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[Possibility of formation of "brush" cells from Type II alveolocytes in rats].

It was found that during acute alveolar hypertrophy (days 5-7 after lefthanded pneumonectomy) the number of alveolar brush cells considerably increases. Alveolocytes were disclosed to accumulate at that particular time in the epithelial lining of the alveoli. They consist of type II alveolocytes, brush cells and of intermediate-type alveolocytes. The latter ones were oval or cuboid in shape, had light cytoplasm with abundant polysomes, 1-4 osmiophilic lamellar bodies, as well as microfibrils and pinocytic vesicles. On the apical plasmalemma of the alveolocytes one could see the initial stages of the formation of cylindrical microvilli and microfibrils. The topography and ultrastructure of the intermediate-type alveolocytes may be viewed as evidence of the formation of the brush alveolocytes from type II alveolocytes.

Animals↗

Differences in the microfibrillar arrangement of collagen fibrils. Distribution and possible significance.

The microfibrillar arrangement of collagen fibrils has been studied on replicas of freeze-fractured specimens and on thin sections of specimens treated with a 4.0 M guanidinium chloride solution. Collagen fibrils with straight arrangement of their microfibrils usually have a variable diameter and correspond in their distribution to genetical type I and type II collagens. Collagen fibrils with helicoidal arrangement of their microfibrils present a relatively small and uniform diameter and show a tissue distribution similar to that of the genetical type III collagen. The corneal stroma, although predominantly composed of type I collagen, displays collagen fibrils with a helicoidal microfibrillar arrangement, and small uniform diameter. This exception can be explained in consideration of the function of the collagen of the corneal stroma. A close correlation between all the different microfibrillar patterns of the collagen fibrils and their function in the anatomical sites we examined is evident.

Animals↗

Enamel free areas in rodent molars--ultrastructure of basement membrane in rat tooth germ.

At the cusp tip of rodent molar, there is a region of dentin without an enamel cap. This region is called enamel free area (EFA). The surface collagen arrangement has been reported to differ between the EFA and the dentin covered with the enamel (DCE). To clarify the cause of this difference, we observed the ultrastructure of the basement membrane and the distal ends of the inner enamel epithelium (IEE) in rats. At 20 days prenatal, distal ends of IEE were relatively flat on both the DCE and EFA. Ultrastructurally, there was no difference between the basement membranes. At newborn, no marked changes were observed in the morphology of the distal end of IEE on the DCE or the EFA, but aperiodic microfibrils perpendicular to basal lamina were denser and longer on the DCE than the EFA. At 2 days postnatal, cytoplasmic extensions from distal end of IEE penetrated through basal lamina, and these extensions were more developed on the DCE than the EFA. On the DCE, collagen fibrils ran into and between cytoplasmic extensions and were arranged perpendicular to the surface. On the EFA, collagen fibrils ran parallel to the surface, and few collagen fibrils ran into and between cytoplasmic extensions. These findings suggested that the differences in the collagen arrangement between the EFA and DCE are associated with the developmental state of aperiodic microfibrils in the basal lamina beneath IEE and the morphology of the distal end of IEE.

Animals↗

Morphological aspects of cell wall formation during protoplast regeneration in Candida albicans.

The dynamics of cell wall regeneration in Candida albicans protoplasts was investigated by fluorescence microscopy using a new fluorescent dye, Fungiflora Y, which specifically binds to beta-linked polysaccharides, as well as by electron microscopy. When freshly prepared protoplasts were incubated in osmotically stabilized medium, multiple binding sites of Fungiflora Y were detected on their surface within 15 min of incubation. At this initial stage of reversion, protoplasts began to form microfibrils outside the cytoplasmic membrane. From 1 h onward, the whole cell surface displayed a bright fluorescence. After 3 h of incubation, the reverting protoplasts were covered by an interwoven network of microfibrils. After 5 h of incubation, although most of the revertants had become osmotically resistant, regenerated cell walls in which the constituent materials appeared highly integrated were observed to be still monolayered in profile. Cell wall regeneration was complete after 24 h of incubation, at which time the reverted cells were capable of proliferating.

Candida albicans↗

A compound-heterozygous Marfan patient: two defective fibrillin alleles result in a lethal phenotype.

