334 research outputs found
Increase in national intravenous thrombolysis rates for ischaemic stroke between 2005 and 2012: Is bigger better?
Background: Intravenous thrombolytic therapy after ischaemic stroke significantly reduces mortality and morbidity. Actual thrombolysis rates are disappointingly low in many western countries. It has been suggested that higher patient volume is related to shorter door-to-needle-time (DNT) and increased thrombolysis rates. We address a twofold research question: a) What are trends in national thrombolysis rates and door-to-needle times in the Netherlands between 2005-2012? and b) Is there a relationship between stroke patient volume per hospital, thrombolysis rates and DNT? Methods: We used data from the Stroke Knowledge Network Netherlands dataset. Information on volume, intravenous thrombolysis rates, and admission characteristics per hospital is acquired through yearly surveys, in up to 65 hospitals between January 2005 and December 2012. We used linear regression to determine a possible relationship between hospital stroke admission volume, hospital thrombolysis rates and mean hospital DNT, adjusted for patient characteristics. Results: Information on 121.887 stroke admissions was available, ranging from 7.393 admissions in 2005 to 24.067 admissions in 2012. Mean national thrombolysis rate increased from 6.4 % in 2005 to 14.6 % in 2012. Patient characteristics (mean age, gender, type of stroke) remained stable. Mean DNT decreased from 72.7 min in 2005 to 41.4 min in 2012. Volume of stroke admissions was not an independent predictor for mean thrombolysis rate nor for mean DNT. Conclusion: Intravenous thrombolysis rates in the Netherlands more than doubled between 2005 and 2012, in parallel with a large decline in mean DNT. We found no convincing evidence for a relationship between stroke patient volume per hospital and thrombolysis rate or DNT
Haptoglobin as an Indicator for Animal Welfare: Effects of Different Hygienic Conditions and Transport Stress on Haptoglobin Plasma Concentration
MicroRNA expression profiling of porcine mammary epithelial cells after challenge with Escherichia coli in vitro
Background Coliform mastitis is a symptom of postpartum dysgalactia syndrome
(PDS), a multifactorial infectious disease of sows. Our previous study showed
gene expression profile change after bacterial challenge of porcine mammary
epithelial cells (PMECs). These mRNA expression changes may be regulated
through microRNAs (miRNAs) which play critical roles in biological processes.
Therefore, miRNA expression profile was investigated in PMECs. Results PMECs
were isolated from three lactating sows and challenged with heat-inactivated
potential mastitis-causing pathogen Escherichia coli (E. coli) for 3 h and 24
h, in vitro. At 3 h post-challenge with E. coli, target gene prediction
identified a critical role of miRNAs in regulation of host immune responses
and homeostasis of PMECs mediated by affecting pathways including cytokine
binding (miR-202, miR-3277, miR-4903); IL-10/PPAR signaling (miR-3277,
miR-4317, miR-548); and NF-ĸB/TNFR2 signaling (miR-202, miR-2262, miR-885-3p).
