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C Charpin

Publications and source records attributed to C Charpin.

At least 91 records · Page 5Linked to original sources

Laminin biosynthesis in the extracellular matrix-producing cell line PFHR9 studied with monoclonal and polyclonal antibodies.

The biosynthesis of the basement-membrane glycoprotein laminin in the mouse teratocarcinoma cell line PFHR9 was studied by immunoelectron microscopy and pulse-chase experiments using monoclonal and polyclonal antibodies. By immunoelectron microscopy, most of the protein was found to be aggregated on the outer cell surface. Cytoplasmic stainings were rare and were located next to the intracellular side of the plasma membrane. Sequential immunoprecipitations of cell extracts with a monoclonal antibody (4C12) sensitive to the laminin native conformation and with a polyclonal antibody enables laminin, the B1 subunit and a 410 kDa molecule to be distinguished. Most of the laminin is of the A(B1B2) type, and the 410 kDa molecule appears to be a B1B2 heterodimer. The assembly of laminin from subunits is completed in less than 1 h, and B chains are incorporated via the formation of the B heterodimers. The B2 and A chains are not found as free forms, so their levels appear to be the rate-limiting factors for the assembly of the dimers and laminin respectively. The formation of an uncross-linked A(B1B2) complex as a short-lived intermediate in the biosynthetic process is possible. Together with immunoelectron microscopy, the present study suggests that the protein is rapidly exported after assembly to accumulate on the outer side of the cell membrane. The biosynthesis of laminin in the PFHR9 cell line appears to be similar to that in other matrix-producing cell lines.

Animals↗

Multiparametric study (SAMBA 200) of estrogen receptor immunocytochemical assay in 400 human breast carcinomas: analysis of estrogen receptor distribution heterogeneity in tissues and correlations with dextran coated charcoal assays and morphological data.

Estrogen receptor (ER) immunocytochemical assay (ER-ICA) was assessed in 400 human breast carcinomas. In all cases, patient's age, tumor size, histological type and Scarff-Bloom-Richardson grade, and presence or absence of axillary lymph node metastases and of vessel invasion in tumor borders were recorded. In 310 cases estrogen and progesterone receptors were concomitantly evaluated (dextran coated charcoal method). In 60 of these cases the ER immunoenzymatic assay (ER-IEA) was also assessed. Monoclonal H222sp gamma and peroxidase antiperoxidase procedures (Abbott kit) were applied in frozen sections, tumor imprints, and fine-needle aspirates. A computerized system of image analysis referred to as SAMBA (TITN), permitted a multiparametric quantitative analysis of ER-positive surfaces. With this system, in each tumor, the cellularity, percentage of ER surface versus the total cell surface and versus the epithelial (keratin-positive) surface, integrated optical density, mean optical density, index of the concentration of labeled objects, and integrated optical density histograms, were obtained and correlated to histological and biochemical data. It was shown that (a) ER antigenic sites were heterogeneously distributed in ER-positive tumors, with a specific nuclear localization in epithelial cells; (b) SAMBA 200 multiparametric analysis of the ER sites distribution in tissue was appropriate, accurate, reproducible, and therefore more reliable than the semiquantitative analysis; (c) standardization and complete automation of this method of immunoprecipitates evaluation on tissue section permits daily and routine analysis of a large number of preparations; (d) there was a correlation between ER binding sites evaluation (dextran coated charcoal) and ER antigenic sites immunodetection (ER-ICA and ER-IEA); (e) there was a correlation between the SAMBA evaluation of ER-ICA and other histological prognostic factors such as small tumor size, low Scarff-Bloom-Richardson grade; (f) the preliminary SAMBA analysis of ER-ICA in tissue sections, imprints, and fine needle aspirates suggest that fine needle aspirates may not reflect accurately the tumor cell heterogeneity.

Breast Neoplasms↗

Multiparametric analysis (SAMBA 200) of the progesterone receptor immunocytochemical assay in nonmalignant and malignant breast disorders.

