119 resultados para Régulon Pho


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Objective: This study aimed to investigate the effect of 830 and 670 nm diode laser on the viability of random skin flaps in rats. Background data: Low-level laser therapy (LLLT) has been reported to be successful in stimulating the formation of new blood vessels and reducing the inflammatory process after injury. However, the efficiency of such treatment remains uncertain, and there is also some controversy regarding the efficacy of different wavelengths currently on the market. Materials and methods: Thirty Wistar rats were used and divided into three groups, with 10 rats in each. A random skin flap was raised on the dorsum of each animal. Group 1 was the control group, group 2 received 830 nm laser radiations, and group 3 was submitted to 670 nm laser radiation (power density = 0.5 mW/cm(2)). The animals underwent laser therapy with 36 J/cm(2) energy density (total energy = 2.52 J and 72 sec per session) immediately after surgery and on the 4 subsequent days. The application site of laser radiation was one point at 2.5 cm from the flap's cranial base. The percentage of skin flap necrosis area was calculated on the 7th postoperative day using the paper template method. A skin sample was collected immediately after to determine the vascular endothelial growth factor (VEGF) expression and the epidermal cell proliferation index (KiD67). Results: Statistically significant differences were found among the percentages of necrosis, with higher values observed in group 1 compared with groups 2 and 3. No statistically significant differences were found among these groups using the paper template method. Group 3 presented the highest mean number of blood vessels expressing VEGF and of cells in the proliferative phase when compared with groups 1 and 2. Conclusions: LLLT was effective in increasing random skin flap viability in rats. The 670 nm laser presented more satisfactory results than the 830 nm laser.

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We have characterized in vitro and in vivo effects of trypsin inhibitors from Theobroma seeds on the activity of trypsin- and chymotrypsin-like proteins from Lepidopteran pest insects. The action of semipurified trypsin inhibitors from Theobroma was evaluated by the inhibition of bovine trypsin and chymotrypsin activities determined by the hydrolysis of N-Benzoyl-DL-Arginine-p-Nitroanilide (BAPA) and N-Succinyl-Ala-Ala-Pho-Phe p-Nitroanilide (S-(Ala)2ProPhe-pNA). Proteinase inhibitor activities from Theobroma cacao and T. obovatum seeds were the most effective in inhibiting trypsin-like proteins, whereas those from T. obovatum and T. sylvestre were the most efficient against chymotrypsin-like proteins. All larvae midgut extracts showed trypsin-like proteolytic activities, and the putative trypsin inhibitors from Theobroma seeds significantly inhibited purified bovine trypsin. With respect to the influence of Theobroma trypsin inhibitors on intact insects, the inclusion of T. cacao extracts in artificial diets of velvet bean caterpillars (Anticarsia gemmatalis) and sugarcane borer (Diatraea saccharalis) produced a significant increase in the percentage of adult deformation, which is directly related to both the survival rate of the insects and oviposition.

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Objective: The aim of this study was to investigate the effect of Nd:YAG and argon laser irradiations on enamel demineralization after two different models to induce artificial caries. Background data: It is believed that the use of the high-intensity laser on the dental structure can lead to a more acid-resistant surface. Materials and methods: Twenty-one extracted human third molars were sectioned into tooth quarters. The quarters were distributed in three groups: Group I (control), untreated; Group II, Nd:YAG laser (60 mJ, 15 pps, 47.77 J/cm(2), 30 sec); and Group III, argon laser (250mW, 12 J/cm(2), 48 sec). Tooth quarters from each group were subjected to two different demineralization models: cycle 1, a 14 day demineralization (pH 4.5; 6 h) and remineralization (pH 7.0; 18 h) solutions, 37 degrees C and cycle 2, 48 h in demineralization solution (pH 4.5). Samples were prepared in slices (60-100 mu m thick) to be evaluated under polarized light microscopy. Demineralization areas were measured (mm(2)) (n = 11). Data were analyzed by ANOVA and Tukey's test (p < 0.05). Results: Means followed by different letters are significantly different: 0.25 A (control, cycle 48 h); 0.18 AB (control, cycle 14 days); 0.17 AB (Nd:YAG, cycle 14 days); 0.14 BC (argon, cycle 48 h); 0.09 BC (Nd:YAG, cycle 48 h), and 0.06 C (argon, cycle 14 days). Conclusions: The argon laser was more effective for caries preventive treatment than Nd: YAG laser, showing a smaller demineralization area in enamel.

