Search PubMed⌕ Search

SEARCH · Search PubMed

Results for “Seeded aggregation”

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 739 records · Page 41Linked to original sources

Origin and maturation of centrioles in association with the nuclear envelope in hypertonic-stressed sea urchin eggs.

Unfertilized sea urchin eggs were parthenogenetically activated via a prolonged hypertonic treatment. The continuous subjection to the osmotic stress turned on the cell cycle and brought about the very slow development of mature centrioles. Within 1 h of the exposure, large osmiophilic aggregates were detected at the nuclear surface and were interpreted as early centriolar precursor forms. Ultrastructural examination of eggs during the 8 h of treatment revealed that the precursor forms systematically converted into mature centrioles which then produced daughter centrioles. All centriolar precursor bodies were associated with microtubules; cartwheel structures were the earliest morphological feature of centrioles detected within the osmiophilic bodies. Nascent centrioles appeared at the nuclear surface and, during their development into centrioles, continually maintained intimate associations with the nuclear envelope. We suggest that the resultant modification of the intracellular environment via the hypertonic stress promotes the activation of centriolar 'information-bearing-residues' or 'seeds' located at the nuclear envelope. The oocyte centrioles, before disappearing from the maturing egg, may have produced these 'seeds' and left them at the nuclear surface.

Animals↗

Endothelial cell seeded dacron aortobifurcated grafts: platelet deposition and long-term follow-up.

OBJECTIVE: The prospect of seeding endothelial cells to a prosthetic graft has been successful in the experimental setting, but less convincing in clinical studies in humans. This study was performed with the objective of evaluating endothelial cell seeding of aorto-bi-iliofemoral reconstructions with cells harvested at the same procedure. EXPERIMENTAL DESIGN: Randomized study with one graft limb seeded and with at least 5 year follow-up. SETTING: University Hospital. PATIENTS: 15 patients undergoing aorto-bi-ilio-femoral reconstruction. INTERVENTIONS: One graft limb (randomly determined) was seeded with autologous endothelial cells (median 5.2 x 10(5)) enzymatically (Dispase II) harvested from the saphenous vein (length 8-15 cm, diameter 4-8 mm). The other graft limb served as a control. MEASURES: Two months after surgery platelets were labelled with 111In and platelet activity registered over the graft. Long-term outcome were followed (median 5 years and 10 months). RESULTS: No difference in platelet activity was noted between the seeded and non-seeded graft limb. Different techniques of calculating graft wall activity showed large interindividual variations in the results. Long-term outcome showed that three patients died, two from myocardial infarction on postoperative day three and 60, and one patient died four years after surgery from a lung cancer. Grafts functioned well. In one non-seeded graft limb the patient had severe microembolisation postoperatively that required amputation 10 days after surgery. Of seeded graft limbs one occluded 42 months after surgery, intimal hyperplasia at the distal anastomosis was seen and in one patient progress of arteriosclerosis required additional surgery 12 months after initial operation with profundaplasty (partly due to intimal hyperplasia) and later two additional femoro-distal reconstructions were needed. CONCLUSION: In summary with our single-staged technique for seeding of endothelial cells to a graft limb in a high flow situation no effect on platelet activity at two months was found and long-term outcome was not obviously influenced.

Aged↗

Decrease in tumor-cell attachment and in a 140-kDa fibronectin receptor correlate with greater expression of multiple 34-kDa surface proteins and cytoplasmic 54-kDa components.

B16 melanoma cells attach to matrix-bound fibronectin but fail to adhere to albumin-coated surfaces supplemented with soluble fibronectin. Attachment to substratum is also decreased in the presence of an adhesion-disrupting antibody, or when cells are seeded on substrates poorly adhesive for these cells, such as collagen gels. We have now investigated some of the more general adhesion-related alterations that occur between flattened and poorly attached cells. Immune blots of octylglucoside extracts with the adhesion-disrupting IgG revealed a 140-kDa component in flattened cells, in contrast to the increased detection of a 54-kDa species in a comparable assay with rounded cells. Surface iodination also showed a decreased external exposure of a 140-kDa fibronectin binding species and an increased labelling in multiple 34-kDa protein species, in cells with decreased attachment to substratum. Analysis of 35S-methionine-labelled cell aggregates cultured on collagen gels also revealed a decrease in the 140-kDa region and a greater labelling of multiple 54-kDa components, compared to the same cells flattened on fibronectin. A change in 54- and 34-kDa species was also seen in matrix-associated components of rounded cells that failed to attach with soluble fibronectin. Since the 34-kDa species increase in poorly adherent cells is mainly detected by iodination, and the 54-kDa species increase in the same cells is partly associated with the corresponding detergent-insoluble matrices, we propose that these 2 novel proteins may relate to cell rounding, through a transmembrane modulation involving both surface membrane and cytoskeletal structures.

