PubMed HealthSearch

Biomedical subjects

C Frances

Publications and source records attributed to C Frances.

At least 19 recordsLinked to original sources

Bedside measurement of factor VIII:C activity in individuals with hemophilia A.

Factor VIII replacement therapy for patients with hemophilia A is conventionally monitored using a plasma-based factor VIII:C assay (a modified activated partial thromboplastin time [APTT] test). The plasma factor VIII assay requires the preparation of plasma from citrated whole blood and measurement of the clotting times of mixtures of patient plasma, factor VIII-deficient substrate, and APTT reagent. Results are not routinely available in less than 1.5 hr, reducing the clinical value of the laboratory data regarding the ability to immediately adjust patient therapy. Results from the whole blood factor VIII assay, performed on a portable coagulation analyzer and using test tubes prefilled with the necessary APTT and factor VIII-deficient reagents, are available within 5-7 min. This immediate determination of the factor VIII:C level from citrated whole blood provides the opportunity to greatly reduce turnaround time and improve the efficacy of factor VIII replacement therapy. Based on clotting time, factor VIII:C activity is read from a standard curve. A clinical evaluation of this whole blood test was performed in two hemophilia centers. A high degree of correlation was seen (r=0.813, n=220) between the whole blood values obtained and conventional laboratory results. This level of correlation was superior to that obtained when comparing two different plasma-based systems(r=0.753, n=23). Factor VIII:C activity levels measured using the whole blood assay system were similar,irrespective of the test operator (laboratory technologist, nurse clinician, or patient). This study indicates that the whole blood factor VIII assay provides results comparable to those of conventional plasma-based assays, but in a more rapid and efficient manner. It provides an opportunity to reduce unnecessary patient consumption of replacement preparations, hence reducing the cost of hemophilia A maintenance and prophylaxis regimens, and to reduce overall patient exposure to human blood products.

Factor VIII

Specific mucosal erosions in hypereosinophilic syndrome. Evidence for eosinophil protein deposition.

BACKGROUND: Mucosal erosions can be a presenting feature of the hypereosinophilic syndrome. The aim of this study was to analyze in situ the presence of eosinophil proteins and the state of eosinophil activation. Biopsy specimens of mucosal lesions and normal skin were taken from two men with oral and genital erosions typical of hypereosinophilic syndrome. Tissue sections were immunohistochemically labeled with anti-major basic protein, anti-eosinophil-derived neurotoxin, and anti-eosinophil peroxidase antibodies. The same specimens were also subjected to electron microscope examination. OBSERVATIONS: Eroded specimens displayed areas of eosinophil spongiosis within which extracellular deposits of eosinophil peroxidase, major basic protein, and eosinophil-derived neurotoxin were present. In normal skin, only a few eosinophils were present within the capillary lumen, and no extracellular deposits of these proteins were seen. Under the electron microscope, the cytoplasmic membranes of eosinophils located around the erosion were disrupted. Remnants of necrotic keratinocytes were found near these lysed eosinophils. CONCLUSION: As with other involved organs in hypereosinophilic syndrome, mucosal erosions seem to be the consequence of eosinophil protein release.

Humans

Alteration of cytokeratin expression in oral lichen planus.

The purpose of this investigation is to examine the possible biochemical and topographic cytokeratin alterations in lichen planus of oral mucosa. Biopsy samples of clinically normal buccal mucosa (n = 5), normal gingiva (n = 5), lichen planus from buccal mucosa (n = 5), and lichen planus from gingiva (n = 5) were obtained from patients of both sexes. Cytokeratin expression was determined by means of immunohistochemical labeling with use of a battery of monoclonal antibodies against cytokeratins and filaggrin and two-dimensional gel electrophoresis. In buccal mucosa, which is not keratinized cytokeratins 4 and 13 are expressed in the majority. In buccal mucosa lichen planus, the appearance of cytokeratins 1, 2, 10, and 11 coincides with a decrease in cytokeratins 4 and 13 and a moderate increase in cytokeratins 6, 16, 17, and 19. In normal gingiva, which is normally keratinized, the main cytokeratins are 1, 2, 10, and 11. In gingival lichen planus, a slight decrease in these cytokeratins and in cytokeratin 13 expression was noted. Finally, alterations in cytokeratins 5 and 14, explained by marked alterations of basal cells, were observed. The battery of antibodies used in this study, in correlation with two-dimensional gel electrophoresis, could represent useful diagnostic tools that enable the distinction between inflammatory keratosis and so-called quiescent lichen planus. Moreover, this work showed that cytokeratins 1, 2, 10, and 11 and filaggrin are sensitive tools that may help detect early relapse before clinical exacerbation. Finally, these biochemical techniques may be useful to follow the evolution of lichen planus under treatment.

