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Biomedical subjects

Y Chardonnet

Publications and source records attributed to Y Chardonnet.

At least 55 records · Page 3Linked to original sources

[Malpighian epithelia and papillomavirus infections].

Human papillomaviruses (HPV) are a large group of DNA viruses, with over 60 types identified to date, which can cause the development of benign tumors in the skin and mucosal squamous epithelia. Most of these tumors regress spontaneously but some, especially in the mucosal membranes, become malignant. HPV types with a high risk for inducing malignancies (e.g. 16 and 18) are the subject of increasing interest. HPVs are both host-specific and tissue-specific: some types preferentially infect specific epithelia, giving rise to lesions with distinct topographic characteristics. HPVs are difficult to study because they do not replicate in available in vitro models. In vivo, HPVs replicate well in epithelial cells undergoing terminal differentiation, e.g. in keratinized cells. Some 40 different types have been reported in epidermal keratinocytes, the most common being types 1 and 2 which produce large amounts of viral antigens and viral particles. In contrast, HPVs replicate poorly in the weakly keratinized squamous epithelia which line the digestive, respiratory, and genital tracts. Junctional epithelia, e.g. on the uterine cervix, are especially prone to HPV infection. The most prevalent HPV types in benign genital lesions are types 6 and 11, whose characteristic features include extrachromosomal DNA and production of only small amounts of viral antigens. The profound nuclear and cytoplasmic changes induced by HPVs lead to the formation of koïlocytes which are found mainly in the granular layer of epithelia and have been especially well described in the uterine cervix and vagina. HPV epithelial tumors are squamous cell carcinomas that often harbor HPV types 16 and 18; this is especially true of cervical intraepithelial neoplasias. These tumors contain the viral DNA, which may or may not be integrated into the cellular DNA, whereas viral antigens are lacking. The high incidence and broad spectrum of HPV types found in patients with acquired immunodeficiencies (e.g. under immunosuppressive therapy) suggest a key role for cellular immunity in the development of HPV-induced lesions. A number of cofactors, including UV radiations and smoking, as well as oncogene activation and anti-oncogene inactivation, may increase the risk of progression to malignancy.

Digestive System Diseases↗

Cell fusion of human and mouse cells as a source for new cells retaining human markers. Analysis of DNA content, membrane and cytoplasmic antigen expression.

Flow cytometry and ultrastructural morphometry were used to study some characteristics of cells obtained by fusion with polyethylene-glycol 4000 between mouse fibroblasts 3T3.4E and normal keratinocytes (3T3.4E x NHK) or hand wart human keratinocytes (3T3.4E x HWK), at late passages. The cell cycle and the expression of human beta 2-microglobulin, human EGF-receptors (EGF-r), vimentin were simultaneously studied by flow cytometry. Epithelial CaSki cells, derived from a human uterine carcinoma, expressing high levels of beta 2-microglobulin, EGF-r and vimentin, were used as a positive control. In mouse fibroblasts 3T3.4E only vimentin was expressed whereas in cells derived from fusion, human beta 2-microglobulin, human EGF-r and vimentin were detected. The cell cycle analysis revealed that the peak position of G0/G1 differed with the cells (channel 11 for 3T3.4E cells, 13 for 3T3.4E x HWK and 15 for 3T3.4E x NHK). The area of the cell compartments from each cell type was also different by quantitative ultrastructural morphometry. The hybrid phenotype was maintained in late passages in cells (3T3.4E x NHK) and (3T3.4E x HWK), as shown by the expression of human antigens, differences in DNA contents and nuclear area. Flow cytometry may be a very accurate and precise tool for studying low antigenic expression. The combination of different methods including analysis of DNA content, antigenic expression and ultrastructural morphometry confirmed that 3T3.4E, 3T3.4E x NHK and 3T3.4E x HWK cells are different cell types. These techniques are complementary to cell phenotype analysis.(ABSTRACT TRUNCATED AT 250 WORDS)

3T3 Cells↗

Human papillomavirus type 1-associated squamous cell carcinoma in a heart transplant recipient.

