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At least 469 records · Page 26Linked to original sources

Difference in sperm head volume as a theoretical basis for sorting X- and Y-bearing spermatozoa: potentials and limitations.

Volume-based sorting of X- and Y-chromosome-bearing sperm cells could be an interesting alternative to the existing technique based on DNA content. Advantages would be that DNA staining and ultraviolet excitation, used in the existing technique, could be avoided. To assess the possibilities and limitations of sperm-head volume as sorting criterion, achievable purity and yield are determined for bull sperm. Two important parameters in this respect are the magnitude of the volume difference and the biological variation within each (X or Y) population. Earlier, we established a difference in volume matching the difference in DNA content (3.8%) between X- and Y-bearing bull sperm heads by comparing thicknesses and areas of high numbers of pre-sorted X- and Y-bearing bull sperm heads by interference microscopy and subsequent image analysis. Unfortunately, despite the high number of measurements, a direct determination of biological variations was not possible due to an unknown contribution of instrumental variations. In this paper, we determine the contribution of instrumental errors by measuring a single sperm head, varying parameters such as location in the image, orientation angle, focusing etc., simulating the behavior of the measuring system. After correction, both for the instrumental variation, and for the fact that the original samples were not pure, biological variations in volume of 5.9 +/- 0.8% were found. Our results indicate that when 10% of the bull sperm are sorted on basis of their head volume, a theoretical enrichment of 80% could be achieved. Expected purity and yield are lower than what is standard for the existing technique. At the moment, a technique to physically separate X- and Y-bearing sperm cells based on volume is not available. However, for applications for which the potential hazards of DNA staining and UV excitation are problematic, the development of such technique should be considered.

Algorithms↗

Immunolabeling type II collagen in the basilar membrane, a pre-embedding approach.

This paper describes the development of a protocol that can be used to detect collagen II in the healthy adult basilar membrane (BM) at the electron microscopic level. This protocol required aggressive epitope exposure techniques to break the crosslinks that bind the collagen molecules tightly into fibrils and to remove a dense mat of ground substance that surrounds the fibrils. On the other hand, the steps had to be carefully controlled to preserve BM ultrastructure and the collagen II epitopes that are typically labile. These requirements were satisfied by introducing a targeted crosslink breakage method and by regulating the duration of epitope exposure based on changes in tissue appearance observed with differential interference contrast microscopy. High levels of immunolabeling were achieved by substituting tissue preservation techniques for most or all of fixation; this was important because fixation reduces antigenicity directly and impedes epitope exposure. When these techniques were combined with more traditional trypsin and pepsin treatments, the result was dense immunolabeling and preservation of ultrastructure that allowed accurate localization of the immunolabeling. This pre-embedding immunoelectron microscopic method is the first to be carried out on the BM and may be adaptable to future studies of the BM as well as other tissues with similar molecular composition.

Animals↗

Real-time measurement of exocytosis and endocytosis using interference of light.

We describe a new approach for making real-time measurements of exocytosis and endocytosis in neurons and neuroendocrine cells. The method utilizes interference reflection microscopy (IRM) to image surface membrane in close contact with a glass coverslip (the "footprint"). At the synaptic terminal of retinal bipolar cells, the footprint expands during exocytosis and retracts during endocytosis, paralleling changes in total surface area measured by capacitance. In chromaffin cells, IRM detects the fusion of individual granules as the appearance of bright spots within the footprint with spatial and temporal resolution similar to total internal reflection fluorescence microscopy. Advantages of IRM over capacitance are that it can monitor changes in surface area while cells are electrically active and it can be applied to mammalian neurons with relatively small synaptic terminals. IRM reveals that vesicles at the synapse of bipolar cells rapidly collapse into the surface membrane while secretory granules in chromaffin cells do not.

Animals↗

Contact dynamics during keratocyte motility.

