948 resultados para PN


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Understanding infertility and sterility requires knowledge of the molecular mechanisms underlying sexual reproduction. We have found that male mice deficient for the gene encoding the protease inhibitor protease nexin-1 (PN-1) show a marked impairment in fertility from the onset of sexual maturity. Absence of PN-1 results in altered semen protein composition, which leads to inadequate semen coagulation and deficient vaginal plug formation upon copulation. Progressive morphological changes of the seminal vesicles also are observed. Consistent with these findings, abnormal PN-1 expression was found in the semen of men displaying seminal dysfunction. The data demonstrate that the level of extracellular proteolytic activity is a critical element in controlling male fertility.

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Carbohydrate–protein bonds interrupt the rapid flow of leukocytes in the circulation by initiation of rolling and tethering at vessel walls. The cell surface carbohydrate ligands are glycosylated proteins like the mucin P-selectin glycoprotein ligand-1 (PSGL-1), which bind ubiquitously to the family of E-, P-, and L-selectin proteins in membranes of leukocytes and endothelium. The current view is that carbohydrate–selectin bonds dissociate a few times per second, and the unbinding rate increases weakly with force. However, such studies have provided little insight into how numerous hydrogen bonds, a Ca2+ metal ion bond, and other interactions contribute to the mechanical strength of these attachments. Decorating a force probe with very dilute ligands and controlling touch to achieve rare single-bond events, we have varied the unbinding rates of carbohydrate–selectin bonds by detachment with ramps of force/time from 10 to 100,000 pN/sec. Testing PSGL-1, its outer 19 aa (19FT), and sialyl LewisX (sLeX) against L-selectin in vitro on glass microspheres and in situ on neutrophils, we found that the unbinding rates followed the same dependence on force and increased by nearly 1,000-fold as rupture forces rose from a few to ≈200 pN. Plotted on a logarithmic scale of loading rate, the rupture forces reveal two prominent energy barriers along the unbinding pathway. Strengths above 75 pN arise from rapid detachment (<0.01 sec) impeded by an inner barrier that requires a Ca2+ bond between a single sLeX and the lectin domain. Strengths below 75 pN occur under slow detachment (>0.01 sec) impeded by the outer barrier, which appears to involve an array of weak (putatively hydrogen) bonds.

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“Catch,” a state where some invertebrate muscles sustain high tension over long periods of time with little energy expenditure (low ATP hydrolysis rate) is similar to the “latch” state of vertebrate smooth muscles. Its induction and release involve Ca2+-dependent phosphatase and cAMP-dependent protein kinase, respectively. Molecular mechanisms for catch remain obscure. Here, we describe a quantitative microscopic in vitro assay reconstituting the catch state with proteins isolated from catch muscles. Thick filaments attached to glass coverslips and pretreated with ≈10−4 M free Ca2+ and soluble muscle proteins bound fluorescently labeled native thin filaments tightly in catch at ≈10−8 M free Ca2+ in the presence of MgATP. At ≈10−4 M free Ca2+, the thin filaments moved at ≈4 μm/s. Addition of cAMP and cAMP-dependent protein kinase at ≈10−8 M free Ca2+ caused their release. Rabbit skeletal muscle F-actin filaments completely reproduced the results obtained with native thin filaments. Binding forces >500 pN/μm between thick and F-actin filaments were measured by glass microneedles, and were sufficient to explain catch tension in vivo. Synthetic filaments of purified myosin and twitchin bound F-actin in catch, showing that other components of native thick filaments such as paramyosin and catchin are not essential. The binding between synthetic thick filaments and F-actin filaments depended on phosphorylation of twitchin but not of myosin. Cosedimentation experiments showed that twitchin did not bind directly to F-actin in catch. These results show that catch is a direct actomyosin interaction regulated by twitchin phosphorylation.

