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1.
Cell Signal ; 120: 111218, 2024 Aug.
Article En | MEDLINE | ID: mdl-38734194

Glioblastoma multiforme (GBM) is the most common and aggressive primary malignant human brain tumor. Although comprehensive therapies, including chemotherapy and radiotherapy following surgery, have shown promise in prolonging survival, the prognosis for GBM patients remains poor, with an overall survival rate of only 14.6 months. Chemoresistance is a major obstacle to successful treatment and contributes to relapse and poor survival rates in glioma patients. Therefore, there is an urgent need for novel strategies to overcome chemoresistance and improve treatment outcomes for human glioma patients. Recent studies have shown that the tumor microenvironment plays a key role in chemoresistance. Our study demonstrates that upregulation of HAS2 and subsequent hyaluronan secretion promotes glioma cell proliferation, invasion, and chemoresistance in vitro and in vivo through the c-myc pathway. Targeting HAS2 sensitizes glioma cells to chemotherapeutic agents. Additionally, we found that hypoxia-inducible factor HIF1α regulates HAS2 expression. Together, our findings provide insights into the dysregulation of HAS2 and its role in chemoresistance and suggest potential therapeutic strategies for GBM.


Cell Proliferation , Drug Resistance, Neoplasm , Hypoxia-Inducible Factor 1, alpha Subunit , Proto-Oncogene Proteins c-myc , Up-Regulation , Humans , Drug Resistance, Neoplasm/genetics , Cell Line, Tumor , Proto-Oncogene Proteins c-myc/metabolism , Hypoxia-Inducible Factor 1, alpha Subunit/metabolism , Animals , Hyaluronan Synthases/metabolism , Hyaluronan Synthases/genetics , Glioma/pathology , Glioma/metabolism , Glioma/genetics , Brain Neoplasms/pathology , Brain Neoplasms/metabolism , Brain Neoplasms/genetics , Mice, Nude , Gene Expression Regulation, Neoplastic , Mice , Hyaluronic Acid/metabolism , Glioblastoma/metabolism , Glioblastoma/pathology , Glioblastoma/genetics
2.
Article En | MEDLINE | ID: mdl-38639611

Objective: The objective of this study was to enhance the efficiency of pre-check and triage procedures in gynecology and obstetrics, while ensuring the safety of maternal and infant patients during the COVID-19 pandemic. Methods: Between March 2020 and July 2022, the workflow in gynecology and obstetrics was optimized, and the management of medical staff working in outpatient, ward, and obstetric ward settings was strengthened. Special protocols were developed and implemented for pregnant women, parturients, and neonates. Detailed procedures and routes were established for patient movement from outpatient areas to wards, with strict adherence to pandemic prevention and control measures. Information-based methods were employed to track and monitor the health status of high-risk pregnant women, parturients, and their families, facilitating accurate and efficient pre-check and triage processes. Results: The implementation of these measures yielded favorable outcomes. No cases of COVID-19 infection were reported among pregnant women and parturients admitted to Liangzhou Hospital. The source of infection was effectively controlled, ensuring the safety of the patients. Conclusion: This study demonstrates the significance of improving pre-check and triage efficiency, strengthening the management of medical staff, and implementing specialized measures for pregnant women, parturients, and neonates to ensure their safety during the COVID-19 pandemic. The established protocols and procedures can serve as a valuable reference for other healthcare facilities seeking to enhance their pandemic prevention and control strategies in gynecology and obstetrics settings.

3.
Heliyon ; 9(8): e19112, 2023 Aug.
Article En | MEDLINE | ID: mdl-37636435

Hyaluronic acid (HA) is a crucial component of the extracellular matrix, and its level of accumulation is related to the progression of various malignant tumors. In this study, a pan-cancer analysis of the three enzymes called hyaluronan synthases (HAS1, HAS2, and HAS3) that produce HA was performed. The study comprehensively describes the characteristics of HAS1, HAS2, and HAS3 in cancers using public databases and tools, to identify the potential biological pathways involved at the molecular, protein, cellular, and clinical sample levels. The analysis showed that dysregulation of the three genes often occurs in cancer, contributing to cancer progression, metastasis, and prognosis. Overexpression of HAS2 promotes secretion of HA in GBM and enhances cell proliferation and migration. The common and specific functions of HAS in certain diseases have important research implications for the treatment and prognosis of tumors.

