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At least 451 records · Page 25Linked to original sources

[In vivo evaluation of corneal structure changes after refractive procedures].

PURPOSE: The aim of the study was to evaluate and compare in vivo the corneal structure changes after refractive procedures (PRK, LASIK, LASEK). MATERIAL AND METHOD: The analysed group of patients consisted of 226 corneas in 126 patients, who underwent correction of myopia and myopic astigmatism, using the procedures: PRK (120 eyes), LASIK (56 eyes) and LASEK (50 eyes). The photoablation of the corneas was performed with the Excimer Laser MEL 60 and MEL 70 G-Scan Aesculap Meditec. Postoperative observations were made using a confocal microscopes Confoscan P4 (Tomey) and ConoScan 2 (Fortune Technologies). The evaluations were performed in the early (up to 3 months) and late postoperative period (after PRK and LASIK-up to 2 years; after LASEK-up to 6 months). RESULTS: The confocal microscopy revealed some changes within the corneal epithelium and anterior part of stroma after PRK, LASIK and LASEK. After PRK, there was increased desquamation of superficial epithelial cells in early postoperative period. These cells were elongated after LASIK and LASEK procedures. After PRK and LASEK, the Bowman's membrane was absent in the central part of the cornea, during the whole observation period. After all these procedures, the anterior part of the corneal stroma in the ablation zone, showed increased background illumination of collagen fibres and an irregular pattern of elongated keratocytic nuclei, in the early postoperative period. No scar tissue--"haze" was found in cases after LASEK, what may occur after PRK procedure. The findings kept changing in the course of the follow up time. CONCLUSIONS: Confocal microscopy enables in vivo monitoring of changes, which occur in the corneal structure after refractive procedures; this facilitates the evaluation of corneal healing. LASEK is the least invasive refractive procedure, which allows prompt stabilization of the corneal structure.

Astigmatism↗

Monitoring sarcomere structure changes in whole muscle using diffuse light reflectance.

Normal biomechanical and physiological functions of striated muscles are facilitated by the repeating sarcomere units. Light scattering technique has been used in studying single extracted muscle fibers. However, few studies, if any, have been conducted to investigate the possibility of using optical detection to examine sarcomere structure changes in whole muscles. We conducted a series of experiments to demonstrate that optical scattering properties measured in whole muscle are related to changes in sarcomere structure. These results suggest that photon migration technique has a potential for characterizing in vivo tissue ultrastructure changes in whole muscle.

Animals↗

Structural changes enhance the activity of Chainia xylanase in low urea concentrations.

Low concentrations of urea (1.2 M) stimulated the activity of endo-xylanase from Chainia by 30%. Subtle structural changes in the monomeric protein were reflected in the secondary and tertiary structure of the enzyme as monitored by fluorescence and circular dichroism. Changes in lambda(max) of emission, the fluorescence intensity and the Stern-Volmer quenching constants for acrylamide, measured in the presence of urea, indicated changes in the microenvironment of the Trp residues, suggesting alterations in tertiary structure. The ellipticity changes at 220 nm and Selcon analysis reflected changes in the content of beta-sheet while both the near- and far-UV CD spectra indicated alterations in the secondary and tertiary structure of the protein in presence of urea. The dissociation constant values (K(d)) show very little change in the affinity of the enzyme for the substrate while the k(cat) values suggest enhanced turnover of the substrate in presence of urea. We suggest that low urea concentrations perturb the conformational state of xylanase leading to an open and a more flexible structure, resulting in enhanced catalytic rates.

Acrylamide↗

[The role of structural changes in T4 bacteriophage tail proteins].

Conformational changes in bacteriophage tail proteins after heating and ionic strength alteration leading to dissociation of tail sheath have been studied using protein fluorescence, differential scanning microcalorimetry and electron microscopy methods. Autonomous structural changes in tube-baseplate proteins have been revealed. They take place under the same conditions as those which release the bonds holding the sheath protein subunits to those of the tube in isolated sheathed tails. The conformational changes in the tube-baseplates are reversible similarly to the process of assembly and disassembly of the extended sheath. Morphological changes in the tube have been found at the temperature above the transition registered by protein fluorescence but not by calorimetry. This suggests that revealed spectral alterations reflect changes in quaternary structure of tail tube in particular.

Calorimetry, Differential Scanning↗

p75NTR in the spleen: age-dependent changes, effect of NGF and 4-methylcatechol treatment, and structural changes in p75NTR-deficient mice.

