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Objectively Assessed Physical Activity and Weight Loss Maintenance among Individuals Enrolled in a Lifestyle Intervention 下载免费PDF全文
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Sean I. Tracy Kristina Kakalacheva Jan D. Lünemann Katherine Luzuriaga Jaap Middeldorp David A. Thorley-Lawson 《Journal of virology》2012,86(22):12330-12340
Epstein-Barr virus infection has been epidemiologically associated with the development of multiple autoimmune diseases, particularly systemic lupus erythematosus and multiple sclerosis. Currently, there is no known mechanism that can account for these associations. The germinal-center (GC) model of EBV infection and persistence proposes that EBV gains access to the memory B cell compartment via GC reactions by driving infected cells to differentiate using the virus-encoded LMP1 and LMP2a proteins, which act as functional homologues of CD40 and the B cell receptor, respectively. The ability of LMP2a, when expressed in mice, to allow escape of autoreactive B cells suggests that it could perform a similar role in infected GC B cells, permitting the survival of potentially pathogenic autoreactive B cells. To test this hypothesis, we cloned and expressed antibodies from EBV+ and EBV− memory B cells present during acute infection and profiled their self- and polyreactivity. We find that EBV does persist within self- and polyreactive B cells but find no evidence that it favors the survival of pathogenic autoreactive B cells. On the contrary, EBV+ memory B cells express lower levels of self-reactive and especially polyreactive antibodies than their uninfected counterparts do. Our work suggests that EBV has only a modest effect on the GC process, which allows it to access and persist within a subtly unique niche of the memory compartment characterized by relatively low levels of self- and polyreactivity. We suggest that this might reflect an active process where EBV and its human host have coevolved so as to minimize the virus''s potential to contribute to autoimmune disease. 相似文献
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The diversity and distribution of modern benthic foraminifera has been extensively studied in order to aid the paleoecological
interpretation of their fossil record. Traditionally, foraminiferal species are identified based on morphological characters
of their organic, agglutinated or calcareous tests. Recently, however, new molecular techniques based on analysis of DNA sequences
have been introduced to study the genetic variation in foraminifera. Although the number of species for which DNA sequence
data exist is still very limited, it appears that morphology-based studies largely underestimated foraminiferal diversity.
Here, we present two examples of the use of DNA sequences to examine the diversity of benthic foraminifera. The first case
deals with molecular and morphological variations in the well-known and common calcareous genus Ammonia. The second case presents molecular diversity in the poorly documented group of monothalamous (single-chambered) foraminifera.
Both examples perfectly illustrate high cryptic diversity revealed in almost all molecular studies. Molecular results also
confirm that the majority of foraminiferal species have a restricted geographic distribution and that globally distributed
species are rare. This is in opposition to the theory that biogeography has no impact on the diversity of small-sized eukaryotes.
At least in the case of foraminifera, size does not seem to have a main impact on dispersal capacities. However, the factors
responsible for the dispersal of foraminiferal species and the extension of their geographic ranges remain largely unknown.
Special Issue: Protist diversity and geographic distribution. Guest editor: W. Foissner. 相似文献
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Raffaele Altara Yu-Mei Gu Harry A. J. Struijker-Boudier Lutgarde Thijs Jan A. Staessen W. Matthijs Blankesteijn 《PloS one》2015,10(10)
Detecting left ventricular (LV) dysfunction at an early stage is key in addressing the heart failure epidemic. In proteome profiling experiments in mice subjected either to aortic banding or sham, the circulating CXCR3 ligands monokine induced by interferon-γ (MIG) and interferon-γ inducible protein 10 (IP10) were 5 to 40 fold up-regulated at eight weeks. We assessed the diagnostic value of circulating NT-pro BNP and CXCR3 ligands (MIG, IP10, Interferon-inducible T-cell alpha chemo-attractant [I–TAC]) in patients with hypertension (≥140/90 mm Hg) associated with subclinical (n = 19) or symptomatic (n = 16) diastolic LV dysfunction on echocardiography and healthy controls. NT–pro BNP, MIG, IP10, I–TAC all increased (p ≤ 0.014) across the categories of worsening left ventricular dysfunction. In patients with symptomatic disease, MIG, IP10, and I–TAC increased 210% (p = 0.015), 140% (p = 0.007) and 120% (p = 0.035) more than NT-pro BNP. The optimal discrimination limits, obtained by maximizing Youden’s index were 246 pmol/L, 65 pg/mL, 93 pg/mL, and 24 pg/mL, respectively. The odds ratios associated with the four biomarkers were significant (p ≤ 0.010), ranging from 4.00 for IP10 to 9.69 for MIG. With adjustment for NT–pro BNP, the CXCR3 ligands retained significance (p ≤ 0.028). Adding optimized thresholds for the CXCR3 ligands to NT–pro BNP enhanced (p ≤ 0.014) the integrated discrimination improvement and the net reclassification improvement. In conclusion, congruent with the concept that inflammation plays a key role in the pathogenesis of LV dysfunction, MIG, IP10 and I–TAC add diagnostic accuracy over and beyond NT–pro BNP. 相似文献
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