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Monovalent Fab' immunoglobulin fragments from endemic pemphigus foliaceus autoantibodies reproduce the human disease in neonatal Balb/c mice.

Fogo selvagem (FS) is an autoimmune disease caused by IgG autoantibodies to desmoglein I (DG-I), a desmosomal glycoprotein. We have previously shown that the autoantibodies in these patients are pathogenic and restricted mainly to the IgG4 subclass. The purpose of this study was to determine if the Fc domain or the valence of FS autoantibodies were relevant in the induction of epidermal disease in neonatal mice. IgG4 was prepared from sera of FS patients by anion exchange chromatography, and digested with pepsin to yield F(ab')2 fragments. Monovalent FS Fab' were made by reduction and alkylation of FS F(ab')2. Intact FS IgG4, FS F(ab')2, and FS Fab' fragments were injected into neonatal mice. Intact FS IgG4 and both FS IgG fragments were pathogenic. The disease in the animals was dose dependent, and on the molar basis, FS Fab' fragments were more potent and efficient in producing disease than whole FS IgG. These results suggest: (a) simple binding of FS autoantibodies to DG-I may trigger keratinocyte detachment and epidermal disease; (b) DG-I may represent a keratinocyte cell adhesion molecule; and (c) complement activation and surface cross-linking may not be relevant in keratinocyte detachment.

Animals↗

Environmental risk factors in endemic pemphigus foliaceus (fogo selvagem).

An ongoing sero-epidemiological study of the Terena reservation of Limao Verde, known to have a high prevalence and incidence of FS, has revealed important information about this autoimmune disease. During surveillance of this population of approximately 1,200, which began in 1994, we documented 43 FS cases and studied the transition from the normal state to the disease state in several of these individuals. Furthermore, we established that FS patients as well as a large number of normal individuals on the reservation possess anti-dsg1 autoantibodies. The following interesting observations were made: (1) the ectodomain of dsg1 contains epitopes recognized by both autoantibodies and T cells from FS patients; (2) pathogenic anti-dsg1 autoantibodies in FS belong to the IgG4 subclass; (3) nonpathogenic anti-dsg1 autoantibodies of the IgG1 subclass were detected in normal individuals from Limao Verde and in patients in the preclinical stage of the disease; (4) anti-dsg1 autoantibodies from normal individuals and patients in the preclinical stage of FS recognize the EC5 domain of dsg1, whereas pathogenic anti-dsg1 autoantibodies bind the EC1/EC2 domains; (5) houses of FS patients are rustic, with thatched roofs and walls and dirt floors; (6) there was a high frequency of hematophagous insects (bedbugs and kissing bugs) in the houses of FS patients; (7) previous studies revealed that the predominant black fly on this reservation belongs to the species Simunlium nigrimanum. These findings suggest that the environmental antigen(s) triggering the autoimmune response in FS may be linked to exposure to hematophagous insects.

Brazil↗

Clinical and serological follow-up studies of endemic pemphigus foliaceus (fogo selvagem) in Western Parana, Brazil (2001-2002).

BACKGROUND: Fogo selvagem (FS) has been described in several regions of Brazil, including the Western regions of the state of Parana. In 1990, Empinotti et al. reported case studies of 213 patients with FS that were collected from 1976 to 1988. The same author (J.C.E.) has observed that the frequency of cases in these regions of Parana has decreased. OBJECTIVES: The purpose of this study was to clinically and serologically evaluate a small group of the patients originally reported in 1990 and compare data with a group of control individuals. These patients were treated at the onset of the disease with systemic steroids. PATIENTS AND METHODS: Patients with FS, their unaffected relatives (n = 80) and genetically unrelated controls (n = 15) were identified during a field study from 1 May 2001 to 30 June 2002. Sera from nine patients with FS and six normal controls that were collected in the 1976-1988 evaluation were available for this study. The sera were tested by indirect immunofluorescence, enzyme-linked immunosorbent assay (ELISA) and immunoprecipitation using recombinant human desmoglein 1 (Dsg1). RESULTS: Only 16 of the originally identified 213 patients with FS were found during the field studies. Thirteen of the 16 patients were in clinical and serological remission; 20% of normal controls (19 of 95) were positive in the Dsg1 ELISA. The majority of these subjects (17 of 19) were genetically related to FS patients. Six normal controls that were positive in the Dsg1 ELISA in the original survey were found to be negative or weakly positive in this evaluation. CONCLUSION: The reduced frequency of positive serological markers of disease in patients and normal controls from Western Parana, as well as the absence of recurrent disease in previously identified patients, suggest that environmental antigenic stimulation of the population at risk may have decreased in recent years.