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Objective: The purpose of this study was to analyze the influence of two different irradiation times with 85mW/cm(2) 830nm laser on the behavior of mouse odontoblast-like cells. Background data: The use of low-level laser therapy (LLLT) to stimulate pulp tissue is a reality, but few reports relate odontoblastic responses to irradiation in in vitro models. Methods: Odontoblast-like cells (MDPC-23) were cultivated and divided into three groups: control/nonirradiated (group 1); or irradiated with 85mW/cm(2), 830nm laser for 10 sec (0.8 J/cm(2)) (group 2); or for 50 sec (4.2 J/cm(2)) (group 3) with a wavelength of 830 nm. After 3, 7, and 10 days, it was analyzed: growth curve and cell viability, total protein content, alkaline phosphatase (ALP) activity, calcified nodules detection and quantification, collagen immunolocalization, vascular endothelial growth factor (VEGF) expression, and real-time polymerase chain reaction (PCR) for DMP1 gene. Data were analyzed by Kruskall-Wallis test (alpha = 0.05). Results: Cell growth was smaller in group 2 (p < 0.01), whereas viability was similar in all groups and at all periods. Total protein content and ALP activity increased on the 10th day with 0.8 J/cm(2) (p < 0.01), as well as the detection and quantification of mineralization nodules (p < 0.05), collagen, and VEGF expression (p < 0.01). The expression of DMP1 increased in all groups (p < 0.05) compared with control at 3 days, except for 0.8 J/cm(2) at 3 days and control at 10 days. Conclusions: LLLT influenced the behavior of odontoblast-like cells; the shorter time/smallest energy density promoted the expression of odontoblastic phenotype in a more significant way.

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The ability of nanoassisted laser desorption-ionization mass spectrometry (NALDI-MS) imaging to provide selective chemical monitoring with proper spatial distribution of lipid profiles from tumor tissues after plate imprinting has been tested. NALDI-MS imaging identified and mapped several potential lipid biomarkers in a murine model of melanoma tumor (inoculation of B16/F10 cells). It also confirmed that the in vivo treatment of tumor bearing mice with synthetic supplement containing phosphoethanolamine (PHO-S) promoted an accentuated decrease in relative abundance of the tumor biomarkers. NALDI-MS imaging is a matrix-free LDI protocol based on the selective imprinting of lipids in the NALDI plate followed by the removal of the tissue. It therefore provides good quality and selective chemical images with preservation of spatial distribution and less interference from tissue material. The test case described herein illustrates the potential of chemically selective NALDI-MS imaging for biomarker discovery.

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Phosphoethanolamine (Pho-s) is a compound involved in phospholipid turnover, acting as a substrate for many phospholipids of the cell membranes, especially phosphatidylcholine. We recently reported that synthetic Pho-s has potent effects on a wide variety of tumor cells. To determine if Pho-s has a potential antitumor activity, in this study we evaluated the activity of Pho-s against the B16-F10 melanoma both in vitro and in mice bearing a dorsal tumor. The treatment of B16F10 cells with Pho-s resulted in a dose-dependent inhibition of cell proliferation. At low concentrations, this activity appears to be involved in the arrest of the cell cycle at G2/M, while at high concentrations Pho-s induces apoptosis. In accordance with these results, the loss of mitochondrial potential and increased caspase-3 activity suggest that Phos has dual antitumor effects; i.e. it induces apoptosis at high concentrations and modulates the cell cycle at lower concentrations. In vivo, we evaluated the effect of Pho-s in mice bearing B16-F10 melanoma. The results show that Pho-s reduces the tumoral volume increasing survival rate. Furthermore, the tumor doubling time and tumor delays were substantially reduced when compared with untreated mice. Histological analyses reveal that Pho-s induces changes in cell morphology, typical characteristics of apoptosis, in addition the large areas of necrosis correlating with a reduction of tumor size. The results presented here support the hypothesis that Pho-s has antitumor effects by the induction of apoptosis as well as the inhibition of cell proliferation by arrest at G2/M. Thus, Pho-s can be regarded as a promising agent for the treatment of melanoma. Published by Elsevier Masson SAS.

