首页> 外文期刊>International Journal of Hygiene and Environmental Health >In vitro cytotoxic effects of secondary metabolites of DEHP and its alternative plasticizers DINCH and DINP on a L929 cell line
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In vitro cytotoxic effects of secondary metabolites of DEHP and its alternative plasticizers DINCH and DINP on a L929 cell line

机译:L929细胞系中Dehp及其替代增塑剂Dinch和Dinp的体外细胞毒性作用

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Background: Phthalic acid esters are widely used to improve the plasticity of PVC in medical devices (MD). The most famous plasticizer is DEHP, whose use in medical devices has been contested by the European authorities since 2008. Several alternative plasticizers are being considered to replace DEHP, such as DENT, TOTM, DINP or DINCH, but they are also released from the PVC throughout their life cycle and are metabolized in the same way as DEHP.Objectives: Our study focuses on the in vitro cytotoxicity of two alternative plasticizers (DINCH and DINP) contained in certain medical devices. They are likely to migrate and be transformed in vivo into the primary and secondary metabolites by a metabolism similar to that of DEHP, This preliminary study is the first to assess the in vitro cytotoxicity of oxidized metabolites of DINCH and DINP based on the EN ISO 10-993.5 standards documents.Methods: We have studied the complete multi-step organic synthesis of secondary metabolites of DINP and DINCH and have performed cytotoxicity tests on L929 murine cells according to the EN ISO 10993-5 standard design for the biocompatibility of a MD. The tested concentrations of obtained metabolites (0.01, 0.05 and 0.1 mg/mL) covered the range likely to be found for DEHP (total metabolism) in biological fluids coming into direct contact with the MD. The concentrations tested in our study were chosen based on a complete transformation of the plasticizers released after direct contact between a MD and the patient's blood.Results: Only 7-oxo-MMeOCH is cytotoxic at the highest concentration (0.1 mg/mL) after 7 days of exposure, just like 5-oxo-MEHP for the same concentration. By contrast, 7-OH-MMeOP, 7-cx-MMeOP, 7-oxo-MMeOP, 7-OH-MMeOCH and 7-cx-MMeOCH were not found to be cytotoxic.Conclusion: The known concentrations of these secondary metabolites in urinary samples are in the mu g/L range, i.e. about 100-1000 times lower than the concentrations tested in this study. Cytotoxicity is known to be dose-dependent but it is not always the case for endocrine perturbations and the secondary metabolites could induce endocrine perturbations at very low doses.
机译:背景:邻苯二甲酸酯广泛用于改善PVC在医疗装置(MD)中的可塑性。最着名的增塑剂是DEHP,自2008年以来,欧洲当局的使用者对医疗器械的使用。若干替代的增塑剂被认为是取代DEHP,如DET,TOTM,DINP或DINCH,但它们也从PVC释放在整个生命周期中,并以与Dehp.objectives相同的方式代谢:我们的研究重点介绍某些医疗装置中包含的两种替代增塑剂(DINCH和DINP)的体外细胞毒性。它们可能通过类似于Dehp的代谢体内迁移并在体内转化为初级和次生代谢物,这项初步研究是第一个评估基于en ISO 10的Dinch和Dinp的氧化代谢物的体外细胞毒性-993.5标准文件。方法:我们研究了DINP和DINCH的次级代谢物的完全多步有机合成,并根据en ISO 10993-5标准设计进行了对L929鼠细胞进行的细胞毒性测试,用于MD的生物相容性。获得的代谢物(0.01,0.05和0.1mg / ml)的测试浓度覆盖了可能在与MD直接接触的生物流体中发现DEHP(总代谢)的范围。根据我们的研究中测试的浓度基于在MD和患者的血液之间直接接触后释放的增塑剂的完全转化。结果:仅7-氧代MMEOCH在7时以最高浓度(0.1mg / ml)的细胞毒性。曝光天,就像5- oxo-mehp一样浓度。相比之下,7-OH-MMEOP,7-CX-MMEOP,7-氧代MMEOP,7-OH-MMEOCH和7-CX-MMEOCH未发现是细胞毒性的。结论:尿液中这些次级代谢物的已知浓度样品在MU G / L范围内,即比本研究中测试的浓度低约100-1000倍。已知细胞毒性是剂量依赖性,但内分泌扰动的情况并不总是如此,次生代谢物可以在非常低剂量下诱导内分泌扰动。

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