Animals↗

Anatomically shaped osteochondral constructs for articular cartilage repair.

Few successful treatment modalities exist for surface-wide, full-thickness lesions of articular cartilage. Functional tissue engineering offers a great potential for the clinical management of such lesions. Our long-term hypothesis is that anatomically shaped tissue constructs of entire articular layers can be engineered in vitro on a bony substrate, for subsequent implantation. To determine the feasibility, this study investigated the development of bilayered scaffolds of chondrocyte-seeded agarose on natural trabecular bone. In a series of three experiments, bovine chondrocytes were seeded in (1) cylindrical bilayered constructs of agarose and bovine trabecular bone, 0.53 cm2 in surface area and 3.2 mm thick, and were cultured for up to 6 weeks; (2) chondrocyte-seeded anatomically shaped agarose constructs reproducing the human patellar articular layer (area=11.7 cm2, mean thickness=3.4 mm), cultured for up to 6 weeks; and (3) chondrocyte-seeded anatomically shaped agarose constructs of the patella (same as above) integrated into a corresponding anatomically shaped trabecular bone substrate, cultured for up to 2 weeks. Articular layer geometry, previously acquired from human cadaver joints, was used in conjunction with computer-aided design and manufacturing technology to create these anatomically accurate molds. In all experiments, chondrocytes remained viable over the entire culture period, with the agarose maintaining its shape while remaining firmly attached to the underlying bony substrate (when present). With culture time, the constructs exhibited positive type II collagen staining as well as increased matrix elaboration (Safranin O staining for glycosaminoglycans) and material properties (Young's modulus and aggregate modulus). Despite the use of relatively large agarose constructs partially integrated with trabecular bone, no adverse diffusion limitation effects were observed. Anatomically shaped constructs on a bony substrate may represent a new paradigm in the design of a functional articular cartilage tissue replacement.

Animals↗

Properties of the protein and carbohydrate fractions in immature wheat kernels.

The time course of compositional changes in the polysaccharide and protein fractions, and of changes in protein structural properties, was investigated in grains of two Italian durum wheat cultivars, Ofanto and Duilio, and the pattern of changes was found to be specific to each cultivar. The fructo-oligosaccharide content in ripening kernels was different between cultivars, as was the pattern of starch accumulation. Evaluation of gluten proteins by Western-blotting using broad-specificity anti-gliadin antibodies showed the sudden appearance of immunoreactive proteins during ripening. Protein surface hydrophobicity and thiol content and accessibility were evaluated in conditions apt at assessing changes in protein interaction and/or in aggregative patterns. Proteins in the two cultivars showed differences in their surface hydrophobicity and in their content of accessible thiols. The simultaneous evaluation of changes in the individual components indicates that use of immature grains for the production of functional foods will require accurate monitoring of the rapidly evolving biopolymer patterns, and careful choice of the cultivar.

Carbohydrates↗

Cholesterol dysregulation in APOE4 astrocytes promotes α-synuclein pathology in miBrains.

The pathological hallmarks of neurodegeneration are the aberrant post-translational modification and aggregation of proteins. Genetic factors, like APOE4, increase the prevalence and severity of tau, amyloid, and α-synuclein pathologies. However, the human brain is largely inaccessible during this process, limiting mechanistic understanding. Here, we developed an iPSC-based 3D model that integrates neurons, glia, myelin, and cerebrovascular cells into a human brain-like tissue ("miBrain"). Single-nucleus RNA sequencing of miBrains confirmed the presence of diverse cell populations and revealed transcriptional responses to α-synuclein pathology. Like the human brain, pathogenic α-synuclein is increased in APOE4/4 miBrains. Combinatorial experiments revealed that endolysosomal dysfunction caused by cholesterol accumulation in APOE4/4 astrocytes impairs the degradation of soluble α-synuclein leading to a pathogenic transformation that seeds α-synuclein inclusions in neurons. Collectively, this study establishes a robust model for investigating protein inclusions in human iPSC-derived brain tissue and highlights the role of astrocytes and cholesterol in APOE4-mediated pathologies.

alpha-Synuclein↗

Early profiles of axonal growth and astroglial response after spinal cord hemisection and implantation of Schwann cell-seeded guidance channels in adult rats.

