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Role of haemoglobin in the protection of cultured lymphocytes against diepoxybutane (DEB), assessed by in vitro induced chromosome breakage.

机译:血红蛋白在保护培养的淋巴细胞抵抗环氧丁烷(DEB)中的作用,通过体外诱导的染色体断裂来评估。

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摘要

Mutat Res. 2003 Apr 20;536(1-2):61-7.Role of haemoglobin in the protection of cultured lymphocytes against diepoxybutane (DEB), assessed by in vitro induced chromosome breakage.Porto B, Chiecchio L, Gaspar J, Faber A, Pinho L, Rueff J, Malheiro I.Laboratory of Cytogenetics, Instituto Ciências Biomédicas Abel Salazar (ICBAS), Largo do Prof. Abel Salazar, No. 2, 4099-003, Porto, Portugal.AbstractDiepoxybutane (DEB) is an alkylating agent that can be used to assess chromosome instability in repair-deficient subjects. Previous authors investigated the role of red blood cells (RBC) in determining individual susceptibility to DEB in normal healthy donors, and demonstrated that a polymorphic enzyme in RBC, Glutathione S-transferase T1 (GSTT1), is involved in DEB detoxification. In the present work we studied the influence of individual GSTM1 and GSTT1 genotypes and the presence of RBC on the frequency of DEB-induced chromosome breakage in lymphocyte cultures from normal individuals and, in particular, the influence of isolated components of RBC: RBC membranes, RBC lysate, and haemoglobin. Our results confirm that individual GSTT1 genotypes modulate the level of genetic lesions induced by DEB; however, this effect was not sufficient to explain the highly significant variation in chromosome breakage between whole blood and RBC-depleted cultures. We showed that RBC can protect cultured lymphocytes against chromosome breakage induced by DEB and we demonstrated the particular role of haemoglobin in the protective effect.PMID: 12694746 [PubMed - indexed for MEDLINE]
机译:穆塔特水库。 2003年4月20日; 536(1-2):61-7。通过体外诱导的染色体断裂评估,血红蛋白在保护培养的淋巴细胞对抗环氧丁烷(DEB)中的作用。波尔图B,基奇奥(Chiecchio L),加斯帕(Gaspar J),辉柏尔A(Faber A) Pinho L,Rueff J,Malheiro I,葡萄牙波尔图Largo do Prof.Abel Salazar教授,CiênciasBiomédicasAbel Salazar(ICBAS)细胞遗传学实验室,No. 2,4099-003,葡萄牙波尔图。可用于评估修复不足受试者的染色体不稳定。先前的作者调查了红细胞(RBC)在确定正常健康捐献者对DEB的个体敏感性中的作用,并证明了RBC中的一种多态酶谷胱甘肽S-转移酶T1(GSTT1)参与了DEB排毒。在当前的工作中,我们研究了单个GSTM1和GSTT1基因型的影响以及RBC的存在对正常个体淋巴细胞培养物中DEB诱导的染色体断裂频率的影响,尤其是RBC分离成分的影响:RBC膜,红细胞裂解液和血红蛋白。我们的结果证实,个别的GSTT1基因型可调节DEB诱导的遗传损伤的水平。然而,这种作用不足以解释全血和RBC耗尽培养物之间染色体断裂的高度显着变化。我们证明了红细胞可以保护培养的淋巴细胞免受DEB诱导的染色体破坏,并且证明了血红蛋白在保护作用中的特殊作用。PMID:12694746 [PubMed-MEDLINE索引]

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