130 research outputs found
Two primary methods of proving gas flow meters
Methods for determining mass flow rates of gases for use in calibrating gas flowmeter
Microparticle-mediated transfer of the viral receptors CAR and CD46, and the CFTR channel in a CHO cell model confers new functions to target cells
Cell microparticles (MPs) released in the extracellular milieu can embark plasma membrane and intracellular components which are specific of their cellular origin, and transfer them to target cells. The MP-mediated, cell-to-cell transfer of three human membrane glycoproteins of different degrees of complexity was investigated in the present study, using a CHO cell model system. We first tested the delivery of CAR and CD46, two monospanins which act as adenovirus receptors, to target CHO cells. CHO cells lack CAR and CD46, high affinity receptors for human adenovirus serotype 5 (HAdV5), and serotype 35 (HAdV35), respectively. We found that MPs derived from CHO cells (MP-donor cells) constitutively expressing CAR (MP-CAR) or CD46 (MP-CD46) were able to transfer CAR and CD46 to target CHO cells, and conferred selective permissiveness to HAdV5 and HAdV35. In addition, target CHO cells incubated with MP-CD46 acquired the CD46-associated function in complement regulation. We also explored the MP-mediated delivery of a dodecaspanin membrane glycoprotein, the CFTR to target CHO cells. CFTR functions as a chloride channel in human cells and is implicated in the genetic disease cystic fibrosis. Target CHO cells incubated with MPs produced by CHO cells constitutively expressing GFP-tagged CFTR (MP-GFP-CFTR) were found to gain a new cellular function, the chloride channel activity associated to CFTR. Time-course analysis of the appearance of GFP-CFTR in target cells suggested that MPs could achieve the delivery of CFTR to target cells via two mechanisms: the transfer of mature, membrane-inserted CFTR glycoprotein, and the transfer of CFTR-encoding mRNA. These results confirmed that cell-derived MPs represent a new class of promising therapeutic vehicles for the delivery of bioactive macromolecules, proteins or mRNAs, the latter exerting the desired therapeutic effect in target cells via de novo synthesis of their encoded proteins
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Synchrotron radiography studies of shear-induced dilation in semi-solid Al alloys and steels
An improved understanding of the response of solidifying microstructures to load is required to further minimize casting defects and optimize casting processes. This article overviews synchrotron radiography studies that directly measure the micromechanics of semisolid alloy deformation in a thin sample direct-shear cell. It is shown that shear-induced dilation (also known as Reynolds’ dilatancy) occurs in semisolid alloys with morphologies ranging from equiaxed-dendritic to globular, at solid fractions from the dendrite coherency point to ~90% solid, and it occurs in both Al alloys and carbon steels. Discrete-element method simulations that treat solidifying microstructures as granular materials are then used to explore the origins of dilatancy in semisolid alloys
Insight into the Mechanisms of Adenovirus Capsid Disassembly from Studies of Defensin Neutralization
Defensins are effectors of the innate immune response with potent antibacterial activity. Their role in antiviral immunity, particularly for non-enveloped viruses, is poorly understood. We recently found that human alpha-defensins inhibit human adenovirus (HAdV) by preventing virus uncoating and release of the endosomalytic protein VI during cell entry. Consequently, AdV remains trapped in the endosomal/lysosomal pathway rather than trafficking to the nucleus. To gain insight into the mechanism of defensin-mediated neutralization, we analyzed the specificity of the AdV-defensin interaction. Sensitivity to alpha-defensin neutralization is a common feature of HAdV species A, B1, B2, C, and E, whereas species D and F are resistant. Thousands of defensin molecules bind with low micromolar affinity to a sensitive serotype, but only a low level of binding is observed to resistant serotypes. Neutralization is dependent upon a correctly folded defensin molecule, suggesting that specific molecular interactions occur with the virion. CryoEM structural studies and protein sequence analysis led to a hypothesis that neutralization determinants are located in a region spanning the fiber and penton base proteins. This model was supported by infectivity studies using virus chimeras comprised of capsid proteins from sensitive and resistant serotypes. These findings suggest a mechanism in which defensin binding to critical sites on the AdV capsid prevents vertex removal and thereby blocks subsequent steps in uncoating that are required for release of protein VI and endosomalysis during infection. In addition to informing the mechanism of defensin-mediated neutralization of a non-enveloped virus, these studies provide insight into the mechanism of AdV uncoating and suggest new strategies to disrupt this process and inhibit infection