Autoantibodies↗

[Intra-epidermal pustulosis in a child. Demonstration of a target antigen similar to foliaceus pemphigus antigen].

INTRODUCTION: Intraepidermal IgA pustulosis is a vesiculopustular dermatosis defined by pemphigus type intercellular deposit exclusively of IgA. It is a member of the pemphigus group and may be related to neurtrophilic dermatoses. CASE REPORT: A child had vesiculopustular lesions of the limbs since the age of 11 years. Biopsy showed the subcorneal intraepidermal nature of the pustules and exclusive IgA deposit throughout the epiderma. Indirect immunofluorescence and protein immunoelectrophoreses were negative. Immunotransfer to beef tongue extract evidenced a 150-160 kDa band corresponding to IgA and IgG desmoglein. Treatment with general corticosteroids followed by pristinamycin was successful. DISCUSSION: This is the first case report showing evidence of antiepidermal antibodies directed against the superficial pemphigus antigen.

Age Factors↗

[Pemphigus. Loss of desmosomal cell-cell contact].

Pemphigus diseases comprise a group of autoimmune disorders which are characterized by intraepidermal blisters and autoantibodies to components of desmosomes. Desmosomes mediate adhesion between neighbouring keratinocytes. A common feature of pemphigus diseases are intercellular deposits of IgG or, less frequently, of IgA within the epidermis. The group of pemphigus diseases includes pemphigus vulgaris, pemphigus foliaceus, pemphigus vegetans, pemphigus herpetiformis, pemphigus erythematosus, paraneoplastic pemphigus, drug-induced pemphigus, and IgA pemphigus. Using molecular tools, some of the autoantigens in these diseases have been characterized. In pemphigus vulgaris, autoantibodies are directed to desmoglein 3 and in pemphigus foliaceus to desmoglein 1. Target antigens in IgA pemphigus are desmocollin 1 and desmoglein 3. In paraneoplastic pemphigus, autoantibodies react with a complex of various proteins, including desmoplakin 1 and 2, BP230, envoplakin, periplakin, plectin, desmoglein 3, and a yet uncharacterized 170 kD protein. This review summarizes new insights into the immunopathogenesis and diagnosis of pemphigus diseases.

Animals↗

UV light-induced linear IgA dermatosis.

Various exogenous factors (eg, drugs, dietary antigens, trauma, infections, radiographs, and UV radiation) are known to induce or aggravate skin diseases. UV radiation in particular is known to induce or aggravate the autoimmune bullous diseases of pemphigus foliaceus, pemphigus vulgaris, and bullous pemphigoid. Its role in linear IgA dermatosis, however, is not well recognized. We report the second case of linear IgA dermatosis induced by intense sun exposure in which blistering was induced by UVA radiation. Furthermore, a review of the literature on photoinduced autoimmune bullous diseases and the wavelengths responsible for the induction of blistering is presented and several proposed mechanisms of action for the blister induction, including release or unmasking of antigens, promotion of antibody fixation by UV radiation, and launching of an inflammatory process, are discussed. We conclude that linear IgA dermatosis should be added to the list of autoimmune bullous diseases induced and/or aggravated by UV radiation.

Aged↗

Pemphigus and pemphigoid in dog and man: comparative aspects.

A review of canine pemphigus vulgaris, pemphigus vegetans, pemphigus foliaceus, pemphigus erythematosus, and bullous pemphigoid shows them to share many clinicopathologic similarities with their human counterparts. Because of their numerous analogies in clinical presentations, histopathologic and immunopathologic findings, and therapeutic results, canine and human pemphigus and pemphigoid may represent a valuable area for comparative dermatologic research.

Animals↗

Management of the immunobullous disorders. II. Pemphigus.

