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M Osborn

Publications and source records attributed to M Osborn.

At least 127 records · Page 7Linked to original sources

[Immunohistological demonstration of the intermediate filaments in a laryngeal carcinosarcoma: considerations on its histogenesis].

A carcinosarcoma of the larynx was analysed by means of a light microscope and by immunohistological staining technique using antibodies against various intermediate filament proteins. Whereas tumour areas of an epithelial character reacted with antibodies against keratin, the spindle cells demonstrated a positive immunofluorescence with vimentin antibodies. Inside some tumour cells a coexpression of keratin and vimentin (intermediate filaments of mesenchymal cells) could be demonstrated. It is likely that these double stained cells represent the primitive stem cell of the carcinosarcoma, differentiating during further development either into epithelial or mesenchymal tumour cells.

Carcinosarcoma↗

Pleomorphic adenomas, adenoid cystic carcinomas and adenolymphomas of salivary glands analysed by a monoclonal antibody against myoepithelial/basal cells. An immunohistochemical study.

Myoepithelial and basal cells were identified by a monoclonal antibody raised against keratin. This antibody (CK B1) which detects myoepithelial cells in normal salivary glands, labels spindle shaped and polygonal cells in pleomorphic adenomas. Most cells in adenoid cystic carcinomas and some basal cells in adenolymphomas were also positive for this antibody. The oncocytic epithelium of adenolymphoma was negative. An inverse reaction was seen with an antibody against cytokeratin 18. The antibody CK B1 seems to be of interest for the detection of myoepithelial/basal cells in salivary glands and salivary gland tumours.

Adenolymphoma↗

A monoclonal antibody that detects myoepithelial cells in exocrine glands, basal cells in other epithelia and basal and suprabasal cells in certain hyperplastic tissues.

Myoepithelial and luminal cells of human exocrine glands can be positively identified with two different monoclonal antibodies. Myoepithelial cells including those of the salivary gland, mammary gland and sweat gland are positively identified by an antibody CKB1. This antibody does not stain luminal cells, but stains the basal cell layer of certain human stratified epithelia and a few basal cells in simple epithelia. Thus myoepithelial cells and basal cells have certain common features. Luminal cells can be positively stained with the CK5 monoclonal keratin antibody specific for keratin polypeptide 18; this antibody does not stain myoepithelial cells. Of interest is that CKB1 also appears to stain basal and suprabasal cells in certain hyperplastic conditions.

Antibodies, Monoclonal↗

Keratin polypeptide distribution in benign and malignant breast tumors: subdivision of ductal carcinomas using monoclonal antibodies.

Monoclonal antibodies which recognize one or only a few keratin polypeptides have been used to study the distribution of different keratins in benign and malignant breast lesions by immunocytochemical methods. Seven monoclonal antibodies which recognized either different keratin polypeptides by immunoblotting techniques, or identified different epithelial cell types in complex tissues were used. In two mastopathies and three fibroadenomas the antibody lu5 stained luminal cells as well as myoepithelial cells. In contrast the antibodies CK7, Troma 1, CK2 and KA4 labeled only luminal cells, whereas antibody CKB1 decorated only myoepithelial cells. All 15 ductal carcinomas showed a uniform staining of tumor cells with the antibodies Troma 1, CK2, KA4 and lu5. The antibody CK7 also stained all ductal carcinomas, but in two specimens the staining was heterogeneous. The antibody CKB1 decorated only the pre-existing myoepithelial cells in 11 of 12 ductal carcinomas but in the remaining specimen the tumor cells were also strongly positive. Tumor cells in lobular carcinomas were labeled by antibodies CK7, Troma 1, CK2, KA4, bu not by CKB1. The antibody CKS1 showed no staining of any of the benign and malignant breast lesions.

Antibodies, Monoclonal↗

Microinjection of monoclonal antibodies to vimentin, desmin, and GFA in cells which contain more than one IF type.

Microinjection of antibodies to vimentin into fibroblast cell lines causes intermediate filaments (IFs) to build perinuclear caps. We have extended these findings by microinjection of monoclonal antibodies specific for different IF types to non-epithelial cell lines of human origin, which co-express two different IF proteins. Thus GFA and vimentin IgGs have been microinjected in separate experiments into a glioma cell line, desmin and vimentin IgGs into RD cells, and vimentin IgGs into a cell line which co-expresses neurofilaments and vimentin. In all instances, microinjection of a single antibody causes the formation of perinuclear caps in which the two different IF proteins co-localize, suggesting that vimentin and the second IF type present in each cell line localize to the same 10-nm filaments. Immunoelectron microscopy using desmin and vimentin antibodies made in different species and appropriate second antibodies labelled with 5 and 20 nm gold particles confirm this result for RD cells. When Fab' fragments of the vimentin IgGs are microinjected into different cell types, formation of perinuclear caps is observed in immunofluorescence microscopy. In RD cells immunoelectron microscopy shows that the Fab' fragments induce caps which appear less dense than the caps seen after microinjection of IgGs.

