Adrenoleukodystrophy (ALD) is a
disease
A disease is a particular abnormal condition that negatively affects the structure or function of all or part of an organism, and that is not immediately due to any external injury. Diseases are often known to be medical conditions that a ...
linked to the
X chromosome
The X chromosome is one of the two sex-determining chromosomes ( allosomes) in many organisms, including mammals (the other is the Y chromosome), and is found in both males and females. It is a part of the XY sex-determination system and XO se ...
. It is a result of
fatty acid
In chemistry, particularly in biochemistry, a fatty acid is a carboxylic acid with an aliphatic chain, which is either saturated or unsaturated. Most naturally occurring fatty acids have an unbranched chain of an even number of carbon atoms, ...
buildup caused by
peroxisomal fatty acid beta oxidation which results in the accumulation of
very long chain fatty acids in tissues throughout the body. The most severely affected tissues are the
myelin in the
central nervous system
The central nervous system (CNS) is the part of the nervous system consisting primarily of the brain and spinal cord. The CNS is so named because the brain integrates the received information and coordinates and influences the activity of all p ...
, the
adrenal cortex, and the
Leydig cells in the testes. The long chain fatty acid buildup causes damage to the
myelin sheath of the
neuron
A neuron, neurone, or nerve cell is an membrane potential#Cell excitability, electrically excitable cell (biology), cell that communicates with other cells via specialized connections called synapses. The neuron is the main component of nervous ...
s of the brain, resulting in
seizures and hyperactivity. Other symptoms include problems in speaking, listening, and understanding verbal instructions.
Clinically, ALD presents as a heterogeneous disorder, showing several distinct
phenotypes, and no clear pattern of
genotype–phenotype correlation. As an X-linked disorder, ALD presents most commonly in males; however, approximately 50% of
heterozygote females show some symptoms later in life. Approximately two-thirds of ALD patients will present with the childhood cerebral form of the disease, which is the most severe form. It is characterized by normal development in early childhood, followed by rapid degeneration to a
vegetative state. The other forms of ALD vary in timing of onset and in clinical severity, ranging from adrenal insufficiency alone to progressive paraparesis in early adulthood.
ALD is caused by mutations in ''
ABCD1'', a gene located on the
X chromosome
The X chromosome is one of the two sex-determining chromosomes ( allosomes) in many organisms, including mammals (the other is the Y chromosome), and is found in both males and females. It is a part of the XY sex-determination system and XO se ...
that codes for ALD, a peroxisomal
membrane transporter protein. The exact mechanism of the pathogenesis of the various forms of ALD is not known. Biochemically, individuals with ALD show very high levels of unbranched, saturated, very long chain fatty acids, particularly
cerotic acid (26:0). The level of cerotic acid in plasma does not correlate with clinical presentation. Treatment options for ALD are limited. For the childhood cerebral form,
stem cell transplant
Hematopoietic stem-cell transplantation (HSCT) is the transplantation of multipotent hematopoietic stem cells, usually derived from bone marrow, peripheral blood, or umbilical cord blood in order to replicate inside of a patient and to produce ...
and
gene therapy are options if the disease is detected early in the clinical course. Adrenal insufficiency in ALD patients can be successfully treated. ALD is the most common peroxisomal inborn error of metabolism, with an incidence estimated between 1:18,000 and 1:50,000. It does not have a significantly higher incidence in any specific ethnic group.
Signs and symptoms
ALD can present in different ways. The different presentations are complicated by the pattern of
X-linked recessive inheritance. There have been seven
phenotype
In genetics, the phenotype () is the set of observable characteristics or traits of an organism. The term covers the organism's morphology or physical form and structure, its developmental processes, its biochemical and physiological prop ...
s described in males with ''
ABCD1'' mutations and five in females.
Initial symptoms in boys affected with the childhood cerebral form of ALD include emotional instability,
hyperactivity and disruptive behavior at school. Older patients affected with the cerebral form will present with similar symptoms. Untreated, cerebral ALD is characterized by progressive demyelination leading to a
vegetative state and death.
Adult males with an adrenomyeloneuropathy presentation typically present initially with muscle stiffness,
paraparesis and sexual dysfunction.
All patients with clinically recognized ALD phenotypes are at risk for adrenal insufficiency.
There is no reliable way to predict which form of the disease an affected individual will develop, with multiple phenotypes being demonstrated within families.
Onset of adrenal insufficiency is often the first symptom, appearing as early as two years of age.
Male adrenoleukodystrophy phenotypes
Female adrenoleukodystrophy phenotypes
Genetics

ALD is caused by mutations in ''ABCD1'', located at
Xq28 and demonstrates
X-linked recessive inheritance. The gene ABCD1 encodes a peroxisomal membrane transporter which is responsible for transporting very long chain fatty acid substrate into the peroxisomes for degradation.
