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At least 19 recordsLinked to original sources

Paddle cilia and discocilia - genuine structures? Observations on cilia of sensory cells in marine turbellaria.

Kinocilia of epidermal sensory cells in fixed marine Turbellaria often terminate as flattened biconcave discs. The distal part of the ciliary axoneme curves back upon itself forming a 360 degree loop which is enveloped by the plasmalemma. In living animals this structure can be induced by the addition of sodium cacodylate, monobasic sodium phosphate, dibasic sodium phosphate, sucrose, calcium chloride, or formaldehyde to the sea water. Specimens treated with sodium chloride, glutaraldehyde, or osmium tetroxide do not show modified cilia. In animals prepared for EM at low temperature and with a buffered hypotonic fixative less kinocilia are modified than in animals treated with a buffered iso- or hypertonic fixative and at a higher temperature. It is assumed that the unusually shaped cilia, described as "paddle cilia" or "discocilia" in other invertebrates, do not represent a genuine but an artificial structure.

Animals

Kinetics of the regeneration of sea-urchin cilia. II. Regeneration of animalized cilia.

The kinetics of the regeneration of cilia of Arbacia punctulata animalized by treatment with trypsin have been examined. The cilia regenerate with biphasic kinetics: an initial linear phase which changes abruptly to a second, slower linear rate. Inhibition of protein synthesis with 10 microM emetine has little effect on the first phase but totally abolishes the second, suggesting that the first phase represents the utilization of a pre-existing precursor pool while the second reflects de novo protein synthesis. However, cilia will regenerate again following a second deciliation in the presence of emetine, to half the plateau value of the first regeneration, indicating that only a fraction of the pool of the limiting precursor can be assembled into the regenerating cilium. It is proposed that a residual pool of this precursor is required to maintain the assembly-disassembly equilibrium in favour of the assembled organelle.

Animals

Activation of nasal cilia in immotile cilia syndrome.

Nasal biopsy specimens were obtained from 5 normal subjects and from 7 patients with immotile cilia syndrome. Of the latter, 3 had Kartagener's syndrome, one had Kartagener's forme fruste, and 3 had bronchiectasis and sinusitis. An in vitro motility test was used to assess ciliary movement. Exogenous adenosine triphosphate and adenosine triphosphatase activated the immotile cilia to levels equal to or slightly greater than the spontaneous activity seen in normal subjects. Absence of dynein arms on ciliary peripheral microtubule doublets was a consistent finding in the patients' specimens and is suggested to be the basic defect in this syndrome that is responsible for immotility and absence of mucociliary clearance.

Adenosine Triphosphatases

Cilia in the brain display region-dependent oscillations of length and orientation.

In this study, we conducted high-throughput spatiotemporal analysis of primary cilia length and orientation across 22 mouse brain regions. We developed automated image analysis algorithms, which enabled us to examine over 10 million individual cilia, generating the largest spatiotemporal atlas of cilia. We found that cilia length and orientation display substantial variations across different brain regions and exhibit fluctuations over a 24-h period, with region-specific peaks during light-dark phases. Our analysis revealed unique orientation patterns of cilia, suggesting that cilia orientation within the brain is not random but follows specific patterns. Using BioCycle, we identified rhythmic fluctuations in cilia length across five brain regions: the nucleus accumbens core, somatosensory cortex, and the dorsomedial, ventromedial, and arcuate hypothalamic nuclei. Our findings present novel insights into the brain cilia dynamics, and highlight the need for further investigation into cilia's role in the brain's response to environmental changes and regulation of oscillatory physiological processes.

Animals

[Cilia abnormalities in chronic maxillary sinusitis. a transmission (TEM) and scanning (SEM) electron microscopic investigation (author's transl)].

In the resistance of respiratory diseases the mucociliary clearance is a very important factor. Among them the cilia play a decisive role. The normal structure and some variations of the cilia in the maxillary sinus are described using transmission and scanning electron microscopy. The following cilia abnormalities were observed: cilia with a single axonema and excess cytoplasmic matrix; compound cilia and giant cilia with 2-4 and more complete or incomplete axonemata; development of cells, which have secretory granules like goblet cells and cilia like normal ciliated cells. Further the outgrowing of new cilia is shown in the SEM.

Cilia

Otitis media and the immotile cilia syndrome.