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Background: Antineoplastic phospholipids (ALPs) represent a promising class of drugs with a novel mode of action undergoes rapid turnover in the cell membrane of tumors, interfering with lipid signal transduction, inducing cell death. The aim of this study was to investigate the synthetic phosphoethanolamine (Pho-s) as a new anticancer agent. Materials and Methods: Cell viability and morphology were assessed by (3-(4,5-Dimethylthiazol-2-yl)-2,5-diphenyltetrazolium bromide (MTT), Hoechst and rhodamine staining. Apoptosis was assessed by Annexin V and propidium iodide (PI) staining, caspase-3 activity, mitochondrial membrane potential (Delta m psi) and cell cycle analysis, combined with evaluation of tumor growth in Ehrlich Ascites Tumor (EAT) bearing mice. Results: We found that Pho-s 2.30 mg/ml induced cytotoxicity in all tumor cell lines studied without affecting normal cells. In vitro studies with EAT cells indicated that Pho-s induced apoptosis, demonstrated by an increase in Annexin-V positive cells, loss of mitochondrial potential (Delta m psi) and increased caspase-3 activity. It was also shown to increase the sub-G(1) apoptotic fraction and inhibit progression to the S phase of the cell cycle. Additionally, antitumor effects on the EAT-bearing mice showed that Pho-s, at a concentration of 35 and 70 mg/kg, inhibited tumor growth and increased the lifespan of animals without causing liver toxicity. Conclusion: These findings suggest that Pho-s is a potential anticancer candidate drug.

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Objective: Raman spectroscopy has been employed to discriminate between malignant (basal cell carcinoma [BCC] and melanoma [MEL]) and normal (N) skin tissues in vitro, aimed at developing a method for cancer diagnosis. Background data: Raman spectroscopy is an analytical tool that could be used to diagnose skin cancer rapidly and noninvasively. Methods: Skin biopsy fragments of similar to 2 mm(2) from excisional surgeries were scanned through a Raman spectrometer (830 nm excitation wavelength, 50 to 200 mW of power, and 20 sec exposure time) coupled to a fiber optic Raman probe. Principal component analysis (PCA) and Euclidean distance were employed to develop a discrimination model to classify samples according to histopathology. In this model, we used a set of 145 spectra from N (30 spectra), BCC (96 spectra), and MEL (19 spectra) skin tissues. Results: We demonstrated that principal components (PCs) 1 to 4 accounted for 95.4% of all spectral variation. These PCs have been spectrally correlated to the biochemicals present in tissues, such as proteins, lipids, and melanin. The scores of PC2 and PC3 revealed statistically significant differences among N, BCC, and MEL (ANOVA, p < 0.05) and were used in the discrimination model. A total of 28 out of 30 spectra were correctly diagnosed as N, 93 out of 96 as BCC, and 13 out of 19 as MEL, with an overall accuracy of 92.4%. Conclusions: This discrimination model based on PCA and Euclidean distance could differentiate N from malignant (BCC and MEL) with high sensitivity and specificity.

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Objective: The aim of this study was to evaluate the microhardness of radicular dentin after treatment with 980-nm diode laser and different irrigant solutions. Background data: There are few reports of the consequences of diode laser irradiation emitted at 980 nm on the mechanical properties of dentin. Methods: Seventy-two single canal, human canines with complete root formation were randomly distributed among three groups (n = 24), according to the irrigant solution used in the biomechanical preparation: distilled water; 1% NaOCl; and, 1% NaOCl + 17% EDTA. These groups subsequently were divided into three subgroups (n = 8), according to the diode laser parameter: no irradiation (control); 1.5W/100 Hz; and 3.0 W/100 Hz. Laser was applied with helicoidal movements for 20 sec. Roots were sectioned in slices and the fragment corresponding to the middle third was submitted to the microhardness test (KHN) at depths of 30, 90, 150, and 300 mu m. Results: ANOVA and Tukey tests showed that the microhardness of the groups irradiated with 1.5 W/100 Hz (49.7 +/- 11.2) and 3.0W/100 Hz (50.6 +/- 11.9) were statistically similar to each other (p > 0.05) and different (p < 0.05) from the non-irradiated group (45.0 +/- 9.7). Higher microhardness values were obtained at 150 mu m (49.2 +/- 11.0) and 300 mu m (52.3 +/- 11.3) which were similar among themselves and different (p < 0.05) only at the depth of 30 mu m (44.4 +/- 10.5). No differences were found among the irrigant solutions (p > 0.05). Conclusions: The microhardness of the radicular dentin increased after irradiation with 980-nm diode laser.