Mutations in this gene that interfere with this process cause this syndrome.
Males with an ''ABCD1'' mutation are
hemizygous, as they only have a single X chromosome. Female carriers will typically avoid the most severe manifestations of the disease, but often become symptomatic later in life.
[ Although the detection of an ''ABCD1'' mutation identifies an individual who is affected with a form of ALD, there is no genotype–phenotype correlation.] Within a family, there will often be several different phenotypes, despite the presence of the same causative mutation. In one case, a family with six affected members displayed five different phenotypes.[ There are no common mutations that cause ALD, most are private or familial. Almost 600][ different mutations have been identified, approximately half are missense mutations, one quarter are frameshifts, with in-frame deletions and splicing defects making up the remainder.][ The incidence of new mutations in ALD (those occurring spontaneously, rather than being inherited from a carrier parent) is estimated at 4.1%, with the possibility that these are due to germline mosaicism.][
]
Pathogenesis
The exact cause for the varied collection of symptoms found in the different ALD phenotypes is not clear. The white matter
White matter refers to areas of the central nervous system (CNS) that are mainly made up of myelinated axons, also called tracts. Long thought to be passive tissue, white matter affects learning and brain functions, modulating the distributi ...
of the brain, the Leydig cells of the testes and the adrenal cortex are the most severely affected systems. The excess VLCFA can be detected in almost all tissues of the body, despite the localization of symptoms. The lack of Coenzyme A does not permit the disintegration of the VLCFA, accumulating the same in the white matter, adrenal glands, and the testes more specifically in the Leydig cells not allowing the proper function of these organs. Successful treatment of the demyelination process that affects the brain with either stem cell transplant or gene therapy does not immediately normalize the VLCFA levels in body tissues. The levels of VLCFA can be normalized by treatment with Lorenzo's oil, but this does not alter the progression of the disease. It is unclear whether the accumulation of VLCFA is associated with the pathogenesis of the disease in a specific way, or if it is a biochemical phenotype, useful for identification.
Diagnosis
The clinical presentation of ALD can vary greatly, making diagnosis difficult. With the variety of phenotypes, clinical suspicion of ALD can result from a variety of different presentations. Symptoms vary based on the disease phenotype, and even within families or between twins. When ALD is suspected based on clinical symptoms, the initial testing usually includes plasma very long chain fatty acid (VLCFA) determination using gas chromatography-mass spectrometry. The concentration of unsaturated VLCFA, particularly 26 carbon chains is significantly elevated in males with ALD, even prior to the development of other symptoms. Confirmation of ALD after positive plasma VLCFA determination usually involves molecular genetic analysis of ''ABCD1''. In females, where plasma VLCFA measurement is not always conclusive (some female carriers will have normal VLCFA in plasma), molecular analysis is preferred, particularly in cases where the mutation in the family is known. Although the clinical phenotype is highly variable among affected males, the elevations of VLCFA are present in all males with an ''ABCD1'' mutation.
Because the characteristic elevations associated with ALD are present at birth, well before any symptoms are apparent, there have been methods developed in the interests of including it in newborn screening programs. One of the difficulties with ALD as a disease included in universal newborn screening is the difficulty in predicting the eventual phenotype that an individual will express. The accepted treatment for affected boys presenting with the cerebral childhood form of the disease is a bone marrow transplant, a procedure which carries significant risks. However, because most affected males will demonstrate adrenal insufficiency, early discovery and treatment of this symptom could potentially prevent complications and allow these patients to be monitored for other treatment in the future, depending on the progression of their disease.
The Loes score is a rating of the severity of abnormalities in the brain found on MRI. It ranges from 0 to 34, based on a point system derived from the location and extent of disease and the presence of atrophy in the brain, either localized to specific points or generally throughout the brain. A Loes score of 0.5 or less is classified as normal, while a Loes score of 14 or greater is considered severe. It was developed by neuroradiologist Daniel J. Loes MD and is an important tool in assessing disease progression and the effectiveness of therapy.