Using viral vectors as gene transfer tools (Cell Biology and Toxicology Special Issue: ETCS-UK 1 day meeting on genetic manipulation of cells)
In recent years, the development of powerful viral gene transfer techniques has greatly facilitated the study of gene function. This review summarises some of the viral delivery systems routinely used to mediate gene transfer into cell lines, primary cell cultures and in whole animal models. The systems described were originally discussed at a 1-day European Tissue Culture Society (ETCS-UK) workshop that was held at University College London on 1st April 2009. Recombinant-deficient viral vectors (viruses that are no longer able to replicate) are used to transduce dividing and post-mitotic cells, and they have been optimised to mediate regulatable, powerful, long-term and cell-specific expression. Hence, viral systems have become very widely used, especially in the field of neurobiology. This review introduces the main categories of viral vectors, focusing on their initial development and highlighting modifications and improvements made since their introduction. In particular, the use of specific promoters to restrict expression, translational enhancers and regulatory elements to boost expression from a single virion and the development of regulatable systems is described
Horse immunization with short-chain consensus α-neurotoxin generates antibodies against broad spectrum of elapid venomous species
Antivenoms are fundamental in the therapy for snakebites. In elapid venoms, there are toxins,
e.g. short-chain α-neurotoxins, which are quite abundant, highly toxic, and consequently play
a major role in envenomation processes. The core problem is that such α-neurotoxins are
weakly immunogenic, and many current elapid antivenoms show low reactivity towards them.
We have previously developed a recombinant consensus short-chain α-neurotoxin (ScNtx)
based on sequences from the most lethal elapid venoms from America, Africa, Asia, and
Oceania. Here we report that an antivenom generated by immunizing horses with ScNtx can
successfully neutralize the lethality of pure recombinant and native short-chain α-neurotoxins,
as well as whole neurotoxic elapid venoms from diverse genera such as Micrurus,
Dendroaspis, Naja, Walterinnesia, Ophiophagus and Hydrophis. These results provide a proof-ofprinciple
for using recombinant proteins with rationally designed consensus sequences as
universal immunogens for developing next-generation antivenoms with higher effectiveness
and broader neutralizing capacity.Universidad de Costa Rica/[741-B7-608]/UCR/Costa RicaDireccion General de Asuntos del Personal Academico/[IN203118]/DGAPA/MéxicoDireccion General de Asuntos del Personal Academico/[IN207218]/DGAPA/MéxicoUCR::Vicerrectoría de Investigación::Unidades de Investigación::Ciencias de la Salud::Instituto Clodomiro Picado (ICP
eHealth cognitieve gedragstherapie voor patiënten met chronische somatische aandoeningen
-based cognitive behavioral therapy for patients with chronic somatic conditions Many patients with chronic somatic conditions regularly experience impairments in physical and psychological functioning in their daily life. A way to support these patients is to offer online programs based on cognitive behavioral therapy (Internet-based cognitive behavioral therapy; ICBT). Although a substantial evidence base already exists regarding the effectiveness of ICBT in treating, for example, depressive symptoms, research on ICBT for chronic somatic conditions is still upcoming. In recent years, a growing number of randomized controlled trials were published that examined the effectiveness of ICBT in various chronic somatic conditions. To systematically and quantitatively evaluate the results of these studies, a metaanalysis was conducted, the results of which are discussed in this article. Results indicated that ICBT is also overall effective for chronic somatic conditions, with small to moderate effect sizes. Larger effects were occasionally found for disease-specific outcomes such as disease symptoms and disease-specific quality of life. A longer treatment duration was found to be marginally related to a larger decrease in depressive symptoms. In addition to the results of the meta-analysis, this article provides an overview of the recent literature regarding several clinically relevant ICBT topics: cost-effectiveness, guided ICBT interventions versus self-help, the role of treatment duration, and optimal design and implementation of eHealth interventions.FSW - Self-regulation models for health behavior and psychopathology - ou
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