We describe here the identification of defined mutations in both alleles of the fibrillin gene (FBN1) in a compound-heterozygote Marfan syndrome (MFS) child who had a very severe form of MFS resulting in death from cardiac failure at the age of 4 mo. The nonconsanguineous parents were both affected with MFS. The father's heterozygous point mutation has earlier been reported to result in W217G substitution, the mother was here shown to carry a heterozygous point mutation resulting in G2627R substitution, and the child had inherited both these mutations. The mutant FBN1 alleles were demonstrated to be transcribed with equal efficiency compared with the normal alleles, but metabolic labeling of fibroblast cultures from the child and both parents showed reduced biosynthesis and secretion of profibrillin. Also, the respective amounts of fibrillin in cell-culture media and extracellular-matrix extracts were markedly diminished, particularly in the cell cultures from father and child. In addition, immunofluorescence analysis of the cell cultures of all three family members revealed a drastically reduced amount of microfibrils, and virtually no visible fibrils could be seen in the case of the compound-heterozygote child. These findings demonstrate incomplete dominance of fibrillin mutations and underline the fatal consequences of the complete absence of normal fibrillin molecules in the microfibrils.

Actin Cytoskeleton↗

[The morphogenesis of the tunica elastica interna of the rat aorta in the early periods after birth].

The ultrastructural and three-dimensional spatial arrangement of the internal elastic membrane (IEM) of the rat's aorta was studied by transmissive electron microscopy, native and scanning electron microscopy of chemically extracted specimens. Changes in the passage of different levels of organization of IEM is shown in the process of its maturation in postnatal ontogenesis. The first--fibrillar--step of morphogenesis of IEM is characterized by the formation of microfibril fascicles in 10-day-old animals. Within 1 month after birth the elastic fiber of the lamellar shape was formed which consists of tightly packed fascicles of microfibrils. This fiber is a structural-functional unit of the elastic framework of the aorta. The last stage is characterized by the formation of the tissue system of the fibrous elastic framework consisting of elastic fibers which are structurally interconnected and are having functional interaction. The formation of openings (pores) in IEM is a regular stage of clastogenesis. Through the pores in EM a contact of endotheliocytes and smooth myocytes (SM) is realized, by means of which a system is formed responsible for the transmission of information from receptors on the surface of endotheliocytes to SM. A stereometric analysis has revealed the dynamics of pore distribution density in IEM in the process of its maturation.

Aging↗

Smooth muscle cell to elastic lamina connections in developing mouse aorta. Role in aortic medial organization.

BACKGROUND: The structural and functional intigration of smooth muscle cells and elastic laminae in the aortic media is not well established. Detailed information concerning normal ultrastructural features of the aortic media will provide a better understanding of the medial changes that occur in vascular diseases such as hypertension and aortic aneurysms. EXPERIMENTAL DESIGN: The ultrastructural development and organization of connections between smooth muscle cells and elastic laminae in the mouse aortic media were studied by light and electron microscopy. RESULTS: Early in development, the smooth muscle cells become linked to the elastic laminae by bundles of microfibrils. These microfibrils become progressively infiltrated with elastin so as to form extensions of elastin from the elastic laminae in the adult media. Each elastin extension spans obliquely from the elastic lamina to the surface of the smooth muscle cell where it attaches in a region of membrane occupied by an intracellular membrane-associated dense plaque. On the cytoplasmic face of the plaque, a contractile filament bundle penetrates and anchors in an orientation similar to that of the extracellular elastin extension. The contractile filament bundle traverses the cell obliquely and anchors in a dense plaque on the opposite side of the cell that is in turn linked to the next elastic lamina by another elastin extension. The extracellular elastin extensions and the intracellular contractile filament bundles thus form a "contractile-elastic unit," a continuous line of structures that links adjacent elastic laminae. The oblique orientation of the contractile-elastic units reverses direction in successive smooth muscle cell layers in a herringbone-like pattern. Thus, tension transmitted to one elastic lamina by the smooth muscle cells on either side results in a uniform force exerted on the elastic lamina in one circumferential direction, that on the adjacent elastic laminae being in the opposite direction. CONCLUSIONS: Results from this study demonstrate the presence of smooth muscle cell to elastic lamina connections that form early in development as contractile-elastic units; basic units of aortic medial ultrastructure. The overall organization of the contractile-elastic units within the aortic media is proposed to provide a means for coordinating contractile and elastic tensions in response to mechanical stresses imposed on the vessel wall.

Aging↗

Hyperglycemic glucose concentrations up-regulate the expression of type VI collagen in vitro. Relevance to alterations of peripheral nerves in diabetes mellitus.