Antibodies, Monoclonal

Presence of gelatinase A and metalloelastase type protease at the plasma membrane of human skin fibroblasts. Influence of cytokines and growth factors on cell-associated metalloendopeptidase levels.

Gelatinase A and elastase type proteinase (Homsy, et al., 1988) present at plasma membranes of human skin fibroblasts (HSF) were separated by anion exchange chromatography on a DEAE Tris acryl M column. Elastase type proteinase (HSFE1) was able to convert 72 kDa progelatinase A to a lower 66 kDa M.W. active enzyme. Several cytokines (IL-1 beta, IL4, IL6), interferon gamma (IFN gamma) and tumor growth factor beta (TGF-beta) were studied for their ability to modify the levels of those plasma membrane associated proteinases. Among these mediators, only IL-1 beta was found to enhance the amounts of HSF membrane-bound HSFE1 and Gelatinase A.

Cell Membrane

Involvement of cyclic AMP and nitric oxide in immunoglobulin E-dependent activation of Fc epsilon RII/CD23+ normal human keratinocytes.

Epidermal keratinocytes (EK) are exposed to multiple inflammatory stimuli and paracrine factors secreted by various dermal cells (lymphocytes, mast cells, macrophages, fibroblasts) during wounding, cutaneous allergy, and infections. We have previously demonstrated that after stimulation with interleukin 4 or interferon-gamma, human EK express the low-affinity receptor for IgE (Fc epsilon RII/CD23) on their surface. In the present study, we showed that the ligation of CD23 by IgE/anti-IgE immune complexes or specific monoclonal antibody induces a dose-dependent release of interleukin 6 and tumor necrosis factor-alpha from EK. CD23-ligation activates the nitric oxide-dependent pathway, as demonstrated by the high levels of nitrites released in cell supernatants, and the accumulation of intracellular cyclic nucleotides in EK. These second messengers are required for IgE-dependent stimulation of cytokine production by these cells, inasmuch as this is completely abolished by the use of cAMP or nitric oxide synthase antagonists. Human epithelial keratinocytes may thus participate in IgE-mediated immune responses, through their ability to express functional CD23 antigen.

Antibodies, Monoclonal

T lymphocyte subsets in primary antiphospholipid syndrome.

OBJECTIVE: To study T, natural killer (NK) and B blood cell subsets in primary antiphospholipid syndrome (APS). METHODS: We studied 10 patients with primary APS and 12 healthy subjects. Blood lymphocytes counts, proportions of B cells (CD19+), total CD5 and CD5 B cells, NK cells (CD16+CD56+), T cells (CD3+), CD4+ helper (naive CD4+CD45RA+, memory CD4+CD45RO+ and CD4+CD29+, activated CD4+CD25+), CD8 (immunoregulatory CD8+CD57+, activated CD8+HLA-DR+) T cell subsets were measured by flow cytometry analysis. RESULTS: In the primary APS group, we observed a lower total lymphocyte count (p = 0.009), an expansion of naive CD4 cells (p = 0.025), a lower proportion of memory CD4 cells (p = 0.04) and an increased ratio of naive/memory CD4 cells (p = 0.015). CONCLUSION: Blood T cells phenotypes in primary APS differ markedly from healthy controls, indicating that immunologic abnormalities in primary APS might extend beyond autoantibody production.

Adult