In addition to their well-known actions within the nervous system, neurotrophins and their receptors are involved in immune system functioning, as demonstrated by their wide distribution in lymphoid tissues and their in vitro actions on immunocompetent cells. Nevertheless, the in vivo roles of neurotrophin-receptor systems in lymphoid tissues, as well as the scope of their influence throughout development and adulthood, are yet to be clarified. In the present study, we used combined morphological and immunohistochemical techniques to investigate the presence and cellular localization of p75NTR, the pan-neurotrophin receptor protein, in rat spleen from newborns to aging individuals, and the structural and innervation changes in the spleens of p75NTR-deficient mice. In rats, p75NTR was expressed by splenic nerve fibers and dendritic cells in an age-regulated fashion, with maximal expression detected at 2 weeks. Consistently, the spleens of newborn mice lacking this receptor protein showed no signs of ingrowing sympathetic fibers, along with an absence of defined white pulp areas. The present findings suggest a prolonged role of p75NTR in the physiology of the spleen; at least during the embryonic development period, the receptor may be critical for correct innervation and compartmentalization processes to occur.

Aging↗

Upper airway epithelial structural changes in obstructive sleep-disordered breathing.

The etiology of upper airway collapsibility in patients with snoring and obstructive sleep apnea (OSA) remains unclear. Structural mucosal changes could be contributory factors. The objective of this study was to determine whether pathologic changes in the epithelium or the epithelial-connective tissue interface are present in patients with snoring and/or OSA by means of scanning electron microscopy and immunohistochemistry. Uvulae were obtained by uvulopalatopharyngoplasty from three patients with habitual snoring and nine patients with mild to severe OSA, as well as by dissection from 43 nonsnoring body donors. Scanning electron microscopy revealed structural changes in the epithelial-connective tissue boundary that significantly differed from age-related changes in the control subjects. The immunohistochemical staining with antibodies against epithelial cytokeratins showed differences in the expression pattern of cytokeratin 13 between patients and control subjects. No differences were found in the distribution pattern of laminin. Analysis of defense cells revealed a significant diffuse infiltration of leukocytes, mainly T cells, inside the lamina propria of the patient group, which was not observed in the control group. In conclusion, these results support the hypothesis that progressive structural changes in the mucosa caused by the trauma of snoring are a possible contributory factor to upper airway collapsibility.

Adult↗

Target-dependent structural changes in sensory neurons of Aplysia accompany long-term heterosynaptic inhibition.

FMRFamide evokes both short-term and long-term inhibition of synapses between mechanosensory and motor neurons in Aplysia. We report here, using dissociated cell culture and low-light epifluorescence video microscopy, that depression lasting 24 hr of sensorimotor synapses evoked by four brief applications of FMRFamide is accompanied by a significant loss of sensory cell varicosities and neurites. These structural changes in the sensory cells require the presence of the target motor cell L7. Because the loss of structures known to contain transmitter release sites correlates significantly with the changes in the amplitude of the excitatory postsynaptic potential in L7, our results suggest that the structural changes evoked by FMRFamide reflect a loss of synaptic contacts. Thus, long-term depression parallels long-term facilitation of the sensorimotor synapse produced by serotonin in that both forms of heterosynaptic plasticity involve target-dependent modulation of the number of presynaptic varicosities.

Animals↗

Calcium ion concentration detected by structural changes of a Millipore DOPH artificial membrane.

The surface structure of an artificial membrane composed of a Millipore filter and a synthetic lipid analogue, dioleylphosphate (DOPH), immersed in KCl solution changes when the CaCl2 concentration reaches a critical value. Using a photomultiplier mounted on the eyepiece of a stereoscopic microscope the structural change can be measured quantitatively as an intensity variation of reflected light of the membrane surface. Calcium ions decreased the intensity to about 50% of the original hydrophilic state whose solution was only KCl. However, the degree of structure change was dependent on adsorbed DOPH density, solution temperature and pH value. On the other hand, using the light reflectance curves obtained from the structural observations, an unknown CaCl2 concentration in a KCl solution can be determined. Since the reflectance curve shifts widely with various densities of DOPH adsorbed in the Millipore filter, it is possible to measure the CaCl2 concentration over a wide range. The detection range was from 0.1 to 50 mM CaCl2.

Adsorption↗

Oxygen transfer, gill resistance and structural changes in rainbow trout (Salmo gairdneri, Richardson) gills perfused with vasoactive agents.

1. Gill resistance (Rg) and oxygen transfer (To2) were measured in perfused rainbow trout gills. After perfusion the gills were analysed morphometrically. 2. Rg increased with 40% and To2 decreased with 91% during 60 min perfusion without vasoactive substances in the perfusion Ringer. 3. In presence of 10 micro M adrenaline both Rg and To2 remained stable at their starting levels throughout the experimental period (60 min). 4. With 0.2 micro M acetylcholine and 10 micro M adrenaline in Ringer Rg increased nearby to the same extent as in perfusions without vasoactive agents, while To2 was not significantly affected. 1 micro M acetylcholine increased Rg with 76% and decreased To2 with 51%. 5. The changes in Rg and To2 could be explained by structural changes in the secondary lamellae.

