Search PubMedSearch

SEARCH · Search PubMed

Results for “Epithelium”

Search indexed PubMed citations on genomics, clinical trials, systematic reviews and public health. Explore titles, authors and supplied subject terms, then open the PubMed record.

Quote a phrase for an exact phrase match. Source license links do not imply unrestricted reuse.

At least 19 recordsLinked to original sources

The respiratory epithelium. VII. Epidermoid metaplasia of hamster tracheal epithelium during regeneration following mechanical injury.

Regeneration was studied in female Syrian golden hamster tracheal epithelium. The epithelium was focally removed in vivo by scraping it with a blunt probe. At 2 hours, virtually all cells had sloughed from the injured area leaving a bare basal lamina. At 6 and 12 hours, flattened cells that migrated from adjacent uninjured epithelium partially covered the denuded basal lamina. Increased cell division did not occur at these times. Many of the simple squamous cells contained well-developed endoplasmic reticulum, Golgi apparatus, and mucous granules. Other cells resembled basal cells. At 24 hours the defect was covered by one or two layers of simple squamous cells. At that time, many of those cells were in division, and cell division was also greatly increased in mucous cells and basal cells in the uninjured epithelium distant from the defect. At 48 hours the epithelium was stratified, composed of four or five layers of polygonal to flattened cells, typical of nonkeratinizing epidermoid metaplasia. The cells contained many tonofilament bundles, a large Golgi apparatus, and many tiny mucous granules. Mitoses were seen in all cell layers. At 72 hours, the surface layer of cells was undifferentiated (indifferent cells) overlying an epithelium that otherwise retained its epidermoid character. Indifferent cells were characterized by an electron-lucent cytoplasm and a lack of tonofilament bundles, mucous granules, or cilla. Cells similar in other respects to indifferent cells were seen that possessed mucous granules or early signs of cilla formation. Some cells showed mucous granules and cilla developing in the same cell. By 96 hours, the regenerated epithelium was fully differentiated and was indistinguishable from the normal epithelium. These observations show that mucous cells have a significant role in the regenerative response. Mucous cells have a dual potential; they can undergo epidermoid metaplasia and still retain the ability to secrete mucus. The study explains the universal occurrence of mucosubstances in areas of epidermoid metaplasia and makes more understandable the previously reported fact that many bronchogenic carcinomas are combined epidermoid and adenocarcinomas. In the presence of a carcinogen, the hypothesis has been forwarded that initiation of mucous cells and basal cells occurs, which leads to malignant transformation and produces tumors that show active secretory activity and keratinization, often in the same cell.

Animals

[Characteristics of the follicular epithelium in the fishes with demersal roe. Concerning the classification of unilaminate monomorphous follicular epithelium of the vertebrates].

Follicular epithelium of Hemichromis during the periods of small and slow oocyte growth changes from flattened prismatic into high prismatic; during the periods of fast oocyte growth, the follicular epithelial cells undergo secretory specialization. Secretion is of apocrine type and forms the second oocyte tunica. According to the literature data analyzed and the author's investigation, in the development of unilaminate monomorphous follicular epithelii, it should be distinguished: a) period of primary transformation with characteristic intensive proliferation of epithelial cells, their morphologic transformation, upward growth of epithelium and increase of its physiological activity; b) period of secondary transformation either at the expense of secondary follicular epithelial flattening, or by means of secretory specialization of its cells. It is suggested to name unilaminate monomorphous follicular epithelii in vertebrates according to their construction at the end of the primary and by the character of the secondary transformation. Thus, follicular epithelium of Hemichromis can be defined as highly prismatic with secondary specialization.

Animals

Studies on translocation of immunoglobulins across intestinal epithelium. IV. Evidence for binding of IgA and IgM to secretory component in intestinal epithelium.

