Drug discovery for X-linked adrenoleukodystrophy: An unbiased screen for compounds that lower very long-chain fatty
Ann B Moser1,2, Yanqiu Liu1, Xiaohai Shi1
1Department of Neurogenetics, Hugo W. Moser Research Institute at Kennedy Krieger, Kennedy Krieger Institute, Baltimore, Maryland, USA.
Abstract:
X-linked adrenoleukodystrophy (XALD) is a genetic neurologic disorder with multiple phenotypic presentations and limited therapeutic options. The childhood cerebral phenotype (CCALD), a fatal demyelinating disorder affecting about 35% of patients, and the adult-onset adrenomyeloneuropathy (AMN), a peripheral neuropathy affecting 40%-45% of patients, are both caused by mutations in the ABCD1 gene. Both phenotypes are characterized biochemically by elevated tissue and plasma levels of saturated very long-chain fatty acids (VLCFA), and an increase in plasma cerotic acid (C26:0), along with the clinical presentation, is diagnostic. Administration of oils containing monounsaturated fatty acids, for example, Lorenzo's oil, lowers patient VLCFA levels and reduced the frequency of development of CCALD in presymptomatic boys. However, this therapy is not currently available. Hematopoietic stem cell transplant and gene therapy remain viable therapies for boys with early progressive cerebral disease. We asked whether any existing approved drugs can lower VLCFA and thus open new therapeutic possibilities for XALD. Using SV40-transformed and telomerase-immortalized skin fibroblasts from an XALD patient, we conducted an unbiased screen of a library of approved drugs and natural products for their ability to decrease VLCFA, using measurement of C26:0 in lysophosphatidyl choline (C26-LPC) by tandem mass spectrometry as the readout. While several candidate drugs were initially identified, further testing in primary fibroblast cell lines from multiple CCALD and AMN patients narrowed the list to one drug, the anti-hypertensive drug irbesartan. In addition to lowering C26-LPC, levels of C26:0 and C28:0 in total fibroblast lipids were reduced. The effect of irbesartan was dose dependent between 2 and 10 μM. When male XALD mice received orally administered irbesartan at a dose of 10 mg/kg/day, there was no reduction in plasma C26-LPC. However, irbesartan failed to lower mouse fibroblast C26-LPC consistently. The results of these studies indicate a potential therapeutic benefit of irbesartan in XALD that should be validated by further study.
Insights
The anti-hypertensive drug irbesartan shows potential for treating X-linked adrenoleukodystrophy (XALD) by lowering very long-chain fatty acids (VLCFA) in patient cells. Further studies are needed to confirm its efficacy in XALD patients.
Area of Science:
- Biochemistry
- Genetics
- Pharmacology
Background:
- X-linked adrenoleukodystrophy (XALD) is a genetic neurological disorder with limited treatment options.
- XALD is characterized by elevated very long-chain fatty acids (VLCFA), and current therapies are not widely available.
- Existing approved drugs may offer new therapeutic avenues for XALD.
Purpose of the Study:
- To screen approved drugs for their ability to lower VLCFA levels in XALD.
- To identify potential new treatments for XALD from existing drug libraries.
- To evaluate the efficacy of identified drugs in patient-derived cell lines and animal models.
Main Methods:
- Screening of approved drugs and natural products using SV40-transformed and telomerase-immortalized skin fibroblasts from XALD patients.
- Measurement of C26:0 in lysophosphatidyl choline (C26-LPC) by tandem mass spectrometry as a readout for VLCFA reduction.
- Testing of candidate drugs, including irbesartan, in primary fibroblast cell lines and XALD mouse models.
Main Results:
- The anti-hypertensive drug irbesartan was identified as a candidate that reduces C26-LPC in XALD fibroblasts.
- Irbesartan demonstrated a dose-dependent effect in lowering C26-LPC, C26:0, and C28:0 in total fibroblast lipids.
- Oral administration of irbesartan did not consistently reduce plasma or fibroblast C26-LPC levels in XALD mice.
Conclusions:
- Irbesartan shows potential as a therapeutic agent for XALD by reducing VLCFA levels in patient-derived cells.
- The inconsistent results in the XALD mouse model warrant further investigation and validation.
- Further studies are necessary to confirm the therapeutic benefit of irbesartan for XALD patients.
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