We previously demonstrated that transplantation of Schwann cell-seeded channels promoted the regrowth of injured axons in the adult spinal cord. It is not clear, however, whether injured axons recapitulate the developmental scenarios to accomplish regeneration. In the present study, we investigated the early events associated with axonal regrowth after spinal cord hemisection at the eighth thoracic level and implantation of a Schwann cell-seeded minichannel in adult rats. Animals were sacrificed at postoperative days (PO) 2, 4, 7, and 14. Anterograde tracing with fluoro-ruby showed that regenerating axons grew into the graft prior to PO2 and reached the distal end of the channel at PO7. These axons expressed both embryonic neural cell adhesion molecule (E-NCAM) and growth associated protein-43 (GAP-43). Although the expression of E-NCAM decreased by PO7, that of GAP-43 remained high throughout the first 2 weeks after implantation. A close relation of vimentin-positive astroglia to the growing axons in the host tissue suggested a contact-mediated role of these cells in axon guidance. Aggregation of glial fibrillary acidic protein (GFAP)-positive astrocytes together with the increased expression of chondroitin sulfate proteoglycans (CSPGs) starting at PO7 appeared to inhibit axonal growth at the host-graft interface. Thus, adult regenerating axons and astroglia do express developmentally related molecules that may facilitate axonal growth into a permissive graft at the early phase of injury and regeneration. These results suggest that molecules and astroglia essential to development are both important in influencing axonal regrowth in the adult spinal cord.

Animals↗

Effect of environmental factors on the kinetics of insulin fibril formation: elucidation of the molecular mechanism.

In the search for the molecular mechanism of insulin fibrillation, the kinetics of insulin fibril formation were studied under different conditions using the fluorescent dye thioflavin T (ThT). The effect of insulin concentration, agitation, pH, ionic strength, anions, seeding, and addition of 1-anilinonaphthalene-8-sulfonic acid (ANS), urea, TMAO, sucrose, and ThT on the kinetics of fibrillation was investigated. The kinetics of the fibrillation process could be described by the lag time for formation of stable nuclei (nucleation) and the apparent rate constant for the growth of fibrils (elongation). The addition of seeds eliminated the lag phase. An increase in insulin concentration resulted in shorter lag times and faster growth of fibrils. Shorter lag times and faster growth of fibrils were seen at acidic pH versus neutral pH, whereas an increase in ionic strength resulted in shorter lag times and slower growth of fibrils. There was no clear correlation between the rate of fibril elongation and ionic strength. Agitation during fibril formation attenuated the effects of insulin concentration and ionic strength on both lag times and fibril growth. The addition of ANS increased the lag time and decreased the apparent growth rate for insulin fibril formation. The ANS-induced inhibition appears to reflect the formation of amorphous aggregates. The denaturant, urea, decreased the lag time, whereas the stabilizers, trimethylamine N-oxide dihydrate (TMAO) and sucrose, increased the lag times. The results indicated that both nucleation and fibril growth were controlled by hydrophobic and electrostatic interactions. A kinetic model, involving the association of monomeric partially folded intermediates, whose concentration is stimulated by the air-water interface, leading to formation of the critical nucleus and thence fibrils, is proposed.

Anilino Naphthalenesulfonates↗

Calcium oxalate crystal growth in human urinary stones.