Animals↗

Intermediate filaments in muscle and epithelial cells of nematodes.

Current concepts of the developmentally controlled multigene family of intermediate filament (IF) proteins expect the origin of their complexity in evolutionary precursors preceding all vertebrate classes. Among invertebrates, however, firm ultrastructural as well as molecular documentation of IFs is restricted to some giant axons and to epithelia of a few molluscs and annelids. As Ascaris lumbricoides is easily dissected into clean tissues, IF expression in this large nematode was analyzed by electron microscopic and biochemical procedures and a monoclonal antibody reacting with all mammalian IF proteins. We document for the first time the presence of IFs in muscle cells of an invertebrate. They occur in three muscle types (irregular striated pharynx muscle, obliquely striated body muscle, uterus smooth muscle). IFs are also found in the epithelia studied (syncytial epidermis, intestine, ovary, testis). Immunoblots on muscles, pharynx, intestine, uterus, and epidermis identify a pair of polypeptides (with apparent molecular masses of 71 and 63 kD) as IF constituents. In vitro reconstitution of filaments was obtained with the proteins purified from body muscle. In the small nematode Caenorhabditis elegans IF proteins are so far found only in the massive desmosome-anchored tonofilament bundles which traverse a special epithelial cell type, the marginal cells of the pharynx. We speculate that IFs may occur in most but perhaps not all invertebrates and that they may not occur in all cells in large amounts. As electron micrographs of the epidermis of a planarian--a member of the Platyhelminthes--reveal IFs, the evolutionary origin of this cytoplasmic structure can be expected either among the lowest metazoa or already in some unicellular eukaryotes.

Animals↗

Variability of expression and arrangement of cytokeratin and neurofilaments in cutaneous neuroendocrine carcinomas (Merkel cell tumors): immunocytochemical and biochemical analysis of twelve cases.

Twelve specimens of cutaneous neuroendocrine carcinomas (Merkel cell tumors) available as fresh tissue were analyzed for intermediate filament (IF) expression by immunocytochemical and biochemical methods. In immunofluorescence microscopy, most cases were positive for both simple-epithelium-type cytokeratins and the neurofilament L- and M-polypeptides. Several different IF staining patterns ranging from presence of plaque-like structures (fibrous bodies) only to nearly exclusive expression of delicate cytokeratin fibrils could be distinguished. In immunoelectron microscopy the labeling for both cytokeratin and neurofilament polypeptides seemed evenly distributed among the IFs of the fibrous bodies. In primary culture, tumor cells maintained the coexpression of both IF types. Desmoplakin-positive true desmosomes were found in 5 specimens. Biochemically, cytokeratins nos. 8, 18 and, variably, 19, as well as IT protein and, in many specimens, the neurofilament L-protein and a putative neurofilament M-protein were detected. Only traces of the neurofilament H-polypeptide were found. Our results show that a coexpression of cytokeratin IFs and neurofilaments in variable patterns is a characteristic feature of cutaneous neoendocrine carcinomas; occasionally, however, neurofilaments may be very scarce. The biological, histogenetic and diagnostic implications are discussed.

Adult↗

Identification of actin microfilaments in the intracytoplasmic inclusions present in recurring infantile digital fibromatosis (Reye tumor).

The diagnostic intracytoplasmic perinuclear inclusion bodies within the fibroblastic tumor cells of recurring digital fibrous tumor of childhood (Reye tumor) were found to be ultrastructurally composed of condensed microfilaments that were continuous with axially oriented cytoplasmic filament bundles running toward the cell membrane. Immunofluorescence microscopy performed with antibodies raised against vimentin and against actin revealed a strong positive reaction for vimentin in the tumor cell cytoplasm, whereas the spherical inclusion bodies were actin-positive. From these results the following conclusions may be drawn: (I) the mesenchymal origin of the Reye tumor cells is consistent with the identification of vimentin intermediate filaments and (II) the actin-positive spherical inclusion bodies appear to represent pathological aggregations of microfilaments.

Actin Cytoskeleton↗

Chemically induced tumors of rat olfactory epithelium: a model for human esthesioneuroepithelioma.

N-Nitrosopiperidine (CAS: 100-75-4) and 2,6-dimethylnitrosomorpholine induced tumors of the olfactory epithelium in white Wistar rats. Some tumors were serially transplanted to NMRI nude mice (nu/nu) and passaged up to 16 times in a 1-year period. Tumor tissues from rats and mice were analyzed by conventional pathological stains, by electron microscopy, and by immunofluorescence microscopy with the use of antibodies specific for different intermediate filaments. Both carcinogens induced tumors built of undifferentiated small, round cells in which neuroblastic (Homer-Wright) rosettes and ependymal (Flexner) rosettes were visible. In some tumors areas of squamous cell metaplasia could be observed, which sometimes differentiated toward squamous cell carcinoma. Electron microscopy showed neurosecretory granules in some tumor cells, and biochemical studies of plasma showed in some instances elevated ACTH and calcitonin levels. Intermediate filament typing showed that in general the undifferentiated tumor cells lack intermediate filaments, although in 6 of 29 tumors a few cells that stained positively for neurofilaments were found. Flexner rosettes, the areas showing squamous cell differentiation, and occasional single tumor cells were positive with keratin antibodies. Neurofilament expression was observed in a minor population of tumor cells placed in tissue culture. These findings are used to argue that the chemically induced rat tumors are a model for human esthesioneuroepithelioma and furthermore that the light basal cells of the epithelium may be the stem cells of the rat tumors as well as of its rare counterparts in humans.