4.
Biochem Biophys Res Commun ; 659: 40-45, 2023 06 04.
Article En | MEDLINE | ID: mdl-37031593

The O-carbamoyltransferase VtdB catalyzes the carbamoylation of venturicidin B, which is essential for the biosynthesis of the antibiotic venturicidin A. Here, the crystal structures of VtdB and VtdB in complex with the intermediate carbamoyladenylate (VtdBCAO) were determined at resolutions of 2.99 Å and 2.90 Å, respectively. The structures resemble the conserved YrdC-like and specific Kae1-like domains. A magnesium ion and the intermediate carbamoyladenylate were also observed in the Kae1-like domain of VtdB. The structure of VtdBCAO in complex with the substrate venturicidin B was modeled by a molecular docking method to better understand the substrate binding mode, revealing a novel venturicidin B binding pocket.


Streptomyces , Molecular Docking Simulation , Binding Sites , Crystallography, X-Ray , Substrate Specificity
5.
Chem Biol Interact ; 370: 110314, 2023 Jan 25.
Article En | MEDLINE | ID: mdl-36535311

Epidemiological studies have shown that low doses of lithium in the environment can have beneficial effects on mental health. Autism spectrum disorder, a neurodevelopmental disorder in which patients exhibit abnormal behaviors, pharmacological interventions usually relied on a range of psychotropic medications. However, such medications often produce severe side effects or are ineffective in symptoms. Finding alternative ways to improve abnormal behaviors in individuals with autism are warranted, in which case lithium may be a relatively safe and effective medication. Lithium salt therapy is used to treat a variety of neuropsychiatric disorders and has neuroprotective effects. In this study, we investigated the effects of different doses of lithium on neurobehavioural disorders using the rat model of autism established by valproic acid (VPA) injection. Lithium was observed to have an ameliorative effect on the social cognitive, social memory and anxiety levels in the rat model of autism. Immunofluorescence staining showed that subchronic LiCl administration (1.0 mmol/kg) significantly reduced the number of Iba-1 positive cells in the CA1 region of the hippocampus in VPA group and brought it close to the levels of control group. Significantly lower levels of the pro-inflammatory marker IL-6 were observed in the hippocampus and serum after lithium treatment. In addition, the lithium treatment increased the levels of H3K9 acetylation in the hippocampus of VPA-exposed rats. The results showed a defensive effect of environment-related lithium exposure doses on neurobehavioural deficits in the rat valproic acid model of autism, suggesting that it may be a potential drug for the treatment of autism.


Autism Spectrum Disorder , Autistic Disorder , Rats , Animals , Valproic Acid/pharmacology , Valproic Acid/therapeutic use , Autistic Disorder/chemically induced , Lithium/therapeutic use , Lithium/pharmacology , Autism Spectrum Disorder/chemically induced , Hippocampus , Lithium Compounds/pharmacology , Lithium Compounds/therapeutic use
6.
Environ Res ; 215(Pt 1): 114181, 2022 12.
Article En | MEDLINE | ID: mdl-36113572

Traffic-related air pollution (TRAP) has been a common public health problem, which is associated with central nervous system dysfunction according to large-scale epidemiological studies. Current studies are mostly limited to artificial laboratory exposure environments and specific genetic mechanisms remain unclear. Therefore, we chose a real-world transportation environment to expose aged mice, transporting them from the laboratory to a 1-m-high dry platform inside the campus and tunnel, and the mice were exposed daily from 7 a.m. to 7 p.m. for 2, 4 and 12 weeks respectively. Compared with the control group (in campus), the memory function of mice in the experimental group (in tunnel) was significantly impaired in the Morris water maze test. TRAP exposure increased the number of activated microglia in the hippocampal DG, CA1, CA3 regions and dorsolateral prefrontal cortex (dPFC). And neuroinflammation and oxidative stress levels were up-regulated in both hippocampus and dPFC of aged mice. By screening the risk genes of Alzheimer's disease, we found the mRNA and protein levels of ABCA7 were down-regulated and those of PYK2 were up-regulated. The DNA methylation ratios increased in four CpG sites of abca7 promoter region and decreased in one CpG site of pyk2 promoter region, which were consistent with the altered expression of ABCA7 and PYK2. In conclusion, exposure to the real traffic environment impaired memory function and enhanced neuroinflammation and oxidative stress responses, which could be relevant to the altered expression and DNA methylation levels of ABCA7 and PYK2. Our work provides a new and promising understanding of the pathological mechanisms of cognitive impairment caused by traffic-related air pollution.


