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Transcriptome evaluation uncovered important family genes linked to flavonoid fat burning capacity in response to jasmonic acid within pigeon pea (Cajanus cajan (M.) Millsp.).
The transfection efficiency was found to be around 60%. The expression of M, N, and E proteins was demonstrated by western blotting. The SERS spectra of the total proteins of transfected cells were obtained using a gold nanoparticle-based SERS substrate. Proteins of the transfected cells have peak positions at 646, 680, 713, 768, 780, 953, 1014, 1046, 1213, 1243, 1424, 2102, and 2124 cm-1. To reveal spectral differences between plasmid transfected cells and non-transfected control cells, PCA was applied to the spectra. The results demonstrated that SERS coupled with PCA might be a favorable and reliable way to develop a rapid, low-cost, and promising technique for the detection of COVID-19.Minimally invasive core needle biopsies for medical diagnoses have become increasingly common for many diseases. Although tissue cores can yield more diagnostic information than fine needle biopsies and cytologic evaluations, there is no rapid assessment at the point-of-care for intact tissue cores that is low-cost and non-destructive to the biopsy. We have developed a proof-of-concept 3D printed millifluidic histopathology lab-on-a-chip device to automatically handle, process, and image fresh core needle biopsies. This device, named CoreView, includes modules for biopsy removal from the acquisition tool, transport, staining and rinsing, imaging, segmentation, and multiplexed storage. Reliable removal from side-cutting needles and bidirectional fluid transport of core needle biopsies of five tissue types has been demonstrated with 0.5 mm positioning accuracy. Automation is aided by a MATLAB-based biopsy tracking algorithm that can detect the location of tissue and air bubbles in the channels of the millifluidic chip. With current and emerging optical imaging technologies, CoreView can be used for a rapid adequacy test at the point-of-care for tissue identification as well as glomeruli counting in renal core needle biopsies.The nanoscale structure of molecular assemblies plays a major role in many (μ)-biological mechanisms. Molecular crystals are one of the most simple of these assemblies and are widely used in a variety of applications from pharmaceuticals and agrochemicals, to nutraceuticals and cosmetics. The collective vibrations in such molecular crystals can be probed using terahertz spectroscopy, providing unique characteristic spectral fingerprints. However, the association of the spectral features to the crystal conformation, crystal phase and its environment is a difficult task. We present a combined computational-experimental study on the incorporation of water in lactose molecular crystals, and show how simulations can be used to associate spectral features in the THz region to crystal conformations and phases. Using periodic DFT simulations of lactose molecular crystals, the role of water in the observed lactose THz spectrum is clarified, presenting both direct and indirect contributions. A specific experimental setup is built to allow the controlled heating and corresponding dehydration of the sample, providing the monitoring of the crystal phase transformation dynamics. Besides the observation that lactose phases and phase transformation appear to be more complex than previously thought - including several crystal forms in a single phase and a non-negligible water content in the so-called anhydrous phase - we draw two main conclusions from this study. Firstly, THz modes are spread over more than one molecule and require periodic computation rather than a gas-phase one. Secondly, hydration water does not only play a perturbative role but also participates in the facilitation of the THz vibrations.Douchi is a popular soy-fermented food that originated in China with documented hypoglycemic effects. However, the responsible molecules and the mechanism underlying their beneficial effects remain unclear. Therefore, in this study, we aimed to identify the responsible peptide(s) in douchi. see more A peptide extract of douchi was isolated step-wise by the C18 Sep-Pak technique, size exclusion chromatography, and semi-preparative liquid chromatography, and then the peptides were sequenced by UPLC-MS/MS. A total of 21 peptides were identified, of which three peptides, P3 (HPFR), P5 (VY), and P7 (SFLLR), were shown to improve glucose uptake in L6 cells. Both P5 and P7 increased glucose transporter 4 (GLUT4) translocation via the activation of AMPK and MAPK signaling pathways, but not the insulin-signaling pathway; adding an AMPK or an MAPK inhibitor prevented P5 or P7-induced glucose uptake as well as AMPK and MAPK activation. Our study showed that P5 and P7 could promote glucose uptake via AMPK and MAPK signaling pathways. In this study, two hypoglycemic peptides from douchi have been characterized for the first time.A detailed investigation of ligand exchange between iodine(I) ions in [N⋯I⋯N]+ halogen-bonded complexes is presented. Ligand exchange reactions were conducted to successfully confirm whether iodine(I) complex formation, via the classical [N⋯Ag⋯N]+ to [N⋯I⋯N]+ cation exchange reaction from their analogous Ag+ complexes, could be determined solely by using 1H NMR spectroscopy. In instances where the formation of the iodine(I) complex was unclear or in low yield by the traditional cation exchange reaction, a ligand exchange reaction was used to form the desired iodine(I) complexes in a quantitative manner. Mixing two homoleptic [N⋯I⋯N]+ iodine(I) complexes in 1  1 ratio was found to undergo a statistical ligand exchange, with 1H NMR studies showing that the preferred formation of the relative heteroleptic [N1⋯I⋯N2]+ complexes increases with greater differences in the Lewis basicities of two XB acceptors of the complexes involved.Among the two-dimensional (2D) materials family, layered double hydroxides (LDHs) represent a key member due to their unparalleled chemical versatility. In particular, Fe-based LDHs are distinguished candidates due to their high efficiency as oxygen evolution reaction (OER) electrocatalysts. Herein, we have selected MgFe-based LDH phases as model systems in order to decipher whether Fe-clustering exerts an effect on the OER performance. For that, we have optimized hydrothermal synthesis by using triethanolamine (TEA) as the chelating agent. The magnetic characterisation allows us to identify the Fe-clustering degree by following both magnetic susceptibility as well as magnetization values at 2 K. Thanks to this, we demonstrated that TEA induces an increment in Fe-clustering. Electrochemical OER measurements show that both samples behave identically by using glassy carbon electrodes. Interestingly, when the samples are tested in the most commonly employed electrode, nickel foam, striking differences arise. The sample exhibiting a lower Fe-clustering behaves as a better electrocatalyst with a reduction of the overpotential values of more than 50 mV to reach 100 mA cm-2, as a consequence of a favoured surface transformation of MgFe-LDHs phases into more reactive oxyhydroxide NiFe-based phases during the electrochemical tests. Hence, this work alerts about the importance of the electrocatalyst-electrode collector interactions which can induce misinterpretations in the OER performance.Salmonella is one of the most common pathogens associated with food-borne illness resulting from seafood consumption. Herein, an accelerated strand exchange amplification (ASEA) requiring only a pair of primers and one polymerase was first reported for ultra-fast, one-step RNA amplification detection of Salmonella in seafood. The ASEA method could detect Salmonella typhimurium DNA in dilutions as low as 10 copies per reaction and displayed good specificity for Salmonella under the interference of a variety of food-borne pathogens. In particular, ASEA could detect RNA in one step without additional reverse transcription. The detection limit for Salmonella in artificially contaminated oyster was 1 CFU mL-1 following 12 h of enrichment. Moreover, excellent performance of this assay was observed with 99.02% consistency relative to real-time PCR through actual sample detection. Combined with the rapid nucleic acid extraction method, the entire detection process could be completed within 20 min. Therefore, this assay opens up new prospects for the detection of food-borne pathogens in seafood with its rapidity, which would be very beneficial for food safety supervision and pathogen detection of high-throughput samples.[This corrects the article DOI 10.1007/JHEP05(2020)143.].[This corrects the article DOI 10.1093/ofid/ofab466.000.].
The aim of this study was to estimate the durability of tetanus toxoid specific seroprotection in a cohort of people with HIV (PWH).