In the second of our reviews on the management of the immunobullous disorders, we review the therapy of pemphigus disorders, including pemphigus vulgaris, pemphigus vegetans, pemphigus foliaceus, pemphigus erythematosus, pemphigus herpetiformis, drug-induced pemphigus, IgA pemphigus and paraneoplastic pemphigus.

Adrenal Cortex Hormones↗

The comparative pathology of non-viral bullous skin diseases in domestic animals.

In a review of non-viral bullous skin diseases of domestic animals and a 4-year study of cases presented to the New York State College of Veterinary Medicine, we found 15 diseases: pemphigus vulgaris, pemphigus vegetans, pemphigus foliaceus, pemphigus erythematosus, bullous pemphigoid, systemic lupus erythematosus, dermatitis herpetiformis, toxic epidermal necrolysis, drug eruption, epidermolysis bullosa, epidermolysis bullosa simplex, familial acantholysis, bovine congenital porphyria, impetigo and subcorneal pustular dermatosis. The 15 diseases were placed in five categories: autoimmune, immune-mediated, hereditary, bacterial and idiopathic. A histologic classification of these disorders based on the site of blister formation and other important clinicopathologic, histologic and immunopathologic findings was developed.

Acantholysis↗

Use of tetracycline and niacinamide for treatment of autoimmune skin disease in 31 dogs.

A combination of niacinamide and tetracycline was used to treat 31 dogs with various autoimmune skin diseases (discoid lupus erythematosus, pemphigus foliaceus, pemphigus erythematosus, and bullous pemphigoid). Of the 20 dogs with discoid lupus erythematosus, 70% had excellent or good response to treatment. Serious side effects were not noticed in any dog.

Animals↗

Drug-induced pemphigus: autoantibodies directed against the pemphigus antigen complexes are present in penicillamine and captopril-induced pemphigus.

Pemphigus is an autoimmune blistering disease characterized by circulating autoantibodies directed against the keratinocyte cell surface. The two variants, pemphigus foliaceus and pemphigus vulgaris, can be distinguished at the molecular level by immunochemical studies. The large majority of patients with pemphigus develop the disease spontaneously; however, there is a small group of patients who develop pemphigus after treatment with certain medications, of which penicillamine and captopril are the best documented. Most patients with drug-induced pemphigus have circulating and/or tissue bound epidermal cell surface autoantibodies; however, the molecular specificity of these autoantibodies has not been studied. We performed immunoprecipitation studies utilizing extracts of 125I-labeled suction blister epidermis and the sera of three patients with drug-induced pemphigus foliaceus (two due to penicillamine and one due to captopril) and one patient with captopril-induced pemphigus vulgaris. We found that the three patients with drug-induced pemphigus foliaceus had circulating autoantibodies that are directed against the pemphigus foliaceus antigen complex and that the one patient with drug-induced pemphigus vulgaris had circulating autoantibodies that are directed against the pemphigus vulgaris antigen complex. This study demonstrates that autoantibodies from drug-induced pemphigus patients have the same antigenic specificity, on a molecular level, as do autoantibodies from other pemphigus patients.

Aged↗

Ultrastructural aspects of equine pemphigus foliaceus-like dermatitis. Report of cases.

Pemphigus foliaceus is an uncommon dermatologic disorder occurring in several species and has been reported in horses during the past decade. An ultrastructural analysis of affected skin of horses presenting to our clinics has revealed early cytopathologic features of pemphigus-like disease, some of which closely resemble pemphigus foliaceus in the human, calve, and guinea pig. Prior to complete acantholysis and bullae formation, the intercellular spaces enlarged, but intercellular bridges and desmosomes remained intact. A novel finding was presence of aggregates of electron dense granular material which were seen in intercellular spaces of the epidermal basal cell layer, and may represent antigen-autoantibody complexed material or deranged cement substances. Other changes preceding acantholysis consisted of mild dyskeratosis, reduction of peripheral tonofilaments, enlargement of rough endoplasmic reticula, cytoplasmic vacuolization, and mitochondrial damage in epidermal cells. In more severe lesions where bullae were present and acantholysis was observed, bacterial invasion and leucocytic infiltration were evident in all epidermal layers, and corneal cells displayed cytoplasmic vacuolization and retention of nuclei. Basal cells remained intact, though intercellular spaces were enlarged on apical and lateral boundaries. The pathogenesis of this disease in the horse appeared morphologically similar to a pemphigus autoimmune disorder and its variants in other species, and morphologic evidence is provided to suggest that some cellular metabolic derangements may be concurrent with the extracellular events or cell peripheral changes that precede acantholysis and bullae formation.

