Rizzo W B, Avigan J, Chemke J, Schulman J D
Neurology. 1984 Feb;34(2):163-9. doi: 10.1212/wnl.34.2.163.
We studied very long-chain fatty acid (VLFA) metabolism in cultured fibroblasts from patients with adrenoleukodystrophy (ALD). Total hexacosanoate (C26:0) content of ALD fibroblasts was sixfold higher than normal and did not return to normal when cells were grown in lipid-free medium. When normal or ALD fibroblasts were grown in medium containing 10% ALD serum (which is enriched in C26:0), there was no further increase in C26:0 content compared with cells grown in 10% normal human serum. Uptake and loss of 1-14C-palmitate (C16:0) and 1-14C-lignocerate (C24:0) by ALD fibroblasts were similar to normal fibroblasts. Catabolism of exogenous 3H-C26:0 to 3H2O was about 30% of normal. Oxidation of exogenous 1-14C-hexacosanoate, 1-14C-lignocerate, and 1-14C-palmitate in intact ALD fibroblasts was 42%, 27 +/- 13% (SD), and 73 +/- 47%, respectively, of normal. These results are consistent with, but do not conclusively prove, a VLFA oxidation defect in ALD fibroblasts.
我们研究了肾上腺脑白质营养不良(ALD)患者培养的成纤维细胞中极长链脂肪酸(VLFA)的代谢情况。ALD成纤维细胞中总二十六烷酸(C26:0)含量比正常细胞高6倍,且当细胞在无脂培养基中生长时,该含量并未恢复正常。当正常或ALD成纤维细胞在含有10%ALD血清(富含C26:0)的培养基中生长时,与在10%正常人血清中生长的细胞相比,C26:0含量没有进一步增加。ALD成纤维细胞对1-14C-棕榈酸(C16:0)和1-14C-木蜡酸(C24:0)的摄取和流失情况与正常成纤维细胞相似。外源性3H-C26:0分解代谢为3H2O的量约为正常水平的30%。完整的ALD成纤维细胞对外源性1-14C-二十六烷酸、1-14C-木蜡酸和1-14C-棕榈酸的氧化分别为正常水平的42%、27±13%(标准差)和73±47%。这些结果与ALD成纤维细胞中存在VLFA氧化缺陷一致,但并未确凿证明这一点。