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Biomedical subjects

Anita C Gilliam

Publications and source records attributed to Anita C Gilliam.

At least 19 recordsLinked to original sources

A case of Churg-Strauss syndrome associated with antiphospholipid antibodies.

Churg-Strauss syndrome (CSS) is a systemic vasculitis affecting both small- and medium-sized blood vessels, almost invariably affecting the lung, and frequently associated with cutaneous involvement. Microvascular vaso-occlusion leading to digital gangrene is not a feature of CSS. We report an unusual case of a patient with CSS with antiphospholipid antibodies who developed severe digital gangrene in addition to cutaneous vasculitis. The presence of antiphospholipid antibodies is not a feature usually seen in association with CSS. While the full clinical spectrum of CSS is still being defined, the identification of additional features associated with this syndrome might help to better understand the pathogenesis of the disease and to have an impact on both management and prognosis.

Antibodies, Antiphospholipid↗

Anti-thyroid autoantibody-associated interface dermatitis in individuals with undifferentiated connective tissue disease--an unrecognized subset of autoimmune disease?

OBJECTIVE: Skin conditions in individuals with undifferentiated connective tissue disease (UCTD) are poorly classified and characterized, and autoantibodies in serum can be heterogeneous and not always specific. We have identified a new subset of individuals with UCTD, interface dermatitis, and increased anti-thyroid antibodies. METHODS: We retrospectively reviewed 892 cases of individuals with UCTD. Serologic markers for CTD and autoantibodies against microsomes and/or thyroglobulin were analyzed. Skin lesions and medication history were documented, and persistent or recurrent skin lesions were biopsied. RESULTS: Anti-thyroid antibodies for thyroglobulin and/or microsomes (ATAb) were positive in 526 (59%). The ATAb(+) and ATAb(-) groups had similar antinuclear antibody (ANA) positivity (32% vs 28%, respectively), average age (59 vs 58 yrs), and female-male ratio (8:1 vs 6:1). ATAb positivity was significantly associated with a dermatitis manifested as erythematous macules/patches or papules on legs, upper arms, back, and shoulders in 9% (47/526) of ATAb(+) individuals versus 2% (7/366) in ATAb(-) individuals (p < 0.0001). Seventeen individuals with dermatitis, 15 ATAb(+) and 2 ATAb(-), had biopsies. Twelve biopsies (80%) from ATAb(+) individuals and one ATAb(-) individual showed a cell-poor lymphocytic interface dermatitis with vaculopathy of basal layer keratinocytes, dermal mucin deposition, and perivascular mononuclear inflammatory cell infiltrates in the upper dermis that spared eccrine glands. The interface dermatitis was not significantly associated with hypo- or hyperthyroidism, or medications. CONCLUSION: We describe an ATAb-associated interface dermatitis in roughly 9% of ATAb(+) patients with UCTD, which may represent a new subset of autoimmune disease. ATAb may be a useful marker for some individuals with UCTD.

Adolescent↗

Aggressive histiocytic disorders that can involve the skin.

Histiocytoses are a heterogeneous group of disorders that are characterized by the proliferation and accumulation of reactive or neoplastic histiocytes. Three classes of histiocytoses have been defined: class I, Langerhans cell disease; class II, non-Langerhans cell histiocytic disease without features of malignancy; and class III, malignant histiocytic disorders. Although the disorders in classes I and II usually have a benign appearance on histology and are commonly non-aggressive and self-healing, some can cause debilitating or even fatal outcomes. Such cases beg the question: what stimulates aggressive behavior of a classically benign disease? New molecular information may now provide insight into the driving force behind many of the aggressive histiocytoses. In this article, we review Langerhans cell disease and seven aggressive histiocytoses that can involve skin, discuss histologic features that may forecast a poor prognosis, and discuss the molecular findings that help to explain the pathophysiology of these aggressive histiocytic disorders.

Histiocytosis↗

Cutaneous gene expression by DNA microarray in murine sclerodermatous graft-versus-host disease, a model for human scleroderma.