Alzheimer Disease , Focal Adhesion Kinase 2 , ATP-Binding Cassette Transporters , Alzheimer Disease/genetics , Animals , Brain/pathology , Cognition , Hippocampus/pathology , Mice , RNA, Messenger
7.
Clin Epigenetics ; 13(1): 180, 2021 09 26.
Article En | MEDLINE | ID: mdl-34565458

BACKGROUND: Road traffic air pollution is linked with an increased risk of autistic spectrum disorder (ASD). The aim of this study is to assess the effect of exposure to prenatal or postnatal traffic-related air pollution combining concomitant noise pollution on ASD-related epigenetic and behavioral alternations on offspring. METHODS: A 2 × 2 factorial analysis experiment was designed. Wistar rats were exposed at different sites (L group: green space; H group: crossroads) and timings (E group: full gestation; P group: 21 days after birth) at the same time, and air pollutants of nitrogen dioxide (NO2) and fine particles (PM2.5) were meanwhile sampled. On postnatal day 25, brains from offspring of each group were extracted to determine the levels of DNA methylation in Shank3 (three parts: Shank3_01, Shank3_02, Shank3_03) and MeCP2 (two parts: MeCP2_01, MeCP2_02) promoter regions, H3K4me3 and H3K27me3 after three-chamber social test. Meanwhile, the Shank3 and MeCP2 levels were quantified. RESULTS: The concentrations of PM2.5 (L: 58.33 µg/m3; H: 88.33 µg/m3, P < 0.05) and NO2 (L: 52.76 µg/m3; H: 146.03 µg/m3, P < 0.01) as well as the intensity of noise pollution (L: 44.4 dB (A); H: 70.1 dB (A), P < 0.001) differed significantly from 18:00 to 19:00 between experimental sites. Traffic pollution exposure (P = 0.006) and neonatal exposure (P = 0.001) led to lower weight of male pups on PND25. Male rats under early-life exposure had increased levels of Shank3 (Shank3_02: timing P < 0.001; site P < 0.05, Shank3_03: timing P < 0.001) and MeCP2 (MeCP2_01: timing P < 0.001, MeCP2_02: timing P < 0.001) methylation and H3K4me3 (EL: 11.94 µg/mg; EH: 11.98; PL: 17.14; PH: 14.78, timing P < 0.05), and reduced levels of H3K27me3 (EL: 71.07 µg/mg; EH: 44.76; PL: 29.15; PH: 28.67, timing P < 0.001; site P < 0.05) in brain compared to those under prenatal exposure. There was, for female pups, a same pattern of Shank3 (Shank3_02: timing P < 0.001; site P < 0.05, Shank3_03: timing P < 0.001) and MeCP2 (MeCP2_01: timing P < 0.05, MeCP2_02: timing P < 0.001) methylation and H3K4me3 (EL: 11.27 µg/mg; EH: 11.55; PL: 16.11; PH: 15.44, timing P < 0.001), but the levels of H3K27me3 exhibited an inverse trend concerning exposure timing. Hypermethylation at the MeCP2 and Shank3 promoter was correlated with the less content of MeCP2 (female: EL: 32.23 ng/mg; EH: 29.58; PL: 25.01; PH: 23.03, timing P < 0.001; site P < 0.05; male: EL: 31.05 ng/mg; EH: 32.75; PL: 23.40; PH: 25.91, timing P < 0.001) and Shank3 (female: EL: 5.10 ng/mg; EH: 5.31; PL: 4.63; PH: 4.82, timing P < 0.001; male: EL: 5.40 ng/mg; EH: 5.48; PL: 4.82; PH: 4.87, timing P < 0.001). Rats with traffic pollution exposure showed aberrant sociability preference and social novelty, while those without it behaved normally. CONCLUSIONS: Our findings suggest early life under environmental risks is a crucial window for epigenetic perturbations and then abnormalities in protein expression, and traffic pollution impairs behaviors either during pregnancy or after birth.