BACKGROUND: Keratocytes are specialised, rapidly moving cells that generate substantial contractile force perpendicular to their direction of locomotion. Potential roles for contractile force in cell motility include cell-body transport, regulation of adhesion, and retraction of the cell's trailing edge. RESULTS: To investigate contact dynamics, we used simultaneous confocal fluorescence and interference reflection microscopy to image keratocytes injected with fluorescent vinculin. We found that contacts formed behind the leading edge and grew beneath both the lamellipodium and the cell body. Contacts in the middle of the cell remained stationary relative to the substrate and began to disassemble as the cell body passed over them. In contrast, contacts in the lobes of the cell grew continuously and more rapidly, incorporated more vinculin, and slid inwards towards the sides of the cell body. Contact sliding often led to merging of contacts before their removal from the substrate. CONCLUSIONS: We suggest a synthesis of two existing, apparently conflicting models for keratocyte motility, in which network contraction progressively reorients actin filaments using the contacts as pivots, forming bundles that then generate lateral tension by a sliding-filament mechanism. Contact dynamics vary between the middle of the cell and the lobes. We propose that laterally opposed contractile forces first enhance contact growth and stability, but escalating force eventually pulls contacts from the substrate at the back of the cell, without interfering with the cell's forward progress.

Actins↗

Neurosecretory-like material in 3rd- and 4th-stage Dirofilaria immitis larvae (Nematoda: Filarioidea).

Phase-interference microscopic examination of the infective, post-infective 3rd-stage and 4th-stage larvae of Dirofilaria immitis has identified a single cell body in each of the paired lateral amphidial nerves which undergoes characteristic morphological change during the development from 3rd- to 4th-stage larvae. Acetaldehyde-fuchsin staining of worm sections revealed fuchsinophilic material in the precise location of the amphidial nerve-cell bodies observed by phase-interference microscopy. This material was found in 70% of infective larvae recovered from mosquitoes and in 100% of larvae recovered from micropore chambers 24 h after implantation into BALB/C mice. In pre-moult larvae recovered at 42 h (Experiment 1) and at 48 h (Experiment 2) fuchsinophilic material was demonstrable, but no staining was observed in those larvae in which separation of the 3rd- and 4th-stage cuticles had occurred. No such material was observed in 4th-stage larvae recovered from chambers after 74 h, and in these larvae the amphidial nerve-cell bodies were not discernible. These cytological observations are consistent with a cycle of elaboration and release of neurosecretion associated with moulting in D. immitis.

Animals↗

Taxonomic re-evaluation of Leptographium lundbergii based on DNA sequence comparisons and morphology.

The genus Leptographium was described in 1927 and currently includes 48 species, with L. lundbergii as the type species. In recent years, the taxonomic status of L. lundbergii has not been uniformly agreed upon and it has been the topic of considerable debate. The problem was compounded by the absence of a type specimen, and the species was epitypified at a later stage. Unfortunately, the whereabouts of the epitype is now unknown. In 1983, Wingfield & Marasas described L. truncatum, which is morphologically similar to L. lundbergii. Based on DNA comparisons and similarities in their morphology, this fungus was reduced to synonymy with L. lundbergii. The loss of the type specimen as well as variation in the morphology of strains identified as L. lundbergii prompted us to re-examine the taxonomic status of this species. A number of strains from various geographic areas were studied. These include a strain of L. lundbergii deposited at CBS by Melin in 1929 (CBS 352.29) as well as the ex-type strain of L. truncatum. The strains were compared based on morphology and comparison of multiple gene sequences. Three genes or genic regions, ITS2 and part of the 28S gene, partial beta-tubulin and partial elongation factor 1-alpha were compared. Strains currently identified as L. lundbergii, represented a complex of species. Strains initially described as L. truncatum clustered separately from other L. lundbergii strains, could be distinguished morphologically and should be treated as a distinct taxon. L. lundbergii is provided with a new and expanded description based on a neotype designated for it. A third group was also identified as separate from the main L. lundbergii clade and had a distinct Hyalorhinocladiella-type anamorph, described here as H. pinicola sp. nov.