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Type IV pili are thin filaments that extend from the poles of a diverse group of bacteria, enabling them to move at speeds of a few tenths of a micrometer per second. They are required for twitching motility, e.g., in Pseudomonas aeruginosa and Neisseria gonorrhoeae, and for social gliding motility in Myxococcus xanthus. Here we report direct observation of extension and retraction of type IV pili in P. aeruginosa. Cells without flagellar filaments were labeled with an amino-specific Cy3 fluorescent dye and were visualized on a quartz slide by total internal reflection microscopy. When pili were attached to a cell and their distal ends were free, they extended or retracted at rates of about 0.5 μm s−1 (29°C). They also flexed by Brownian motion, exhibiting a persistence length of about 5 μm. Frequently, the distal tip of a filament adsorbed to the substratum and the filament was pulled taut. From the absence of lateral deflections of such filaments, we estimate tensions of at least 10 pN. Occasionally, cell bodies came free and were pulled forward by pilus retraction. Thus, type IV pili are linear actuators that extend, attach at their distal tips, exert substantial force, and retract.

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Recently, Block and coworkers [Visscher, K., Schnitzer, M. J., & Block, S. M. (1999) Nature (London) 400, 184–189 and Schnitzer, M. J., Visscher, K. & Block, S. M. (2000) Nat. Cell Biol. 2, 718–723] have reported extensive observations of individual kinesin molecules moving along microtubules in vitro under controlled loads, F = 1 to 8 pN, with [ATP] = 1 μM to 2 mM. Their measurements of velocity, V, randomness, r, stalling force, and mean run length, L, reveal a need for improved theoretical understanding. We show, presenting explicit formulae that provide a quantitative basis for comparing distinct molecular motors, that their data are satisfactorily described by simple, discrete-state, sequential stochastic models. The simplest (N = 2)-state model with fixed load-distribution factors and kinetic rate constants concordant with stopped-flow experiments, accounts for the global (V, F, L, [ATP]) interdependence and, further, matches relative acceleration observed under assisting loads. The randomness, r(F,[ATP]), is accounted for by a waiting-time distribution, ψ\documentclass[12pt]{minimal} \usepackage{amsmath} \usepackage{wasysym} \usepackage{amsfonts} \usepackage{amssymb} \usepackage{amsbsy} \usepackage{mathrsfs} \setlength{\oddsidemargin}{-69pt} \begin{document} \begin{equation*}{\mathrm{_{1}^{+}}}\end{equation*}\end{document}(t), [for the transition(s) following ATP binding] with a width parameter ν ≡ 〈t〉2/〈(Δt)2〉≃2.5, indicative of a dispersive stroke of mechanicity ≃0.6 or of a few (≳ν − 1) further, kinetically coupled states: indeed, N = 4 (but not N = 3) models do well. The analysis reveals: (i) a substep of d0 = 1.8–2.1 nm on ATP binding (consistent with structurally based suggestions); (ii) comparable load dependence for ATP binding and unbinding; (iii) a strong load dependence for reverse hydrolysis and subsequent reverse rates; and (iv) a large (≳50-fold) increase in detachment rate, with a marked load dependence, following ATP binding.

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A theory of the unzipping of double-stranded DNA is presented and is compared to recent micromanipulation experiments. It is shown that the interactions that stabilize the double helix and the elastic rigidity of single strands simply determine the sequence-dependent ≈12-pN force threshold for DNA strand separation. Using a semimicroscopic model of the binding between nucleotide strands, we show that the greater rigidity of the strands when formed into double-stranded DNA, relative to that of isolated strands, gives rise to a potential barrier to unzipping. The effects of this barrier are derived analytically. The force to keep the extremities of the molecule at a fixed distance, the kinetic rates for strand unpairing at fixed applied force, and the rupture force as a function of loading rate are calculated. The dependence of the kinetics and of the rupture force on molecule length is also analyzed.

