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Based on the availability of compounds targeting these proteins and inhibiting them, in this study we used modulators such as genistein, an isoflavone able to inhibit ABCG2; deferoxamine, which chelate iron ions impairing FECH activity and tin protoporphyrin IX (SnPP), the specific HO-1 inhibitor. Finally, we showed the efficacy of a precisely tuned pharmacological treatment in increasing PpIX accumulation and consequently fluorescence in glioblastoma cells. This strategy may translate in more sensitive tracing of tumor cells in-vivo and improved FIGR of HGGs and possibly low grade gliomas (LGGs). The paper examines the process of carbonization of waste from corncobs at carbonization temperatures within a range of 300-700 °C in a laboratory-scale reactor. These studies are important because of reductions in wood resources for the preparation of barbecue charcoal due to environmental protection laws and legislative processes in many countries aimed at the protection of forest resources. The results presented here include the physical and chemical properties of char as a function of carbonization temperatures as well as the characteristics of the heating rate of a fixed bed of corncobs and within a single corncob particle. The combustion characteristics of the char were determined using thermogravimetric analysis. The results show that the volatile matter yield of the char decreased, whereas the fixed carbon yield and higher heating value (HHV) increased, along with higher carbonization temperatures. TGA analysis shows that the ignition and burnout temperature of the char increased, with a simultaneous decrease in the value of the S index, along with increased carbonization temperatures. The results show that carbonization temperatures of 500 °C and above meet the standards for the production of barbecue charcoal. BACKGROUND Over recent decades, the number of students diagnosed with learning disabilities and/or attention deficit hyperactivity disorders has substantially increased. These students face various challenges and experience stress when receiving higher education. AIMS The purpose of this study was to compare two non-pharmacological interventions mindfulness and device-guided slow breathing, with a control group. METHODS Seventy-three students (age = 25.76, std. dev = 3.10) with attention problems and/or learning disabilities were randomly assigned to three groups mindfulness meditation, device guided breathing practice and waiting-list control. Before and after the intervention physiological and psychological measures were collected. RESULTS Our results show that only mindfulness practice improved awareness of the present moment and decreased hyperactivity and inattention. Furthermore, both mindfulness and practice with device-guided breathing were associated with stress reduction, as shown by an increase in the galvanic skin response only in the control group. CONCLUSIONS Implementation of the study results may lead to an advance in treating attention deficit disorders and learning disabilities, especially among higher education students. PURPOSE This study aimed to describe and analyze psychomotor functions in patients with drug-resistant epilepsy and identify factors associated with psychomotor deficits. METHODS We performed a prospective case-control study comparing psychomotor skill performances in 40 adult patients and 80 healthy individuals between October 2017 and March 2018. Psychomotor functions were examined in both patients and controls using a full set of specific tests (Rey-Osterrieth complex figure test, Zazzo's cancelation task, Piaget-Head test, and paired images test). Potential risk factors for psychomotor deficit were assessed in the patient group using a multivariate analysis. RESULTS The two groups did not differ in age, sex, dominant hand, and level of education. Compared with the control group, patients with drug-resistant epilepsy showed worse performance on global psychomotor functions and, more selectively, in assessments exploring perceptual organization and visuospatial memory, laterality awareness, sustained attention, concentration, visual scanning, inhibition, and impulsivity. In the patient group, psychomotor deficits were associated with the severity of epilepsy (epileptic encephalopathy, high seizure frequency, heavy antiepileptic medication). 2-Deoxy-D-glucose cell line CONCLUSION Psychomotor deficits could therefore be systematically detected in patients with drug-resistant epilepsy in order to provide psychomotor therapy and improve quality of life. Diet-induced obesity is the most widely used animal model for studying nonalcoholic fatty liver disease (NAFLD). However, the physiological effects of a high-fat diet (HFD) are inconsistent between different studies. To elucidate this mystery, mice raised with conventional (CONV), specific pathogen-free (SPF) and gentamicin (G) treatments and fed with standard diet (STD) or HFD were analyzed in terms of their physiology, gut microbiota composition, hepatic steatosis and inflammation. Serum biochemistry showed increased levels of cholesterol and aspartate aminotransferase in the G-STD and CONV-HFD groups, respectively. The CONV-HFD group exhibited more inflammatory foci compared to the SPF-HFD and G-HFD groups. Furthermore, immunohistochemistry staining revealed the infiltration of Kupffer cells in the liver, consistent with increased mRNA levels of MCP-1, CD36 and TLR4. Principal coordinate analysis and the cladogram of LEfSe showed that the distinguished clusters of gut microbiota were dependent on housing conditions. The Rikenellaceae, F16 and Desulfovibrionaceae were strongly correlated with hepatic inflammation. Otherwise, higher NAFLD activity score correlated with altered relative abundances of Bacteroidetes and Firmicutes. In conclusion, gut microbiota varying with housing condition may be pivotal for the host response to HFD. BACKGROUND Maslinic acid (MA), a natural triterpenoid from Olea europaea, prevents oxidative stress and pro-inflammatory cytokine generation. High mobility group box 1 (HMGB1) has been recognized as a late mediator of sepsis, and the inhibition of the release of HMGB1 and the recovery of vascular barrier integrity have emerged as attractive therapeutic strategies for the management of sepsis. METHODS We tested the hypothesis that MA induces sirtuin 1 and heme oxygenase-1, which inhibit the release of HMGB1 in lipopolysaccharide (LPS)-stimulated cells, thus inhibiting HMGB1-induced hyperpermeability and increasing the survival of septic mice. MA was administered after LPS or HMGB1 challenge, and the antiseptic activity of MA was determined based on permeability, the activation of pro-inflammatory proteins, and the production of markers for tissue injury in HMGB1-activated human umbilical vein endothelial cells (HUVECs) and a cecal ligation and puncture (CLP)-induced sepsis mouse model. RESULTS MA significantly reduced the release of HMGB1 in LPS-activated HUVECs and attenuated the CLP-induced release of HMGB1.

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