We conducted studies concerning the issue of whether secretory component (SC) is a specific receptor on intestinal epithelial cells for IgA and IgM. Initially, frozen sections of human intestinal mucosa were incubated with dimeric monoclonal human IgA, conjugated to horseradish peroxidase; adjacent sections were reacted with peroxidase-conjugated antibodies to SC. The conjugated IgA and anti-SC bound to similar sites in the epithelium, that is to basolateral margins and supranuclear cytoplasm of columnar epithelial cells, principally in gland crypts. In subsequent tests of binding specificity, binding of the dimeric IgA conjugate was inhibited by pretreating the tissues with unconjugated dimeric IgA or 19S IgM, pretreating the tissues with unconjugated antibodies to SC, or preincubating the dimeric IgA conjugate with free SC. Binding was not inhibited or only partially inhibited by pretreating the tissues with monomeric IgA or IgG, pretreating the tissues with antibodies to human or heterologous immunoglobulins, or preincubating the dimeric IgA conjugate with 11S secretory colostral IgA. The findings indicate that dimeric IgA and 19S IgM are capable of binding in vitro to specific sites on intestinal epithelial cells, most likely to SC. This supports the hypothesis that transport of these immunoglobulins into intestinal fluids involves their combination with SC in the epithelium.

Binding Sites, Antibody

Cell kinetics of mouse urinary bladder epithelium. III. A histologic and ultrastructural study of bladder epithelium during regeneration after a single dose of cyclophosphamide, with special reference to the mechanism by which polyploid cells are formed.

In order to see whether the polyploid cells lining the mouse urinary bladder are formed by nuclear fusion, such epithelium was studied under the light and electron microscope forty-eight hours after an injection of cyclophosphamide when the bladder epithelium regenerates with rapid formation of many diploid, tetraploid and octoploid cells. The probability of seing fusion, if it occurs, ought then to be high. Serial sections of many specimens from four mice revealed no signs of fusion. Thus we found no support for the theory that polyploid cells are formed by nuclear fusion.

Animals

Changes in ultrastructure and function of the sheep pigment epithelium and retina induced by sodium iodate. I. The ultrastructure of the normal pigment epithelium of the sheep.

The normal ultrastructure of the sheep pigment epithelial cells is described as a basis for the interpretation of toxic (sodium iodate) effects on these cells dealt with in two following papers. The morphological features of the different cell membranes and cell organelles, particularly the phagosomes and the lipid droplets, are discussed in relation to renewal of the photoreceptor outer segment, pigment epithelial and retinal metabolism, barrier mechanisms and electrical properties.

Animals

Localization of cellular retinal-binding protein in bovine retina and retinal pigment epithelium, with a consideration of the pigment epithelium isolation technique.

Bovine RPE was isolated by commonly used brushout procedures and analyzed by light and electron microscopy. The preparation was found to consist almost entirely of cells with retained organelles (mitochondria, pigment, and other granules) but with broken surface membranes and extracted cytoplasm. In keeping with this, the wash obtained by sedimenting these broken cells contained approximately 97 percent of the cellular retinol-binding protein present in the suspension. Cellular retinoic acid-binding protein, present in bovine retinal extracts, was found in low amounts in the wash from RPE. The cellular retinol-binding protein present in the RPE wash was of high specific activity and similar in properties to that obtained from bovine retina. Supernatant obtained from sonicated rod outer segments contained approximately 10 percent of the retinol-binding protein of the retina. No retinoic acid-binding protein was found. The relatively large amount of cellular retinol-binding protein present in the RPE (more than is found in the retina) is consistent with a functional role of this protein in uptake and transport of retinol by the RPE.

Animals

Studies on the retina and the pigment epithelium in hereditary canine ceroid lipofuscinosis, I. The distribution of enzymes in the whole retina and pigment epithelium.

The massive accumulation of autofluorescent lipopigments, representative of autoxidation, is a key morphological feature in canine ceroid lipofuscinosis (CCL). In the eye peroxidase, catalase, and four acid hydrolases were compared with regard to aged and clinical condition in a series of English setters affected with CCL. In unaffected English setters "soluble" peroxidase increased in the RPE to adult levels at 2 yr of age. Affected dogs had higher RPE peroxidase activity earlier in life, which then decline with age. The soluble retinal peroxidase of both unaffected and CCL dogs increased steadily with age, but the latter group of dogs were much lower in activity. By 2 yr of age, RPE and retinal peroxidase values were only 25% and 47% of unaffected dog levels. Although the soluble enzyme of unaffected dogs exhibited a maturational profile, membrane-bound RPE peroxidase showed a hyperbolic curve reaching a maximum at 10 mo of age. By 2 yr of age, the "bound" enzyme in affected dogs was below unaffected levels in the RPE and retina. Three acid hydrolases were slightly increased in the RPE and retina of affected dogs. Acid lipase activity, however, was similar in both unaffected and CCL dogs. Catalase was not found in the RPE of either group of dogs. The catalase activity in the retina of both affected and unaffected dogs was at similar levels. Since catalase is not present in the RPE, the major defense against peroxidase accumulation and peroxide toxicity probably depends upon peroxidase. The present study indicates that a decrease in this key regulating enzyme may be related to the formation of lipopigments in the retina and RPE of dogs with CCL.