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Background data: The presence of Streptococcus mutans and Lactobacillus acidophilus in dental structure is an indicator of a cariogenic biofilm. Photodynamic therapy is a technique that involves the activation of photosensitizers by light in the presence of oxygen, resulting in the production of reactive radicals capable of inducing cell death. Reduction of bacteria levels can provide additional means of preventing dental caries. Objective: The present study evaluated the susceptibility of planktonic cultures of S. mutans (ATCC 25175) and L. acidophilus (ATCC-IAL-523) from the Adolfo Lutz Institute (IAL) to photodynamic therapy after sensitization with curcumin and exposure to blue light at 450 nm. Methods: Bacterial suspensions of S. mutans and L. acidophilus isolated (as single species) and combined (multspecies) were prepared and then evaluated. Four different groups were analyzed: L-D- (control group), L-D+ (drug group), L+D- (light group), and L+D+ (photodynamic therapy group). Two different concentrations of curcumin were tested (0.75 and 1.5 g/L) associated with a 5.7 J/cm(2) light emission diode. Results: Significant decreases (p < 0.05) in the viability of S. mutans were only observed when the bacterial suspensions were exposed to both curcumin and light. Then, reductions in viability of up to 99.99% were observed when using 1.5 g/L of the photosensitizer. The susceptibility of L. acidophilus was considerably lower (21% and 37.6%) for both curcumin concentrations. Conclusions: Photodynamic therapy was found to be effective in reducing S. mutans and L. acidophilus on planktonic cultures. No significant reduction was found for L-D+, proving the absence of dark toxicity of the drug.

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Objective: The aim of this study was to screen CO2 laser (10.6 mu m) parameters to increase enamel resistance to a continuous-flow erosive challenge. Background data: A new clinical CO2 laser providing pulses of hundreds of microseconds, a range known to increase tooth acid-resistance, has been introduced in the market. Methods: Different laser parameters were tested in 12 groups (n = 20) with varying fluences from 0.1 to 0.9 J/cm(2), pulse durations from 80 to 400 mu s and repetition rates from 180 to 700 Hz. Non-lased samples (n = 30) served as controls. All samples were eroded by exposure to hydrochloric acid (pH 2.6) under continuous acid flow (60 mu L/min). Calcium and phosphate release into acid was monitored colorimetrically at 30 sec intervals up to 5 min and at 1 min intervals up to a total erosion time of 15 min. Scanning electron microscopic (SEM) analysis was performed in lased samples (n = 3). Data were statistically analysed by one-way ANOVA (p < 0.05) and Dunnett's post-hoc tests. Results: Calcium and phosphate release were significantly reduced by a maximum of 20% over time in samples irradiated with 0.4 J/cm(2) (200 mu s) at 450 Hz. Short-time reduction of calcium loss (<= 1.5 min) could be also achieved by irradiation with 0.7 J/cm(2) (300 mu s) at 200 and 300 Hz. Both parameters revealed surface modification. Conclusions: A set of CO2 laser parameters was found that could significantly reduce enamel mineral loss (20%) under in vitro erosive conditions. However, as all parameters also caused surface cracking, they are not recommended for clinical use.