Electron microscopy of peripheral nerves obtained from two diabetic patients revealed large deposits of microfibrils and the presence of Luse bodies in the vicinity of perineurial cells. Microfibrils were found to accumulate also in the sciatic nerves of diabetic BB rats; these microfibrillar deposits were shown to contain type VI collagen by immunoelectron microscopy. Connective tissue cells cultured from rat sciatic nerves were exposed to high glucose concentrations. High glucose concentrations up-regulated the mRNA steady-state levels of alpha 1(VI), alpha 2(VI), and alpha 3(VI) chains of type VI collagen and caused accumulation of type VI collagen-containing fibrils in the cultures. Immunostaining and in situ hybridizations demonstrated that perineurial cells, Schwann cells, and fibroblasts expressed type VI collagen at the mRNA and protein levels. The results suggest that the turnover and supramolecular assembly of type VI collagen are perturbed in diabetic nerves and that glucose per se increases the expression of type VI collagen in vitro.

Adolescent↗

Ultrahigh-resolution low-voltage SEM reveals ultrastructure of the glucan network formation from fission yeast protoplast.

The refined field emission SEM, S-900 LV which gives better resolution especially at low voltages below 5 kV was developed for ultrahigh resolution scanning electron microscopy. A visualization test at x 300,000 was made using a gold-evaporated magnetic tape, and the resolution was found to be about 1 nm at 2.5 kV. The ultrastructure of the cell wall, especially the reverting glucan network, from the protoplast of Schizosaccharomyces pombe was studied using this improved ultrahigh-resolution low-voltage SEM (UHR-LVSEM). The results with uncoated reverting protoplasts observed with this microscope revealed that the network was originally formed as secreted particles scattered on the protoplast surface and these were subsequently stretched to microfibrils about 2 nm thick. The microfibrils were twisted around each other and joined together so that they developed into 8-nm-thick fibrils, forming a ribbon-shaped network of glucans about 16-nm-thick which covered the entire protoplast surface. The UHR-LVSEM images of reverting protoplasts treated with glucanase confirmed that the particles scattered on the protoplast surface in the initial stage of regeneration were glucan in nature.

Animals↗

Dermal fibroblast culture as a model system for studies of fibrillin assembly and pathogenetic mechanisms: defects in distinct groups of individuals with Marfan's syndrome.

Most patients with Marfan's syndrome (> 95%) and 75% of patients with uncertain diagnosis can be classified into four groups (Aoyama et al, 1994, 1995) based on abnormal patterns of synthesis, intracellular transport, and/or matrix deposition of fibrillin-1 in fibroblast cultures. Herein we report a systematic study of fibrillin assembly in normal and Marfan's syndrome fibroblasts and correlations between pulse-chase, immunofluorescence, and immunoelectron microscopic data. Normal control fibroblasts were grown at confluent conditions from 2 to 10 days before passage and then maintained at hyperconfluent cell densities for an additional period of 1 to 6 days before assaying. Maximum deposition in the extracellular matrix of pulse-labeled fibrillin required at least 6 days of confluent and 4 to 5 days of hyperconfluent culture. This result is explained by immunofluorescence studies with fibrillin-1-specific antibodies, because 1 day after seeding cells at hyperconfluency, patches of regular immunostained structures were already present. Within these patches, fluorescence intensity and fibrillar material increased over 3 to 4 days, and after only 5 days, fibrillar networks extended throughout the culture. We propose that fibrillin-containing microfibrillar material is passaged together with the cells, newly synthesized fibrillin molecules are deposited onto preexisting microfibrillar assemblies, and several additional days of culture at high cell density are necessary for the cells to construct a sufficient microfibrillar network binding and detection of pulse-labeled fibrillin molecules in insoluble form during a 20-hour chase period. This fraction is decreased to a varying extent in fibroblast cultures of four biosynthetically distinct groups of Marfan's syndrome patients, but only Groups II and IV clearly showed reduction in immunostainable microfibrils. In long-term cultures, immunoelectron microscopy of the extracellular matrix with fibrillin antibodies also detected differences among these groups and in comparison to normal controls with respect to the arrangement of fibrillin-containing microfibrils, thickness of microfibrillar bundles, and the presence of amorphous material. The data support the idea of different pathogenetic mechanisms for each biosynthetically defined group of Marfan's syndrome, which depends on the nature of fibrillin-1 mutations.

