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Quantitation of 44′-methylene diphenyl diisocyanate human serum albumin adducts

机译:44-亚甲基二苯基二异氰酸酯人血清白蛋白加合物的定量

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摘要

4,4′-Methylene diphenyl diisocyanate (herein 4,4′-MDI) is used in the production of polyurethane foams, elastomers, coatings, adhesives and the like for a wide range of commercial products. Occupational exposure to MDI levels above current airborne exposure limits can elicit immune mediated hypersensitivity reactions such as occupational asthma in sensitive individuals. To accurately determine exposure, there has been increasing interest in developing analytical methods to measure internal biomarkers of exposure to MDI. Previous investigators have reported methodologies for measuring MDI diamine metabolites and MDI-Lysine (4,4′-MDI-Lys) adducts. The purpose of this study was to develop and validate an ultra performance liquid chromatography isotope dilution tandem mass spectrometry (UPLC-ID/MS/MS) quantitation method via a signature peptide approach to enable biomonitoring of 4,4′-MDI adducted to human serum albumin (HSA) in plasma. A murine, anti-4,4′-MDI monoclonal IgM antibody was bound to magnetic beads and utilized for enrichment of the MDI adducted HSA. Following enrichment, trypsin digestion was performed to generate the expected 414 site (primary site of adduction) 4,4′-MDI-adducted HSA signature peptide that was quantified by UPLC-ID/MS/MS. An Agilent 6530 UPLC/quadrupole time of flight MS (QTOF) system was utilized for intact adducted protein analysis and an Agilent 6490 UPLC/MS/MS system operated in multiple reaction monitoring (MRM) mode was utilized for quantification of the adducted signature peptide biomarker both for in chemico and worker serum samples. Worker serum samples were initially screened utilizing the previously developed 4,4′-MDI-Lys amino acid method and results showed that 12 samples were identified as quantifiable for 4,4′-MDI-Lys adducts. The signature peptide adduct approach was applied to the 12 worker samples identified as quantifiable for 4,4′-MDI-Lys adducts. Results indicated no positive results were obtained above the quantification limit by the signature peptide approach. If the 414 site of lysine adduction accounted for 100% of the 4,4′-MDI adductions in the signature peptide adduct approach, the three highest quantifiable samples by the 4,4′-MDI-Lys method should have at least been detectable by the signature peptide method. Results show that although the 4,4′-MDI signature peptide approach is more selective, it is 18 times less sensitive than the 4,4′-MDI-Lys method, thus limiting the ability to detect adduct levels relative to the 4,4′-MDI-Lys amino acid method.
机译:4,4′-亚甲基二苯基二异氰酸酯(本文为4,4′-MDI)用于生产用于多种商业产品的聚氨酯泡沫,弹性体,涂料,粘合剂等。职业暴露于高于当前空气暴露极限的MDI水平会引起免疫介导的超敏反应,例如敏感个体的职业性哮喘。为了准确地确定暴露程度,人们对开发分析方法来测量暴露于MDI的内部生物标记物的兴趣日益浓厚。以前的研究人员已经报告了测量MDI二胺代谢产物和MDI-赖氨酸(4,4'-MDI-Lys)加合物的方法。这项研究的目的是通过特征肽方法开发和验证超高效液相色谱同位素稀释串联质谱(UPLC-ID / MS / MS)定量方法,以实现对人血清中加成的4,4'-MDI的生物监控血浆中的白蛋白(HSA)。将鼠抗4,4'-MDI单克隆IgM抗体与磁珠结合,并用于富集MDI加成的HSA。富集后,进行胰蛋白酶消化,以产生预期的414位点(加合的主要位点)4,4'-MDI加成的HSA标志肽,并通过UPLC-ID / MS / MS进行定量。使用Agilent 6530 UPLC /四极杆飞行时间质谱分析(QTOF)系统进行完整的加合蛋白质分析,并使用以多反应监测(MRM)模式操作的Agilent 6490 UPLC / MS / MS系统对加成标记肽生物标志物进行定量用于化学和工人血清样品。最初使用先前开发的4,4'-MDI-Lys氨基酸方法筛选了工人血清样品,结果显示12个样品被鉴定为可量化的4,4'-MDI-Lys加合物。签名肽加合物方法应用于鉴定为4,4'-MDI-Lys加合物可量化的12个工人样品。结果表明,通过特征肽法未获得超出定量限的阳性结果。如果在特征肽加合物方法中赖氨酸加合物的414位点占4,4'-MDI加合物的100%,则应至少通过4,4'-MDI-Lys方法检测到三个可量化最高的样品标记肽法。结果表明,尽管4,4'-MDI标记肽方法具有更高的选择性,但它的灵敏度比4,4'-MDI-Lys方法低18倍,因此限制了检测相对于4,4的加合物水平的能力'-MDI-Lys氨基酸法。

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