158 research outputs found
Synthesis of an ordered mesoporous carbon with graphitic characteristics and its application for dye adsorption
An ordered mesoporous carbon (OMC) was prepared by a chemical vapor deposition technique using liquid petroleum gas (LPG) as the carbon source. During synthesis, LPG was effectively adsorbed in the ordered mesopores of SBA-15 silica and converted to a graphitic carbon at 800 °C. X-ray diffraction and nitrogen adsorption/desorption data and high-resolution transmission electron microscopy (HRTEM) of the OMC confirmed its ordered mesoporous structure. The OMC was utilized as an adsorbent in the removal of dyes from aqueous solution. A commercial powder activated carbon (AC) was also investigated to obtain comparative data. The efficiency of the OMC for dye adsorption was tested using acidic dye acid orange 8 (AO8) and basic dyes methylene blue (MB) and rhodamine B (RB). The results show that adsorption was affected by the molecular size of the dye, the textural properties of carbon adsorbent and surface-dye interactions. The adsorption capacities of the OMC for acid orange 8 (AO8), methylene blue (MB) and rhodamine B (RB) were determined to be 222, 833, and 233 mg/g, respectively. The adsorption capacities of the AC for AO8, MB, and RB were determined to be 141, 313, and 185 mg/ g, respectively. The OMC demonstrated to be an excellent adsorbent for the removal of MB from wastewater.Web of Scienc
Genetic Association and Expression Studies Indicate a Role of Toll-Like Receptor 8 in Pulmonary Tuberculosis
Despite high rates of exposure, only 5–10% of people
infected with Mycobacterium tuberculosis will develop active
tuberculosis (TB) disease, suggesting a significant role for genetic variation
in the human immune response to this infection. Here, we studied TB association
and expression of 18 genes involved in the Toll-like receptor (TLR) pathways.
Initially, we genotyped 149 sequence polymorphisms in 375 pulmonary TB patients
and 387 controls from Indonesia. We found that four polymorphisms in the
TLR8 gene on chromosome X showed evidence of association
with TB susceptibility in males, including a non-synonymous polymorphism
rs3764880 (Met1Val; P = 0.007,
odds ratio (OR) = 1.8, 95%
c.i. = 1.2–2.7). We genotyped these
four TLR8 polymorphisms in an independent collection of 1,837
pulmonary TB patients and 1,779 controls from Russia and again found evidence of
association in males (for rs3764880
P = 0.03,
OR = 1.2, 95%
c.i. = 1.02–1.48). Combined evidence
for association is
P = 1.2×10−3–6×10−4.
In addition, a quantitative PCR analysis indicated that TLR8
transcript levels are significantly up-regulated in patients during the acute
phase of disease
(P = 9.36×10−5),
relative to baseline levels following successful chemotherapy. A marked increase
in TLR8 protein expression was also observed directly in differentiated
macrophages upon infection with M. bovis bacille
Calmette-Guérin (BCG). Taken together, our results provide evidence,
for the first time, of a role for the TLR8 gene in
susceptibility to pulmonary TB across different populations
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Silver Clusters of Five Atoms as Highly Selective Antitumoral Agents Through Irreversible Oxidation of Thiols
Abstract: Low atomicity clusters present properties dependent on the size, due to the quantum confinement, with well‐defined electronic structures and high stability. Here it is shown that Ag5 clusters catalyze the complete oxidation of sulfur to S+6. Ag5 catalytic activity increases with different oxidant species in the order O2 ≪ H2O2 < OH•. Selective oxidation of thiols on the cysteine residues of glutathione and thioredoxin is the primary mechanism human cells have to maintain redox homeostasis. Contingent upon oxidant concentration, Ag5 catalyzes the irreversible oxidation of glutathione and thioredoxin, triggering apoptosis. Modification of the intracellular environment to a more oxidized state to mimic conditions within cancer cells through the expression of an activated oncogene (HRASG12V) or through ARID1A mutation, sensitizes cells to Ag5 mediated apoptosis. While cancers evolve to evade treatments designed to target pathways or genetic mutations that drive them, they cannot evade a treatment that takes advantage of aberrant redox homeostasis, which is essential for tumor progression and metastasis. Ag5 has antitumor activity in mice with orthotopic lung tumors reducing primary tumor size, and the burden of affected lymphatic nodes. The findings suggest the unique intracellular redox chemistry of Ag5 may lead to new redox‐based approaches to cancer therapy
Sensitivity of South American tropical forests to an extreme climate anomaly
The tropical forest carbon sink is known to be drought sensitive, but it is unclear which forests are the most vulnerable to extreme events. Forests with hotter and drier baseline conditions may be protected by prior adaptation, or more vulnerable because they operate closer to physiological limits. Here we report that forests in drier South American climates experienced the greatest impacts of the 2015–2016 El Niño, indicating greater vulnerability to extreme temperatures and drought. The long-term, ground-measured tree-by-tree responses of 123 forest plots across tropical South America show that the biomass carbon sink ceased during the event with carbon balance becoming indistinguishable from zero (−0.02 ± 0.37 Mg C ha−1 per year). However, intact tropical South American forests overall were no more sensitive to the extreme 2015–2016 El Niño than to previous less intense events, remaining a key defence against climate change as long as they are protected
Rate and duration of hospitalisation for acute pulmonary embolism in the real-world clinical practice of different countries : Analysis from the RIETE registry
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