ABCD1
- Known as:
- ABCD1
- Catalog number:
- 000921A
- Product Quantity:
- 250ul
- Category:
- -
- Supplier:
- ABM
- Gene target:
- ABCD1
Ask about this productRelated genes to: ABCD1
- Gene:
- ABCD1 NIH gene
- Name:
- ATP binding cassette subfamily D member 1
- Previous symbol:
- ALD
- Synonyms:
- AMN, ALDP, adrenoleukodystrophy
- Chromosome:
- Xq28
- Locus Type:
- gene with protein product
- Date approved:
- 1986-01-01
- Date modifiied:
- 2019-04-23
Related products to: ABCD1
Related articles to: ABCD1
- Adrenoleukodystrophy (ALD) is an X-linked recessive disease caused by defects in the gene, leading to the accumulation of very long-chain fatty acids in the nervous system, adrenal glands, blood and other tissues. Male ALD patients may present with either the severe neurological phenotype of cerebral ALD, characterized by inflammatory demyelination in the white matter and rapid neurological deterioration, or milder forms, such as adrenomyeloneuropathy. We aimed to identify early brain changes in asymptomatic ALD patients prior to the clinical onset of cerebral ALD or adrenomyeloneuropathy by exploratory analysis of multimodal MRI data. Multimodal MRI data-including structural images, diffusion tensor imaging, magnetization transfer imaging and MR spectroscopy-were obtained from asymptomatic ALD patients during regular follow-up MRIs. Longitudinal MRI data were analysed from 12 asymptomatic ALD patients aged 10-18 years who did not develop a cerebral ALD phenotype during our surveillance and from 12 healthy age-matched male controls. Volumetric analyses of brain structures were performed using structural MRI data, as well as region-of-interest measurements on diffusion tensor imaging, magnetization transfer imaging and MR spectroscopy data. Statistical analysis was performed using linear mixed-effects models. Volumetry indicated increased white matter volume in asymptomatic ALD patients. Diffusion tensor imaging analysis revealed increased values of radial and mean diffusivity in the supratentorial white matter. Magnetization transfer saturation values derived from magnetization transfer imaging metrics were increased in the cortical and subcortical grey matter, but not in the white matter. MR spectroscopy showed increased inositol levels in the frontal white matter. Our diffusion tensor imaging and MR spectroscopy data indicate early white matter pathology in adolescent asymptomatic ALD patients. Among these findings, increased white matter volume and, in addition, elevated magnetization transfer saturation values in the grey matter are novel MRI phenotypes associated with asymptomatic ALD. These results suggest that not only white matter but also grey matter can be pathologically altered even before the onset of neurological phenotypes. Multimodal MRI parameters therefore constitute promising biomarkers for the assessment of pre-symptomatic brain tissue alterations in ALD and may be useful in future clinical studies targeting early therapeutic intervention. - Source: PubMed
Publication date: 2026/08/29
Meier KoljaSahoo PrativaMarten Lara MaleenGkalimani IriniHelms GuntherDechent PeterRosewich HendrikDreha-Kulaczewski SteffiGärtner Jutta - X-linked adrenoleukodystrophy (X-ALD) is the most common peroxisomal disorder and is associated with serious clinical consequences. While newborn screening (NBS) could facilitate early identification and timely intervention, its implementation for X-ALD remains controversial due to ethical concerns arising from its X-linked recessive inheritance pattern, particularly regarding female newborns. This study aims to explore the perspectives of healthcare professionals and the general public on NBS for X-ALD in Hong Kong. An online survey with 20 quantitative questions on ethical considerations was conducted from May to August 2024. Among a total of 259 responses, most respondents (99.2%) supported NBS for their male newborns, primarily because it facilitates early diagnosis and effective management. The majority of the respondents were in favor of offering NBS to female newborns, citing potential benefits for the management of adult-onset disease, enhanced family planning and support, and opportunities for extended family screening. However, some respondents expressed concerns regarding (1) psychological stress and anxiety from uncertain disease onset and frequent monitoring; (2) potential genetic discrimination and adverse impact on insurance premiums/coverage; (3) affordability and accessibility of expensive treatments, such as gene therapy; and (4) ethical issues regarding children's "right to an open future", particularly for late-onset female X-ALD. To address these concerns while respecting family autonomy, we propose an opt-in system with clear, balanced information for parents, combined with a three-tier screening algorithm. In summary, while inclusion of X-ALD in Hong Kong's NBS program receives strong community support, targeted measures are needed to mitigate the identified ethical and practical barriers. - Source: PubMed