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To determine if nitration of tyrosine residues by peroxynitrite (PN), which can be generated endogenously, can disrupt the phosphorylation of tyrosine residues in proteins involved in cell signaling networks, we studied the effect of PN-promoted nitration of tyrosine residues in a pentadecameric peptide, cdc2(6-20)NH2, on the ability of the peptide to be phosphorylated. cdc2(6-20)NH2 corresponds to the tyrosine phosphorylation site of p34cdc2 kinase, which is phosphorylated by lck kinase (lymphocyte-specific tyrosine kinase, p56lck). PN nitrates both Tyr-15 and Tyr-19 of the peptide in phosphate buffer (pH 7.5) at 37 degrees C. Nitration of Tyr-15. which is the phosphorylated amino acid residue, inhibits completely the phosphorylation of the peptide. The nitration reaction is enhanced by either Fe(III)EDTA or Cu(II)-Zn(II)-superoxide dismutase (Cu,Zn-SOD). The kinetic data are consistent with the view that reactions of Fe(111)EDTA or Cu,Zn-SOD with the cis form of PN yield complexes in which PN decomposes more slowly to form N02+, the nitrating agent. Thus, the nitration efficiency of PN is enhanced. These results are discussed from the point of view that PN-promoted nitration will result in permanent impairment of cyclic cascades that control signal transduction processes and regulate cell cycles.

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A methodology has been developed for the study of molecular recognition at the level of single events and for the localization of sites on biosurfaces, in combining force microscopy with molecular recognition by specific ligands. For this goal, a sensor was designed by covalently linking an antibody (anti-human serum albumin, polyclonal) via a flexible spacer to the tip of a force microscope. This sensor permitted detection of single antibody-antigen recognition events by force signals of unique shape with an unbinding force of 244 +/- 22 pN. Analysis revealed that observed unbinding forces originate from the dissociation of individual Fab fragments from a human serum albumin molecule. The two Fab fragments of the antibody were found to bind independently and with equal probability. The flexible linkage provided the antibody with a 6-nm dynamical reach for binding, rendering binding probability high, 0.5 for encounter times of 60 ms. This permitted fast and reliable detection of antigenic sites during lateral scans with a positional accuracy of 1.5 nm. It is indicated that this methodology has promise for characterizing rate constants and kinetics of molecular recognition complexes and for molecular mapping of biosurfaces such as membranes.