Calcium oxalate stones are very common and increasing. Crystal growth is no less important than the crystal nucleation in the pathogenesis of stone formation. The crystal growth was studied in human calcium oxalate stones by a combined electron microscopy and x-ray diffraction. The main mode of weddellite growth was interpenetration twinning of tetrahedral bipyramids. Bipyramids may form as initial crystal seeds, develop from anhedral crystals (crystals which lack flat symmetric faces) of spherular or mulberry shape, develop on the surface of preformed bipyramids by spiral dislocation mechanisms, or develop on whewellite crystal by heterogeneous nucleation and epitaxy. Heterogeneous nucleations of whewellite on weddellite, and calcium apatite on whewellite were also observed. Whewellite grew mainly by parallel twinning. Interpenetration twinning was exceptional. Transformation of anhedral to euhedral (completely bounded by flat faces that are set ar fixed angles to one another) whewellite occurred by parallel fissurations followed by brick wall like stacking of the crystals, while euhedral transformation of weddellite occurred by protrusion of bipyramids frm anhedral crystal surface. Occasionally, an evidence of crystal dissolution was noted. Although an aggregation of crystals is believed to play a pivotal role in stone nidus formation, growth in size of the formed crystals, and twinning and epitactic crystal intergrowth apparently play a significant role in the obstructive urinary stone formation.

Calcium Oxalate↗

Phospholipid-nucleoside conjugates. The aggregational characteristics and morphological aspects of selected 1-beta-D-arabinofuranosylcytosine 5'-diphosphate-L-1,2-diacylglycerols.

1-beta-D-Arabinofuranosylcytosine 5'-diphosphate-1,2-diacylglycerols have previously been shown to be promising candidates as prodrugs of the clinically useful antileukemic agent 1-beta-D-arabinofuranosylcytosine. Because of the amphipathic nature of these liponucleotides and the potential that their morphological state may mediate their biological activity, it was necessary to undertake detailed studies of their aggregational and morphological characteristics. When samples of 1-beta-D-arabinofuranosylcytosine 5'-diphosphate-L-1,2-diacylglycerols (containing either dimyristoyl, dipalmitoyl or distearoyl fatty acid side chains) were prepared in buffered saline solutions using sonication methods, the morphological nature of the resulting aggregate was shown to be related to temperature and the length of the side chain. When sonicated at low temperatures all the above-mentioned derivatives gave turbid solutions containing large bilayer sheets. As the temperature was raised, a transition temperature was reached at which a stable three-dimensional cross-linked network of small interlocking bilayer stacks was formed. This turbidity transition temperature was directly related to the chain length of the fatty acid side chain. Sonication at temperatures close to this turbidity transition temperature produced small disc-shaped micellar structures. These micelles were shown to exist in another aggregational equilibrium consisting of a stacking-destacking process, the position within this equilibrium being dependent upon the concentration. In contrast, a sample of 1-beta-D-arabinofuranosylcytosine 5'-diphosphate-L-1,2-dioleoylglycerol (which contains an unsaturated carbon-carbon bond in each of the fatty acid side chains) was shown to give a multilamellar liposome structure when sonicated in buffered saline at temperatures above its turbidity transition temperature.

Antineoplastic Agents↗

Chronic fatigue in general practice: economic evaluation of counselling versus cognitive behaviour therapy.

BACKGROUND: There is a paucity of evidence relating to the cost-effectiveness of alternative treatment responses to chronic fatigue. AIM: To compare the relative costs and outcomes of counselling versus cognitive behaviour therapy (CBT) provided in primary care settings for the treatment of fatigue. DESIGN OF STUDY: A randomised controlled trial incorporating a cost-consequences analysis. SETTING: One hundred and twenty-nine patients from 10 general practices across London and the South Thames region who had experienced symptoms of fatigue for at least three months. METHOD: An economic analysis was performed to measure costs of therapy, other use of health services, informal care-giving, and lost employment. The principal outcome measure was the Fatigue Questionnaire; secondary measures were the Hospital Anxiety and Depression Scale and a social adjustment scale. RESULTS: Although the mean cost of treatment was higher for the CBT group (164 Pounds, standard deviation = 67) than the counselling group (109 Pounds, SD = 49; 95% confidence interval = 35 to 76, P < 0.001), a comparison of change scores between baseline and six-month assessment revealed no statistically significant differences between the two groups in terms of aggregate health care costs, patient and family costs or incremental cost-effectiveness (cost per unit of improvement on the fatigue score). CONCLUSIONS: Counselling and CBT both led to improvements in fatigue and related symptoms, while slightly reducing informal care and lost productivity costs. Counselling represents a less costly (and more widely available) intervention but no overall cost-effectiveness advantage was found for either form of therapy.