Target genes of miRNAs in PMECs at 24 h were significantly enriched in
pathways associated with interferon signaling (miR-210, miR-23a, miR-1736) and
protein ubiquitination (miR-125, miR-128, miR-1280). Conclusions This study
provides first large-scale miRNA expression profiles and their predicted
target genes in PMECs after contact with a potential mastitis-causing E. coli
strain. Both, highly conserved miRNAs known from other species as well as
novel miRNAs were identified in PMECs, representing candidate predictive
biomarkers for PDS. Time-dependent pathogen clearance suggests an important
role of PMECs in inflammatory response of the first cellular barrier of the
porcine mammary gland
Scans for signatures of selection in Russian cattle breed genomes reveal new candidate genes for environmental adaptation and acclimation
Domestication and selective breeding has resulted in over 1000 extant cattle breeds. Many of these breeds do not excel in important traits but are adapted to local environments. These adaptations are a valuable source of genetic material for efforts to improve commercial breeds. As a step toward this goal we identified candidate regions to be under selection in genomes of nine Russian native cattle breeds adapted to survive in harsh climates. After comparing our data to other breeds of European and Asian origins we found known and novel candidate genes that could potentially be related to domestication, economically important traits and environmental adaptations in cattle. The Russian cattle breed genomes contained regions under putative selection with genes that may be related to adaptations to harsh environments (e.g., AQP5, RAD50, and RETREG1). We found genomic signatures of selective sweeps near key genes related to economically important traits, such as the milk production (e.g., DGAT1, ABCG2), growth (e.g., XKR4), and reproduction (e.g., CSF2). Our data point to candidate genes which should be included in future studies attempting to identify genes to improve the extant breeds and facilitate generation of commercial breeds that fit better into the environments of Russia and other countries with similar climates
The three-way relationship of polymorphisms of porcine genes encoding terminal complement components, their differential expression, and health-related phenotypes
<p>Abstract</p> <p>Background</p> <p>The complement system is an evolutionary ancient mechanism that plays an essential role in innate immunity and contributes to the acquired immune response. Three modes of activation, known as classical, alternative and lectin pathway, lead to the initiation of a common terminal lytic pathway. The terminal complement components (TCCs: C6, C7, C8A, C8B, and C9) are encoded by the genes <it>C6</it>, <it>C7</it>, <it>C8A</it>, <it>C8B</it>, <it>C8G</it>, and <it>C9</it>. We aimed at experimentally testing the porcine genes encoding TCCs as candidate genes for immune competence and disease resistance by addressing the three-way relationship of genotype, health related phenotype, and mRNA expression.</p> <p>Results</p> <p>Comparative sequencing of cDNAs of animals of the breeds German Landrace, Piétrain, Hampshire, Duroc, Vietnamese Potbelly Pig, and Berlin Miniature Pig (BMP) revealed 30 SNPs (21 in protein domains, 12 with AA exchange). The promoter regions (each ~1.5 kb upstream the transcription start sites) of <it>C6</it>, <it>C7</it>, <it>C8A</it>, <it>C8G</it>, and <it>C9</it> exhibited 29 SNPs. Significant effects of the TCC encoding genes on hemolytic complement activity were shown in a cross of Duroc and BMP after vaccination against Mycoplasma hyopneumoniae, Aujeszky disease virus and PRRSV by analysis of variance using repeated measures mixed models. Family based association tests (FBAT) confirmed the associations. The promoter SNPs were associated with the relative abundance of TCC transcripts obtained by real time RT-PCR of 311 liver samples of commercial slaughter pigs. Complement gene expression showed significant relationship with the prevalence of acute and chronic lung lesions.</p> <p>Conclusions</p> <p>The analyses point to considerable variation of the porcine TCC genes and promote the genes as candidate genes for disease resistance.</p
Clinical Reasoning and Case-Based Decision Making: The Fundamental Challenge to Veterinary Educators
Medical students’ preparedness for professional activities in early clerkships
Background Sufficient preparedness is important for transitions to workplace
participation and learning in clinical settings. This study aims to analyse
medical students’ preparedness for early clerkships using a three-dimensional,
socio-cognitive, theory-based model of preparedness anchored in specific
professional activities and their supervision level. Methods Medical students
from a competency-based undergraduate curriculum were surveyed about
preparedness for 21 professional activities and level of perceived supervision
during their early clerkships via an online questionnaire. Preparedness was
operationalized by the three dimensions of confidence to carry out clerkship
activities, being prepared through university teaching and coping with failure
by seeking support. Factors influencing preparedness and perceived stress as