The molecular mechanisms governing skin fibrosis in murine sclerodermatous graft-versus-host disease (Scl GVHD) are not known. We used Affymetrix DNA microarrays representing >14,000 mouse genes to characterize global gene expression in skin during development of Scl GVHD in lethally irradiated BALB/c (H-2d) mice transplanted with B10.D2 (H-2d) bone marrow and spleen cells. These mice develop skin thickening, whereas control mice transplanted with syngeneic BALB/c (H-2d) bone marrow and spleen cells do not develop disease. We found consistent differences between mice with Scl GVHD and controls in cytokine messenger RNAs (mRNAs) for both Th1-like (IFN-gamma) and Th2-like (IL-6, Il-10, and IL-13) inflammatory patterns. mRNAs for chemokines CCL2, CCL5, CCL17, IFN-gamma inducible chemokines (CXCL9/Mig, CXCL10/IP-10, and CXCL11/I-TAC), and for growth factors such as platelet-derived growth factor-c, connective tissue growth factor, fibroblast growth factor 1, epidermal growth factor, nerve growth factor-beta, vascular endothelial growth factor (VEGF)-alpha, and VEGF-beta were elevated, similar to human scleroderma. mRNAs for cell adhesion molecules, such as L-selectin (selectin lymphocyte), P-selectin (selectin platelet), E-selectin (selectin endothelium), and vascular cell adhesion molecule 1, were also upregulated. In separate experiments, we confirmed the increased synthesis of IFN-gamma and IL-2, unchanged IL-10, and absence of tumor necrosis factor-alpha, and IL-4 proteins by flow cytometry of isolated skin T cells. These constellations of immunologic changes provide a "fingerprint" for fibrosing autoimmune disease. They are useful to understand the pathogenesis of Scl GVHD, to identify markers for early diagnosis of disease, and to devise more effective strategies for intervention in early scleroderma and Scl GVHD.

Animals↗

Disruption of EphA2 receptor tyrosine kinase leads to increased susceptibility to carcinogenesis in mouse skin.

EphA2 receptor tyrosine kinase is frequently overexpressed in different human cancers, suggesting that it may promote tumor development and progression. However, evidence also exists that EphA2 may possess antitumorigenic properties, raising a critical question on the role of EphA2 kinase in tumorigenesis in vivo. We report here that deletion of EphA2 in mouse led to markedly enhanced susceptibility to 7,12-dimethylbenz(a)anthracene/12-O-tetradecanoylphorbol-13-acetate (DMBA/TPA) two-stage skin carcinogenesis. EphA2-null mice developed skin tumors with an increased frequency and shortened latency. Moreover, tumors in homozygous knockout mice grew faster and were twice as likely to show invasive malignant progression. Haploinsufficiency of EphA2 caused an intermediate phenotype in tumor development but had little effects on invasive progression. EphA2 and ephrin-A1 exhibited compartmentalized expression pattern in mouse skin that localized EphA2/ephrin-A1 interactions to the basal layer of epidermis, which was disrupted in tumors. Loss of EphA2 increased tumor cell proliferation, whereas apoptosis was not affected. In vitro, treatment of primary keratinocytes from wild-type mice with ephrin-A1 suppressed cell proliferation and inhibited extracellular signal-regulated kinase 1/2 (ERK1/2) activities. Both effects were abolished in EphA2-null keratinocytes, suggesting that loss of ERK inhibition by EphA2 may be one of the contributing mechanisms for increased tumor susceptibility. Interestingly, despite its tumor suppressive function, EphA2 was overexpressed in skin tumors compared with surrounding normal skin in wild-type mice, similar to the observations in human cancers. EphA2 overexpression may represent a compensatory feedback mechanism during tumorigenesis. Together, these results show that EphA2 is a novel tumor suppressor gene in mammalian skin.

9,10-Dimethyl-1,2-benzanthracene↗

Hair depigmentation during chemotherapy with a class III/V receptor tyrosine kinase inhibitor.