The occurrence of squamous cell carcinomas in organ transplant recipients with warts represents a good model to study viral carcinogenesis. Most of the cases were reported in renal transplant recipients. We present the case of a heart transplant recipient in whom multiple common warts, preepitheliomatous keratoses, and squamous cell carcinomas developed. The warts began 4 years after the transplantation and the first carcinoma occurred 2 years after the warts, all the lesions being on sun-exposed areas. Histologic signs of human papillomavirus infection were seen in all premalignant and malignant lesions. Furthermore, human papillomavirus type 1 DNA was detected by in situ molecular hybridization within one of the carcinomas. Human papillomaviruses, along with other carcinogenic factors, play an important role in the development of carcinomas, and benign types could be implicated. Further studies are required to evaluate the frequency of cutaneous malignant neoplasms in heart transplant recipients as compared with renal transplant recipients.

Adult↗

Incidence of antibodies to human papillomavirus type 1 in patients with cutaneous and mucosal papillomas.

A study of antibodies to human papillomavirus (HPV) 1 is reported in a series of sera from 126 patients with papilloma lesions of different clinical types (verruca plantaris, vulgaris, plana, condyloma acuminata, laryngeal papilloma) using a sensitive solid-phase enzyme-linked immunosorbent assay (ELISA). Our findings showed a significant prevalence of specific HPV 1 IgG antibodies in patients with plantar warts (65%). This incidence was considerably lower in patients with other papilloma lesions, in which positive sera may reflect a past infection with HPV 1. The ELISA test was evaluated as nearly 100 times more sensitive than the indirect immunofluorescence test, and IgG titers to HPV 1 in patients' sera were usually low. Serum samples taken at different times during the course of HPV infection in a few patients with refractory lesions did not show any significant change in their antibody titer.

Adolescent↗

Evaluation of mitochondrial content and activity with nonyl-acridine orange and rhodamine 123: flow cytometric analysis and comparison with quantitative morphometry. Comparative analysis by flow cytometry and quantitative morphometry of mitochondrial content and activity.

Mouse fibroblasts 3T3.4E and two cells lines obtained by fusion (3T3.4E cells x normal human keratinocytes), (3T3 x NHK), and (3T3.4E cells x hand wart keratinocytes), (3T3 x HWK), were compared for mitochondrial activity and content between 5 and 20 days of culture, from the 16th to 20th passage, by using Rh 123 and NAO respectively. In 3T3.4E cells both Rh 123 and NAO fluorescence were similar after 5 and 7 days of culture, indicating no modification of mitochondrial activity and content at that time. However, in cells derived from fusion of 3T3 x NHK or 3T3 x HWK, Rh 123 increased from 5 to 20 days whereas NAO fluorescence was maximal at 7 days of culture and then decreased, indicating that their mitochondrial activity differed from that of 3T3.4E cells. No difference was observed between the 16th and 20th passage. Quantitative morphometry and flow cytometry gave good correlations at 7 days of culture for the cell size, estimated either by the cell area or the cell diameter, and for mitochondria content, evaluated either by the number of mitochondria per cell or NAO fluorescence intensity.

Acridine Orange↗

Study of stringency conditions for human papillomavirus DNA detection on cell lines, frozen and paraffin-embedded tissue sections by in situ hybridization with biotinylated probes.

In situ hybridization was mainly used for typing human papillomavirus (HPV) in paraffin-embedded or frozen sections under stringent conditions (SC). We tested 5 different conditions of stringency with biotinylated HPV 1, 2, 16 and 18 probes on 3 cell lines (Sihà and CaSki with HPV16, HeLa with HPV18) by varying the concentration of formamide in the hybridization mixture and washings in order to determine the stringency conditions to be used to assess the presence of HPV and its typing: A-low stringency, hybridization at 35 degrees C below the melting temperature of DNA (Tm-35 degrees C) and washings without formamide; B-low stringency, hybridization and washings at Tm-35 degrees C; C-medium stringency, hybridization at Tm-35 degrees C and washings at Tm-12 degrees C; D-high stringency, hybridization at Tm-12 degrees C and washing without formamide; E-very high stringency, hybridization and washings at -12 degrees C. This study showed that HPV typing required a high stringency. On the contrary, under non stringent conditions (NSC), each cell line was positive with the heterologous probes. When 3 to 5 stringency conditions were assayed on 4 frozen samples, similar results were obtained. Typing required high stringency conditions whereas NSC allowed HPV detection. Furthermore, this study demonstrated the specificity of the reaction in lesions positive with more than one type. Stringent (Tm-12 degrees C) and non stringent (Tm-35 degrees C) conditions of hybridization were further applied to 57 biopsy sections (17 frozen and 40 paraffin-embedded specimens) from typical wart lesions and lesions suspected of HPV.(ABSTRACT TRUNCATED AT 250 WORDS)

Biopsy↗

Human papillomavirus type 11DNA in papillary squamous cell lung carcinoma.