A cross-sectional study.

PWH with a last date of tetanus toxoid booster available were identified. Tetanus toxoid specific IgG were detected using commercial ELISA kit. Durability of seroprotection was estimated using a linear regression model and analyzed according to the country of birth. The impact of baseline parameters at the time of vaccination (CD4 + T cell count, viral load, and antiretroviral therapy) was also assessed.

One hundred three individuals were included. The median duration between last tetanus toxoid booster and sampling was 5.6years (IQR 2.6-8.9). Using a linear regression model, half-life of tetanus toxoid specific antibody was estimated at 9.9 years [95% confidence interval (95% CI 5.5-50)] in the whole cohort. Half-life was reduced in individuals born outside Europe 4.4 years (95% CI 2.9-8.5). PWH born outside Europe had lower CD4 + T cell count at the time of immunization and more frequently a CD4 + T cell count nadir less than 200 cells/μl before vaccination.

PWH born outside Europe have lower half-life of tetanus toxoid specific antibody as compared to previous study performed in the general population. Possible causes include lower nadir or current CD4 + T cell count or under-immunization status in country of origin before migration. Longer interval of booster vaccination, as recommended in the general population, might not be appropriate in this subgroup of PWH.
PWH born outside Europe have lower half-life of tetanus toxoid specific antibody as compared to previous study performed in the general population. Possible causes include lower nadir or current CD4 + T cell count or under-immunization status in country of origin before migration. Longer interval of booster vaccination, as recommended in the general population, might not be appropriate in this subgroup of PWH.
To investigate unmet needs for HIV ancillary care services by health care coverage type and Ryan White HIV/AIDS Program (RWHAP) assistance among adults with HIV.

We analyzed data using the 2017-2019 cycles of the CDC Medical Monitoring Project, an annual, cross-sectional study designed to produce nationally representative estimates of characteristics among adults with diagnosed HIV.

Unmet need was defined as needing, but not receiving, ≥1 HIV ancillary care service. We estimated prevalence ratios (PRs) and 95% confidence intervals (CIs) using predicted marginal means to examine associations between health care coverage type and unmet needs for HIV ancillary care services, adjusting for age. Associations were stratified by receipt of RWHAP assistance.

Unmet needs for HIV ancillary care services were highest among uninsured persons (58.7%) and lowest among those with private insurance living ≥400% of the federal poverty level (FPL; 21.7%). Uninsured persons who received RWHAP assistance were less likely than those who did not receive RWHAP assistance to have unmet needs for HIV clinical support services (aPR 0.
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