Adolescent↗

The GDNF-induced neurite outgrowth and neuronal survival in dissociated myenteric plexus cultures of the rat small intestine decreases postnatally.

Glial cell-line-derived neurotrophic factor (GDNF), a member of the transforming growth-factor-(TGF-) beta-family, is an essential factor for the development of the enteric nervous system (ENS) during embryogenesis. In the present study, the effects of GDNF on postnatal ENS development were investigated using cultures of myenteric plexus from the small intestine of newborn albino rats of different developmental phases (P1, P7, P14). Myenteric plexus was dissociated and cultivated as mixed cultures of enteric neurons and glial cells. After seeding, the cultures were kept for 24 h or 7 days in serum-free medium containing various doses (1, 10, 100 ng/ml) of GDNF. The effect of the neurotrophic factor was evaluated using parameters such as cell size, neuronal survival, or neurite elongation. While neither glial-cell nor neuronal size was influenced by GDNF, there was an observable effect upon neuronal survival and neurite elongation. The cultures treated with GDNF displayed increased neurite outgrowth. The promoting effect was dose- and age-dependent, decreasing clearly during the early postnatal period. Already after 24 h, neuronal survival was increased in P1 and P7, but not in P14 cultures. In long-term cultures, a marked tendency to form cell aggregates and dense fiber networks was observed when treated with GDNF. These observations suggest that GDNF plays an important role not only in pre-, but also in postnatal development of the enteric nervous system.

Animals↗

The effects of thyroid and reproductive hormones on the viability of human buccal epithelium.

Recent findings have shown that estrogen receptors were localized in stromal cells in the oral cavity. The role of physiological doses of growth promoting hormones such as thyroid stimulating hormone (TSH) and estrogen have not exclusively studied. This investigation identifies the cytology and biochemical response of buccal epithelial in the presence of estrogen and TSH at 24, 48, and 72 hr of incubation. The cells were obtained from pre, postmenopausal women and men. The cells were seeded at a density of 10,000 cells per well and aseptic techniques, morphological evaluation, biochemical analysis (MDA), and data analysis were performed following standard lab protocols. Results of this investigation revealed that: (i) there was an initial increase in total protein observed in cells treated with TSH in comparison to the control and estrogen treated cells. This trend continued for 48 hours, and no statistical differences were observed at the 72 hour phase, (ii) there was an initial decrease in MDA levels in cells treated with TSH, however, cellular damage was evident at 48 and 72 hours phases in comparison to estrogen and control groups, (iii) morphological evaluation demonstrated that there were structural changes associated with TSH treatment. These include aggregates, nuclear shriveling and lack of cellular boundaries. Estrogen treatment showed no structural alteration throughout the experiment.

Adolescent↗

Effects of processing and in vitro proteolytic digestion on soybean and yambean hemagglutinins.

Some conventional processing methods were applied on yambean and soybean seeds and flour samples. They include soaking fermentation, cooking whole seeds in the presence and absence of trona, autoclaving and dry heat treatment of flour samples. Hemagglutinating activity was assayed for after processing treatments. The hemagglutinating proteins from these seeds were classified based on their solubility properties. Effects of the presence of 0.01% concentration of trypsin, pepsin and proteases on agglutination of human red blood cells were also evaluated. Most processing methods, particularly cooking whole seeds for 1-2 h, soaking and fermentation, reduced hemagglutinating activity on cow red blood cells. Size reduction accompanied by heat treatment was effective in eliminating hemagglutination. Both the albumin and globulin fractions of the soybean showed hemagglutinating activity but only the albumin fraction of the yambean had agglutinating properties. Proteolytic action of proteases was more effective in reduction of hemagglutinating activity than that of trypsin and pepsin.

Animals↗

Ectopic expression of a Chlamydomonas mt+-specific homeodomain protein in mt- gametes initiates zygote development without gamete fusion.