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Background e scopi dello studio. Il carcinoma renale rappresenta circa il 3% delle neoplasie e la sua incidenza è in aumento nel mondo. Il principale approccio terapeutico alla malattia in stadio precoce è rappresentato dalla chirurgia (nefrectomia parziale o radicale), sebbene circa il 30-40% dei pazienti vada incontro a recidiva di malattia dopo tale trattamento. La probabilità di recidivare può essere stimata per mezzo di alcuni noti modelli prognostici sviluppati integrando sia parametri clinici che anatomo-patologici. Il limite principale all’impiego nella pratica clinica di questi modelli è legata alla loro complessità di calcolo che li rende di difficile fruizione. Inoltre la stratificazione prognostica dei pazienti in questo ambito ha un ruolo rilevante nella pianificazione ed interpretazione dei risultati degli studi di terapia adiuvante dopo il trattamento chirurgico del carcinoma renale in stadio iniziale. Da un' analisi non pre-pianificata condotta nell’ambito di uno studio prospettico e randomizzato multicentrico italiano di recente pubblicazione, è stato sviluppato un nuovo modello predittivo e prognostico (“score”) che utilizza quattro semplici parametri: l’età del paziente, il grading istologico, lo stadio patologico del tumore (pT) e della componente linfonodale (pN). Lo scopo del presente studio era quello di validare esternamente tale score. Pazienti e Metodi. La validazione è stata condotta su due coorti retrospettive italiane (141 e 246 pazienti) e su una prospettica americana (1943 pazienti). Lo score testato prevedeva il confronto tra due gruppi di pazienti, uno a prognosi favorevole (pazienti con almeno due parametri positivi tra i seguenti: età < 60 anni, pT1-T3a, pN0, grading 1-2) e uno a prognosi sfavorevole (pazienti con meno di due fattori positivi). La statistica descrittiva è stata utilizzata per mostrare la distribuzione dei diversi parametri. Le analisi di sopravvivenza [recurrence free survival (RFS) e overall survival (OS)] sono state eseguite il metodo di Kaplan-Meier e le comparazioni tra i vari gruppi di pazienti sono state condotte utilizzando il Mantel-Haenszel log-rank test e il modello di regressione di Cox. Il metodo di Greenwood è stato utilizzato per stimare la varianza e la costruzione degli intervalli di confidenza al 95% (95% CI), la “C-statistic” è stata utilizzata per descrivere l’ accuratezza dello score. Risultati. I risultati della validazione dello score condotta sulle due casistiche retrospettive italiane, seppur non mostrando una differenza statisticamente significativa tra i due gruppi di pazienti (gruppo favorevole versus sfavorevole), sono stati ritenuti incoraggianti e meritevoli di ulteriore validazione sulla casistica prospettica americana. Lo score ha dimostrato di performare bene sia nel determinare la prognosi in termini di RFS [hazard ratio (HR) 1.85, 95% CI 1.57-2.17, p < 0.001] che di OS [HR 2.58, 95% CI 1.98-3.35, p < 0.001]. Inoltre in questa casistica lo score ha realizzato risultati sovrapponibili a quelli dello University of California Los Angeles Integrated Staging System. Conclusioni. Questo nuovo e semplice score ha dimostrato la sua validità in altre casistiche, sia retrospettive che prospettiche, in termini di impatto prognostico su RFS e OS. Ulteriori validazioni su casistiche internazionali sono in corso per confermare i risultati qui presentati e per testare l’eventuale ruolo predittivo di questo nuovo score.

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Nanomedicine is a new branch of medicine, based on the potentiality and intrinsic properties of nanomaterials. Indeed, the nanomaterials ( i.e. the materials with nano and under micron size) can be suitable to different applications in biomedicine. The nanostructures can be used by taking advantage of their properties (for example superparamagnetic nanoparticles) or functionalized to deliver the drug in a specific target, thanks the ability to cross biological barriers. The size and the shape of 1D-nanostructures (nanotubes and nanowires) have an important role on the cell fate: their morphology plays a key role on the interaction between nanostructure and the biological system. For this reason the 1D nanostructure are interesting for their ability to mime the biological system. An implantable material or device must therefore integrate with the surrounding extracellular matrix (ECM), a complex network of proteins with structural and signaling properties. Innovative techniques allow the generation of complex surface patterns that can resemble the structure of the ECM, such as 1D nanostructures. NWs based on cubic silicon carbide (3C-SiC), either bare (3C-SiC NWs) or surrounded by an amorphous shell (3C-SiC/SiO2 core/shell NWs), and silicon oxycarbide nanowires (SiOxCy NWs) can meet the chemical, mechanical and electrical requirements for tissue engineering and have a strong potential to pave the way for the development of a novel generation of implantable nano-devices. Silicon oxycarbide shows promising physical and chemical properties as elastic modulus, bending strength and hardness, chemical durability superior to conventional silicate glasses in aggressive environments and high temperature stability up to 1300 °C. Moreover, it can easily be engineered through functionalization and decoration with macro-molecules and nanoparticles. Silicon carbide has been extensively studied for applications in harsh conditions, as chemical environment, high electric field and high and low temperature, owing to its high hardness, high thermal conductivity, chemical inertness and high electron mobility. Also, its cubic polytype (3C) is highly biocompatible and hemocompatible, and some prototypes of biomedical applications and biomedical devices have been already realized starting from 3C-SiC thin films. Cubic SiC-based NWs can be used as a biomimetic biomaterial, providing a robust and novel biocompatible biological interface . We cultured in vitro A549 human lung adenocarcinoma epithelial cells and L929 murine fibroblast cells over core/shell SiC/SiO2, SiOxCy and bare 3C-SiC nanowire platforms, and analysed the cytotoxicity, by indirect and direct contact tests, the cell adhesion, and the cell proliferation. These studies showed that all the nanowires are biocompatible according to ISO 10993 standards. We evaluated the blood compatibility through the interaction of the nanowires with platelet rich plasma. The adhesion and activation of platelets on the nanowire bundles, assessed via SEM imaging and soluble P-selectin quantification, indicated that a higher platelet activation is induced by the core/shell structures compared to the bare ones. Further, platelet activation is higher with 3C-SiC/SiO2 NWs and SiOxCyNWs, which therefore appear suitable in view of possible tissue regeneration. On the contrary, bare 3C-SiC NWs show a lower platelet activation and are therefore promising in view of implantable bioelectronics devices, as cardiovascular implantable devices. The NWs properties are suitable to allow the design of a novel subretinal Micro Device (MD). This devices is based on Si NWs and PEDOT:PSS, though the well know principle of the hybrid ordered bulk heterojunction (OBHJ). The aim is to develop a device based on a well-established photovoltaic technology and to adapt this know-how to the prosthetic field. The hybrid OBHJ allows to form a radial p–n junction on a nanowire/organic structure. In addition, the nanowires increase the light absorption by means of light scattering effects: a nanowires based p-n junction increases the light absorption up to the 80%, as previously demonstrated, overcoming the Shockley-Queisser limit of 30 % of a bulk p-n junction. Another interesting employment of these NWs is to design of a SiC based epicardial-interacting patch based on teflon that include SiC nanowires. . Such contact patch can bridge the electric conduction across the cardiac infarct as nanowires can ‘sense’ the direction of the wavefront propagation on the survival cardiac tissue and transmit it to the downstream surivived regions without discontinuity. The SiC NWs are tested in terms of toxicology, biocompatibility and conductance among cardiomyocytes and myofibroblasts.