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Um mit sehr hoher Geschwindigkeit Sinnesreize zur Weiterverarbeitung übertragen zu können, besitzen im Ruhezustand Dauerimpulse liefernde Rezeptorzellen in Sinnesorganen, wie z.B. der Netzhaut (Retina), spezialisierte glutamaterge Synapsen, die durch präsynapti-sche Körperchen (SK) charakterisiert sind, die außerdem nur in Parenchymzellen der Zirbel-drüse vorkommen. SK binden mit hoher Affinität Neurotransmittervesikel und zeigen licht- bzw. reizabhängige morphologische Veränderungen. Sie dienen der Speicherung, eventuell auch dem Transport dieser Vesikel zum Ort der Reizübertragung, der nahen aktiven Zone der Ribbonsynapse. Um Dynamik und Funktion der Zellorganellen zu verstehen, ist es wichtig, ihre genaue Topo-graphie und dreidimensionale (3D) Struktur unter verschiedenen Bedingungen zu kennen. So wurden aus Serienschnitten der Retina und Zirbeldrüse mit Hilfe geeigneter, teils selbst programmierter Software 3D-Rekonstruktionen der SK durchgeführt. Untersucht wurden die ersten und zweiten Synapsen der Sehbahn in Retinae von Mensch, Maus und Ratte, Zapfen-terminale des Hühnchens und SK in Zirbeldrüsen von Ratte, Meerschweinchen und Kaninchen. Analysiert wurde zu verschiedenen Zeitpunkten der Photoperiode oder unter experimentellen Bedingungen entnommenes Frischgewebe sowie Material aus Organkultu-ren. Außerdem wurden SK unter diversen Bedingungen quantifiziert, wobei eine neue Zähl-methode entwickelt wurde, die auf einer Modifikation des Disektors basiert und die Quantifi-zierung auch anderer seltener Ultrastrukturen am Elektronenmikroskop ermöglicht. Im Gegensatz zur etablierten Zählmethode, die die Profilzahl von SK in einer definierten Fläche (PZ) angibt, liefert die vorgestellte Methode die aussagekräftigere Zahl der SK in definierten Volumina und hängt weder von deren Form noch Größe ab. Diverse Kalkulationen zeigten, daß eine Umrechnung von am selben Material gewonnenen PZ in validere Disektor Werte nicht präzise genug möglich ist. Um sinnvolle Aussagen zur Quantität von SK machen zu können, ist es daher erforderlich, die Methode für jedes Tier einer identisch behandelten Gruppe anzuwenden. Es konnte gezeigt werden, daß SK eine konstante Dicke von 35 nm haben. In der Retina sind sie meist nur in einer Ebene C-förmig gebogene Bänder, weshalb sie auch als "synaptic ribbons" bezeichnet werden, oder Platten mit Breite zu Höhe Verhältnissen zwischen 6:1 bis 3:1. Die elektronendichten, unter Normalbedingungen durch regelmäßig polymerisierte Dimere des Hauptproteins RIBEYE pentalamellären SK binden über dünne Proteinbrücken glutamathaltige Neurotransmittervesikel. Ihre untere lange schmale Kante ist über feines elektronendichtes Material an einem, als arciform density (ad) bezeichneten Plaque der Zell-membran verankert, der die Form einer gebogenen Rinne hat. Die zumeist senkrecht darauf stehenden SK zeigen an ihrer membranfernen langen Kante zu Beginn der Lichtphase, ins-besondere aber unter Dauerlicht partiell verdickte Ränder, die auf An- bzw. Abbauvorgänge hinweisen. Diese Veränderungen waren nur in Stäbchenterminalen und Pinealozyten in Ver-bindung mit dem Auftreten kleinerer klumpiger bis kugelförmiger SK nachweisbar und zeig-ten sich in den Schnitten als runde oder irreguläre Profile, die dann neben den "üblichen" stabförmigen SK-Anschnitten vorlagen. Die 3D-Rekonstruktion von Stäbchenterminalen der menschlichen Retina zeigte, daß diese entsprechend der Zahl ihrer SK 1-3 Ribbonsynapsen aufweisen. Letztere bestehen aus einem an der Zellmembran senkrecht über eine ad verankerten SK und der aktiven Zone, die einem ca. 200 nm breiten Bereich der Zellmembran in Fortsetzung der ad nach seitlich oben entspricht. Die boomerang- bis hufeisenförmigen SK haben 2 parallele flache Hauptflächen. Postsynaptisch liegen zwei Horizontalzellfortsätze, welche mit variabeln Aufspaltungen von einem engen Hilus aus tief in Stäbchenendkolben invaginiert sind. Sie verbreitern sich termi-nal und zeigen große breite oft aufgefächerte bzw. verzweigte Auftreibungen. Die Ribbon-synapsen sind in die zwischen solchen Endauftreibungen entstehenden Rinnen eingesenkt. Unterhalb ihrer ad berühren sich die Horizontalzellterminale. Etwas darunter enden 1-2 ca. 100 nm breite Bipolarzelldendriten, die vom Zentrum der Invagination des Stäbchenterminals zum Hilus hin dünner werden, um zum Soma invaginierender ON-Bipolarzellen weiterzulau-fen. Da die Zahl der in den Stäbchenendkolben eintretenden Fortsätze variabel ist, fanden sich Konstellationen von 1-3 SK, 1-3 Horizontal- und 1-4 Bipolarzellterminalen, wie sie auch in der Literatur beschrieben sind. Drei zentrale Ausschnitte menschlicher Zapfenpedikel wurden aus lückenlosen Serienschnit-ten mit ihren Mitochondrien, SK und den in Form von Triaden hier invaginierenden postrib-bonsynaptischen Fortsätzen rekonstruiert. Der Grundbauplan der Ribbonsynapsen ist hier dem der Stäbchen ähnlich, jedoch sind die SK kürzer, die Invaginationen deutlich kleiner und nie verzweigt, die Bipolarzelldendriten breiter und die Horizontalzellfortsätze terminal weniger stark und nur rundlich aufgetrieben. Zapfen-SK sind nur in einer Ebene schwach gebogene Bänder. Die gefundene Zahl von Zapfen SK paßt zu Literaturdaten, deren Zusammenfas-sung für Primaten foveanah 10-20 und peripher 30-40 SK zeigt. In Bipolarzellaxonen des Menschen waren SK nicht immer über leistenartige Membranplaques am Plasmalemm ver-ankert. Die hier flachen Ribbonsynapsen zeigten kleinere bandförmige oder nur ca. 250 x 150 x 35 nm große plattenförmige SK mit etwas größerem Abstand zu den aktiven Zonen als in Photorezeptoren. Bei BALB/c Mäusen, deren SK besonders deutlich auf Veränderungen der Photoperiode oder experimentelle Bedingungen reagieren, zeigten Rekonstruktionen von Stäbchenribbon-synapsen am Ende der Dunkelphase band- bis boomerangförmige SK und weder Klumpen noch Kugeln. Im ersten Drittel und gegen Ende der Lichtphase fanden sich jedoch ca. 20 Prozent solch veränderter SK. Gleichzeitig waren die mittleren Abschnitte vieler SK unter beiden Lichtbedingungen dünner als am Ende der Dunkelphase. Die langen, oft mehrfach