BACKGROUND: Hair pigmentation is regulated by several factors including the interaction of the ligand stem cell factor (SCF) with its class III receptor tyrosine kinase, c-kit. An interruption of SCF/c-kit signal transduction results in hair depigmentation. OBSERVATIONS: A 69-year-old white woman developed hair depigmentation and fine-textured hair while being treated with the phase I chemotherapeutic agent GW786034, a class III/V receptor tyrosine kinase inhibitor. Discontinuation of therapy resulted in a reversal of these hair changes. CONCLUSIONS: Treatment with oral GW786034 resulted in reversible hair depigmentation and change in hair growth rate and texture, which were most likely due to an incomplete inhibition of SCF/c-kit signaling, although the exact mechanism is unknown. It would be intriguing to investigate topical tyrosine kinase inhibitors as a treatment for unwanted body hair.

Aged↗

The distal and proximal regulatory regions of the involucrin gene promoter have distinct functions and are required for in vivo involucrin expression.

Involucrin is a marker of human keratinocyte differentiation. Previous studies show that the human involucrin gene promoter has two distinct regulatory regions - the proximal regulatory region (PRR) and the distal regulatory region (DRR). To study the role of these regions in vivo, we have constructed human involucrin promoter transgenic mice and monitored the impact of specific promoter mutations on involucrin gene expression. In this study, we monitor the impact of specific mutations on expression in a range of surface epithelia. We begin by confirming previous observations made in footpad epidermis by showing that the full-length involucrin promoter drives differentiation-appropriate expression in other surface epithelia, including epidermis, cervix, and esophagus. We further show that mutation of the activator protein AP1-5 site in the DRR completely eliminates transgene expression in all of these tissues. In contrast, mutation of the DRR Sp1 site reduces overall expression, but does not alter the differentiation dependence. Additional studies identify a DRR immediate suprabasal element (ISE). Deletion of the ISE results in a loss of transgene expression in the immediate suprabasal layers. Our studies also indicate that the PRR is important for appropriate transgene expression. Mutation of a PRR C/EBP (CCAAT enhancer binding protein) transcription factor binding site results in patchy/discontinuous expression. These studies suggest that AP1, Sp1, and C/EBP transcription factors are required for appropriate differentiation-dependent involucrin expression, and that the mechanism of regulation is similar in most surface epithelia.

Animals↗

Microchimerism and skin disease: true-true unrelated?

Microchimerism, the stable presence of foreign cells in an individual, may result from trafficking during pregnancy or from organ or hematopoietic transplantation, and has been hypothesized to cause autoimmunity and certain skin diseases. Yet microchimeric cells are found in normal individuals and may be important to tissue repair. Thus microchimerism may be common, and finding microchimeric cells in diseased as well as normal tissue may be a "true-true unrelated" situation.

Autoimmune Diseases↗

Transduced monocyte/macrophages targeted to murine skin by UV light.

We have selectively targeted monocyte/macrophages overexpressing an immunomodulatory molecule, latency-associated peptide (LAP), a naturally occurring antagonist for transforming growth factor-beta1, to murine skin utilizing UV light to produce a cutaneous influx of transduced monocyte/macrophages. Bone marrow (BM) cells from BALB/c mice were transduced in vitro with a retroviral construct containing green fluorescent protein (GFP) for detection and human LAP (hLAP) as a test molecule. The transduced BM cells were then cultured in vitro with granulocyte-macrophage colony-stimulating factor (GM-CSF) to produce differentiation to monocyte/macrophages. More than 80% of transduced BM cells were CD11b-positive and MOMA-positive by fluorescence-activated cell-sorter analysis and secreted LAP by ELISA after 10 days of culture in granulocyte-macrophage colony-stimulating factor (GM-CSF). Transduced monocyte/macrophages containing either GFP or hLAP-GFP were then injected intravenously into BALB/c mice. One-half of recipients in each group were exposed to UVB (72 mJ) to induce monocyte/macrophage infiltration into skin. Recipients were sacrificed 60 h after UV irradiation. We found transduced cutaneous macrophages expressing GFP by examining with fluorescence microscopy frozen skin sections of recipient mice immunostained with antibodies to GFP and to macrophage marker F4/80. We identified hLAP sequences by polymerase chain reaction (PCR) of total DNA in recipient blood and UV-irradiated skin but not in unirradiated skin. LAP sequences were also detected at much lower levels in other organs (lung, spleen, and liver) by PCR. Therefore, we have shown that genetically altered monocytic cells can be injected intravenously and targeted to mouse skin by UV exposure. This macrophage-based gene-transfer method may be a potentially useful immunotherapeutic approach for delivering monocyte/macrophage-derived products to skin.

