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1.
J Invest Dermatol ; 2024 Jul 11.
Article in English | MEDLINE | ID: mdl-39001722
2.
Acta Derm Venereol ; 101(9): adv00546, 2021 Sep 15.
Article in English | MEDLINE | ID: mdl-34396419

ABSTRACT

Data on vitamin D status of patients with inherited ichthyosis in Europe is scarce and unspecific concerning the genetic subtype. This study determined serum levels of 25-hydroxyvitamin D3 (25(OH)D3) in 87 patients with ichthyosis; 69 patients were additionally analysed for parathyroid hormone. Vitamin D deficiency was pronounced in keratinopathic ichthyosis (n = 17; median 25(OH)D3: 10.5 ng/ml), harlequin ichthyosis (n = 2;7.0 ng/ml) and rare syndromic subtypes (n = 3; 7.0 ng/ml). Vitamin D levels were reduced in TG1-proficient lamellar ichthyosis (n = 15; 8.9 ng/ml), TG1-deficient lamellar ichthyosis (n = 12; 11.7 ng/ml), congenital ichthyosiform erythroderma (n = 13; 12.4 ng/ml), Netherton syndrome (n = 7; 10.7 ng/ml) and X-linked ichthyosis (n = 8; 13.9 ng/ml). In ichthyosis vulgaris 25(OH)D3 levels were higher (n = 10; 19.7 ng/ml). Parathyroid hormone was elevated in 12 patients. Low 25(OH)D3 levels were associated with high severity of scaling (p = 0.03) implicating scaling as a risk factor for vitamin D deficiency. Thus, this study supports our recent guidelines for ichthyoses, which recommend screening for and substituting of vitamin D deficiency.


Subject(s)
Ichthyosis, Lamellar , Ichthyosis , Vitamin D Deficiency , Humans , Ichthyosis/diagnosis , Ichthyosis/genetics , Ichthyosis, Lamellar/diagnosis , Ichthyosis, Lamellar/genetics , Parathyroid Hormone , Vitamin D , Vitamin D Deficiency/diagnosis , Vitamin D Deficiency/epidemiology , Vitamin D Deficiency/genetics
3.
Dermatopathology (Basel) ; 8(2): 107-123, 2021 May 07.
Article in English | MEDLINE | ID: mdl-34066992

ABSTRACT

Ichthyoses are inborn keratinization disorders affecting the skin only (non-syndromic) or are associated with diseases of internal organs (syndromic). In newborns, they can be life-threatening. The identification of the gene defects resulted in reclassification and a better understanding of the pathophysiology. Histopathologic patterns include orthohyperkeratosis with a reduced or well-developed stratum granulosum, hyperkeratosis with ortho- and parakeratosis with preserved or prominent stratum granulosum, and epidermolytic ichthyosis. Another pattern features "perinuclear vacuoles and binucleated keratinocytes", which is associated with keratin mutations. Some ichthyoses are histologically defined by psoriasis-like features, and distinct subtypes show follicular hyperkeratosis. In addition to histological and immunohistochemical methods, these patterns allow a better histopathologic diagnosis.

5.
Am J Hum Genet ; 107(1): 158-163, 2020 07 02.
Article in English | MEDLINE | ID: mdl-32516568

ABSTRACT

The discovery of genetic causes of inherited skin disorders has been pivotal to the understanding of epidermal differentiation, function, and renewal. Here we show via exome sequencing that mutations in ASPRV1 (aspartic peptidase retroviral-like 1) cause a dominant Mendelian disorder featuring palmoplantar keratoderma and lamellar ichthyosis, a phenotype that has otherwise been exclusively recessive. ASPRV1 encodes a mammalian-specific and stratified epithelia-specific protease important in processing of filaggrin, a critical component of the uppermost epidermal layer. Three different heterozygous ASPRV1 missense mutations in four unrelated ichthyosis kindreds segregate with disease and disrupt protein residues within close proximity to each other and autocatalytic cleavage sites. Expression of mutant ASPRV1 proteins demonstrates that all three mutations alter ASPRV1 auto-cleavage and filaggrin processing, a function vital to epidermal barrier integrity.