Antibodies↗

Antigenic properties of the Golgi derived scales of Pleurochrysis scherffelii.

The cell wall of the marine alga Pleurochrysis scherffelii is composed of Golgi-derived scales with four distinct subcomponents: amorphous coating material, radial microfibrils, spiral coating substances and spiral microfibrils. The antigenic properties of the Pleurochrysis scales were studied. Antibodies were produced in rabbits to the amorphour to the amorphous coating material and to a heretofore undescribed peripheral subcompoent, known as the amorphoous rim modification substance. The antigenic subcomponents were detected by agglutination/precipitation, negative staining, and shadowing procedures. Scales of the Cricosphaera phase produced negative results when tested with Pleurochrysis scale antisera. A possible function of the amorphous rim modification substance in maintaining the integrity of spiral microfibrillar organization is introduced.

Animals↗

[Ultrastructural changes in transplantation glomerulopathy].

Twenty-eight biopsy specimens were obtained from patients 3-95 months after kidney transplantation and studied by light, electron and in some cases also by immunofluorescence microscopy. Electron microscopic studies showed that the most frequent glomerular lesion was widening of lamina rata interna which is accompanied with subendothelial accumulation of finely granular material, formation of new subendothelial basement membrane and deposition of microfibrils and fine filaments. The mesangial changes were mainly those of mesangiolysis and mesangial sclerosis with deposition of mesangial matrix and microfibrils, but little cellular proliferation. Fragmented red blood cells were seen in nearly half of the patients. Arterial intimal thickening and occasionally also thrombosis produced ischaemic changes in the kidney and in the glomeruli and contributed to the process of transplant rejection.

Graft Rejection↗

Increased extracellular deposition of fibrillin-containing fibrils in pseudoexfoliation syndrome.

PURPOSE: To localize the distribution of fibrillin-containing microfibrils in normal human anterior segment tissues and to characterize the role of fibrillin in the pathogenesis of pseudoexfoliation syndrome. METHODS: Anterior segment tissues were obtained from 10 eyes with pseudoexfoliation syndrome and 10 normal eyes and investigated by indirect immunofluorescence and electron microscopic immunogold labeling using a monoclonal antibody to fibrillin-1. RESULTS: In addition to labeling of zonular fibers, fibrillin-immunoreactive microfibrillar bundles generally were found in the corneal stroma; the stromal connective tissues of conjunctiva, ciliary body, and iris, especially in the iris root area; the periphery of Schlemm's canal, the scleral spur, and the most anterior portion of the trabecular meshwork; the ciliary muscle, and the dilator and sphincter muscles of the iris; the basement membranes of peripheral corneal epithelium, conjunctival epithelium, ciliary pigmented epithelium, and the lens capsule. The microfibrillar bundles were found to be isolated or in association with elastic fibers and cellular basement membranes. In pseudoexfoliation eyes, an additional strong immunoreaction was localized to pseudoexfoliation fibers and their microfibrillar subunits in close proximity to surfaces of cells involved in pseudoexfoliation fiber production. CONCLUSIONS: The fibrillin-containing microfibrillar system in normal ocular tissues is suggested to have a substantial role in the maintenance of tissue integrity by providing tensile strength and flexibility to mechanically strained tissues. The findings further provide evidence for fibrillin as an intrinsic component of pseudoexfoliation fibers, suggesting the possibility that enhanced expression of fibrillin or abnormal aggregation of fibrillin-containing microfibrils may be involved in the pathogenesis of pseudoexfoliation syndrome.

Aged↗

Lesions caused by copper depletion in the chicken. Light and electron microscopic study.

Lesions of the aorta and other organs of copper depleted layers, roosters, day-old chicks and chick embryos were studied by light- and electron microscopy. Copper deficiency results in late and abnormal development of elastic fibres: inhibition of the formation of cross linkages causes a decline of elastin synthesis. The microfibrils constituting the blackbone of the elastic fibre form a honey-comb pattern. The small amount of amorphous elastin is digestible by elastase, the microfibrils are resistant to the action of the enzyme. The aortic elastic fibres are irregularly shaped, broken revealing a honey-comb like pattern. They maintain an increased affinity to PTA. Tears--dissecting aneurysms--arise in the media, vacuoles appear in the heart muscle, haemorrhages and inflammatory changes may arise in other organs.

Animals↗

Acquired cutis laxa (generalized elastolysis): light and electron microscopic studies.