gebogenen und verdrehten Zapfen-SK dieser Mäuse waren unabhängig von den Lichtbedin-gungen oft deutlich größer als die der Stäbchen, wohingegen beim Menschen Zapfen-SK re-lativ gerade, bandförmige Zellorganellen geringerer Größe als in Stäbchen darstellten. Während in Stäbchenterminalen nur ausnahmsweise mehr als ein größeres bandförmiges SK (neben eventuellen kugelförmigen) vorlag, zeigten sich in den Zapfen orts- und spezies-abhängig 15 bis über 25 meist bandförmige Organellen, die in wenigen Fällen mit zwei ge-legentlich sogar 3 verschiedenen Triaden aus 2 Horizontal- und einem Bipolarzellfortsatz ver-bunden waren. Dies ist bei BALB/c Mäusen, die weniger, aber größere Zapfen-SK zeigten, häufiger als beim Menschen. Die SK der Bipolarzellen in der inneren plexiformen Schicht waren speziesübergreifend meist lange Bänder oder kleine Platten mit ca. 250 x 150 nm großen Hauptflächen und nur ge-ringen Verdrehungen. Verschiedene Bipolarzelltypen haben unterschiedlich viele SK. Im Rahmen der Arbeit erstmals erstellte 3D-Rekonstruktion ektopischer synaptischer Körper-chen (eSK) konnten belegen, daß diese in Bipolarzelldendriten lokalisiert sind. Die kleinen, leicht gebogenen, 35 nm dicken Platten, deren große Oberflächen Dimensionen von meist nur ca. 100 x 200 nm hatten, sind praktisch nie an der Zellmembran verankert, sondern ste-hen in einigen Fällen über zu langen Tubuli fusionierte Vesikel mit dem Interzellularspalt in Verbindung. Dies könnte ein Hinweis auf eine "compound" Endo- oder Exozytose sein. Sel-ten finden sich zwei, ausnahmsweise auch drei parallel zueinander angeordnete SK im Inne-ren der Bipolarzelldendriten, meistens nahe deren Eintritt in Stäbchenendkolben. Im Gegen-satz zur Ratte fanden sich eSK bei seit Geburt unter Dauerdunkelheit gehaltenen BALB/c Mäusen sogar im in Stäbchen- bzw. Zapfenterminal invaginierten Abschnitt von Bipolarzell-dendriten. Neben plattenförmigen SK lagen bei diesen Mäusen auch innen hohle klumpen-förmige Organellen in Stäbchenbipolarzelldendriten vor. Unter Organkultur und Ca++-Entzug fanden sich in Stäbchen die massivsten Veränderungen von SK, die entweder als Klumpen oder Kugeln vorlagen oder massive Protrusionen an ei-nem kleinen plattenförmigen Abschnitt zeigten, der noch an der ad befestigt blieb. Die Be-funde deuten darauf hin, daß Licht über Kalziumentzug zu Verklumpungen an SK und zur Abschnürung von klumpen- bis kugelförmigen SK Fragmenten führt. Bei der Rekonstruktion mit anti-β-Dystroglykan Immunogold-markierter Zapfenterminalen der Hühnchenretina konnte erstmals gezeigt werden, daß sich dieses zum Dystrophin-assozierten Glykoproteinkomplex gehörende Protein in perisynaptischen Fortsätzen der Pho-torezeptoren seitlich und an ihren Spitzen fand, während Horizontal- und Bipolarzellfortsätze nicht markiert waren. Dies deutet auf eine neue strukturelle oder funktionelle Domäne in Pho-torezeptorterminalen hin, die eine noch im Detail zu klärende Rolle bei der synaptischen Transmission spielt, da bei Mutationen im Dystrophin-assoziierten Proteinkomplex eine Ver-änderung der synaptischen Kommunikation in der äußeren plexiformen Schicht zu beobach-ten ist. In der Zirbeldrüse sind die meisten SK wenig gebogene, flache, plattenförmige Strukturen, die bei der Ratte meist ca. 300x150x35 nm groß sind. Daneben gibt es deutlich längere bandförmige Organellen und unter Normalbedingungen bei Ratte und Hühnchen praktisch keine, bei Meerschweinchen nur wenige klumpige oder kugelförmige SK. Pinealozyten der Meerschweinchenzirbeldrüse weisen üblicherweise Felder parallel gruppierter plattenförmi-ger synaptischer Körperchen auf. Unter Dauerlicht zeigten sich an der Membran benachbar-ter Zellen einander gegenüberliegende Felder stark verbogener, partiell verdickter SK, die vermutlich aus verschmolzenen Einzelplatten entstanden waren sowie deutlich mehr kugeli-ge bzw. klumpige SK. Die Organellen nehmen nachts an Größe zu, wodurch sich ihre Ober-fläche vergrößert, bei Ratten nimmt sie um 19,3 Prozent von 0,041 auf 0,0501 µm² zu. Da die plattenförmigen SK eine konstante Dicke von 35 nm hatten, läßt sich so ein durchschnitt-liches Volumen von 1,47x10-3 µm³ für 12.00 und von 1,75x10-3 µm³ für Mitternacht mit einer Zunahme von 0,28x10-3 µm³ (entspricht 19,3 %) errechnen. Der Vergleich von Pinealocyten-SK von unter LD 4:20 zu LD 20:4 gehaltenen Ratten zeigte unter LD 20:4 insignifikant mehr SK, die signifikant längere Profile hatten, was auf eine Größenzunahme der Organellen hin-deutet. Überlegungen und mathematische Berechnungen, was Profillängenmessungen bedeuten und wieviele Profile für sinnvolle Vergleiche ausgewertet werden müßten, werden kritisch diskutiert. Die selbst erhobenen Befunde werden im Kontext mit allen verfügbaren Literaturdaten de origine, dem Auftreten von SK in der Ontogenese sowie SK betreffenden pathologischen und Altersveränderungen betrachtet. Hierbei deutet die Analyse der Chronobiologie von SK in quantitativer und morphologischer Hinsicht auf eine Abhängigkeit von der Photoperiode bzw. Licht und Dunkelheit und nicht auf eine endogene zirkadiane Rhythmik hin. Die oberhalb funktionell wichtiger Ca++-Känale lokalisierten SK setzen in Photorezeptoren die Lichtinformation in exozytierte Glutamatquanten um, wobei das Glutamat an verschiedenen postsynaptischen Orten wirkt. Die zuvor nie so anschaulich durch 3D-Stereoanimationen visualisierten Befunde zeigen, daß die Morphologie von SK hier für eine maximal schnelle Freisetzung der gebundenen Transmittervesikel an in unmittelbarer Nähe gelegenen aktiven Zonen der Ribbonsynapsen optimiert ist. Der molekulare Aufbau von SK wird ultrastrukturell nachvollzogen und die Funktion der Organellen diskutiert. Diesbezüglich ist die Vesikelspei-cherung erwiesen, das "Priming" für die Exozytose beinahe bewiesen, eine Koordinations-funktion für multivesikuläre Transmitterfreisetzung ist denkbar, während eine Förderband-funktion eher unwahrscheinlich ist. In breve haben die im Rahmen dieser Habilitation ge-wonnenen Erkenntnisse und entwickelten Methoden einige Beiträge zur Klärung des mor-phologisch funktionellen Gesamtverständnisses der Ribbonsynapsen geleistet.