Methyl-CpG-Binding Protein 2/metabolism , Nerve Tissue Proteins/metabolism , Traffic-Related Pollution/adverse effects , Air Pollution , Animals , DNA Methylation , Disease Models, Animal , Environmental Exposure/adverse effects , Environmental Exposure/analysis , Female , Pregnancy , Rats , Rats, Wistar/metabolism , Traffic-Related Pollution/analysis
8.
Sci Rep ; 11(1): 7455, 2021 04 02.
Article En | MEDLINE | ID: mdl-33811250

Our objective was to examine differences in cytokine/chemokine response in chronic hepatitis B(CHB) patients to understand the immune mechanism of HBsAg loss (functional cure) during antiviral therapy. We used an unbiased machine learning strategy to unravel the immune pathways in CHB nucleo(t)side analogue-treated patients who achieved HBsAg loss with peg-interferon-α(peg-IFN-α) add-on or switch treatment in a randomised clinical trial. Cytokines/chemokines from plasma were compared between those with/without HBsAg loss, at baseline, before and after HBsAg loss. Peg-IFN-α treatment resulted in higher levels of IL-27, IL-12p70, IL-18, IL-13, IL-4, IL-22 and GM-CSF prior to HBsAg loss. Probabilistic network analysis of cytokines, chemokines and soluble factors suggested a dynamic dendritic cell driven NK and T cell immune response associated with HBsAg loss. Bayesian network analysis showed a dominant myeloid-driven type 1 inflammatory response with a MIG and I-TAC central module contributing to HBsAg loss in the add-on arm. In the switch arm, HBsAg loss was associated with a T cell activation module exemplified by high levels of CD40L suggesting T cell activation. Our findings show that more than one immune pathway to HBsAg loss was found with peg-IFN-α therapy; by myeloid-driven Type 1 response in one instance, and T cell activation in the other.


Chemokines/blood , Cytokines/blood , Hepatitis B Surface Antigens/immunology , Hepatitis B, Chronic/drug therapy , Hepatitis B, Chronic/immunology , Bayes Theorem , Hepatitis B, Chronic/blood , Humans , Interferon-alpha/therapeutic use , Time Factors
9.
J Trace Elem Med Biol ; 66: 126748, 2021 Jul.
Article En | MEDLINE | ID: mdl-33756185

BACKGROUND: Disproportional heavy metals and essential elements were reported in children with autism spectrum disorder (ASD) that is obscure in etiology. Inevitably, the association is biased by diet and environmental factors. METHODS: Fifty pairs, one with ASD and the other living together from the same special school with cerebral palsy (CP), were recruited in Hangzhou (China), aged from 2 to 11 years old (74.0 % male). All samples were divided into two subgroups: preschool-aged (2-5 years old) and school-aged (6-10 years old). Heavy metals (As, Hg, Pb) and essential elements (Al, Ca, Cu, Mg, Mn, Zn) in hair were quantified by inductively coupled plasma mass spectrometry analysis and flame atomic absorption spectroscopy. RESULTS: The children with ASD generally had lower hair levels of Mn (ASD 0.124 µg/g, CP 0.332 µg/g, P = 0.001) compared to the children with CP. After stratification for age, there were no significant differences detected in preschool-aged group. In school-aged group, the results exhibited the children with ASD had higher hair Pb (1.485 µg/g, 0.690 µg/g, P = 0.007) and Cu/Zn ratio (0.092, 0.060, P = 0.003), while hair Hg (0.254 µg/g, 0.353 µg/g, P = 0.016)、Mn (0.089 µg/g, 0.385 µg/g, P = 0.002)、Mg (17.81 µg/g, 24.53 µg/g, P = 0.014) and Zn (100.15 µg/g, 135.83 µg/g, P = 0.007) showed an opposite pattern. CONCLUSIONS: These results suggest an imbalance of Mn in Chinese children with ASD.


Autism Spectrum Disorder/metabolism , Hair/chemistry , Metals, Heavy/analysis , Trace Elements/analysis , Cerebral Palsy , Child , Child, Preschool , China , Female , Humans , Male , Mass Spectrometry , Metals, Heavy/metabolism , Seafood , Trace Elements/metabolism
10.
Environ Technol ; 39(3): 356-362, 2018 Feb.
Article En | MEDLINE | ID: mdl-28278094

