Παρασκευή 1 Φεβρουαρίου 2019

Novel copolyhydrazides and copolyoxadiazoles based on 1,4-phenyl linkage and 1,3,4-thiadiazole moiety in the polymer Main chain to induce glass transition and to improve the thermal stability, solubility, and antimicrobial activity

Abstract

Polyhydrazides (PHs) and polyoxadiazoles (PODs) have broad potential applications, but PHs are generally not high-temperature resistant and PODs are commonly insoluble in organic solvents, degrade before melting, and do not show glass-transition temperature (Tg). These limitations make their processing quite difficult. To overcome these shortcomings, novel copolyhydrazides (CPHs) and copolyoxadiazoles (CPODs) based on 1,4-phenyl linkage and 1,3,4-thiadiazole moiety in the main chain have been synthesized. Thermogravimetric analysis (TGA) and differential scanning calorimetry (DSC) were performed to assess the polymers thermal behavior. Also, the crystalline structure and surface morphology were examined using X-ray diffraction (XRD) and scanning electron microscopy (SEM). In addition, their solubility, viscosity, UV-visible absorption, antimicrobial characteristics were studied. Most of the new CPHs and CPODs showed high thermal stability and good solubility in polar aprotic solvents. Moreover, the CPODs melted and showed Tg and fortunately their Tg values are still high (>227 °C), so they are suitable for use under extreme conditions. It seems that incorporating 1,4-phenyl linkage and 1,3,4-thiadiazole moiety into the polymer main chain enhanced the solubility and suppressed the crystallinity, while kept the thermal stability. Furthermore, the CPODs gave large antibacterial and antifungal activities, confirming the possibility to be used in medicinal fields.

Graphical abstract

Effects of bulky moieties on the polymer properties.


http://bit.ly/2TrsDXA

Πέμπτη 31 Ιανουαρίου 2019

The Role of PI3K/Akt and ERK in Neurodegenerative Disorders

Abstract

Disruption of Akt and Erk-mediated signal transduction significantly contributes in the pathogenesis of various neurodegenerative diseases (NDs), such as Parkinson's disease, Alzheimer's diseases, Huntington's disease, and many others. These regulatory proteins serve as the regulator of cell survival, motility, transcription, metabolism, and progression of the cell cycle. Therefore, targeting Akt and Erk pathway has been proposed as a reasonable approach to suppress ND progression. This review has emphasized on involvement of Akt/Erk cascade in the neurodegeneration. Akt has been reported to regulate neuronal toxicity through its various substrates like FOXos, GSK3β, and caspase-9 etc. Akt is also involved with PI3K in signaling pathway to mediate neuronal survival. ERK is another kinase which also regulates proliferation, differentiation, and survival of the neural cell. There has also been much progress in developing a therapeutic molecule targeting Akt and Erk signaling. Therefore, improved understanding of the molecular mechanism behind the regulatory aspect of Akt and Erk networks can make strong impact on exploration of the neurodegenerative disease pathogenesis.



http://bit.ly/2BcLvCz

Reply to the Letter to the Editor of Fei Jia et al. concerning “Comparison of combined anterior–posterior approach versus posterior-only approach in neuromuscular scoliosis: a systematic review and meta-analysis” by Shao ZX, et al. [Eur Spine J; (2018) 27(9): 2213–2222]



http://bit.ly/2sYmZAj

TiO 2 nanotube arrays modified with nanoparticles of platinum group metals (Pt, Pd, Ru): enhancement on photoelectrochemical performance

Abstract

Highly ordered TiO2 nanotube arrays (TiO2 NTs) were synthesized by anodization method using a titanium foil and further modified with nanoparticles (Ø = 2~10 nm) of three platinum group metals (that is, platinum, palladium, and ruthenium) through potentiostatic pulsed electrodeposition method to obtain the composite material. Compared with pure TiO2 NTs, all the three composite samples (M-TiO2 NTs, M = Pt, Pd, Ru) showed different enhancement effects on the light responses, as well as different photoelectrochemical performances. In this study, the performance of M-TiO2 NTs, which worked as photoanode and cathode, was investigated. Ru-TiO2 exhibited the best degradation yield (~ 85.8%) when applied as photoanode under visible light illumination, which indicated the platinum group metal could also be induced under visible irradiation, not just served as the co-catalyst. M-TiO2 NTs as cathode were evaluated under the hydrogen evolution reaction (HER). The three M-TiO2 NT electrodes showed an improved efficiency over pure TiO2 NTs, while Pt-TiO2 NTs performed even better (without any sacrificial agent) with higher Faradic efficiency than platinum electrode in the photoelectrocatalytic hydrogen production, which could be explained by the uniform and fine metal nanoparticles on the surface of TiO2 NTs to offer abundant active sites for the reaction.

Graphical abstract

In this paper, TiO2 nanotube arrays loaded with nanoparticles of platinum group metals have been explored on their enhancement of photoelectrocatalytic activity. Platinum group metals served as co-catalyst in the surface of TiO2 nanotubes and show great variations in different reactions.


http://bit.ly/2Gds9Ap

Verification of image quality and quantification in whole-body positron emission tomography with continuous bed motion

Abstract

Objective

Whole-body dynamic imaging using positron emission tomography (PET) facilitates the quantification of tracer kinetics. It is potentially valuable for the differential diagnosis of tumors and for the evaluation of therapeutic efficacy. In whole-body dynamic PET with continuous bed motion (CBM) (WBDCBM-PET), the pass number and bed velocity are key considerations. In the present study, we aimed to investigate the effect of a combination of pass number and bed velocity on the quantitative accuracy and quality of WBDCBM-PET images.