An immunocytochemical assay using monoclonal anti-progesterone receptor (PR-ICA) was performed in nonmalignant (N = 57) and malignant (N = 200) breast disorders. The results were analyzed with a computerized system of image analysis referred to as SAMBA and correlated with binding assays (DCC), and with standard histopathologic findings. It was shown that there was a correlation between 1) the PR-ICA and the binding assays (91.5%), and 2) between the binding assays and the multiparametric computerized (SAMBA) analysis of the PR-ICA. It was also shown that SAMBA provides an accurate, reliable, and reproducible evaluation of PR-ICA that is complementary to binding assays and constitutes a standardized method of evaluating the heterogeneity of the progesterone receptor (PR) distribution in tumors. It is concluded that SAMBA analysis of both the PR-ICA and estrogen receptor (ER-ICA) should improve the prognostic evaluation and the prediction of responsiveness to endocrine therapy in breast carcinomas.

Antibodies, Monoclonal↗

[Immunohistochemical detection of estrogen receptors and image analysis (SAMBA 200) in breast carcinomas].

Estrogen receptor (ER) immunocytochemical assay (ER-ICA) was assessed human breast carcinomas. The patient's age, the tumor size, the histological type and SBR grade, the presence or the absence of axillary lymph node metastases and of vessel invasion in tumor borders were recorded in all the cases included in the series (n = 469) estrogen and progesterone receptors were concomitantly evaluated (DCC method) and or immunoenzymatic assays. Monoclonal H222 sp gamma and PAP procedure (Abbott kit) were applied in frozen sections, tumor imprints and fine needle aspirates. A computerized system of image analysis referred to as SAMBA (TITN), permitted to achieve a multiparametric quantitative analysis of ER positive surfaces. With this system, in each tumor, the cellularity, the percentage ER surface versus the total cell surface and versus the epithelial (keratin positive) surface, integrated optical density (IOD), mean optical density, index of the concentration of labelled objects, and IOD histograms, were obtained and correlated to histological and biochemical data. It was shown that: 1) ER antigenic sites were heterogeneously distributed in ER positive tumors, with a specific nuclear localization in epithelial cells; 2) the SAMBA 200 multiparametric analysis of the ER sites distribution in tissue was appropriate, accurate, reproductible and therefore more reliable than the semi-quantitative analysis; 3) the standardization and the complete automation of this method of immunoprecipitates evaluation on tissue section permit to daily and to routinely analyse a large number of preparation; 4) there was a correlation between ER binding sites evaluation (DCC) and ER antigenic sites immunodetection (ER-ICA and ER-EIA); 5) there was a correlation between the SAMBA evaluation of ER-ICA and other histological prognostic factors such as small tumor size, low SBR grade, the absence of axillary lymph node metastasis and vessel invasion; 6) the preliminary SAMBA analysis of ER-ICA in tissue sections, imprints and fine needle aspirates suggest that fine needle aspirates may not reflect accurately the tumor cell heterogeneity.

Adult↗

A novel monoclonal antibody (7B10) with differential reactivity between human mammary carcinoma and normal breast.

A monoclonal antibody (7B10) which displays differential reactivity with breast carcinomas compared to benign lesions or normal breast tissue was selected by fusion of spleen cells from BALB/c mice immunized with the T47D human mammary carcinoma cell line. The antigen, recognized by 7B10 on T47D cells, appeared to be both surface and cytoplasm localized, as demonstrated by indirect immunofluorescence, immunoperoxidase, and electron microscopy studies. This antibody (IgG1) bound with four human breast cancer cell lines (T47D, MCF7, ZR-75-1, and HSL53) which express estrogen receptors. No binding was observed with cancer cell lines of other origin or with normal cells. In vivo, by immunoperoxidase staining of frozen sections of normal breast, the antigen recognized by 7B10 appeared to be located on epithelial cell membranes, whereas in benign and malignant mammary disorders, staining also involved the cytoplasm, as confirmed by electron microscopy on fresh cancer tissue. On formalin-fixed, paraffin-embedded sections, cytoplasmic staining was detected in breast cancer, but no immunostaining was observed with benign lesions or normal breast. In paraffin sections, most normal tissues investigated did not react with 7B10 antibody. However, ducts in the parotid gland, tubules in the kidney and some biliary ducts, and apocrine glands in the skin showed irregular, diffuse weak staining. 7B10 was unreactive with adenocarcinomas of origin other than breast, except for some cells in ovarian clear cell carcinoma. No reactivity was observed with squamous carcinomas, lymphomas, or melanomas. The antigen recognized by 7B10 appeared to be a Mr 32,000 protein, as identified by immunoprecipitation from extracts of T47D after labeling with [35S]methionine. Since the antigen was present only on the membrane of differentiated normal mammary epithelial cells, and was also expressed in the cytoplasm of tumor cells, it may be of interest in immunological studies of mammary epithelial cell differentiation. Moreover, since in formalin-fixed tissues immunostaining is virtually confined to mammary carcinomas, monoclonal antibody 7B10 may have diagnostic applications in breast cancer.