We report a case of papillary squamous cell carcinoma of the lung developing in relation to a condylomatous papilloma and related to human papillomavirus (HPV) infection. The viral origin of the bronchial papillomatous lesion is strongly suggested by cytological and histological features with marked condylomatous changes. No viral capsid antigen was detected by immunohistochemistry. Transmission electron microscopy failed to reveal intranuclear viral-like particles in the papillary part of the carcinoma, but typical ultrastructural koilocytotic cells with irregular nucleus and coarse chromatin were observed. HPV DNA type 11 was detected by in situ hybridization using biotinylated probes on paraffin-embedded specimens, under stringent conditions (Tm-12 degrees, 50% formamide). Papillary squamous cell carcinoma may result from the malignant conversion of benign squamous papilloma of the bronchus. HPV type 11 may be associated with malignant conversion of benign papilloma of the pulmonary tract, as in the upper respiratory tract. In situ hybridization with biotinylated probes is a relatively simple and appropriate method for retrospective analysis of HPV DNA sequences in surgical specimens.

Bronchial Neoplasms↗

Human papillomavirus infection and filaggrin expression in paraffin-embedded biopsy specimens of extragenital Bowen's disease and genital bowenoid papulosis.

Cutaneous Bowen's disease (BD) and genital bowenoid papulosis (BP) are considered as precancerous or cancerous lesions that are sometimes infected with human papillomavirus (HPV). We studied retrospectively paraffin-embedded sections of 11 samples of cutaneous BD and 6 samples of genital BP from the general population for HPV infection and filaggrin expression. Using in situ hybridization with biotinylated probes of HPV types 1, 2, 5, 6, 11, 16, and 18, under stringent and/or non-stringent conditions and a streptavidin-alkaline-phosphatase complex for hybrid detection, HPV DNA was detected in 6/17 cases (5 BD and 1 BP). Positive nuclei were located in intermediate or upper epithelial cell layers. HPV 16 was found in 2 cases of BD but associated either with HPV 2 or 18. Three additional lesions reacted only under non-stringent conditions; HPV could not be typed with the probes used. The positive case of BP reacted with the four probe types 1, 2, 16, 18 and was negative with HPV 6 or 11. Viral antigen was not detected by indirect immunofluorescence with a rabbit antiserum directed to group-specific viral capsid antigen. Differentiation disorders were observed in the intermediate and upper cell layers of these specimens, as shown by a reduced expression of filaggrin/profilaggrin, a marker of terminal differentiation, in extragenital BD (7/11 cases), and an increased expression in genital BP (4/5 cases) although viral DNA was not always detectable. This study shows that in situ hybridization is a valuable technique for HPV DNA detection and its typing in BD and BP lesions on deparaffinized sections. The positive nuclei were located in the cell layers that exhibited abnormal expression of differentiation. There is no relation between the HPV infecting type and the filaggrin expression.

Aged↗

Detection of human papillomavirus DNA in squamous bronchial metaplasia and squamous cell carcinomas of the lung by in situ hybridization using biotinylated probes in paraffin-embedded specimens.

We examined a series of paraffin-embedded tissue specimens from 10 cases of squamous bronchial metaplasia and 33 cases of squamous cell carcinoma of the lung for histologic characteristics and for the presence and typing of human papillomavirus (HPV) by molecular in situ hybridization with biotinylated probes types 6, 11, 16 and 18 under stringent conditions (temperature, 19 degrees C). Fourteen of these lesions (32.5%) showed typical condylomatous histologic changes. Human papillomavirus DNA was present in seven (16%) specimens. Type 6 HPV DNA was detected in one of the squamous bronchial metaplasia cases. In six of the squamous cell carcinomas cases (18%), HPV DNA was identified (type 18, three cases; type 16, one case; type 11, one case; and type 6, one case); one of the squamous cell carcinoma specimens contained both HPV types 16 and 18. Our data confirm the presence of HPV DNA in squamous metaplastic bronchial mucosa and epidermoid lung carcinoma on paraffin-embedded tissues. This suggests that an HPV infection with benign or potentially oncogenic HPV types could be associated not only with genital tumors, but also with bronchial and lung tumors. The role of HPV DNA in the process of malignancy conversion is not yet known; HPV DNA could possibly be a cocarcinogenic factor. In situ hybridization with biotinylated probes is a useful and appropriate method of retrospective analysis of HPV DNA sequences in routinely paraffin-embedded lesions. It may be used to identify patients at risk of more serious or possibly malignant progression.