Animals↗

Fibroblast expression of the coactivator p300 governs the intensity of profibrotic response to transforming growth factor beta.

OBJECTIVE: Transforming growth factor beta (TGFbeta) induces profibrotic responses in normal fibroblasts, and plays a fundamental role in the pathogenesis of fibrosis in scleroderma (systemic sclerosis [SSc]). The intensity of cellular responses elicited by cytokines is modulated by transcriptional coactivators such as the histone acetylase p300. The objective of these studies was to delineate the physiologic role of p300 in Smad-dependent profibrotic responses elicited by TGFbeta. METHODS: Ectopic p300 was transiently expressed in normal dermal fibroblasts. Cellular p300 levels were suppressed using p300-specific ribozymes. The regulation of gene expression was examined by transient transfection assays, Northern blotting, and immunoblot analysis. The expression of p300 in normal and scleroderma fibroblasts was evaluated by confocal microscopy and immunoblotting, and p300 levels in skin from mice with experimental scleroderma were assessed by immunohistochemistry. RESULTS: In normal fibroblasts, TGFbeta induced an increase in the levels of p300. Forced expression of ectopic p300 in these cells dramatically enhanced the magnitude of TGFbeta responses, whereas selective depletion of p300 using ribozyme resulted in abrogation of TGFbeta-induced collagen synthesis and promoter activity. Furthermore, TGFbeta lost its ability to induce Smad-dependent transcription in p300-depleted fibroblasts. These responses could be fully rescued with ectopic p300. Abrogation of Smad-mediated TGFbeta signaling was not due to alterations in the levels or the ligand-dependent phosphorylation or intracellular trafficking of endogenous Smads. Immunohistochemical analysis demonstrated substantially increased p300 expression in lesional skin from mice with chronic graft-versus-host disease, an animal model of scleroderma. Furthermore, levels of p300 were 2-3-fold higher in cultured fibroblasts derived from SSc patients than in fibroblasts from matched normal controls. CONCLUSION: These results establish, for the first time, that the coactivator histone acetylase p300, itself a target of TGFbeta regulation, is an essential component of the cellular TGFbeta signal transduction pathways mediating stimulation of collagen synthesis in fibroblasts. Since the cellular abundance of p300 appears to govern the intensity of profibrotic responses elicited by TGFbeta, elevated p300 expression in lesional tissue may contribute to the progression of skin fibrosis in scleroderma.

Acetyltransferases↗

A variant of nephrogenic fibrosing dermopathy with osteoclast-like giant cells: a syndrome of dysregulated matrix remodeling?

Nephrogenic fibrosing dermopathy (NFD) is a disorder characterized by dramatic thickening and hardening of skin in the extremities and trunk, which occurs in individuals on dialysis for renal disease. The pathophysiology is unknown. Increased transforming growth factor-beta (TGF-beta) and collagen deposition have been reported in a small group of patients studied by Jimenez et al.1 We report two patients with NFD and osteoclast-like giant cells in the fibrotic dermis; one patient also had dystrophic cutaneous calcification. These findings have been seen in a small percentage of NFD patients (estimated 2-5%) and may represent a variant of the disease. The hypothesis of altered matrix dysregulation due to altered TGF-beta, metalloproteinases, and activation of osteoclasts as an explanation for this variant is proposed.

Adult↗

Cutaneous lymphoid hyperplasia: a lymphoproliferative continuum with lymphomatous potential.