Subject(s)
Aspartic Acid Endopeptidases/genetics , Heredity/genetics , Ichthyosis, Lamellar/genetics , Mutation, Missense/genetics , Skin Diseases/genetics , Filaggrin Proteins , Heterozygote , Humans , Intermediate Filament Proteins/genetics , Phenotype , Exome Sequencing/methods
6.
Pathologe ; 41(4): 326-333, 2020 Jul.
Article in German | MEDLINE | ID: mdl-32458048

ABSTRACT

Ichthyoses are hereditary cornification disorders that occur in isolation (nonsyndromic) or with associated internal diseases (syndromic) and can lead to life-threatening complications. The identification of the genetic causes has led to an understanding of the molecular mechanisms, but also to reclassification. The pathological changes in skin biopsies were also more precisely characterized. Certain histological patterns could be defined, which are based on the defects of epidermal differentiation but also on the inflammatory pattern. Complementary histo- and immunohistochemical methods sometimes allow a precise diagnosis, or at least a limitation of the differential diagnoses.


Subject(s)
Dermatitis , Ichthyosis , Apoptosis , Cell Differentiation , Dermatitis/diagnosis , Dermatitis/pathology , Humans , Ichthyosis/diagnosis , Ichthyosis/pathology
8.
J Dtsch Dermatol Ges ; 18(3): 225-243, 2020 Mar.
Article in English | MEDLINE | ID: mdl-32115871

ABSTRACT

Ichthyoses comprise a heterogeneous group of hereditary disorders of keratinization characterized by a highly varied clinical picture. A distinction is made between common hereditary ichthyoses (ichthyosis vulgaris and X-linked ichthyosis), which usually manifest themselves in the first year of life, and rare, sometimes severe congenital ichthyoses. Patients with very mild symptoms often do not even realize they have ichthyosis. The diagnosis is usually based on clinical evaluation. Molecular genetic testing as well as histological and electron microscopic studies may aid in confirming the diagnosis. Mapping a family tree is also diagnostically useful. Besides skin manifestations, important aspects of the clinical examination and history include disease onset, presence of a collodion membrane at birth as well as the presence of hair anomalies and extracutaneous signs and symptoms. Rigorous hydration of the skin (several times a day) and balneotherapy are the mainstay of ichthyosis treatment. For patients with severe disease, systemic acitretin treatment should be considered on a case-by-case basis. While ichthyoses are generally limited to the skin, there are syndromic forms that may affect other organs and that require interdisciplinarity cooperation. Although ichthyoses remain incurable, they can be managed well with symptomatic treatment. However, such treatment is frequently time consuming and expensive. In the future, novel therapeutic approaches might include enzyme replacement and gene therapies as well as antiinflammatory drugs.


Subject(s)
Ichthyosis/diagnosis , Diagnosis, Differential , Female , Genetic Testing , Humans , Male , Physical Examination
11.
Exp Dermatol ; 27(8): 807-814, 2018 08.
Article in English | MEDLINE | ID: mdl-28940785

ABSTRACT

Transglutaminases (TGs) are structurally and functionally related enzymes that modify the post-translational structure and activity of proteins or peptides, and thus are able to turn on or switch off their function. Depending on location and activities, TGs are able to modify the signalling, the function and the fate of cells and extracellular connective tissues. Besides mouse models, human diseases enable us to appreciate the function of various TGs. In this study, skin diseases induced by genetic damages or autoimmune targeting of these enzymes will be discussed. TG1, TG3 and TG5 contribute to the cutaneous barrier and thus to the integrity and function of epidermis. TGM1 mutations related to autosomal recessive ichthyosis subtypes, TGM5 mutations to a mild epidermolysis bullosa phenotype and as novelty TGM3 mutation to uncombable hair syndrome will be discussed. Autoimmunity to TG2, TG3 and TG6 may develop in a few of those genetically determined individuals who lost tolerance to gluten, and manifest as coeliac disease, dermatitis herpetiformis or gluten-dependent neurological symptoms, respectively. These gluten responder diseases commonly occur in combination. In autoimmune diseases, the epitope spreading is remarkable, while in some inherited pathologies, a unique compensation of the lost enzyme function is noted.