The immotile cilia syndrome appears to be a congenital defect in the ultrastructure of cilia that renders them incapable of movement. Respiratory tract cilia and sperm are predominantly affected. Bronchiectasis, sinusitis and male sterility are the main clinical findings. Situs inversus may be found. To these findings can be added otitis media. The defect appears to be a complete or partial absence of dynein arms which are believed to be essential for generating movement of cilia or sperm tails. Six patients suspected of having immotile cilia were compared to six patients in a control group. In affected patients, no cilia movement in the middle ear or nasopharynx was observed using the operating microscope. Electron microscopy of cilia from the mucosa of the middle ear and nasopharynx appeared to confirm the ultrastructural defect in two of six patients suspected of having the syndrome.

Adult

Some changes in the properties of dynein ATPase in situ and after extraction following heat treatment of cilia.

Glycerol-extracted cilia from Tetrahymena pyriformis were demembranated by treatment with Triton X-100 and then heated for up to 30 min at temperatures between 34-38 degrees C. Heat treatment caused an uncoupling of the ATPase from motility as indicated by an increase in ATPase activity and a loss of pellet height response. After heat treatment, the ATPase activity of the dynein in situ differed from that in unheated cilia as shown by an increased sensitivity to a lower temperature of assay (0 degrees C) and by a loss of the activation normally observed upon reaction with N-ethylmaleimide or p-phenylenedimaleimide. Upon extraction of the heat-treated cilia by Tris-EDTA, there was a large loss in ATPase activity so that the heat-treated cilia yielded a crude dynein fraction with a lower specific activity compared with that obtained from unheated controls. The difference was not due to a change in the amount of protein recovered or in the amount of ATPase activity which remained unextracted. Resolution of the crude dynein by sucrose density sedimentation indicated that activity was lost from both the 14S and 30S peaks but more so from the latter than from the former. Thus dynein in situ in cilia in which the ATPase has been uncoupled from motility by gentle heat treatment differs in several important respects from dynein inside unheated cilia.

Adenosine Triphosphatases

[Ciliated cells of corneal endothelium. Functional and morphological aspects compared to cilia of other organs].

The presence of ciliated cells has been demonstrated by scanning and transmission electron microscopy in corneal endothelium. This study has been carried out on human cornea in normal and pathological cases and on rabbit's normal cornea. Another study has been lead on regeneration of endothelium after freeze destruction. The cilia cells described have a normal structure. The cilia has nine peripheral groups of tubules without any tubule in the center. The cilia seem to be more numerous in case of corneal disease and during the regeneration of corneal endothelium. The authors compare the presence of ciliated cells in different tissues. This suggest that the potency to form single cilia is present in almost every kind of tissue but there is no proof of their pathological importance. In the corneal endothelium, as in the kidney, cilia seem to have no function of fluid transportation but the possibility for cilia to be a receptor is discussed.

Animals

Cystic fibrosis compared with the immotile-cilia syndrome. A study of mucociliary clearance, ciliary ultrastructure, clinical picture and ventilatory function.

Patients with cystic fibrosis (CF) were investigated for mucociliary clearance (with and without stimulation by terbutaline), clinical picture, ventilatory function and ultrastructure of cilia. The results were compared with those of patients with congenitally immotile cilia (immotile-cilia syndrome). Mucociliary clearance could be demonstrated in all the seven CF patients who succeeded in inhaling the test aerosol. Ciliary ultrastructure from a deceased CF patient was normal. Patients with the immotile cilia syndrome had no substantial clearance and defective cilia. The CF patients coughed more during the clearance measurements than any other group studied earlier, and their coughing was effective. One patient succeeded in avoiding coughing in both measurements and had faster clearance when he got terbutaline than when he got the vehicle. Although younger, the CF patients tended to be more obstructed in their lungs and more handicapped than the patients suffering from the immotile-cilia syndrome. The latter patients had more discomfort from rhinitis, sinusitis and otitis than had the CF patients. An impairment of the mucociliary transport rate is hence unlikely to be a primary pathogenic factor for the respiratory tract disease in CF patients.

Adult

The immotile-cilia syndrome. A congenital ciliary abnormality as an etiologic factor in chronic airway infections and male sterility.

We investigated six men and a woman suspected of suffering from congenital immotility of cilia. All had chronic airway infections, and the men had immotile spermatozoa. The woman and three men had Kartagener's syndrome. The investigations included measurements of the mucociliary transport in the lower airways and ultrastructural studies of the sperm tails or respiratory cilia (or both). Mucociliary transport was significantly delayed. Sperm tails lacked dynein arms in five patients. Respiratory cilia from the women and two men lacked dynein arms and were irregularly oriented. The results support the hypothesis that a congenital defect in the cilia and sperm tails will cause chronic respiratory-tract infections and male sterility--the immotile-cilia syndrome. In about half these patients there will also be a situs inversus--i.e., Kartagener's syndrome.