Age Factors

[Structure of the follicular epithelium of the gonads Neva lamprey Lampetra fluviatilis (classification of the follicular epithelia of vertebrates)].

During its fluvial life, the ovarian follicular epithelium of Lampetra fluviatilis undergoes polarity formation--in the animal hemisphere the follicular epithelium is flattened, in the vegetative--it undergoes a secretory specialization: as the secrete is accumulating, the follicular cells increase in volume and height, acquiring a cubical form. In connection with monotonous or differentiating morpho-physiological alterations of follicular epithelium within a single follicle during the period of rapid oocytic growth, it is suggested to widen the idea on kinds of its secondary transformation in the vertebrates. It is suggested to differ: 1) common secondary transformation, when secondary flattening (for example, in birds) or secondary specialization (for example, in fish demersal roe) embraces the whole epithelium of the follicle. In case of common secretory specialization, it can be a) isomorphous--at identical convertion of the epithelium in the whole follicle (for example, in sheatfish), b) dimorphous--when there is a certain difference in the character and degree of secretory specialization of the follicular epithelium in various follicular areas (for example in Myxine glutinosa); 2) unipolar secondary transformation when the follicular epithelium undergoes secondary flattening or secretory specialization only in the area adjacent to one of the oocyte poles (for example, in Lametra fluviatilis and Blennis follis). Follicular epithelium of the lamprey testis, unlike in other Anamnia, does not form spermatocysts; implantation of spermatids and spermia into cytoplasm of the follicular cells is not observed. Thus, histological structure of Cyclostomata testis is at a lower stage of development than in other Anamnia.

Animals

A new concept regarding the origin of the junctional and crevicular epithelium in rat molars.

The substitution of the internal enamel epithelium by a squamous epithelium during tooth eruption has been studied histologically in rat molars. Just prior to eruption, cytolysis of the connective tissue covering the cusp tip determines hyperplasia in the oral epithelium. A conspicuous infiltration results. Infiltrated undifferentiated cells form distinct cords which seem to be attracted by the internal enamel epithelium. They reaggregate when they come into its contact and form an underlying epithelium. The process starts in the superficial part and progressively extends towards the cervix. Finally, the internal enamel epithelium is expelled when desquamation begins. The lack of mitoses in both stratum intermedium and internal enamel epithelium and the pyknosis observed in the former, clearly show that the cells of the embryonic dental bell do not take part in the formation of the squamous epithelium as some authors still suppose.

Ameloblasts

Electrical properties of an excitable epithelium.

The exumbrellar epithelium of the hydromedusa, Euphysa japonica, is composed of a single layer of broad (70 micrometers), thin (1--2 micrometers) cells which are joined by gap junctions and simple appositions. Although the epithelium lacks nerves, it is excitable; electrically stimulating the epithelium initiates a propagated action potential. The average resting potential of the epithelial cells is -46 mV. The action potential, recorded with an intracellular electrode, is an all-or-nothing, positive, overshooting spike. The epithelial cells are electrically coupled. The passive electrical properties of the epithelium were determined from the decrement in membrane hyperpolarization with distance from an intracellular, positive current source. The two-dimensional space constant of the epithelium is 1.3 mm, the internal longitudinal resistivity of the cytoplasm and intercellular junctions is 196 omega cm, and the resistivity of both apical and basal cell membranes is greater than 23 k omega cm2. Although the membrane resistivity is high, the transverse resistivity of the epithelium is quite low (7.5 omega cm2), indicating that the epithelium is leaky with a large, transverse, paracellular shunt.