Animals↗

[Monoclonal antibodies directed against breast cancer associated antigens].

Two mouse hybridomas, producing the monoclonal antibodies 7B10 and 1BE12 which react with membrane antigens of a metastatic human breast tumor cell line were selected. One of them, 7B10, is directed against a mammary gland antigenic determinant and selectively stain mammary carcinoma on histologic sections after fixation and paraffin embedding.

Animals↗

[Breast tissue: estrogen receptors. Immunohistochemical and biochemical analysis of normal and hyperplastic tissue and carcinoma in situ. Apropos of 86 cases].

Estrogen receptors (ER) were investigated using immunohistochemical techniques in 54 cases and biochemical techniques in 38 cases on a series of biopsy specimens of normal, hyperplasic and malignant mammary tissue (intraductal carcinoma). Immunohistochemical data were submitted to quantitative and semi-quantitative analysis (SAMBA 200, TITN). On normal tissue, immunostaining is bright and evenly distributed in galactophores and ductulo-lobular junctions; it is unevenly distributed but consistently present in lobules and increasing after menopause. On hyperplasic tissue, immunostaining of papillary cystadenomas and epitheliosis and fibroadenosis zones was similar to normal tissue with respect to the intensity and heterogeneity. Conversely, their immunohistochemical features are close to blunt duct adenosis and atypical lobular hyperplasia of ductulo-lobular junctions. On malignant tissue, immunostaining is unpredictable, it can be evenly distributed, unevenly distributed in patches or gradients, or totally absent. Immunohistochemical techniques can only be used to assess the intensity and distribution of ER in function of cell type in normal tissue and during a cancerous process. Thus strong receptivity of ductulo-lobular junctions may reinforce the claim that these structures are the targets for estrogen co-carcinogenic substances. The heterogeneity of ER at the onset of carcinoma suggests the possibility of several pathway of development. The fact that myoepithelial cell never seem to display estrogen type receptivity makes it logical to seek a special sensitivity for them.

Breast↗

[Microphotometric system of analysis with automatic scanning and immunodetection: application to tissue sections (breast, endometrium, uterine cervix, ovary].

In the present study the immunodetection of various markers in a large series of tissue samples have been analysed through the computerized system of image analysis referred to as SAMBA 200. The immunodetection of estrogen and progesterone receptors, Laminin and type IV collagen, Ki 67, keratin, papilloma virus have been performed in frozen sections or in imprints and fine needle aspirates from tumorous and non tumorous disorders of human breast, endometrium, cervix and ovaries. Staining procedures varied with the type of the marker studied (PAP, ABC-P, ABC-GO, APAAP). The results obtained by the multiparametric SAMBA analysis were accurate, reproducible and reliable. Therefore, the SAMBA analysis providing a standardized and automatic analysis of immunodetection performed in tissue sections can be routinely used in pathology laboratories particularly for the prognostic evaluation and for the prediction of hormonotherapy and chemotherapy response of patients with solid malignant disorders.

Breast Neoplasms↗

Immunohistochemical detection of laminin in 98 human breast carcinomas: a light and electron microscopic study.

The distribution of laminin was studied in 98 breast carcinomas with antilaminin and the avidin-biotin-peroxidase complex method. Laminin was observed within vascular and epithelial basement membranes. Laminin displayed a continuous linear pattern in intraductal carcinomas, and it was heterogeneously distributed, with a discontinuous linear pattern, in invasive carcinomas. No intracellular laminin staining was detected. Electron microscopic study showed laminin immunostaining in the lamina densa of basement membranes in nonneoplastic breast tissue. In tumors, laminin immunostaining frequently revealed multilayered basement membranes and abnormal multilayered basement membranes in blood vessels in the tumor stroma. These data suggest that laminin immunostaining, as a new approach to the heterogeneous basement membrane changes occurring in carcinomas, should permit better understanding of cell diffusion processes and of stroma-tumor cell interactions. The consistent extracellular distribution of laminin in contact with the stroma indicates that the latter plays an important role in the assembly of basement membrane components.