Adult

Transmission electron microscope observation of epithelial cells with single cilia in intrahepatic biliary ductules of bats.

Cells with long single cilia arising from basal bodies in the apical cytoplasm were occasionally revealed in the bile ductular epithelia of bats (Miniopterus schreibersi (Kuhl), Myotis macroductylus (Temminck) and Rhinolophus cornutus (Temminck)). The basal body (distal centriole) was associated witha proximal centriole, so the basal structure was of "two centriole type." In cross sections of the long tapering cilia the arrangement of cilary microtubules was determined. In the most proximal portion of the cilia doublet microtubules were arranged in the 9+0 pattern, while in more distal portions alteration and diminution of the doublet fibers occurred, splitting entirely into single microtubuli which were most frequently rearranged in the 6+1 or 7+1 pattern. The occurrence of the 9+0 fiber pattern and the basal structure of "two centriole type" suggested that the biliary ductular cilia might be sensory or chemoreceptive in nature and not motile. Similar cilia are expected to be found distributed widely in the epithelia of excretory ductal system of large exocrine glands of vertebrate species.

Animals

Cilia of neonatal articular chondrocytes: incidence and morphology.

Cilia in neonatal canine articular chondrocytes were studied using morphometric techniques and transmission electron microscopy. The cilia in chondrocytes were morphologically similar to cilia in a variety of other cell types. A chondrocytic cilium consisted of a basal body and a ciliary shaft. The cylindrical basal body was 0.21 micron (S.D. = 0.01 micron) in diameter, 0.50 micron (S.D. = 0.03 micron) in length and contained nine microtubular triplets. The ciliary shaft was 0.196 micron (S.D. = 0.02 micron) in diameter and 1.76 micron (S.D. = 0.80 micron) in length. The number of microbtubular doublets in the ciliary shaft varied depending on where along the length of the shaft the section was taken. This study demonstrates that on the average the frequency of cilia in neonatal articular chondrocytes, as estimated sterologically, was about one cilium per cell.

Animals

Effects of topical nasal decongestants on the cilia of a chicken embryo tracheal organ culture system.

There is little physiologic data concerning the possible toxicity of nasal decongestants on respiratory cilia. Consequently, a chicken embryo tracheal organ culture system was employed to study the effect on ciliary activity of various preparations and concentrations of the following medications: tetrahydrozoline hydrochloride (Tyzine), xylometazoline hydrochloride (Otrivin), Dristan, Sinex, NTZ oxymetazoline hydrochloride (Afrin), naphazoline hydrochloride (Privine), and phenylephrine (Neosynephrine). Only two dilutions of injectable phenylephrine 0.25% and 0.10% produced essentially no ciliotoxicity when compared to the cilia in control cultures. All the other topical nasal medications in the concentrations tested possessed some toxicity for cilia. The use of these medications should be tempered with the warning of possible cilia damage.

Animals

Non-ependymal cilia in the habenulae and the interpeduncular nucleus of the frog tadpole.

Cilia of the 9 + 2 pattern are found electron microscopically in nonependymal cells of the habenulae and the interpeduncular nucleus of the tadpole of Rana esculenta at an early stage of development (8 mm length, head to tip of tail). A comparison is made between these and the ependymal and sensory cilia in the same specimens. The cilia project into the neuropil emerging from a perikaryon rich in free ribosomes and displaying a prominent Golgi apparatus. These perikarya contain dense core vesicles. Synapses with vesicles of the clear spherical type have been observed along the ciliary shaft. On a purely morphologic basis the authors hypothesize that these cilia, at least in this early ontogenetic stage, may extend considerably the conducting surface of the cell and represent a sensory structure which could be stimulated by terminal processes belonging to distantly located cells. In addition, they could also be involved in the trophic exchange of material with the adjacent structures.

Animals

Distinctive features of cilia in metazoans and their significance for systematics.

A comparative study of epidermal cilia in the Turbellaria and Nemertea has revealed features in these organelles that are specific to certain taxonomic groups. Turbellarians of the order Acoela, in particular, have a characteristic pattern of axonemal filament termination in the distal tips of their cilia and a characteristic ciliary rootlet system that is not seen in other turbellarian orders nor in other metazoans. Each epidermal cilium in acoels has a typical 9 + 2 axonemal pattern through the main part of its length, but near its distal tip there is an abrupt shelf-life narrowing at which filaments 4-7 terminate; filaments 1, 2, 8 and 9 continue into the thinner distal-most part of the shaft along with singlet microtubules from the axonemal center. The rootlet system in acoel cilia involves an interconnecting pattern with lateral connectives. The unique structure of these cilia has systematic and phylogenetic significance for the Acoela, and it is argued that ultrastructural characters in general, including characters of organelles, can be validly applied to the phylogeny and systematics of the Metazoa.

