通过在丁基化FIA-MS/MS工作流程中联合分析2-OPP、6-氧代Pipecolate和Pipecolate,推进新生儿筛查吡哆酮依赖性癫痫- aldh7a1

IF 4 Q1 GENETICS & HEREDITY
Mylène Donge, Sandrine Marie, Amandine Pochet, Lionel Marcelis, Geraldine Luis, François Boemer, Clément Prouteau, Samir Mesli, Matthias Cuykx, Thao Nguyen-Khoa, David Guénet, Aurélie Empain, Magalie Barth, Benjamin Dauriat, Cécile Laroche-Raynaud, Corinne De Laet, Patrick Verloo, An I Jonckheere, Manuel Schiff, Marie-Cécile Nassogne, Joseph P Dewulf
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引用次数: 0

摘要

吡哆醇依赖性癫痫(PDE)是一组罕见的发育性和癫痫性脑病。最常见的PDE是由ALDH7A1 (PDE-ALDH7A1; omim# 266100)的双等位致病变异引起的,ALDH7A1编码α-氨基己二酸半醛(α-AASA)脱氢酶,这是赖氨酸分解代谢的关键酶。受影响的个体表现为癫痫发作对常规抗惊厥药物无反应,但对大剂量吡哆醇(维生素B6)有反应。辅助赖氨酸限制和精氨酸补充也显示出改善神经发育结果的潜力。鉴于早期干预的显著益处,PDE-ALDH7A1是新生儿筛查(NBS)的有力候选。然而,传统的生物标志物在室温下不稳定(α-AASA和哌啶-6-羧酸酯)或缺乏足够的特异性(胡椒酸酯),限制了它们在基于生物标志物的NBS中的应用。最近发现的两个新的稳定的生物标志物2S,6S-/2S, 6r -氧丙基哌啶-2-羧酸酯(2-OPP)和6-氧-哌酸酯(oxo-PIP),为生化NBS提供了新的潜力。我们评估了将2-OPP、oxo-PIP和pipolate纳入常规丁基化FIA-MS/MS工作流程用于生化NBS的可行性。共9402例干血点(DBS),包括9例PDE-ALDH7A1确诊患者和9393例匿名对照。2-OPP成为最敏感的生物标志物,所有PDE-ALDH7A1患者的敏感性为100%,阳性预测值(PPV)为18.4%,阈值高于99.5百分位数。将升高的2-OPP(高于99.5百分位)与pipiolate或oxo-PIP(高于85.0百分位)结合作为二级标记,在相同的多重fib -MS/MS分析中检测到ppv进一步提高到分别为60%和45%,同时保持与丁醇衍生方法的相容性。值得注意的是,将2-OPP阈值提高到99.89百分位以上,结合pipecolate或oxo-PIP高于85.0百分位,可获得100%的敏感性和100%的PPV。这项研究支持了在现有NBS基础设施中基于2- opp的新生儿PDE-ALDH7A1筛查的巨大潜力。在一次检测中多重检测2-OPP、pipecolate和oxo-PIP的能力提供了一种强大、实用、高通量和经济高效的方法。这些结果支持将PDE-ALDH7A1纳入现有的生化NBS面板。需要在更大的队列中进行进一步的前瞻性研究,以完善临界值并确认临床表现。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Advancing Neonatal Screening for Pyridoxine-Dependent Epilepsy-ALDH7A1 Through Combined Analysis of 2-OPP, 6-Oxo-Pipecolate and Pipecolate in a Butylated FIA-MS/MS Workflow.

Advancing Neonatal Screening for Pyridoxine-Dependent Epilepsy-ALDH7A1 Through Combined Analysis of 2-OPP, 6-Oxo-Pipecolate and Pipecolate in a Butylated FIA-MS/MS Workflow.

Advancing Neonatal Screening for Pyridoxine-Dependent Epilepsy-ALDH7A1 Through Combined Analysis of 2-OPP, 6-Oxo-Pipecolate and Pipecolate in a Butylated FIA-MS/MS Workflow.

Pyridoxine-dependent epilepsy (PDE) represents a group of rare developmental and epileptic encephalopathies. The most common PDE is caused by biallelic pathogenic variants in ALDH7A1 (PDE-ALDH7A1; OMIM #266100), which encodes α-aminoadipate semialdehyde (α-AASA) dehydrogenase, a key enzyme in lysine catabolism. Affected individuals present with seizures unresponsive to conventional anticonvulsant medications but responsive to high-dose of pyridoxine (vitamin B6). Adjunctive lysine restriction and arginine supplementation have also shown potential in improving neurodevelopmental outcomes. Given the significant benefit of early intervention, PDE-ALDH7A1 is a strong candidate for newborn screening (NBS). However, traditional biomarkers are biochemically unstable at room temperature (α-AASA and piperideine-6-carboxylate) or lack sufficient specificity (pipecolate), limiting their utility for biomarker-based NBS. The recent identification of two novel and stable biomarkers, 2S,6S-/2S,6R-oxopropylpiperidine-2-carboxylate (2-OPP) and 6-oxo-pipecolate (oxo-PIP), offers renewed potential for biochemical NBS. We evaluated the feasibility of incorporating 2-OPP, oxo-PIP, and pipecolate into routine butylated FIA-MS/MS workflows used for biochemical NBS. A total of 9402 dried blood spots (DBS), including nine confirmed PDE-ALDH7A1 patients and 9393 anonymized controls were analyzed using a single multiplex assay. 2-OPP emerged as the most sensitive biomarker, identifying all PDE-ALDH7A1 patients with 100% sensitivity and a positive predictive value (PPV) of 18.4% using a threshold above the 99.5th percentile. Combining elevated 2-OPP (above the 99.5th percentile) with either pipecolate or oxo-PIP (above the 85.0th percentile) as secondary marker detected within the same multiplex FIA-MS/MS assay further improved the PPVs to 60% and 45%, respectively, while maintaining compatibility with butanol-derivatized method. Notably, increasing the 2-OPP threshold above the 99.89th percentile, in combination with either pipecolate or oxo-PIP above the 85.0th percentile resulted in both 100% sensitivity and 100% PPV. This study supports the strong potential of 2-OPP-based neonatal screening for PDE-ALDH7A1 within existing NBS infrastructures. The ability to multiplex 2-OPP, pipecolate and oxo-PIP within a single assay offers a robust, practical, high-throughput and cost-effective approach. These results support the inclusion of PDE-ALDH7A1 in existing biochemical NBS panels. Further prospective studies in larger cohorts are needed to refine cutoffs and confirm clinical performance.

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来源期刊
International Journal of Neonatal Screening
International Journal of Neonatal Screening Medicine-Pediatrics, Perinatology and Child Health
CiteScore
6.70
自引率
20.00%
发文量
56
审稿时长
11 weeks
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