Age Factors↗

Estrogen receptor immunocytochemical assay (ER-ICA) in human endometrium.

An estrogen receptor immunocytochemical assay (ER-ICA) was applied to 15 tissue samples from human endometrium: five proliferative, five secretory, three carcinomas, and two atypical hyperplasias. A monoclonal anti-ER (H 222 SP gamma, Abbott Lab.) and peroxidase antiperoxidase method were applied on frozen sections, 5 micron thick for light microscopy (LM), 100 micron thick for electron microscopy (preembedding). Positive ER staining was quantitated on tissue sections (LM) using a computerized system of image analysis referred to as SAMBA 200 (Thomson TITN). Positive immunostaining was observed in the nuclei of both epithelial and stromal cells in normal and disordered endometrium. SAMBA 200 quantitative analysis permitted an accurate quantification of ER-positive staining. From this preliminary study it is concluded that (a) ER-ICA constitutes a reliable method to study the ER heterogeneous distribution in tissues and the precise intracellular ER localization, which is not feasible by ER biochemical binding assays; (b) SAMBA 200 analysis of the immunostained tissue sections permits an accurate and reproducible method of evaluating the results to quantitate the staining intensity and to determine the percentage of positive cells and the distribution of positive staining of the various tissue structures (glands and stroma).

Adenocarcinoma↗

[Immunohistochemical study using monoclonal antibodies (H222 SP gamma) of estrogen receptors: correlation with biochemical analysis (by radioligand) of 115 breast carcinomas].

Breast cancer specimens from 115 patients were assayed for the presence of estrogen receptors (ER) using a monoclonal antibody (H222 SP gamma) and an immuno-histochemical method ER-ICA. The specific ER immuno-staining was observed in cell nuclei. The intensity of the immuno-staining level (ISL) and the percentage of positive cells (PC) variable within tumors tissue, were graded (from 0 to 3): intensity level (IL) and percentage of positive cells (PC). (IL + PC) were correlated to biochemical ER assay using radiolabeled ligands ER - RLA. Both ER - ICA and ER - RLA were correlated in 87.9% of the cases. Discrepancies between both assays appeared mainly due to heterogeneity of the tissue samples. From this study it is concluded that ER - ICA is a reliable histochemical method since well correlated with biochemical assay, easily and rapidly performable, and constitutes a new approach method for ER detection in tissue, particularly valuable in minimal breast cancer, and precancerous lesions.

Antibodies, Monoclonal↗

Estrogen receptor immunocytochemical assay (ER-ICA): computerized image analysis system, immunoelectron microscopy, and comparisons with estradiol binding assays in 115 breast carcinomas.

An estrogen receptor (ER) immunocytochemical assay (ER-ICA) was applied to 115 malignant breast carcinomas and the results were compared to those of steroid binding assays performed on cytosol extracts of the same tumors. Immunoperoxidase (peroxidase-antiperoxidase) staining was performed on frozen sections using rat monoclonal antibody to estrogen receptor H222SP gamma. A preembedding method was used for the immunoelectron microscopy study. A semiquantitative analysis and a computerized image analysis system (SAMBA 200 TITN) were used to evaluate the positive ER immunostaining. Positive immunostaining (81 of 115) was always located in the nucleus of tumor cells and of normal cells in adjacent breast tissue. The immunostaining pattern differed from one tumor to another, due to variations in either the intensity or the percentage of positive cells. When immunohistochemical staining was correlated to biochemical assay, there was an 88% correlation, and staining intensity and percentage of positive cells significantly increased (P less than 0.01) with cytosolic ER levels and were independent of cellularity. These results indicated that ER-ICA is to date the most reliable histochemical method for ER detection and correlated in 88% of the cases with ER biochemical assay; ER-ICA constitutes a method particularly valuable to screen ER negative tumors on condition that tumor fragment quality (sampling and storage) is perfectly controlled; ER-ICA provides additional information for heterogeneous ER distribution within tumors; ER-ICA as a qualitative method is unable to replace the quantitative ER determination obtained with biochemical assay although the computerized system (SAMBA 200) for image analysis of microscopic preparations constitutes a valuable improvement of immunostaining analysis; and ER-ICA based on ER antigenic site detection is complementary to biochemical assay based on ER functional site determination.