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OBJECTIVE: The aim of this study was to determine the influence of polyvinyl chloride (PVC) wrapping on the performance of two laser fluorescence devices (LF and LFpen) by assessing tooth occlusal surfaces. BACKGROUND DATA: Protection of their tips may influence LF measurements. To date there are no studies evaluating the influence of this protection on the performance of the LFpen on permanent teeth, or comparing it to the original LF device. MATERIALS AND METHODS: One hundred nineteen permanent molars were assessed by two experienced dentists using the LF and the LFpen devices, both with and without PVC wrapping. The teeth were histologically prepared and assessed for caries extension. RESULTS: The LF values with and without PVC wrapping were significantly different. For both LF devices, the sensitivity and accuracy were lower when the PVC wrapping was used. The specificity was statistically significantly higher for the LFpen with PVC. No difference was found between the areas under the ROC curves with and without PVC wrapping. The ICC showed excellent interexaminer agreement. The Bland and Altman method showed a range between the upper and the lower limits of agreement of 63.4 and 57.8 units for the LF device, and 49.4 and 74.2 for the LFpen device, with and without PVC wrapping, respectively. CONCLUSIONS: We found an influence of the PVC wrapping on the performance of the LF and LFpen devices. However, since its influence on detection of occlusal caries lesions is considered for, the use of one PVC layer is suggested to avoid cross-contamination in clinical practice.