Action Potentials

Morphological changes in the esophageal epithelium of the eel, Anguilla japonica, during adaptation to seawater.

The esophageal epithelium of the Japanese eel, Anguilla japonica, was studied by light and electron microscopy. In freshwater-adapted eels, longitudinal folds of the mucosal surface are simple in form and lined by a stratified epithelium composed of mucous cells, filament- and ribosome-rich cells. Mucous cells are numerous. The filament-rich cells form the outermost and the basal layers of the stratified epithelium and are scattered in the middle zone among the mucous cells. They are firmly bound to one another by many desmosomes and prominent interdigitations of plasma membrane. The distal free surface of the filament-rich cell has a fingerprint-like pattern of microridges. A small number of columnar cells occur at the apices of the folds. They are rich in mitochondria and their distal surfaces bear short microvilli. In seawater-adapted eels, irregularly meandering folds increase the surface area of the mucosa. The stratified epithelium is extensively replaced by a simple columnar epithelium free of mucous cells. The columnar cells resemble in many respects those found in freshwater-adapted eels. They are rich in mitochondria and their distal free surface were provided with short microvilli. However, prominent lateral intercellular spaces and elaborate interdigitations of cytoplasmic processes in the distal zone distinguish the former from the latter. Results are considered in connection with the changes in ion and water permeability of the epithelium after seawater adaptation.

Adaptation, Physiological

Odd-and even-numbered fatty acids. Their contrasting behavior in normal and fowlpox virus-infected epithelium.

Upon infection with fowlpox virus, the amount of odd-numbered fatty acids in chick scalp epithelium shows a significant decrease compared with control values. This effect begins quite early and progresses throughout the period of infection. Individual members of the odd-numbered family (C15--C27 inclusive) were quantitatively related to the group as a whole during most of the infection. Experiments involving the administration of labeled acetate in vivo demonstrated an increase in the synthesis of even-numbered fatty acids and a decrease in the synthesis of odd-numbered fatty acids in infected epithelium. The reduced synthesis of odd-numbered fatty acids in infected epithelium could also be demonstrated with labeled propionate. The influence of the alpha-oxidation pathway was assayed in chick scalp epithelium in vivo by the administration of [1-14C,9,10-3H] stearic acid. The C17 acids formed had a 3H/14C ratio similar to that of the C16 acids, indicating that most label incorporation into C17 was due to beta-oxidation to acetate followed by resynthesis into fatty acids. C17 fatty acids from control and infected epithelium had similar 3H/14C ratios, indicating that the alpha-oxidation pathway probably does not contribute to the differences in odd-numbered fatty acid content observed. In assays for fatty acid synthetase activty, both [14C] acetyl-CoA and [14C]-propionyl-CoA were used as initial acceptors. The specific activities of preparations from infected scalp were similar to those of control preparations with both substrates. These results suggest that there is no decline in the ability to utilize propionate for fatty acid synthesis in infected epithelium.

Acetates

Adenocarcinoma complicating columnar epithelium-lined (Barrett's) esophagus.

Prolonged reflux esophagitis leads to replacement of the esophageal squamous epithelium by columnar epithelium in some patients. This columnar epithelium resembles gastric or intestinal mucosa and has been implicated as a precursor of esophageal adenocarcinoma. A review of 14 cases of primary esophageal adenocarcinoma disclosed that 12 (86%) arose in a columnar epithelium-lined (Barrett's) esophagus. Ten of the 12 patients had a hiatal hernia or symptoms of reflux esophagitis or both. In ten patients the columnar epithelium adjacent to and remote from the invasive adenocarcinoma showed a spectrum of abnormalities ranging from mild dysplasia to carcinoma in situ. These data support the concept that esophageal adenocarcinoma is one complication of a columnar epithelium-lined esophagus, and suggest that the invasive carcinoma evolves through a sequence of epithelial dysplasia and carcinoma in situ in most cases. Esophageal biopsy and cytology can detect this dysplasia, and should provide an effective means for monitoring patients with Barrett's esophagus for impending malignancy.

Adenocarcinoma