Cutaneous lymphoid hyperplasia (CLH) has been proposed to be the benign end of a continuum of lymphoproliferative disorders with cutaneous lymphoma at its malignant extreme. An intermediate condition, known as "clonal CLH," was first recognized by us and shown to be a transitional state capable of eventuating in overt lymphoma. To better determine the prevalence of dominant clonality and risk of lymphoma among CLH cases, we studied the immunohistology and clonality of fresh-frozen samples from 44 CLH patients referred to a multidisciplinary cutaneous lymphoproliferative disorders program. Using a large panel of lymphoid markers, the cases were divided into 38 typical mixed B-cell/T-cell type CLH and 6 T-cell-rich type (T-CLH), the latter containing > 90% T cells. Of the 44 patients, 38 had solitary or localized lesions (4 cases of T-CLH), and 6 had regional/generalized lesions (2 cases of T-CLH). Forty cases were of idiopathic etiology. Suspected etiologies among 4 other cases included mercuric tattoo pigment, doxepin, clozapine, and bacterial infection. Immunoglobulin heavy chain (IgH) and T-cell receptor (TCR)-gamma gene rearrangements (GR) were studied using polymerase chain reaction assays, which are approximately 80% sensitive. Overall, 27 cases (61%) showed clonal CLH: 12 IgH+ (27%; 3 cases of T-CLH); 13 TCR+ (30%; 1 case of T-CLH); and 2 IgH+/TCR+ (4%; neither case was T-CLH). Two cases (4%; 1 case of T-CLH) progressed to cutaneous B-cell lymphoma. Both of these patients presented with regional lesions. Our findings indicate that clonal overgrowth is common in CLH, links CLH to lymphoma, and probably involves both B- and T-cell lineages (although TCR GR by B cells and vice versa could not be ruled out). The high prevalence of dominant clonality in our series may have resulted from the sensitivity of our PCR assays as well as patient selection.

Algorithms↗

Latency-associated peptide prevents skin fibrosis in murine sclerodermatous graft-versus-host disease, a model for human scleroderma.

Murine sclerodermatous graft-versus-host disease (Scl GVHD), produced by transplanting B10.D2 bone marrow and spleen cells to lethally irradiated BALB/cJ mice, is a model for human scleroderma. Mice with Scl GVHD have skin thickening, lung fibrosis, cutaneous mononuclear cell infiltration, and upregulation of cutaneous transforming growth factor beta1 (TGF-beta1) and type I collagen mRNAs by day 21 after bone marrow transplantation. Elevated TGF-beta1 appears to be the critical cytokine driving fibrosis in Scl GVHD, which can be prevented with antibodies to TGF-beta administered early in disease. Here we demonstrate that we can also prevent skin thickening in mice with Scl GVHD with a naturally occurring antagonist to TGF-beta1, human latency-associated peptide (LAP). By quantitative real-time PCR analysis and immunostaining, LAP treatment also abrogates the upregulation of cutaneous TGF-beta1 and connective tissue growth factor mRNAs and type I collagen synthesis in Scl GVHD. In contrast to anti-TGF-beta antibodies, LAP at 4 ng total per mouse has no significant suppressive effect on cutaneous influx of T cells and monocytes or immune cell activation. LAP may be a potential new therapy in scleroderma and other TGF-beta-driven fibrosing disease that targets TGF-beta more specifically, without affecting systemic critical roles of TGF-beta on immune cell function.

Animals↗

Evaluating invasive cutaneous melanoma: is the initial biopsy representative of the final depth?

BACKGROUND: An accurate initial biopsy of the deepest portion of the melanoma is vital to the management of patients with melanomas. OBJECTIVE: Our goal was to evaluate the accuracy of preliminary biopsies performed by a group of predominantly experienced dermatologists (n = 46/72). METHODS: A total of 145 cases of cutaneous melanoma were examined retrospectively. We compared Breslow depth on preliminary biopsy with Breslow depth on subsequent excision. Was the initial diagnostic biopsy performed on the deepest part of the melanoma? RESULTS: Of nonexcisional initial shave and punch biopsies, 88% were accurate, with Breslow depth greater than or equal to subsequent excision Breslow depth. Both superficial and deep shave biopsies were more accurate than punch biopsy for melanomas less than 1 mm. Excisional biopsy was found to be the most accurate method of biopsy. CONCLUSIONS: Deep shave biopsy is preferable to superficial shave or punch biopsy for thin and intermediate depth (<2 mm) melanomas when an initial sample is taken for diagnosis instead of complete excision. We found that a group of predominantly experienced dermatologists accurately assessed the depth of invasive melanoma by use of a variety of initial biopsy types.

