatin toxicity mainly through a mechanism of cell rescue. Conversely, the detrimental effect of amifostine on the growth of doxorubicin-treated PB CD34+ cells is apparently due to an increased G2/M arrest. In conclusion, amifostine protects haematopoietic progenitors from etoposide, carboplatin and taxotere. Progenitor rescue is the mechanism through which amifostine reduced etoposide and carboplatin toxicity.
机译:我们评估了氨磷汀对外周血单核细胞(PBMC)衍生的集落形成单位(CFU)和PB CD34 +细胞的保护能力,这些细胞先前曾在体外暴露于依托泊苷,卡铂,阿霉素和紫杉醇。氨磷汀预处理可保护PBMC衍生的CFU免受依托泊苷,卡铂和紫杉醇的毒性作用。氨磷汀对阿霉素处理过的PBMC衍生的CFU的生长具有明显的有害作用。 PB CD34 +细胞的液体培养物忠实地再现了对PBMC衍生的CFU生长的影响,并证实了氨磷汀对依托泊苷和卡铂的化学保护作用,其对阿霉素处理的祖细胞具有有害作用。结合活细胞计数,细胞计数,凋亡,细胞周期和活细胞复制率的数据,我们发现氨磷汀主要通过细胞拯救机制来保护依托泊苷和卡铂的毒性。相反,氨磷汀对经阿霉素处理的PB CD34 +细胞生长的有害作用显然是由于G2 / M阻滞增加。总之,氨磷汀可保护造血祖细胞免受依托泊苷,卡铂和紫杉醇的侵害。祖细胞拯救是氨磷汀降低依托泊苷和卡铂毒性的机制。

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