Treatments
Dietary therapy
Initial attempts at dietary therapy in ALD involved restricting the intake of very-long chain fatty acids (VLCFA). Dietary intake is not the only source for VLCFA in the body, as they are also synthesized endogenously. This dietary restriction did not impact the levels of VLCFA in plasma and other body tissues. After the realization that endogenous synthesis was an important contribution to VLCFA in the body, efforts at dietary therapy shifted to inhibiting these synthetic pathways in the body. The parents of Lorenzo Odone, a boy with ALD, spearheaded efforts to develop a dietary treatment to slow the progression of the disease. They developed a mixture of unsaturated fatty acids ( glycerol trioleate and glyceryl trierucate in a 4:1 ratio), known as Lorenzo's oil that inhibits elongation of saturated fatty acids in the body. Supplementation with Lorenzo's oil has been found to normalize the VLCFA concentrations in the body, although its effectiveness at treating the cerebral manifestations of the disease is still controversial and unproven. Trials with Lorenzo's oil have shown that it does not stop the neurological degradation in symptomatic patients, nor does it improve adrenal function, but asymptomatic patients, and speculatively AMN variants without cerebral involvement, as well as female carriers may benefit from early intake of oleic and erucic acids in addition to VLCFA restriction.
Lorenzo's oil
A solution of 4 parts glycerol trioleate and 1 part glycerol trierucate, which are the triacylglycerol forms of oleic acid and erucic acid, has been tested for ALD. Results are mixed, showing possible benefit for asymptomatic patients in conjunction with dietary therapy, but little or no benefit for those with symptomatic ALD.
Transplant
While dietary therapy has been shown to be effective to normalize the very-long chain fatty acid concentrations in the plasma of individuals with ALD, allogeneic hematopoietic stem cell transplants is the only treatment that can stop demyelination that is the hallmark of the cerebral forms of the disease. In order to be effective, the transplant must be done at an early stage of the disease; if the demyelination has progressed, transplant can worsen the outcome, and increase the rate of decline. While transplants have been shown to be effective at halting the demyelination process in those presenting with the childhood cerebral form of ALD, follow-up of these patients has shown that it does not improve adrenal function.
Gene therapy
For patients where an appropriate match for a transplant cannot be found, there have been investigations into the use of gene therapy. Appropriate vectors are selected and modified to express wild type ''ABCD1'', which is then transplanted into the patients using a similar procedure as for a bone marrow or stem cell transplant. Gene therapy has only been tried on a small number of patients, mainly in France
France (), officially the French Republic ( ), is a country primarily located in Western Europe. It also comprises of overseas regions and territories in the Americas and the Atlantic, Pacific and Indian Oceans. Its metropolitan ar ...
. These patients were only considered for gene therapy after there was no HLA match
The human leukocyte antigen (HLA) system or complex is a complex of genes on chromosome 6 in humans which encode Membrane protein, cell-surface proteins responsible for the regulation of the immune system. The HLA system is also known as the hu ...
for a traditional transplant. In two reported cases, the gene therapy was successful, with a resolution of the demyelination process up to two years after the procedure. Although the gene therapy was successful in resolving the neurological symptoms, plasma VLCFA levels remained elevated.
Elivaldogene autotemcel
Elivaldogene autotemcel, sold under the brand name Skysona, is a gene therapy used to treat cerebral adrenoleukodystrophy (CALD). It was developed by Bluebird bio and was given breakthrough therapy designation by the U.S. Food and Drug Administ ...
is pending authorization by the European Commission .
Adrenal insufficiency
Treatment of the adrenal insufficiency that can accompany any of the common male phenotypes of ALD does not resolve any of the neurological symptoms. Hormone replacement is standard for ALD patients demonstrating adrenal insufficiency. Adrenal insufficiency does not resolve with successful transplant; most patients still require hormone replacement.
Epidemiology
ALD has not been shown to have an increased incidence in any specific country or ethnic group. In the United States, the incidence of affected males is estimated at 1:21,000. Overall incidence of hemizygous males and carrier females is estimated at 1:16,800. The reported incidence in France is estimated at 1:22,000.
Asymptomology
There are documented asymptomatic males who present no ALD symptoms well into their 60s and 70s. It's not understood how they can have an ABCD1 gene variant and possess elevated VLCFAs and not exhibit either Cerebral ALD, Adrenal Insufficiency, or Adrenomyeloneuropathy symptoms. Daughters of asymptomatic males become obligate carriers, who may themselves be asymptomatic and who can pass the variant onto their children, which then silently perpetuates ALD. Sons of asymptomatic males only receive their father's Y chromosome and therefore can't inherit ALD.
References
External links
*
Adrenoleukodystrophy
at National Center for Biotechnology Information
The National Center for Biotechnology Information (NCBI) is part of the United States National Library of Medicine (NLM), a branch of the National Institutes of Health (NIH). It is approved and funded by the government of the United States. T ...
{{ABC transporter disorders
Membrane transport protein disorders
Leukodystrophies
Demyelinating diseases of CNS
Skin conditions resulting from errors in metabolism
Neurological disorders in children
Adrenal gland disorders
Rare diseases
Fatty-acid metabolism disorders
Peroxisomal disorders
X-linked recessive disorders