Subject(s)
Dermatitis Herpetiformis/immunology , Epitopes/immunology , Transglutaminases/physiology , Animals , Apoptosis , Autoantibodies/immunology , Celiac Disease/immunology , Cell Lineage , Dermatitis Herpetiformis/enzymology , Disease Models, Animal , Humans , Mice , Mice, Transgenic , Mutation , Phenotype , Signal Transduction , Skin/enzymology , Skin/immunology , Transglutaminases/genetics
14.
J Dtsch Dermatol Ges ; 15(10): 1053-1065, 2017 Oct.
Article in English | MEDLINE | ID: mdl-28976107

ABSTRACT

Ichthyoses are a group of rare genetic skin disorders that pose numerous clinical challenges, in particular with respect to the correct diagnosis and appropriate management. The present update of the German ichthyosis guidelines addresses recent diagnostic advances that have resulted in the Sorèze consensus classification. In this context, we provide an updated diagnostic algorithm, taking into account clinical features as well as the molecular genetic basis of these disorders. Moreover, we highlight current therapeutic approaches such as psychosocial support, balneotherapy, mechanical scale removal, topical therapy, and systemic retinoid therapy. General aspects such as the indication for physical therapy, ergotherapy, or genetic counseling are also discussed. The present update was consented by an interdisciplinary consensus conference that included dermatologists, pediatricians, human geneticists, and natural scientists as well as representatives of the German patient support organization Selbsthilfe Ichthyose e. V.


Subject(s)
Guideline Adherence , Ichthyosis/diagnosis , Ichthyosis/therapy , Adolescent , Adult , Child , Child, Preschool , Diagnosis, Differential , Female , Genetic Predisposition to Disease/genetics , Germany , Humans , Ichthyosis/classification , Ichthyosis/genetics , Infant , Infant, Newborn , Male , Pregnancy , Prognosis , Young Adult
15.
BMC Med Genet ; 18(1): 92, 2017 08 23.
Article in English | MEDLINE | ID: mdl-28835222

ABSTRACT

BACKGROUND: Psoriatic Arthritis (PsA) is a chronic inflammatory disease of the joints. PsA is etiologically complex, and 11 susceptibility loci have been identified so far. Most of these overlap with loci associated with psoriasis vulgaris (PsV), the most common psoriatic skin manifestation which is also frequently seen in PsA patients. In addition, two copy number variants (CNVs) are associated with PsV, one of which, located within the LCE3 gene cluster, is also associated with PsA. Finally, an intergenic deletion has been reported as a PsA-specific CNV. METHODS: We performed a genome-wide association study (GWAS) of CNVs in PsA and assessed the contribution to disease risk by CNVs at known psoriasis susceptibility loci. RESULTS: After stringent quality assessment and validation of CNVs of the GWAS with an alternative quantitative method, two significantly associated CNVs remained, one near UXS1, the other one at the TRB locus. However, MLPA analysis did not confirm the CN state in ~1/3 of individuals, and an analysis of an independent case-control-study failed to confirm the initial associations. Furthermore, detailed PCR-based analysis of the sequence at TRB revealed the existence of a more complex genomic sequence most accurately represented by freeze hg18 which accordingly failed to confirm the hg19 sequence. Only rare CNVs were detected at psoriasis susceptibility loci. At three of 12 susceptibility loci with CNVs (CSMD1, IL12B, RYR2), CN variability was confirmed independently by MLPA. Overall, the rate of CNV confirmation by MLPA was strongly dependent upon CNV type, CNV size and the number of array markers involved in a CNV. CONCLUSION: Although we identified PsA associations at several loci and confirmed that the common CNVs at these sites were real, ~1/3 of the common CNV states could not be reproduced. Furthermore, replication analysis failed to confirm the original association. Furthermore, SNP array-based analyses of CNVs were found to be more reliable for deletions than duplications, independent of the respective CNV allele frequency. CNVs are thus good candidate disease variants, while the methods to detect them should be applied cautiously and reproduced by an independent method.