Acetylcholine↗

Structural changes in glutamate cell swelling followed by multiparametric q-space diffusion MR of excised rat spinal cord.

Diffusion in the extracellular and intracellular spaces (ECS and ICS, respectively) was evaluated in excised spinal cords, before and after cell swelling induced by glutamate, by high b-value q-space diffusion MR of specific markers and water. The signal decays of deuterated tetramethylammonium (TMA-d(12)) chloride, an exogenous marker of the ECS, and N-acetyl aspartate (NAA), an endogenous marker of the ICS, were found to be non-mono-exponential at all diffusion times. The signal decays of these markers were found to depend on the diffusion time and the cell swelling induced by the glutamate. It was found, for example, that the mean displacements of the apparent fast and slow diffusion components of TMA-d(12) are 7.21 +/- 0.11 and 1.16 +/- 0.05 microm, respectively at a diffusion time of 496 ms. After exposure of the spinal cords to 10 mM of glutamate, these values decreased to 6.62 +/- 0.13 and 1.01 +/- 0.05 microm, respectively. The mean displacement of NAA, however, showed a less pronounced opposite trend and increased after cell swelling induced by exposure to glutamate. q-Space diffusion MR of water was found to be sensitive to exposure to glutamate, and q-space diffusion MRI showed that a more pronounced decrease in the apparent diffusion coefficient and the mean displacement of water is observed in the gray matter (GM) of the spinal cord. All these changes demonstrate that diffusion MR is indeed sensitive to structural changes caused by cell swelling induced by glutamate. Multiparametric high b-value q-space diffusion MR is useful for obtaining microstructural information in neuronal tissues.

Animals↗

[Structural changes in sugar cane buds during infection by the fungus Ustilago Scitaminea].

The structural changes that take place in sugar cane buds during the infection with Ustilago scitaminea were studied. Buds of the cultivars SP79-2312 and NA56-79, resistant and susceptible to this fungus, were inoculated with teliospores of U. scitaminea. They were placed in trays and maintained in darkness at 31 degrees and 80% relative humidity. Thirty buds of each cultivar left without inoculating as controls. The samplings were carried out at 16, 40 and 72 h after inoculation, taking 10 inoculated buds of each cultivar and same number of healthy buds. The tissues were fixed in glutaraldehyde and osmium tetroxide, later they were dehydrated in acetone and embedded in Spurr resin. Semi-fine and ultra-fine transverse sections were prepared, and were observed in light and electron microscopes respectively. It was proven that in spite of having broken the barrier of resistance of SP79-2312, for the inoculation method used, always the development of the fungus in this resistant cultivar was slower than in the susceptible one NA56-79. At 14 h post-inoculation, the fungus was not observed in the resistant cultivar, and it was scarce in the susceptible one. At 40 h an increament in the quantity of hyphaes was noticed and even more at 72 h. The damages in the cellular structure were more drastic from the second sampling, being increased in the last one. The detected alterations were: formation of electrodense granules inside the cells, increament of vacuoles, vesicles and endoplasmic reticulum cisternae, as well as rupture of membranes inside of the cells.

English Abstract↗

Structural examination of the nickel site in chromatium vinosum hydrogenase: redox state oscillations and structural changes accompanying reductive activation and CO binding.

An X-ray absorption spectroscopic study of structural changes occurring at the Ni site of Chromatium vinosum hydrogenase during reductive activation, CO binding, and photolysis is presented. Structural details of the Ni sites for the ready silent intermediate state, SI(r), and the carbon monoxide complex, SI-CO, are presented for the first time in any hydrogenase. Analysis of nickel K-edge energy shifts in redox-related samples reveals that reductive activation is accompanied by an oscillation in the electron density of the Ni site involving formally Ni(III) and Ni(II), where all the EPR-active states (forms A, B, and C) are formally Ni(III), and the EPR-silent states are formally Ni(II). Analysis of XANES shows that the Ni site undergoes changes in the coordination number and geometry that are consistent with five-coordinate Ni sites in forms A, B, and SI(u); distorted four-coordinate sites in SI(r) and R; and a six-coordinate Ni site in form C. EXAFS analysis reveals that the loss of a short Ni-O bond accounts for the change in coordination number from five to four that accompanies formation of SI(r). A shortening of the Ni-Fe distance from 2.85(5) A in form B to 2.60(5) A also occurs at the SI level and is thus associated with the loss of the bridging O-donor ligand in the active site. Multiple-scattering analysis of the EXAFS data for the SI-CO complex reveals the presence of Ni-CO ligation, where the CO is bound in a linear fashion appropriate for a terminal ligand. The putative role of form C in binding H(2) or H(-) was examined by comparing the XAS data from form C with that of its photoproduct, form L. The data rule out the suggestion that the increase in charge density on the NiFe active site that accompanies the photoprocess results in a two-electron reduction of the Ni site [Ni(III) --> Ni(I)] [Happe, R. P., Roseboom, W., and Albracht, S. P. J. (1999) Eur. J. Biochem. 259, 602-608]; only subtle structural differences between the Ni sites were observed.