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The azimuthal asymmetry in the risetime of signals in Auger surface detector stations is a source of information on shower development. The azimuthal asymmetry is due to a combination of the longitudinal evolution of the shower and geometrical effects related to the angles of incidence of the particles into the detectors. The magnitude of the effect depends upon the zenith angle and state of development of the shower and thus provides a novel observable, (sec theta)(max), sensitive to the mass composition of cosmic rays above 3 x 10(18) eV. By comparing measurements with predictions from shower simulations, we find for both of our adopted models of hadronic physics (QGSJETII-04 and EPOS-LHC) an indication that the mean cosmic-ray mass increases slowly with energy, as has been inferred from other studies. However, the mass estimates are dependent on the shower model and on the range of distance from the shower core selected. Thus the method has uncovered further deficiencies in our understanding of shower modeling that must be resolved before the mass composition can be inferred from (sec theta)(max).

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Em um cenário de aumento de competitividade, crescente expectativa por inovações do produto e necessidade de atender diferentes perfis de consumidores, o conceito de gerenciamento de cadeias de suprimentos globais (GSCM) surge como uma estratégia para coordenar mais eficazmente as atividades dispersas geograficamente dos sistemas produtivos. Na adoção do GSCM, as organizações devem lidar com rupturas que impactam no gerenciamento das suas atividades, tais como a interrupção de vias de transporte, pane no fornecimento de energia, desastres naturais e até ataques terroristas. Nesse contexto, o trabalho introduz um procedimento sistematizado para modelagem das cadeias de suprimentos visto como um sistema a eventos discretos e sua análise por simulação das atividades do GSCM baseada em técnicas formais como a rede de Petri (PN) e o Production Flow Schema (PFS). Um exemplo é também apresentado para ilustrar e comprovar as vantagens do método proposto na análise do GSCM.

