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Features include always present findings: Aplasia of the eccrine sweat glands, Sparse hair, Abnormal natural killer cell physiology, and Conical incisor and others; and very common findings: Increased circulating IgA concentration. 15 total HPO annotations.
Organ System | Phenotype Count | Example Features |
|---|---|---|
Blood and immune system | 2 | Recurrent bacterial infections, Immunodeficiency |
Lab test results | 1 | Increased circulating IgA concentration |
Skin | 1 | Lymphedema |
Age of onset: infancy.
Incontinentia pigmenti (IP) is a disorder of the skin and its appendages, eye, and central nervous system (CNS) that occurs primarily in females and on occasion in males. The largest cohort of individuals with IP in whom the clinical and molecular diagnosis has been confirmed is reported in . Skin. See , , , and . IP manifests in stages that evolve sequentially. The onset and duration of each stage vary among individuals, and not all individuals experience all four stages. The skin abnormalities that define each stage occur along lines of embryonic and fetal skin development known as Blaschko lines . Blaschko lines correspond with cell migration or growth pathways that are established during embryogenesis. Like dermatomes, they are linear on the limbs and circumferential on the trunk.
Source: GeneReviews — "Incontinentia Pigmenti"
IKBKG encodes inhibitor of nuclear factor kappa B kinase regulatory subunit gamma (419 aa). Regulatory subunit of the IKK core complex which phosphorylates inhibitors of NF-kappa-B thus leading to the dissociation of the inhibitor/NF-kappa-B complex and ultimately the degradation of the inhibitor. Highest expression in Cells Cultured fibroblasts (7.4 TPM) and Whole Blood (7.3 TPM).
Ectodermal dysplasia and immunodeficiency 1 is associated with mutations in the IKBKG gene on chromosome X.
The IKBKG protein participates in IKBKG *420Wext*447 pathway.
IKBKG is classified as a druggable target (Druggable Genome and Kinase categories) with score 4.4.
A group of pathogenic variants (mainly located in exon 10) that result in impaired but not absent NF-kappaB signaling are associated with a milder IP phenotype in females and a lower risk of miscarriage of male fetuses. Additionally, most of these variants (which include missense, single base insertion/deletion causing frameshift, and nonsense variants) allow survival of males with hypohidrotic ectodermal dysplasia and immunodeficiency (HED-ID) and anhidrotic ectodermal dysplasia with immunodeficiency, osteopetrosis, and lymphedema (OLEDAID) .
Source: GeneReviews — "Incontinentia Pigmenti"
Incontinentia pigmenti has high penetrance. Most persons with IP appear to express the phenotype within a few months after birth. Expressivity, however, is highly variable. In addition, the skin findings can resolve over time and may be indistinguishable from other skin conditions with age. Furthermore, the dental, hair, and nail abnormalities can be managed cosmetically such that an affected adult woman may not have clinically evident diagnostic findings on physical examination.
Source: GeneReviews — "Incontinentia Pigmenti"
Incontinentia pigmenti (IP) should be suspected in individuals with characteristic clinical findings of the skin, teeth, hair, nails, eyes, and CNS, and family history as detailed below.
Major criteria (skin lesions that occur in stages from infancy to adulthood)
Source: GeneReviews — "Incontinentia Pigmenti"
A diagnosis other than incontinentia pigmenti (IP) should be considered when an individual has skeletal involvement (other than secondary to neurologic deficit), gross neurologic deficit, severe alopecia, atypical hyperpigmentation, or gross hypopigmentation. Body segment asymmetry is not usually associated with IP; however, one individual with IP and transverse terminal upper acromelia has been reported . The differential diagnosis for the skin manifestations of IP varies by stage. Because a child with IP may have an infectious comorbidity, findings consistent with an infectious disease should be evaluated accordingly, regardless of the presence of IP.
Source: GeneReviews — "Incontinentia Pigmenti"
Genetic testing for IKBKG is available. Testing is considered confirmatory for diagnosis.
No approved treatments are currently available for ectodermal dysplasia and immunodeficiency 1. The disease remains an area of unmet medical need.
To establish the extent of disease and needs in an individual diagnosed with incontinentia pigmenti (IP), the following evaluations are recommended if they have not already been completed:
Physical examination with particular emphasis on the skin, hair, nails, and neurologic system to establish the presence and extent of manifestations
Consultation with a clinical geneticist and/or genetic counselor
Involvement of a pediatric dermatologist for management of individuals with significant skin involvement
Prompt examination by an ophthalmologist familiar with IP and/or diseases of the retina for evidence of retinal neovascularization
Brain MRI examination and referral to a neurologist for an EEG if seizures, other neurologic abnormalities, or retinal hypervascularization are present
Magnetic resonance angiography, potentially useful in identifying cerebrovascular lesions if the neurologic deficit is consistent with a stroke-like pattern
Developmental evaluation if significant delays are identified
Involvement of a pediatric cardiologist for management of neonates with pulmonary hypertension
Treatment includes the following:
Source: GeneReviews — "Incontinentia Pigmenti"
Search ClinicalTrials.gov in the US and EU Clinical Trials Register in Europe for access to information on clinical studies for a wide range of diseases and conditions. Note: There may not be clinical trials for this disorder.
Source: GeneReviews — "Incontinentia Pigmenti"
View trials for ectodermal dysplasia and immunodeficiency 1
No schedule for eye examinations has been established, but the following has been suggested:
Monthly until age three to four months
Every three months between ages four months and one year
Every six months between ages one and three years
Annually after age three years
Neurologic function should be assessed at routine visits with a pediatrician, pediatric neurologist, or developmental pediatrician. Ongoing evaluation by a pedodontist or dentist is appropriate.
Source: GeneReviews — "Incontinentia Pigmenti"
Phenotype severity distribution: 7 always present features, 1 very common feature, 2 common features.
No clinical trials have been registered for ectodermal dysplasia and immunodeficiency 1.
8 publications have been identified in PubMed for ectodermal dysplasia and immunodeficiency 1. Research spans Case Report / Case Series (38%), Review / Meta-Analysis (25%), and Other (13%).
Nasir K (2026). [PMID: 41554793](https://pubmed.ncbi.nlm.nih.gov/41554793/). *Sci Rep*. [Other]
Cifaldi C (2025). [PMID: 39860371](https://pubmed.ncbi.nlm.nih.gov/39860371/). *J Clin Med*. [Case Report / Case Series]
Wang J (2025). [PMID: 40612668](https://pubmed.ncbi.nlm.nih.gov/40612668/). *Genes Dis*. [Review / Meta-Analysis]
Ocampo-Godinez JM (2024). [PMID: 39432904](https://pubmed.ncbi.nlm.nih.gov/39432904/). *J Exp Med*. [Basic Science / Preclinical]
Eigemann J (2024). [PMID: 39264518](https://pubmed.ncbi.nlm.nih.gov/39264518/). *J Clin Immunol*. [Case Report / Case Series]
Meric Z (2024). [PMID: 39540818](https://pubmed.ncbi.nlm.nih.gov/39540818/). *Turk Arch Pediatr*. [Case Report / Case Series]
Dev A (2024). [PMID: 38845644](https://pubmed.ncbi.nlm.nih.gov/38845644/). *Indian Dermatol Online J*. [Review / Meta-Analysis]
Butcher C (2024). [PMID: 39126172](https://pubmed.ncbi.nlm.nih.gov/39126172/). *Am J Med Genet A*. [Epidemiology / Natural History]
Data assembled from 6 of 12 sources · Last updated Sep 20, 2026, 1:36 AM UTC
Online Mendelian Inheritance in Man