Publication date: 2026/07/31
Mak Chloe MiuWu Hoi YingWong Ariel YingSong Felicite EnyuChan Toby Chun HeiFung Cheuk WingWong Suet NaHau Edgar Wai LokYeung Matthew Chun Wing - X-linked adrenoleukodystrophy (X-ALD) is the most common inherited peroxisomal disorder caused by pathogenic variants in the ABCD1 gene, leading to impaired peroxisomal β-oxidation of very-long-chain fatty acids (VLCFAs). Adrenomyeloneuropathy (AMN) is a frequent adult phenotype characterized by progressive spastic paraparesis and axonal neuropathy. We report the first case of AMN associated with a novel ABCD1 variant. - Source: PubMed
Publication date: 2026/08/15
Barone ValentinaBorghi AnnamariaVaisfeld AlessandroCorona GiovanniGalatolo DanieleTessa AlessandraSantorelli FilippoStagni SilviaSimonetti LuigiZini Andrea - X-linked adrenoleukodystrophy (ALD) is an inherited peroxisomal disorder caused by pathogenic variants in the ABCD1 gene, encoding a peroxisomal membrane transporter required for the import of very-long-chain fatty acids (VLCFA) into peroxisomes for degradation. ABCD1 deficiency leads to VLCFA accumulation in plasma and tissues. The resulting disease has a highly variable clinical presentation. In males, this manifests as cerebral demyelination, progressive myelopathy, and adrenal insufficiency, alone or in combination. Women predominantly develop myelopathy, while cerebral disease and adrenal insufficiency are rare, occurring almost exclusively in cases of extreme X-inactivation skewing toward the mutant allele. The lipid-mediated mechanisms linking VLCFA accumulation to tissue-specific pathology remain incompletely understood. Here, we review evidence that VLCFA-containing complex lipids, rather than free VLCFAs alone, are central mediators of tissue-specific pathology in ALD and discuss the therapeutic implications of this lipid-centric perspective. VLCFAs are incorporated into a broad range of complex lipids, including phosphatidylcholines, lysophosphatidylcholines, cholesterol esters, triacylglycerols, sphingomyelins, ceramides, and plasmalogens. The degree of lipid dysregulation increases with acyl chain length and saturation. VLCFA-containing lipid species correlate with disease severity across all clinical phenotypes. In the brain, VLCFA-containing phosphatidylcholines accumulate before demyelination onset, cholesterol ester accumulation is associated with neuroinflammatory cascades, and plasmalogen depletion reflects early oxidative damage. In the spinal cord, VLCFA-containing myelin lipids are associated with non-inflammatory axonopathy, mitochondrial dysfunction, and microglial phagocytic activation. In the adrenal gland, VLCFA accumulation in cholesterol ester-rich lipid droplets impairs ACTH receptor signaling and sequesters cholesterol from steroidogenic pathways. Enzymatic regulators of VLCFA homeostasis, including ELOVL1, SCD1, and the omega-oxidation enzymes CYP4F2 and CYP4F3B, are potential therapeutic targets for substrate reduction. Plasma VLCFA-lipid profiles correlate with disease severity across all affected tissues, positioning lipidomic profiling as a potential clinical instrument for risk stratification and treatment monitoring. Secondary lipid mediators amplify primary VLCFA toxicity through distinct, cell-type-specific pathways. The near-exclusive occurrence of cerebral ALD and adrenal insufficiency in women with extreme X-inactivation skewing suggests that partial reduction of the VLCFA lipid burden, rather than complete normalization, may be sufficient to prevent severe disease manifestations. This has direct implications for substrate-reduction therapy development. - Source: PubMed
Publication date: 2026/07/17
Kemp StephanEngelen MarcJaspers Yorrick R J - To determine whether boys with VUS detected through Newborn screening (NBS) for Adrenoleukodystrophy (ALD) develop adrenal insufficiency (aiALD) and cerebral ALD (cALD) at rates comparable to those with pathogenic variants, and to evaluate the relationship between C26:0-lysophosphatidylcholine (C26:0-LPC) levels and clinical outcomes. - Source: PubMed
Publication date: 2026/07/02
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