Adrenocorticotropic Hormone↗

[Antibodies against intermediate filaments--a contribution to the differential diagnosis of salivary gland tumors].

Intermediate filaments are composed of 5 groups which follow the classic histogenetic division of tissue. The application of antibodies against the 5 groups for the analysis of salivary gland tumours reveals the presence of keratin in normal and neoplastic epithelial tissue. All carcinomas e.g. adenocarcinomas, acinic cell tumours, mucoepidermoid tumours and squamous cell carcinomas were positive for keratin. Vimentin was regularly found in the cells of the stroma. A special distribution pattern of intermediate filaments was found in pleomorphic adenomas and in adenoid cystic carcinomas. These tumours display the presence of two systems, keratin and vimentin filaments. The application of antibodies against intermediate filaments is useful for differential diagnosis of salivary gland tumours and for histogenetic analysis of special tumour groups.

Adenocarcinoma↗

Immunohistochemical investigations on the epimyoepithelial islands in lymphoepithelial lesions. Use of monoclonal keratin antibodies.

The histogenetic origin of cells in the epimyoepithelial islands occurring in patients with Sjoegren's syndrome has been investigated by using different monoclonal antibodies. The majority of cells in these islands reacted with broad specificity antibodies against keratins. The same cells are stained by a monoclonal antibody CKB1 which detects myoepithelial (basket) cells and basal cells (around the ducts) in normal salivary gland tissue, but which does not stain ductal epithelial cells. Conversely, the cells are not stained by the antibody CK5 which stains ductal epithelial cells in normal salivary gland tissue. The relation of the epimyoepithelial islands to the myoepithelial/basal cell system is thus demonstrated. Certain implications for practical use in surgical pathology are discussed.

Aged↗

Differential diagnosis of gastrointestinal carcinomas by using monoclonal antibodies specific for individual keratin polypeptides.

Monoclonal antibodies which recognize particular keratin polypeptides have been used to analyze normal human tissues including pancreas, stomach, colon, gall bladder, and liver as well as tumors of the gastrointestinal tract by immunohistological techniques. Broad specificity (lu5), ker 8 (Troma 1) and ker 18 (CK2) antibodies were positive while a ker 14 specific antibody (CKB1) was negative on all specimens tested. Differential staining patterns were seen with a ker 7 (CK7) and a ker 19 (KA4) antibody. Both antibodies stained gall bladder epithelium, pancreatic ducts but not acinar cells, as well as pancreatic ductal adenocarcinomas. KA4 but not the CK7 antibody stained adenocarcinomas of the stomach and large bowel. Both antibodies stained bile ducts and cholangiocellular carcinoma of the liver but did not stain hepatocytes or hepatocellular carcinomas. The results with keratin monoclonal antibodies compare well with those obtained by others using two dimensional gel electrophoresis and they further support the idea that monoclonal antibodies specific for particular keratin polypeptides will find applications in routine pathological diagnosis.

Antibodies, Monoclonal↗

Immunohistochemistry of cytoskeletal filaments in the diagnosis of soft tissue tumors.

There is abundant evidence that intermediate filaments can be used as cell type specific markers both for normal tissue and for tumors. The results of intermediate filament typing in soft tissue tumors and its diagnostic relevance is shown. This system can also be used to solve other problems in surgical pathology. One of the most useful applications of intermediate filament typing is to differentiate the round cell tumors of children; thus, rhabdomyo-sarcomas are desmin positive, malignant lymphomas contain only vimentin, and neuroblastomas show positivity for neurofilaments.

Antibodies, Monoclonal↗

Immunohistochemical localization of neurofilaments and neuron-specific enolase in 29 cases of neuroblastoma.

Twenty-nine neuroblastomas have been examined with the use of rabbit antibodies specific for each of the three neurofilament polypeptides, with a monoclonal antibody specific for the NF-L polypeptide, and with a rabbit antibody specific for neuron-specific enolase. When frozen material was used, all neuroblastomas were positive with the neurofilaments antibodies. When alcohol-fixed paraffin-embedded material was used, neurofilament staining was weaker and the fixation procedure appeared to destroy the epitopes recognized by the NF-L antibodies preferentially. Although all neuroblastomas were positive for neurone-specific enolase, so were two rhabdomyosarcomas, suggesting that NSE is not an appropriate marker to distinguish the different small blue cell tumors of children.

Adolescent↗