Subject(s)
Arthritis, Psoriatic/genetics , DNA Copy Number Variations , Genome-Wide Association Study , White People/genetics , Arthritis, Psoriatic/diagnosis , Case-Control Studies , Gene Deletion , Gene Frequency , Genetic Loci , Genetic Predisposition to Disease , Genome, Human , Genotyping Techniques , Germany , Humans , Polymorphism, Single Nucleotide , Reproducibility of Results
16.
J Dtsch Dermatol Ges ; 15(5): 481-482, 2017 May.
Article in English | MEDLINE | ID: mdl-28485881
17.
Mol Cell Endocrinol ; 437: 142-153, 2016 12 05.
Article in English | MEDLINE | ID: mdl-27531568

ABSTRACT

The impact of steroid sulfatase (STS) activity in the circulating levels of both sulfated and unconjugated steroids is only partially known. In addition, the sulfated steroid pathway, a parallel pathway to the one for unconjugated steroids, which uses the same enzymes, has never been characterized in detail before. Patients with steroid sulfatase deficiency (STSD) are unable to enzymatically convert sulfated steroids into their unconjugated forms, and are a good model to elucidate how STS affects steroid biosynthesis and to study the metabolism of sulfated steroids. We quantified unconjugated and sulfated steroids in STSD serum, and compared these results with data obtained from serum of healthy controls. Most sulfated steroids were increased in STSD. However, androstenediol-3-sulfate and epiandrosterone sulfate showed similar levels in both groups, and the concentrations of androsterone sulfate were notably lower. Hydroxylated forms of DHEAS and of pregnenolone sulfate were found to be increased in STSD, suggesting a mechanism to improve the excretion of sulfated steroids. STSD testosterone concentrations were normal, but cholesterol and DHEA were significantly decreased. Additionally, serum bile acids were three-fold higher in STSD. Correlations between concentrations of steroids in each group indicate that 17α-hydroxy-pregnenolone-3-sulfate in men is mainly biosynthesized from the precursor pregnenolone sulfate and androstenediol-3-sulfate from DHEAS. These findings confirm the coexistence of two steroidogenic pathways: one for unconjugated steroids and another one for sulfated steroids. Each pathway is responsible for the synthesis of specific steroids. The equal levels of testosterone, and the reduced level of unconjugated precursors in STSD, support that testosterone is primarily synthesized from sulfated steroids. In consequence, testosterone synthesis in STSD relies on an enzyme with sulfatase activity other than STS. This study reveals that STS is a key player of steroid biosynthesis regulating the availability of circulating cholesterol.


Subject(s)
Homeostasis , Ichthyosis, X-Linked/metabolism , Ichthyosis, X-Linked/pathology , Steroids/metabolism , Steryl-Sulfatase/metabolism , Sulfates/metabolism , Adolescent , Adult , Aged , Case-Control Studies , Child , Child, Preschool , Dehydroepiandrosterone , Estradiol Dehydrogenases/metabolism , Humans , Middle Aged , Pregnenolone , Steroid 17-alpha-Hydroxylase/metabolism , Young Adult
18.
J Lipid Res ; 56(9): 1843-51, 2015 Sep.
Article in English | MEDLINE | ID: mdl-26239050

ABSTRACT

Steroids are primarily present in human fluids in their sulfated forms. Profiling of these compounds is important from both diagnostic and physiological points of view. Here, we present a novel method for the quantification of 11 intact steroid sulfates in human serum by LC-MS/MS. The compounds analyzed in our method, some of which are quantified for the first time in blood, include cholesterol sulfate, pregnenolone sulfate, 17-hydroxy-pregnenolone sulfate, 16-α-hydroxy-dehydroepiandrosterone sulfate, dehydroepiandrosterone sulfate, androstenediol sulfate, androsterone sulfate, epiandrosterone sulfate, testosterone sulfate, epitestosterone sulfate, and dihydrotestosterone sulfate. The assay was conceived to quantify sulfated steroids in a broad range of concentrations, requiring only 300 µl of serum. The method has been validated and its performance was studied at three quality controls, selected for each compound according to its physiological concentration. The assay showed good linearity (R(2) > 0.99) and recovery for all the compounds, with limits of quantification ranging between 1 and 80 ng/ml. Averaged intra-day and between-day precisions (coefficient of variation) and accuracies (relative errors) were below 10%. The method has been successfully applied to study the sulfated steroidome in diseases such as steroid sulfatase deficiency, proving its diagnostic value. This is, to our best knowledge, the most comprehensive method available for the quantification of sulfated steroids in human blood.


Subject(s)
Cholesterol Esters/blood , Progestins/blood , Sulfates/blood , Testosterone Congeners/blood , Chromatography, Liquid , Humans , Tandem Mass Spectrometry
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