Antibodies, Monoclonal↗

[Laminin: biosynthesis, structure and functions].

Biosynthesized by epithelial, endodermal and Swann type cells, laminin (Lam) is a cross shaped multifunctional glycoprotein formed by the multimeric assembly of subunits which result from the activation of several genes. In vivo, depending on its location, because of its adhesive properties and multivalent affinities, Lam is in association as a part of supramolecular complexes together with compounds of the plasma, the basement membrane and the cell coat. In the basement membrane (MB) Lam has structural and functional roles. It may also be adsorbed on the cell coat or secreted. It is interacting with epithelial cells by the way of a plasma membrane receptor and has a role to play in cellular differentiation and proliferation. Lam is a molecular link of epithelial cells to MB. These features implicate the molecule in organogenesis, embryogenesis and post-traumatic healing. As a structural component of MB and as an attachment factor, Lam is involved: 1 in tumoral invasion which allows metastatic spreading, 2 in homing because metastatic cell display an increased receptivity to the molecule. The study of Lam expression, Lam receptivity and their factors of control should lead to a better understanding of the biochemical and molecular basis of differentiation, embryogenesis, organogenesis and metastasis.

Basement Membrane↗

Estrogen receptor immunocytochemical assay (ERICA) and laminin detection in 130 breast carcinomas and computerized (Samba 200) multiparametric quantitative analysis on tissue sections.

An estrogen receptor immunocytochemical assay (ER-ICA) was applied to 130 malignant breast carcinomas and the results were compared to those of steroid binding assays performed on cytosol extracts of the same tumors. Also laminin (lam) distribution was studied in the same tumors. A semi quantitative analysis and a computerized image analysis system (SAMBA 200 TITN) were used to evaluate the positive ER and lam immunostaining. Positive ER immunostaining was always located in the nucleus of tumor cells and of normal cells in adjacent breast tissue. When immunohistochemical staining was correlated to biochemical assay there was a 88% correlation staining intensity and percentage of positive cells significantly increased (p less than 0.01) with cytosolic ER levels. Lam was observed within vascular and epithelial basement membranes (BMs). Lam staining displayed a continuous linear pattern in intraductal carcinomas or was heterogeneously distributed with a discontinuous linear pattern in invasive carcinomas. No intracellular lam staining was detected. In tumors, laminin immunostaining revealed often multilayered BMs and abnormal multilayered BMs in blood vessels in the tumor stroma. These results indicated that (ER-ICA) is to date the most reliable histochemical method for ER detection and correlated in 88% of the cases with ER biochemical assay ER-ICA provides additional information for heterogeneous ER distribution within tumors ER-ICA as a qualitative method is unable to replace the quantitative ER determination obtained with biochemical assay ER-ICA based on ER antigenic site detection is complementary to biochemical assay based on ER functional site determination laminin immunostaing constitutes a new approach to the heterogeneous BM changes occurring in carcinomas, and permits a better understanding of cell diffusion processes and of stroma-tumor cells interactions: the consistent extracellular lam distribution in contact with the stroma, indicates that the latter plays an important role in the assembly of BM components the SAMBA 200 permits a reliable accurate evaluation of the percentage of the immunostained cells and surfaces.

Breast↗

Localization of lactoferrin and nonspecific cross-reacting antigen in human breast carcinomas. An immunohistochemical study using the avidin-biotin-peroxidase complex method.

A retrospective immunocytochemical study was performed on 67 human breast carcinomas to determine whether the epithelial cell-associated antigens, lactoferrin and nonspecific cross-reacting antigen (NCA), could be used as markers in the prognostic assessment of breast cancers. Fixed paraffin sections were tested with anti-lactoferrin and anti-NCA. Lactoferrin and NCA were found in 7.5% and 19% of the cases, respectively. Furthermore, the association between these two antigens in tumor cells was significant (P less than 0.05). Kappa-casein was observed in all antigen-positive cases. These antigens were observed more often in low-grade ductal carcinomas that had positive estrogen and progestin receptors, but no relationship could be established between lactoferrin or NCA and other prognostic indicators, such as histologic type and grade of the tumor, stromal elastosis, or steroid receptors. Although more antigen might have been detected in unfixed, frozen specimens, the results indicate that lactoferrin and NCA possess minimal value as epithelial cell markers and no prognostic value when detected on routinely fixed, paraffin-embedded samples.

Adult↗