Ascomycota↗

Interactions of histone H1 with phospholipids and comparison of its binding to giant liposomes and human leukemic T cells.

Due to its net positive charge histone H1 readily associates with liposomes containing acidic phospholipids, such as phosphatidylserine (PS). Interestingly, circular dichroism reveals that while histone H1 in aqueous solutions appears as a random coil, its binding to liposomes containing PS is associated with a pronounced increase in alpha-helicity and beta-sheet content, estimated at 7% and 24%, respectively. This interaction further results in vesicle aggregation and lipid mixing. Fluorescence microscopy revealed rapid binding of Texas Red-labeled H1 (TR-H1) to giant liposomes composed of phosphatidylcholine and PS (SOPC/brain PS, 9/1 molar ratio), followed by lateral segregation and subsequent translocation of the membrane-bound H1 into the giant liposome. The above processes in giant liposomes did depend on the presence of the negatively charged PS. Comparison of the behavior of H1 in giant liposomes to that in cultured leukemic T cells demonstrated very similar patterns. More specifically, fluorescence microscopy revealed binding of TR-H1 to the plasma membrane as lateral segregated microdomains, followed by translocation into the cell. H1 also triggered membrane blebbing and fragmentation of the nuclei of these cells, thus suggesting induction of apoptosis. Our findings indicate that histone H1 and acidic phospholipids form supramolecular aggregates in the plasma membrane of T cells, subsequently resulting in major rearrangements of cellular membranes. Our results allow us to conclude that the minimal requirement for the interaction of histone H1 with the leukemia cell plasma membrane is reproduced by giant liposomes composed of unsaturated phosphatidylcholine and phosphatidylserine, the latter being mandatory for the observed changes in the secondary structure of H1 as well as the macroscopic consequences of the H1-PS interactions.

Animals↗

Internal concentration gradients of guest molecules in nanoporous host materials: measurement and microscopic analysis.

Evolution of internal concentration profiles of methanol in 2-D pore structure of ferrierite crystal was measured in the pressure range of 0 to 80 mbar with the help of the recently developed interference microscopy technique. The measured profiles showed that both a surface barrier and internal diffusion controlled the kinetics of adsorption/desorption. Furthermore, they indicated that in the main part of the crystal, the z-directional 10-ring channels were not accessible to methanol and that the transport of methanol mainly occurred via 8-ring y-directional channels. The roof-like part of the crystal was almost instantaneously filled/emptied during adsorption/desorption, indicating accessible 10-ring channels in this section. The measured profiles were analyzed microscopically with the direct application of Fick's second law, and the transport diffusivity of methanol in ferrierite was determined as a function of adsorbed phase concentration. The transport diffusivity varied by more than 2 orders of magnitude over the investigated pressure range. Transport diffusivities, calculated from measured profiles from small and large pressure step changes, were all found to be consistent. Simulated concentration profiles obtained from the solution of Fick's second law with the calculated functional dependence of diffusivities on concentration compared very well with the measured concentration profiles, indicating validity and consistency of the measured data and the calculated diffusivities. The results indicate the importance of measuring the evolution of concentration profiles as this information is vital in determining (1) the direction of internal transport, (2) the presence of internal structural defects, and (3) surface/internal transport barriers. Such detailed information is available neither from common macroscopic methods since, they measure changes in macroscopic properties and use model assumptions to predict the concentration profiles inside, nor from microscopic methods, since they only provide information on average displacement of diffusing molecules.

Journal Article↗

Adhesion between giant vesicles and supported bilayers decorated with chelated E-cadherin fragments.

Here, we present a study of adhesion between cadherin fragments using giant unilamellar vesicles and supported bilayers. These objects are partially made of nickel chelating lipids and are subsequently decorated with proteins bearing a 6His tag. Initially, we observed their fixation and correct orientation by using a fluorescent protein, the green fluorescent protein (GFP)-6His. The adhesive behavior of E-cadherin functionalized giant vesicles and supported bilayers was studied as a function of the calcium concentration and of the protein functionality by reflection interference microscopy. We show that such a system retains specific cadherin-mediated adhesion and could be used to study the statics and dynamics of adhesive plaques as well as to gain insight into the fundamental mechanisms of cellular adhesion at the mesoscopic scale.

