Yamada Kenji, Kobayashi Hironori, Bo Ryosuke, Purevsuren Jamiyan, Mushimoto Yuichi, Takahashi Tomoo, Hasegawa Yuki, Taketani Takeshi, Fukuda Seiji, Yamaguchi Seiji
Department of Pediatrics, Shimane University, Faculty of Medicine, Izumo, Shimane, Japan.
Department of Pediatrics, Shimane University, Faculty of Medicine, Izumo, Shimane, Japan.
Brain Dev. 2017 Jan;39(1):48-57. doi: 10.1016/j.braindev.2016.08.004. Epub 2016 Aug 30.
We evaluated the effects of bezafibrate (BEZ) on β-oxidation in fibroblasts obtained from patients with glutaric acidemia type II (GA2) of various clinical severities using an in vitro probe (IVP) assay.
Cultured fibroblasts from 12 patients with GA2, including cases of the neonatal-onset type both with and without congenital anomalies (the prenatal- and neonatal-onset forms, respectively), the infantile-onset, and the myopathic forms, were studied. The IVP assay was performed by measuring acylcarnitines (ACs) in the cell culture medium of fibroblasts incubated with palmitic acid for 96h in the presence of 0-800μM BEZ using tandem mass spectrometry.
The IVP assay showed that 100μM BEZ markedly reduced the level of palmitoylcarnitine (C16) in the neonatal-onset, infantile-onset, and myopathic forms of GA2, either increasing or maintaining a high level of acetylcarnitine (C2), which serves as an index of energy production via β-oxidation. In the prenatal-onset form, although a small reduction of C16 was also observed in the presence of 100μM BEZ, the level of C2 remained low. At concentrations higher than 100μM, BEZ further decreased the level of ACs including C16, but a concentration over 400μM decreased the level of C2 in most cases.
BEZ at 100μM was effective for all GA2 phenotypes except for the prenatal-onset form, as a reduction of C16 without deterioration of C2 is considered to indicate improvement of β-oxidation. The effects of higher doses BEZ could not be estimated by the IVP assay but might be small or nonexistent.
我们使用体外探针(IVP)检测法,评估了苯扎贝特(BEZ)对从不同临床严重程度的II型戊二酸血症(GA2)患者获取的成纤维细胞中β-氧化的影响。
研究了12例GA2患者的培养成纤维细胞,包括新生儿期发病型(分别有无先天性异常,即产前和新生儿期发病形式)、婴儿期发病型和肌病型。通过串联质谱法,在0 - 800μM BEZ存在的情况下,测量与棕榈酸孵育96小时的成纤维细胞培养基中的酰基肉碱(ACs),进行IVP检测。
IVP检测显示,100μM BEZ显著降低了GA2新生儿期发病型、婴儿期发病型和肌病型中棕榈酰肉碱(C16)的水平,同时增加或维持了较高水平的乙酰肉碱(C2),C2可作为通过β-氧化产生能量的指标。在产前发病型中,虽然在100μM BEZ存在时也观察到C16略有降低,但C2水平仍然较低。在高于100μM的浓度下,BEZ进一步降低了包括C16在内的ACs水平,但在大多数情况下,超过400μM的浓度会降低C2水平。
100μM的BEZ对除产前发病型外的所有GA2表型均有效,因为C16降低而C2不恶化被认为表明β-氧化得到改善。IVP检测无法评估更高剂量BEZ的效果,但可能很小或不存在。