Animals

Cilia with defective radial spokes: a cause of human respiratory disease.

We studied the fine structure of respiratory-tract cilia in three siblings with chronic respiratory disease, comparing them with those from a patient with Kartagener's syndrome who had dynein-deficient cilia and with control patients who had chronic bronchitis or chronic sinusitis. Electron microscopy of the siblings revealed a new abnormality in the ciliary axoneme--namely, lack of the radial spokes. Their cilia showed an eccentric central pair of tubules but otherwise had a normal central sheath, outer-doublet microtubules, nexin links and dynein arms. The cilia were immotile. Mucociliary clearance was completely lacking in the three siblings and in the patient with Kartagener's syndrome, but was normal in their parents and unaffected siblings. Sperm from the male sibling showed identical structural abnormalities and were immotile. We consider the radial spoke defect to be the congenital anomaly responsible for dysfunction of the mucociliary clearance mechanism in these three patients and of the immotile sperm in one of the them. This defect is apparently another cause of the "immotilecilia syndrome."

Adult

Electron microscope demonstration of tubulin in cilia and basal bodies of rat tracheal epithelium by the use of an antitubulin antibody.

It has been previously demonstrated that both cytoplasmic microtubules and the microtubules of cilia, flagella, and sperm tail contain tubulin. Although the morphology of cytoplasmic microtubules and that of axonemes differs in cells from which they have been isolated, the tubulin of the two structures shares physical and chemical properties. In some mammalian tissues, such as tracheal epithelium, cilia and basal bodies are difficult to isolate and characterize. The use of an enzyme-labeled immunoglobulin probe would facilitate identification and in situ localization of such proteins. Tubulin prepared from porcine brain by ion-exchange chromatography and from rat brain by the method of cyclic polymerization and depolymerization with subsequent disk gel electrophoresis with SDS were injected intravenously into rabbits. The animals were intermittently bled and the antisera extracted. The specificity of the antisera was proved by indirect immunofluorescence staining of the mitotic spindle, specific blocking of spindle staining by purified tubulin and not by other proteins, staining of 3T3 cytoplasmic microtubules, single line on immunoelectrophoresis, failure of control antisera to show any of these, and precipitation of antibody with all tubulin preparations and not with actin. We have shown by electron microscopy of ciliated cells of the tracheal epithelium stained with antitubulin by the indirect enzyme-labeled antibody method that the basal bodies, outer doublets, and central pair of the cilia contain tubulin. This indicates that tubulin in microtubules of cilia and basal bodies of rat tracheal epithelium is antigenically similar to tubulin extracted from cytoplasmic neurotubules of brains from the same species and from a different mammalian species. No other axonemal structures stained with the antitubulin. Three different preparations of tubulin from pigs and rats were used to immunize rabbits. All elicited similar antisera which gave identical staining patterns. The specificity of the staining was demonstrated by the absence of staining with immune serum absorbed with purified tubulin, the absence of staining with preimmune serum, and the absence of staining if any of the reagents were omitted during the staining reaction.

Animals

A scanning electron-microscopic study of the local degeneration of cilia during sexual reproduction in Paramecium.

The location and extent of local degeneration of cilia during sexual reproduction of Paramecium was studied using scanning electron microscopy to examine cells undergoing conjugation and autogamy. At some time during the mating reaction, but prior to conjugant pair formation, ciliary degeneration begins at the antero-ventral tip of cells and proceeds posteriorly along the suture. In the anterior part of the cell, degeneration occurs on both sides of the suture, but in the posterior part it is restricted to the right side of the suture. In 5 species of Paramecium examined, degeneration occurred in nearly the same region. No degeneration of cilia is observed in natural autogamy of P. tetraurelia, whereas in chemically induced autogamy of P. caudatum degeneration occurs as in ordinary conjugation. Conjugant pairs never expose any deciliated cell surface except at the postero-ventral tip. The maximum extent of ciliary degeneration is best seen in the chemically induced autogamous cells: 7 kinetics (rows of unit teritories) at the anterior-left, 4 kinetics at the anterior-right, 10 or more kinetics at the posterior-right and the right wall of the vestibule of the mouth. Before complete disappearance of the cilia, many short cilia are observed. This suggests that ciliary degeneration is due to resorption. Degeneration extends more rapidly in cells with stronger mating reactivity. The relations between mating reactivity, ciliary degeneration and nuclear activation are discussed.

Animals