The molecular mechanisms that activate expression of zygote genes after fertilization are obscure. In animals, receptor-ligand interactions during sperm-egg membrane fusion as well as delivery of putative regulatory molecules by the sperm into the egg cytoplasm are proposed to activate zygote development and subsequent transcription of zygote genes. The mechanisms of activation of zygote development in higher plants also are mysterious, in part because of the difficulty of isolating female gametes of higher plants. In the unicellular, biflagellated green alga Chlamydomonas, the early steps in zygote development are much more accessible to investigation. Within minutes after mating type plus (mt+) and mating type minus (mt-) gametes fuse, expression of several zygote-specific transcripts is induced independently of protein synthesis. Here, we show that ectopic expression in mt- gametes of an mt+ gamete-specific, homeodomain protein, GSP1, induces a zygote-like phenotype and activates expression of zygote genes. One of the genes, zsp2, expressed in these "haploid zygotes" encodes a zygote cell surface adhesion molecule that promotes formation of multicellular aggregates. In total, expression of six out of seven zygote genes examined was induced by ectopic expression of GSP1. Our experiments show that in addition to contributing their genomes to the zygote cytoplasm, gametes also deliver proteins that can activate gene transcription.

Animals↗

Type V/type I collagen interactions in vitro and growth-inhibitory effect of hybrid substrates on 8701-BC carcinoma cells.

Different ratios of type V and I collagens were submitted to mixed fibrillogenesis followed by localization of type V collagen within the aggregates by immunoelectron microscopy. At lower concentrations (10-30%), type V collagen segregates into aperiodic filamentous material, peripheral to the cross-banded type I fibrils but making contact in an apparently random manner. Increasing the ratio of type V collagen up to 50% causes the disappearance of collagen fibrils and the formation of a sticky gel composed of weakly immunoreactive long-spacing structures, interspersed with intensely labeled amorphous material. Hybrid type V/type I matrices changed the growth behaviour of 8701-BC carcinoma cells, with inhibition of cell growth being directly related to type V content. This restraining influence on growth was partially reversed when substrates were pre-incubated with low dilutions of anti-type V serum, prior to cell seeding. These findings suggest that the high concentrations of type V collagen, known to exist in vivo in some scirrhous tumors like ductal infiltrating carcinoma of the breast, perturb the normal fibrous architecture of the stroma and concurrently inhibit neoplastic cell growth.

Breast Neoplasms↗

Visualization of single and aggregated hulless oat (Avena nuda L.) (1-->3),(1-->4)-beta-D-glucan molecules by atomic force microscopy and confocal scanning laser microscopy.

Surfactants were used to disperse oat beta-glucan. Atomic force microscopy (AFM) images of the resulting samples revealed a distribution of extended chainlike molecules and allowed, for the first time, direct visualization of single oat beta-glucan molecules with cross-sectional heights of about 0.44 nm. The number-average contour length (L(n)) and root-mean-square end-to-end distance ((R(ee)2)(1/2)) measured from the AFM images were 938 and 912 nm, respectively. The calculated persistence length (L(p)) was 526 nm. The weight-average molecular weight (M(w)) calculated from single beta-glucan molecules was 4.43 x 10(5). Samples without surfactant showed a strong tendency to form aggregates. The sample concentration, reserving time, and calcofluor as well as freezing could affect the formation of aggregates. These aggregates were visualized by both AFM and confocal scanning laser microscopy. The shape of the aggregates changed from small dots with diameters of approximately 20-50 nm to microfibrils over 3 microm long with the increasing of the concentration of oat beta-glucan from 10 to 100 microg/mL. The particle size distribution obtained by a laser particle size analyzer was 926 nm, which confirmed the size of oat beta-glucan molecules obtained from AFM images.

Avena↗

The upper cell surface: its inability to support active cell movement in culture.

A variety of epithelial cells and fibroblasts fail to move over one another's upper surfaces in culture, resulting in monolayering. The failure of seeded fibroblasts to adhere to and spread on epithelial cell surfaces suggests that monolayering in culture is due to the lack of adhesion of the upper cell surface, at least of epithelial cells. Seeded fibroblasts and postmitotic, rounded fibroblasts likewise fail to spread on the upper surfaces of spread fibroblasts, suggesting that the inability of the upper cell surface to support spreading may be a general phenomenon. Inert particles and cell processes do not adhere directly to the upper cell surface. However, they can initiate adhesions to the surface at a cell's free margin, suggesting a variation of adhesive properties over a cell's surface.

Animals↗