Cadherins↗

Comparison of the media for isolation and storage of round spermatid nuclei before intracytoplasmic injection.

PURPOSE: This study investigated whether K(+)-rich medium is better than pure NaCl solution or Na(+)-rich cell culture medium for handling round spermatid nuclei prior to injection into oocytes (ROSNI). METHODS: Round spermatids of the mouse were isolated and stored in isotonic NaCl, a cell culture medium (CZB), or a nucleus isolation medium (NIM) before injection into oocytes. The rates of normal fertilization, embryonic development in vitro, and birth of normal offspring after transfer of embryos to foster mothers were determined. RESULTS: In vitro development of ROSNI-produced zygotes to blastocysts was the same when "naked" spermatid nuclei were exposed briefly to three media. However, a long (60-min) exposure of the nuclei to Na(+)-rich medium was detrimental. In K(+)-rich NIM "naked" spermatid nuclei best retained their ability to participate in normal embryonic development. CONCLUSION: NIM was better than Na(+)-rich medium for retaining isolated spermatids competent to participate in normal embryonic development.

Animals↗

Correlation between the results of glucocorticoid therapy and in vitro effect of glucocorticoids on monocytes in asthma.

The effects of glucocorticoids on monocyte morphology and function in vitro and the results of high-dose budesonide therapy in patients with non-severe bronchial asthma were analyzed. Before therapy with inhalation glucocorticosteroid (budesonide) characteristics of blood monocytes and the effects of different concentrations of prednisolone on these cells were studied in vitro by luminol-dependent chemiluminescence and computer-assisted phase-interference microscopy. High sensitivity of patients to budesonide was associated with pronounced in vitro inhibitory effect of prednisolone on monocyte activity, which was not observed in cases with delayed effects of therapy. Pronounced inhibitory effects of glucocorticoids on monocytes in vitro were observed in patients both resistant and highly sensitive to glucocorticoid therapy. Hence, the resistance of patients with non-severe asthma to high-dose budesonide therapy is not related to the weakening of the inhibitory effect of glucocorticoids on monocyte activity.

Adolescent↗

Coupling of kinesin steps to ATP hydrolysis.

A key goal in the study of the function of ATP-driven motor enzymes is to quantify the movement produced from consumption of one ATP molecule. Discrete displacements of the processive motor kinesin along a microtubule have been reported as 5 and/or 8 nm. However, analysis of nanometre-scale movements is hindered by superimposed brownian motion. Moreover, because kinesin is processive and turns over stochastically, some observed displacements must arise from summation of smaller movements that are too closely spaced in time to be resolved. To address both of these problems, we used light microscopy instrumentation with low positional drift (< 39 pms[-1]) to observe single molecules of a kinesin derivative moving slowly (approximately 2.5nm s[-1]) at very low (150nM) ATP concentration, so that ATP-induced displacements were widely spaced in time. This allowed increased time-averaging to suppress brownian noise (without application of external force), permitting objective measurement of the distribution of all observed displacement sizes. The distribution was analysed with a statistics-based method which explicitly takes into account the occurrence of unresolved movements, and determines both the underlying step size and the coupling of steps to ATP hydrolytic events. Our data support a fundamental enzymatic cycle for kinesin in which hydrolysis of a single ATP molecule is coupled to a step distance of the microtubule protofilament lattice spacing of 8.12 nm. Step distances other than 8nm are excluded, as is the coupling of each step to two or more consecutive ATP hydrolysis reactions with similar rates, or the coupling of two 8-nm steps to a single hydrolysis. The measured ratio of ATP consumption rate to stepping rate is invariant over a wide range of ATP concentration, suggesting that the 1 ATP to 8nm coupling inferred from behaviour at low ATP can be generalized to high ATP.

Adenosine Triphosphatases↗