Methods

In this study, WBDCBM-PET imaging was performed at a body phantom using seven bed velocity settings in combination with pass numbers. The resulting image quality was evaluated. For comparing different acquisition settings, the dynamic index (DI) was obtained using the following formula: [P/S], where P represents the pass number, and S represents the bed velocity (mm/s). The following physical parameters were evaluated: noise equivalent count at phantom (NECphantom), percent background variability (N10 mm), percent contrast of the 10 mm hot sphere (QH, 10 mm), the QH, 10 mm/N10 mm ratio, and the maximum standardized uptake value (SUVmax). Furthermore, visual evaluation was performed.

Results

The NECphantom was equivalent for the same DI settings regardless of the bed velocity. The N10 mm exhibited an inverse correlation (r < − 0.89) with the DI. QH,10 mm was not affected by DI, and a correlation between QH,10 mm/N10 mm ratio and DI was found at all the velocities (r > 0.93). The SUVmax of the spheres was not influenced by the DI. The coefficient of variations caused by bed velocity decreased in larger spheres. There was no significant difference between the bed velocities on visual evaluation.

Conclusion

The quantitative accuracy and image quality achieved with WBDCBM-PET was comparable to that achieved with non-dynamic CBM, regardless of the pass number and bed velocity used during imaging for a given acquisition time.



http://bit.ly/2G2JvAQ

The impact of body mass index on perioperative outcomes after robotic liver resection

Abstract

High body mass index (BMI) is associated with other multiple comorbidities such as non-alcoholic fatty liver disease, steatohepatitis, liver cirrhosis, and cardiopulmonary diseases, which can impact the perioperative outcomes following liver resection. We aimed to study the impact of BMI on perioperative outcomes after robotic liver resection. All the patients undergoing robotic liver resection between 2013 and 2017 were prospectively followed. The patients were divided into three groups (BMI < 25, BMI 25–35, BMI > 35 kg/m2) for illustrative purposes. Demographic and perioperative outcome data were compared. Data are presented as median (mean ± SD). Thirty-eight patients underwent robotic hepatectomy, 73% were women, age was 58 (57 ± 17.6) years, and ASA class was 3 (3 ± 0.5). Indications for surgery were neoplastic lesions in 34 patients (89%), hemangioma in two patients (6%), fibrous mass in one patient (2.5%), and focal nodular hyperplasia in one patient (2.5%). 32% of the patients underwent right or left hemihepatectomy, 21% underwent sectionectomy, 5% underwent central hepatectomy and the reminder underwent non-anatomical liver resection. Operative time was 261 (254.6 ± 94.3) min. Estimated blood loss was 175 (276 ± 294.8) ml. Length of hospital stay was 3 (5 ± 4.9) days. By regression analysis of the three BMI groups, estimated blood loss, rate of postoperative complication, rate of conversion, need for transfusion, length of ICU stay, and length of hospital stay did not have a significant relationship with BMI. A total of five patients (13%) experience complications. Four patients had complications that were nonspecific to liver resection, including acute renal injury, respiratory failure, and enterocutaneous fistula. One patient had bile leak, treated with ERCP stenting. No mortality was seen in this study. Obesity should not dissuade surgeons from utilizing minimally invasive robotic approach for liver resection. Robotic technique is a safe and feasible in patients with high BMI. The impact of BMI on outcomes is insignificant.



http://bit.ly/2MJUMGG

MiR-5571-3p and miR-135b-5p, derived from analyses of microRNA profile sequencing, correlate with increased disease risk and activity of rheumatoid arthritis

Abstract

Objectives

This study aimed to investigate microRNA (miRNA) expression profiles in synovium tissues of rheumatoid arthritis (RA) patients by RNA sequencing and to evaluate the values of dysregulated miRNAs in RA diagnosis and monitoring.

Methods

Thirty RA patients who underwent knee arthroscopy and 30 controls with knee trauma who underwent surgery were consecutively recruited, and synovium tissue samples of both groups were obtained during surgeries. In the exploration part, miRNA and mRNA expression profiles of 3 RA samples and 3 control samples were detected using RNA sequencing then followed by bioinformatic analyses. In the validation part, 5 candidate miRNA levels were detected by quantitative polymerase chain reaction (qPCR) in 30 RA patients and 30 control patients.

Results

In the exploration part, 78 miRNAs and 1582 mRNAs were upregulated while 40 miRNAs and 1295 mRNAs were downregulated in synovium tissue samples of RA patients compared with those of controls. Furthermore, enrichment analyses revealed that these dysregulated miRNAs and mRNAs were mainly implicated in immune activities and inflammatory diseases such as leukocyte migration, complement activation, and RA. In the validation part, qPCR assay revealed that miR-5571-3p and miR-135b-5p expressions were increased in RA patients compared with those in controls and disclosed good predictive values for RA risk with high area under the curves (AUCs). Besides, both miR-5571-3p and miR-135b-5p levels were positively correlated with disease activity and inflammation level of RA.

Conclusions

Analyses of miRNA expression profiles by sequencing indicate that miR-5571-3p and miR-135b-5p correlate with increased RA risk and activity.



http://bit.ly/2G2oZjx

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