Biotin↗

Langerhans cells and epithelial cell modifications in cervical intraepithelial neoplasia: correlation with human papillomavirus infection.

The study of a series of 18 cervical intraepithelial neoplasia (CIN) grade II and III was aimed at determining the distribution and phenotype of immunocompetent cells (Langerhans cells, T and NK cells) and the alteration in the expression of EGF receptors and beta 2-microglobulin in correlation with human papillomavirus (HPV) infection (viral antigen and DNA typing with biotinylated probes). These lesions were characterized by a reduced number of Langerhans cells and a dense infiltrate. HPV infection did not induce HLA-DR expression in the infected epithelial cells. We observed an enhanced expression of epidermal growth factor (EGF) receptors by epithelial cells and a reduced beta 2-microglobulin reactivity by both epithelial and immunocompetent cells. Most of CIN showed foci of infected cells. No significant differences were observed in immunological markers of CIN harboring benign HPV 6/11 DNA or oncogenic HPV 16/18 DNA. Viral antigen was not detected in these lesions. These changes in the epithelial cells of CIN and their microenvironment associated to the lack of HLA-DR expression in the infected cells hamper the squamous epithelial cells to function as antigen presenting cells. This may facilitate a decrease in the immunological surveillance and may contribute to the severity of such lesions.

Adult↗

Immunocompetent cells and epithelial cell modifications in molluscum contagiosum.

We studied lesions of molluscum contagiosum with a panel of monoclonal antibodies to determine the phenotype of infiltrating cells and antigen modifications of infected keratinocytes. Our data indicate (1) a complete lack of immunocompetent cells in the viral lesions, and simultaneously a loss of B2-microglobulin reactivity by molluscum bodies, a cellular activation of EGF and transferrin receptors and expression of CD36 antigen of these bodies; (2) a moderate infiltrate of activated T cells and monocytes in the underlying epidermis; (3) an increase of Langerhans cell density and a CD36 expression by the surface of upper layer keratinocytes in the perilesional epidermis.

Epithelium↗

Expression of human epithelial characteristics in late passages of interspecific somatic hybrids derived from normal and hand wart keratinocytes.

The expression of epithelial features has been investigated from the 9th to the 30th passage in cells derived from the fusion of mouse 3T3.4E cells with normal or hand wart human keratinocytes. These cells stratified and grew either on plastic or collagen substrate without modifications. Such growth characteristics are similar to those observed in the epidermis. The doubling time of hybrid cells is nearer to that of 3T3.4E than to that of keratinocytes. Some epithelial markers were detected by immunofluorescence staining. Bullous pemphigoid antigen characteristic of the basal keratinocyte was detected, and cytoplasmic antigen of basal cells was positive with BL7 monoclonal antibody. Among the antigens of the suprabasal cell layers of the epidermis, the pemphigus antigen was present in all hybrids; epidermal keratins recognized by the monoclonal antibodies KL1 and KL2 were detected in wart hybrids up to the 9th passage. When hybrids were cultured in delipidized serum or in methylcellulose, few cells (less than 10%) reacted with KL2. Karyological analysis revealed both murine acrocentric and human submetacentric chromosomes. Thus, hybrid cells obtained from normal and wart keratinocytes were new cell types with a phenotype between keratinocytes and 3T3.4E cells.

Animals↗

[Human papillomavirus typing by molecular hybridization in situ with biotinylated probes. Optimization of sample preparation and hybridization time].

In situ hybridization with non radioactive probes is more and more used to detect viral infections, especially human papillomavirus (HPV) infections. The quality of the reaction depends on several factors, such as sample preparation (including fixation and pretreatments). Their importance was evaluated on a model with cell lines including CaSki cells (harboring about 600 copies of HPV 16 DNA per cell) and Hela cells (containing 10-50 copies of HPV 18 DNA per cell). These cell lines were chosen in order to evaluate cytological and histological difficulties. Several parameters were studied: preparation of samples, fixation and hybridization duration. DNAs of biotinylated probes of HPV types 16 and 18 and cells were simultaneously denatured 10 min at 95 degrees C. Hybridization was carried out at 37 degrees C for various periods of time; it was followed by a 3-step reaction for detection of biotinylated DNA-DNA hybrids with immunoenzymatic staining using streptavidin-alkaline phosphatase complex. Typical intranuclear granulations were seen either in cell deposits fixed with acetone, methanol-acetic acid, paraformaldehyde, formaline, Bouin's, Baker's or Carnoy's fixatives; or in cytocentrifuged cells fixed with formaline, Bouin's or Baker's fixatives. The detergent pretreatment was unnecessary. On the contrary, the protease pretreatment was required with formaline, Bouin's or Baker's fixatives. In order to detect constantly HPV 16 in CaSki cells and HPV 18 in HeLa cells, hybridization should be performed for more than 4 h. The sensitivity of the technique could therefore be evaluated to few copies of HPV DNA per cell. This technique is reliable, sensitive and rapid; et can be applied to biopsy specimens fixed with Bouin's or Baker's fixatives and paraffin-embedded; it allows routine detection of HPV infections.