Animals↗

A review of autoimmune skin diseases in domestic animals: I - superficial pemphigus.

In humans, the pemphigus denomination encompasses a group of autoimmune blistering skin diseases with intraepidermal separation resulting from cell-cell detachment by acantholysis. Entities are classified based on the level of blistering in the epidermis, and both superficial (pemphigus foliaceus, IgA pemphigus) and deep (pemphigus vulgaris, pemphigus vegetans and paraneoplastic pemphigus) variants are recognized. In domestic animals, subsets of pemphigus have been recognized since the mid-1970s, and the disease classification resembles that used for human patients. This article reviews up-to-date knowledge on the epidemiology, clinical signs, histopathology, immunopathology and treatment outcome of superficial pemphigus in domestic animals. Detailed information on canine, feline, equine and caprine pemphigus foliaceus, canine and feline pemphigus erythematosus and canine panepidermal pustular pemphigus is provided.

Animal Diseases↗

Defective cell-cell adhesion in the epidermis.

The disastrous effects of loss of epidermal cell adhesion are epitomized by the life-threatening blistering skin diseases pemphigus foliaceus and pemphigus vulgaris. Clinical and experimental observations show that loss of cell adhesion is induced by these patients' autoantibodies. Pemphigus foliaceus antigen is desmoglein 1 (dsg-1), a desmosomal transmembrane glycoprotein limited in distribution to stratified squamous epithelia. It is linked to plakogoblin, a desmosomal plaque protein. Molecular cloning has shown that desmogleins are members of the cadherin gene superfamily. The originally described cadherins (e.g. E-cadherin) are transmembrane, calcium-dependent, homophilic adhesion molecules. Pemphigus vulgaris antigen is a 130 kDa glycoprotein also linked to plakoglobin. Molecular cloning has shown that pemphigus vulgaris antigen is also a desmoglein, dsg-3. Antibodies against pemphigus vulgaris antigen subdomains homologous to the binding subdomains of classical cadherins cause loss of epidermal cell adhesion, which suggests that desmogleins mediate adhesion, although direct evidence for this is lacking. The extracellular domain of pemphigus vulgaris antigen cannot substitute in function for that of E-cadherin. Future studies should address the cell biological function of desmogleins.

Animals↗

Human herpesvirus 8 DNA sequences in blistering skin from patients with pemphigus.

BACKGROUND: Human herpesvirus 8 (HHV-8) has been detected in Kaposi sarcoma (KS) and other lesions in patients both seropositive and seronegative for the human immunodeficiency virus (HIV). Kaposi sarcoma has been reported to develop in a disproportionate number of patients with pemphigus. Since HHV-8 is so strongly associated with KS, we wondered whether HHV-8 is present in pemphigus lesions from patients without KS or HIV infection. Pemphigus lesions and skin from healthy individuals were coded in a blinded fashion. Tissue-extracted DNA was tested using polymerase chain reaction, Southern blot hybridization, and automated sequencing of the polymerase chain reaction products for the presence of HHV-8 DNA. Six patients had pemphigus foliaceus, 6 had pemphigus vulgaris, and 2 had KS; 10 healthy individuals were used as controls. All 24 patients were HIV seronegative. OBSERVATION: Lesional skin from 4 of the 6 patients with pemphigus vulgaris, all 6 of the patients with pemphigus foliaceus, and both positive controls (KS) tested positive for HHV-8 DNA. Furthermore, the HHV-8 DNA sequences for KS330(233) differed between all 6 DNA specimens from pemphigus foliaceus, while 3 of the 4 DNA specimens from pemphigus vulgaris were identical. However, HHV-8 DNA was absent in all normal human skin analyzed. CONCLUSIONS: This report expands the spectrum of lesions found to contain HHV-8 DNA sequences and suggests that HHV-8 might have trophism for pemphigus lesions.

Adult↗