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O objetivo deste estudo foi avaliar o efeito do suplemento de colostro (SC) associado ao colostro materno (CM) de alta ou média qualidade na saúde e desempenho de bezerros leiteiros. No primeiro experimento foram utilizados 44 machos da raça Holandesa, distribuídos nos tratamentos: 1) CM de alta qualidade fornecido em volume correspondente a 15% do peso ao nascer (PN); 2) CM de média qualidade (15%PN) e 3) CM de média qualidade (15% PN) + SC. O protocolo de colostragem afetou a concentração de proteína total nas primeiras 48 horas de vida e durante a fase de aleitamento (P<0,05). Em relação a saúde, o protocolo de colostragem não afetou o escore fecal, bem como o número de dias com diarreia, dias com febre e dias de hidratação (P>0,05); no entanto, os animais que receberam CM de alta qualidade foram medicados por um menor número de dias (P<0,05). O consumo e o desempenho não foram afetados pelos tratamentos (P>0,05), embora tenha ocorrido efeito de idade (P<0,0001). O fornecimento de suplemento de colostro associado ao CM de média qualidade não afetou a transferência de imunidade passiva, o desempenho ou o metabolismo dos animais durante o período de aleitamento. No segundo experimento foram utilizadas 80 fêmeas da raça Holandesa nos seguintes tratamentos: 1) CM de alta qualidade fornecido em volume correspondente a 15% PN; e 2) CM de alta qualidade (15% PN) + SC. Não houve diferença na qualidade do colostro ingerido pelos animais (P>0,05). Os parâmetros sanguíneos nas primeiras 24 horas não foram afetados pelos tratamentos (P>0,05). O consumo e o desempenho não foram afetados pela administração do suplemento de colostro (P>0,05), no entanto houve efeito de idade para ambos os parâmetros (P<0,0001). Em relação à saúde, o fornecimento adicional de Ig não afetou os dias com diarreia, dias com febre ou dias medicados (P>0,05). A taxa de mortalidade observada durante o experimento foi de 2,5%. O consumo adicional de Ig através do fornecimento de suplemento de colostro em associação ao colostro materno de alta qualidade não melhorou a imunidade, bem como não afetou o desempenho ou a saúde de bezerros leiteiros. No terceiro experimento, foram utilizadas 67 fêmeas da raça Holandesa ou mestiças Girolando nos seguintes tratamentos: 1) CM de alta qualidade fornecido em volume correspondente a 10% PN; e 2) CM de alta qualidade (10% PN) + SC. O consumo e o desempenho não foram afetados pelo SC (P>0,05). O escore fecal também não foi afetado (P>0,05), mas observou-se maior frequência de animais com escore de desidratação nas 2ª e 3ª semana de vida, quando os escores fecais foram mais altos para todos os tratamentos. Houve uma maior porcentagem de animais suplementados sendo medicados devido a diarreias na segunda semana de vida. Houve maior frequência dos animais do grupo não suplementado com escore 1 de descarga nasal nas semanas 3 a 7. O consumo adicional de imunoglobulinas através do fornecimento de suplemento de colostro em associação ao colostro materno de alta qualidade não afetou o desempenho ou a saúde dos animais.

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Para comparar la eficacia para dejar de fumar de la terapia cognitiva conductual intensiva (TCC/I), la TCC/I con parches de nicotina (TCC/I+PN) y la terapia cognitiva conductual no intensiva con parches de nicotina (TCC/NI+PN) se realizó un estudio experimental de medidas repetidas con 235 fumadores adultos asignados aleatoriamente a uno de esos tres tratamientos. Entre los pacientes que completaron el tratamiento (n = 152) la TCC/I+PN mostró tasas de abstinencia a los 6 meses y al año, mayores que la TCC/NI+PN, mientras que la TCC/I mostró tasas de abstinencia que no eran significativamente diferentes de las de los otros dos tratamientos. Estos resultados sugieren que los parches de nicotina se deberían utilizar siempre con una terapia cognitiva conductual lo más intensiva posible y que la utilización de esta última terapia en solitario debería gozar de mayor relevancia en las guías clínicas para dejar de fumar.