Biotin↗

Ultrastructure of hybrids derived from electric pulse fusion of human HeLa cells and murine 3T3.4E cells.

Somatic cell hybrids were obtained with electric pulse by fusion of human epithelial HeLa cells derived from uterine carcinoma and mouse fibroblasts 3T3.4E, deficient in thymidine kinase. Hybrids were selected and propagated in HAT medium. After 3 passages the cultures were morphologically homogeneous. They retained an epithelial morphology. Electron microscopic and morphometric studies indicate that these hybrids at the 6th passage differed from parental cells. They exhibited the smallest cellular and cytoplasmic size. The number of mitochondria was similar to that of murine fibroblasts but their size was more homogeneously distributed; the mitochondria matrix was more electron dense than in the parental cells. These data suggest that these hybrids have a different metabolism from that of the parental cells; they contained modified mitochondria.

Animals↗

A comparison of methods for the detection of human papillomavirus DNA by in situ hybridization with biotinylated probes on human carcinoma cell lines. Application to wart sections.

We compared nine different techniques for the detection of biotinylated DNA-DNA HPV hybrids on HeLa cells with 10-50 copies of HPV 18 DNA per cell. CaSki cells with 600 copies of HPV 16 DNA per cell and tissue sections from frozen or paraffin-embedded biopsy specimens. The cell samples were either cell deposits or cytocentrifuged or cultured slides. In most cases, the samples (cell deposits and tissue sections) were denatured with hybridization mixture prepared under stringent conditions (Tm = -17 degrees C) containing biotinylated DNA probes (cloned HPV types 1, 2, 6, 11, 16 and 18), at 90 degrees C for 10 min. In other cases (cytocentrifuged or cultured cells), the denaturation was performed by HCl hydrolysis and mild heating at 50 degrees C; the probes were denatured separately by heating. All the samples were further incubated overnight at 37 degrees C. For HPV DNA detection, three amplification levels were used on cell deposits. Only the techniques involving a three-step reaction (a rabbit anti-biotin antibody - a biotinylated goat anti-rabbit antibody - a complex of streptavidin-alkaline phosphatase or streptavidin-gold or streptavidin-fluorescein) gave satisfactory results, on both cell lines. With the one step reaction (an avidin-horseradish peroxidase, or streptavidin-alkaline phosphatase or streptavidin-fluorescein complex), no labeling of HeLa cells was observed with any of the HPV probes, including HPV 18. The techniques involving four steps (avidin or streptavidin - anti-avidin goat antibody or anti-streptavidin rabbit antibody - a biotinylated anti-goat (or anti-rabbit) antibody - a complex of avidin-biotin-peroxidase or streptavidin-biotin-alkaline phosphatase or streptavidin-biotin-horseradish peroxidase) resulted in high background on both cell lines. For the reproducible detection of low copy number of HPV DNA (less than 50 copies) such as occur in HeLa cells our data suggested that the three-step technique with the streptavidin-alkaline phosphatase complex was the method of choice. The most intense labeling was always obtained with cell deposits and the technique was successfully applied to frozen and paraffin-embedded tissue sections from typical warts.

Carcinoma↗

Detection of herpes simplex virus DNA in a cutaneous squamous cell carcinoma by in situ hybridization.

A case of a cutaneous squamous cell carcinoma (SCC) occurring at the site of a long-standing recurrent HSV infection is described. No deficit of the cell-mediated immunity was recorded. HSV2 was isolated in several viral cultures. HSV DNA was visualized in the SCC by in situ hybridization with biotinylated probes in paraffin-embedded tissue. The samples were negative for HPV2, 5, 16, and 18 probes. A causal relationship between HSV infection and cutaneous SCC is hypothesized.

Carcinoma, Squamous Cell↗