Biopsy, Needle↗

Folliculotropic mycosis fungoides with central nervous system involvement: demonstration of tumor clonality in intrafollicular T cells using laser capture microdissection.

BACKGROUND: Folliculotropic mycosis fungoides (MF) is a rare variant of cutaneous T-cell lymphoma, MF type, characterized by atypical lymphocytes preferentially infiltrating the hair-follicle epithelium relative to the epidermis. OBSERVATIONS: We describe a rare case of folliculotropic MF involving the central nervous system. This is also the first case in which laser capture microdissection was used to show that the atypical lymphocytes within the hair-follicle epithelium were part of the same tumor clone present in other tissue compartments. CONCLUSIONS: In reviewing the literature describing atypical lymphocytes infiltrating hair-follicle epithelium relative to the epidermis, we encourage the use of the term folliculotropic mycosis fungoides. Our case also supports previous findings that central nervous system involvement can occur in advanced MF. The successful procurement and analysis of atypical lymphocytes from hair-follicle epithelium by laser capture microscopy ushers in a new era in molecular diagnostics.

Aged↗

Murine sclerodermatous graft-versus-host disease, a model for human scleroderma: cutaneous cytokines, chemokines, and immune cell activation.

Murine sclerodermatous graft-vs-host disease (Scl GVHD) models human scleroderma, with prominent skin thickening, lung fibrosis, and up-regulation of cutaneous collagen mRNA. Fibrosis in Scl GVHD may be driven by infiltrating TGF-beta1-producing mononuclear cells. Here we characterize the origin and types of those cutaneous effector cells, the cytokine and chemokine environments, and the effects of anti-TGF-beta Ab on skin fibrosis, immune cell activation markers, and collagen and cytokine synthesis. Donor cells infiltrating skin in Scl GVHD increase significantly at early time points post-transplantation and are detectable by PCR analysis of Y-chromosome sequences when female mice are transplanted with male cells. Cutaneous monocyte/macrophages and T cells are the most numerous cells in Scl GVHD compared with syngeneic controls. These immune cells up-regulate activation markers (MHC class II I-A(d) molecules and class A scavenger receptors), suggesting Ag presentation by cutaneous macrophages in early fibrosing disease. Early elevated cutaneous mRNA expression of TGF-beta1, but not TGF-beta2 or TGF-beta3, and elevated C-C chemokines macrophage chemoattractant protein-1, macrophage inflammatory protein-1alpha, and RANTES precede subsequent skin and lung fibrosis. Therefore, TGF-beta1-producing donor mononuclear cells may be critical effector cells, and C-C chemokines may play important roles in the initiation of Scl GVHD. Abs to TGF-beta prevent Scl GVHD by effectively blocking the influx of monocyte/macrophages and T cells into skin and by abrogating up-regulation of TGF-beta1, thereby preventing new collagen synthesis. The Scl GVHD model is valuable for testing new interventions in early fibrosing diseases, and chemokines may be new potential targets in scleroderma.

Animals↗

An unusual case of cutaneous pancreatic fat necrosis.

BACKGROUND: Cutaneous pancreatic fat necrosis is a pathognomonic sign for pancreatic disease and usually presents as subcutaneous nodules in the pretibial region. OBJECTIVE: A case of cutaneous pancreatic fat necrosis is presented in which the clinical presentation of diffuse erythema was unusual. This disease is discussed and its possible etiologies are reviewed. METHODS: A MEDLINE search for cases of cutaneous pancreatic fat necrosis presenting as diffuse erythema without nodules was conducted. RESULTS: Diffuse erythema is an unusual presentation of cutaneous pancreatic fat necrosis. CONCLUSION: This may be the first case of cutaneous pancreatic fat necrosis presenting as diffuse erythema.

Adolescent↗