The case is described of a 44-year-old man with acquired cutis laxa. The primary clinical manifestation was an erythema of the chest. Gradually there developed persistent circumscribed lesions in other areas of the skin, spreading into large erythematous plaques with loose skin. Slight restrictive ventilatory insufficiency, elongation of the vocal cord and diverticulosis of the colon were also found, indicating a chronic and widespread disorder. Skin biopsies showed diminution and degeneration of the elastic fibres. The light-microscopic features were subdivided in relation to the various skin manifestations. Ultrastructure of the skin showed various amounts of electron-dense, amorphous material and loosely bound microfibrils in and around elastic and collagen fibres as well as some microfibrils with knobs in the interfibrouer, were found normal. It is suggested that the first changes in the elastic fibres induced an inflammatory response and mild mucinous changes of the collagen fibres. Furthermore elastic fibres seemed to be replaced by newly formed collagen.

Adult↗

Ascending aortic aneurysm with or without features of Marfan syndrome and other fibrillinopathies: new insights.

More than 70 unique fibrillin-1 mutations have been identified in individuals with a variety of phenotypic changes. These range from severe neonatal lethal forms of Marfan syndrome to adult onset manifestations, mitral valve prolapse syndromes to isolated features such as ectopia lentis, Marfanoid body habitus and ascending aortic aneurysm and/or dissection. Fibrillin-1 mutations result in structurally and functionally defective fibrillin-1 molecules and microfibrils. Recent molecular genetic and fibrillin-1 biosynthesis studies suggest that individuals with fibrillin-1 abnormalities can be further subdivided into groups that are associated with distinct differences in severity and prognosis. In recognition of the expanding scope of related connective tissue disorders, we propose the terms microfibrillar disorder for disorders affecting fibrillin-containing microfibrils, and the more narrow concept of fibrillinopathy for clinical entities associated with abnormalities of fibrillin-1 or fibrillin-2. This latter category includes the previously defined disorders Marfan syndrome, congenital contractual arachnodactyly, and forms of ascending aortic aneurysm and/or dissection.

Adult↗

Transforming growth factor beta 1 and its latent form binding protein-1 associate with elastic fibres in human dermis: accumulation in actinic damage and absence in anetoderma.

Latent transforming growth factor-beta 1 (TGF-beta 1) and its binding protein-1 (LTBP-1) are components of the extracellular matrix microfibrils of cultured human fibroblasts. Using immunohistochemistry we have studied the localization of TGF-beta 1 and LTBP-1 and compared their distribution with that of elastic fibres in the interstitial connective tissue matrix of the human dermis. Prominent LTBP-1 specific fibrillar staining co-localized with the elastic fibres in normal human skin. Co-distribution was also observed in a number of pathological states of the elastic fibres such as solar elastosis, solar keratosis and pseudoxanthoma elasticum. TGF-beta 1 had a staining pattern similar to that of LTBP-1 in solar elastosis and solar keratosis. No staining for LTBP-1 or TGF-beta 1 was found in dermis devoid of elastic fibres, as in anetoderma. LTBP-1 is released from the extracellular matrix of cultured human fibroblasts, epithelial and endothelial cells by proteases. Analogously, the immunoreactivity for LTBP-1 and TGF-beta 1 were also lost from the skin sections by elastase, and by trypsin, a protease pretreatment commonly used in immunohistochemistry. These results indicate that LTBP-1 is a component of the elastin-associated microfibrils of the interstitial connective tissue matrix of human skin. Furthermore, the small latent form of TGF-beta 1 is likely to associate with the extracellular matrix of human dermis via LTBP-1. The release of latent TGF-beta 1 from the matrix, as a consequence of proteolytic cleavage of LTBP-1, is a plausible extracellular mechanism for the regulation of TGF-beta 1 activation.

Adolescent↗

Morphological and functional aspects of the glomerular basement membrane.

Addition of Alcian Blue to the fixative reveals structural elements bearing negatively charged sites within the glomerular capillary wall of the rat kidney. According to previous research (review by Brenner et al., 1977), these charges represent one of the most important functional components of the glomerular filtration barrier. Alcian Blue also demonstrates negatively charged microfibrils (probably glycoproteins) of the mesangial matrix. Preliminary observations of glomeruli of lower vertebrates suggest that there is always a close correlation between the presence of microfibrils and mesangial cells.

Alcian Blue↗