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The membranes from normal and Plasmodium knowlesi-infected rhemsus monkey erythrocytes (90 to 95 percent infected with early ring stage) were analyzed for transbilayer distribution of phosphatidylcholine (PC). hosphatidylethanolamine (PE). and hosphatidylserine (PS). by means of chemical and enzymatic probes. The external monolayer of the normal red cell membrane contained at least 68 to 72 percent of the total phosphatidylcholine and 15 to 20 percent of the total phosphati dylethanolamine. In the infected cell, the transmembrane phosphatidylcholine distribution appeared to be reversed, with only 20 to 30 percent of it being externally localized, whereas roughly equal amounts of phosphatidylethanolamine were present in the outer and'inner surfaces. However, total pho.~phatid)'lserine in both the infected and normal red cells was exc/usi~'ely internal. Unlike that in the normal intact cell, external phosphatidylethanolamine in the parasitized cell was readily accessible to phospholipase A2. These results indicate that significant changes in molecular architecture of the host cell membrane are the result of varasitization.

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BACKGROUND To cover the shortage of cadaveric organs, new approaches to expand the donor pool are needed. Here we report on a case of domino liver transplantation (DLT) using an organ harvested from a compound heterozygous patient with primary hyperoxaluria (PHO), who underwent combined liver and kidney transplantation. The DLT recipient developed early renal failure with oxaluria. The time to the progression to oxalosis with renal failure in such situations is unknown, but, based on animal data, we hypothesize that calcineurin inhibitors may play a detrimental role. METHODS A cadaveric liver and kidney transplantation was performed in a 52-year-old male with PHO. His liver was used for a 64-year-old patient with a non-resectable, but limited cholangiocarcinoma. RESULTS While the course of the PHO donor was uneventful, in the DLT recipient early post-operative, dialysis-dependent renal failure with hyperoxaluria developed. Histology of a kidney biopsy revealed massive calcium oxalate crystal deposition as the leading aetiological cause. CONCLUSIONS DLT using PHO organs for marginal recipients represents a possible therapeutic approach regarding graft function of the liver. However, it may negatively alter the renal outcome of the recipient in an unpredictable manner, especially with concomitant use of cyclosporin. Therefore, we suggest that, although DLT should be promoted, PHO organs are better excluded from such procedures.