outcomes were analysed through step-wise regression. Results Professional
activities carried out by the students (n = 147; 19.0%) and their supervision
levels varied. While most students reported high confidence to perform the
tasks, the activity-specific analysis revealed important gaps in preparation
through university teaching. Students regularly searched for support in case
of difficulty. One quarter of the variance of each preparedness dimension was
explained by self-efficacy, supervision quality, amount of prior clerkship
experience and nature of professional activities. Preparedness contributed to
predicting perceived stress. Conclusions The applied three-dimensional concept
of preparedness and the task-specific approach provided a detailed and
meaningful view on medical students’ workplace participation and experiences
in early clerkships
Expression Pattern of Kv11 (Ether à-go-go-Related Gene; erg) K+ Channels in the Mouse Retina
In response to light, most retinal neurons exhibit gradual changes in membrane potential. Therefore K+ channels that mediate threshold currents are well-suited for the fine-tuning of signal transduction. In the present study we demonstrate the expression of the different Kv11 (ether-à-go-go related gene; erg) channel subunits in the human and mouse retina by RT PCR and quantitative PCR, respectively. Immunofluorescence analysis with cryosections of mouse retinae revealed the following local distribution of the three Kv11 subunits: Kv11.1 (m-erg1) displayed the most abundant expression with the strongest immunoreactivity in rod bipolar cells. In addition, immunoreactivity was found in the inner part of the outer plexiform layer (OPL), in the inner plexiform layer (IPL) and in the inner segments of photoreceptors. Immunoreactivity for Kv11.2 (m-erg2) was observed in the outer part of the OPL and throughout the IPL. Double-labeling for vGluT1 or synaptophysin indicated a mainly presynaptic localization of Kv11.2. While no significant staining for Kv11.3 (m-erg3) was detected in the neuronal retina, strong Kv11.3 immunoreactivity was present in the apical membrane of the retinal pigment epithelium. The different expression levels were confirmed by real-time PCR showing almost equal levels of Kv11.1 and Kv11.2, while Kv11.3 mRNA expression was significantly lower. The two main splice variants of Kv11.1, isoforms a and b were detected in comparable levels suggesting a possible formation of cGMP/cGK-sensitive Kv11.1 channels in photoreceptors and rod bipolar cells. Taken together, the immunohistological results revealed different expression patterns of the three Kv11 channels in the mouse retina supposing distinct physiological roles
Microarray-based transcriptional profiling of Eimeria bovis-infected bovine endothelial host cells
Within its life cycle Eimeria bovis undergoes a long lasting intracellular development into large macromeronts in endothelial cells. Since little is known about the molecular basis of E. bovis-triggered host cell regulation we applied a microarray-based approach to define transcript variation in bovine endothelial cells early after sporozoite invasion (4 h post inoculation (p.i.)), during trophozoite establishment (4 days p.i.), during early parasite proliferation (8 days p.i.) and towards macromeront maturation (14 days p.i.). E. bovis infection led to significant changes in the abundance of many host cell gene transcripts. As infection progressed, the number of regulated genes increased such that 12, 45, 175 and 1184 sequences were modulated at 4 h, 4, 8 and 14 days p.i., respectively. These genes significantly interfered with several host cell functions, networks and canonical pathways, especially those involved in cellular development, cell cycle, cell death, immune response and metabolism. The correlation between stage of infection and the number of regulated genes involved in different aspects of metabolism suggest parasite-derived exploitation of host cell nutrients. The modulation of genes involved in cell cycle arrest and host cell apoptosis corresponds to morphological in vitro findings and underline the importance of these aspects for parasite survival. Nevertheless, the increasing numbers of modulated transcripts associated with immune responses also demonstrate the defensive capacity of the endothelial host cell. Overall, this work reveals a panel of novel candidate genes involved in E. bovis-triggered host cell modulation, providing a valuable tool for future work on this topic
High-density genotyping reveals signatures of selection related to acclimation and economically important traits in 15 local sheep breeds from Russia
Domestication and centuries of selective breeding have changed genomes of sheep breeds to respond to environmental challenges and human needs. The genomes of local breeds, therefore, are valuable sources of genomic variants to be used to understand mechanisms of response to adaptation and artificial selection. As a step toward this we performed a high-density genotyping and comprehensive scans for signatures of selection in the genomes from 15 local sheep breeds reared across Russia
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