Carbon Monoxide↗

NMR spectroscopic characterization of adinazolam mesylate: pH-dependent structure change in aqueous solution and active methylene.

The present study is to investigate structural changes of adinazolam mesylate in aqueous solution under various pH conditions by NMR spectroscopy. By plotting of the signal integration and chemical shifts of the side chain, pKa values for imine hydrolysis and the side chain amine were determined. Conformational analysis of the side chain was performed with deuterium-induced isotope effects on chemical shifts, nuclear Overhauser effects, relaxation times, and energy calculations. Hydrogen/deuterium exchange due to an active methylene at the 4-position under basic conditions was revealed.

Antidepressive Agents↗

Measuring structural changes in the optic nerve head and retinal nerve fibre layer.

PURPOSE: Assessing structural changes in the optic nerve is fundamental to the diagnosis and follow-up of glaucoma. Many clinical decisions are based on the determination of stability or non-stability of glaucomatous damage. Retinal nerve fibre layer (RNFL) and optic disc photographs are very useful in clinics but their assessment is based on subjective evaluation. METHODS: Confocal scanning laser ophthalmoscope and confocal scanning laser polarimetry are available and allow objective and quantitative analysis of the optic nerve. These instruments are currently being assessed for their use in glaucoma follow-up. CONCLUSIONS: This article summarises their advantages and limitations in performing the difficult task of detecting progression or changes over time.

Diagnostic Techniques, Ophthalmological↗

[Labor law issues in hospitals by structural changes and changes in hospital ownership].

The present article deals with the potential impact of structural changes and changes in hospital control or ownership on the employment contracts of the physicians concerned. While taking the applicable jurisdiction into consideration, the author examines the options of assigning new responsibilities or decreasing compensation opportunities, amending or even terminating employment contracts, outsourcing hospital-related services, or allowing physicians in the future to provide these services at their own risk. Furthermore, the article outlines the change in employer in various "change of control" scenarios such as in the case of hospital privatisation.

Germany↗

Evaluation of structural change in diffuse liver disease with frequency domain analysis of ultrasound.

To evaluate structural changes in diffuse liver disease, frequency domain analysis was applied to ultrasonic signals from the liver. We assumed that liver tissue is a collection of semiregularly arrayed small scatterers of ultrasound. We applied cepstral analysis to the ultrasonic waveforms and evaluated the periodicity of scalloping of the power spectrum caused by an interference effect among liver scatterers of a given spacing. Patients with liver conditions involving nonspecific change (n = 6), chronic hepatitis (n = 11), cirrhosis (n = 7) or fatty liver (n = 6) were examined. One hundred ultrasonic signals were obtained noninvasively with a 3.5-MHz transducer, and the space among scatterers was calculated for each signal using cepstrum analysis. Two statistical parameters, mode and kurtosis, were determined from the distribution of the space among scatterers for each patient; these parameters were compared with the histological findings in the liver. Space among scatterers kurtosis decreased with progress of liver fibrosis, and space among scatterers mode increased in cirrhosis. Neither space among scatterers kurtosis nor space among scatterers mode was affected by pathological fat in the liver. These results suggest that we can evaluate fibrotic changes in diffuse liver disease and that we can also noninvasively discriminate diffuse fibrotic liver disease from fatty liver.

Chronic Disease↗

IR spectral and structural changes caused by the conversion of 3-hydroxybenzaldehyde into the oxyanion.

The spectral and structural changes, caused by the conversion of the 3-hydroxybenzaldehyde molecule into the corresponding oxyanion have been studied by IR spectra, and MP2 and DFT force field calculations. The conversion causes a 13 cm(-1) decrease in the frequency of the carbonyl stretching band nu(Cz=O), a 1.3-fold increase in its integrated intensity, strong intensity increases (2.1-5.3-fold) of the aromatic skeletal nu8 and nu19 as well as formyl nu(CH) bands. According to the calculations the oxyanionic charge is delocalized over aldehyde group (0.37 e-), phenylene ring (0.12 e-) and oxyanionic center (0.52 e-). The conversion into the oxyanion leads to geometry changes in the whole species, but it remains planar.

Anions↗