Electrokinetic experiments were conducted on chromium-residue-contaminated soils collected from a chemical plant in China. Acidification-electrokinetic remediation technology was proposed in order to solve the problem of removing inefficient with ordinary electrokinetic. The results showed that electrokinetic remediation removal efficiency of chromium from chromium-contaminated soil was significantly enhanced with acidizing pretreatment. The total chromium [Cr(T)] and hexavalent chromium [Cr(VI)] removal rate of the group acidized by citric acid (0.9 mol/L) for 5 days was increased from 6.23% and 19.01% in the acid-free experiments to 26.97% and 77.66% in the acidification-treated experiments, respectively. In addition, part of chromium with the state of carbonate-combined will be converted into water-soluble state through acidification to improve the removal efficiency. Within the appropriate concentration range, the higher concentration of acid was, the more chromium was released. So the removal efficiency of chromium depended on the acid concentration. The citric acid is also a kind of complexing agent, which produced complexation with Cr that was released by the electrokinetic treatment and then enhanced the removal efficiency. The major speciation of chromium that was removed from soils by acidification-electrokinetics remediation was acid-soluble speciation, revivification speciation and oxidation speciation, which reduced biological availability of chromium.


Chromium/chemistry , Citric Acid/chemistry , Environmental Restoration and Remediation/methods , Soil Pollutants/chemistry , China , Chromium/analysis , Electrochemistry , Soil/chemistry
11.
J Hazard Mater ; 302: 36-44, 2016 Jan 25.
Article En | MEDLINE | ID: mdl-26448492

To decompose or transform the toxic and refractory reverse osmosis (RO) concentrate and improve the biodegradability, 1stFe/Cu/air-Fenton-2ndFe/Cu/air were developed to treat RO concentrate obtained from an amino acid production plant in northern China. First, their operating conditions were optimized thoroughly. Furthermore, 5 control experiments were setup to confirm the superiority of 1stFe/Cu/air-Fenton-2ndFe/Cu/air and synergistic reaction between Fe/Cu/air and Fenton. The results suggest that the developed method could obtain high COD removal (65.1%) and BOD5/COD ratio (0.26) due to the synergistic reaction between Fe/Cu/air and Fenton. Under the optimal conditions, the influent and effluent of 1stFe/Cu/air-Fenton-2ndFe/Cu/air and 5 control experiments were analyzed by using UV, FTIR, EEM and LC, which confirm the superiority of 1stFe/Cu/air-Fenton-2ndFe/Cu/air. Therefore, the developed method in this study is a promising process for treatment of RO concentrate.

12.
J Hazard Mater ; 297: 261-8, 2015 Oct 30.
Article En | MEDLINE | ID: mdl-25978189

In order to further compare the degradation capacity of Fe(0) and Fe/Cu bimetallic system under different aeration conditions, the mineralization of PNP under different aeration conditions has been investigated thoroughly. The results show that the removal of PNP by Fe(0) or Fe/Cu system followed the pseudo-first-order reaction kinetics. Under the optimal conditions, the COD removal efficiencies obtained through Fe(0) or Fe/Cu system under different aeration conditions followed the trend that Fe/Cu (air)>Fe/Cu (N2: 0-30 min, air: 30-120 min)>control-Fe (air)>Fe/Cu (without aeration)>Fe/Cu (N2)>control-Fe (N2). It revealed that dissolved oxygen (DO) could improve the mineralization of PNP, and Cu could enhance the reactivity of Fe(0). In addition, the degradation of PNP was further analyzed by using UV-vis, FTIR and GC/MS, and the results suggest that Fe/Cu bimetallic system with air aeration could completely break the benzene ring and NO2 structure of PNP and could generate the nontoxic and biodegradable intermediate products. Meanwhile, most of these intermediate products were further mineralized into CO2 and H2O, which brought about a high COD removal efficiency (83.8%). Therefore, Fe/Cu bimetallic system with air aeration would be a promising process for toxic refractory industry wastewater.

13.
Environ Technol ; 35(5-8): 973-83, 2014.
Article En | MEDLINE | ID: mdl-24645481

This study provides mechanistic insights into the passivation of the packing particles during the treatment of acrylonitrile-butadiene-styrene (ABS) resin wastewater by the Fe0/GAC system. The granular-activated carbon (GAC) and iron chippings (Fe0) were mixed together with a volumetric ratio of 1:1. GAC has a mean particle size of approximately 3-5 mm, a specific surface of 748 m2 g(-1), a total pore volume of 0.48 mL g(-1) and a bulk density of 0.49 g cm(-3). The iron chippings have a compact and non-porous surface morphology. The results show that the packing particles in the Fe0/GAC system would lose their activity because the removal of TOC and PO4(3-) for ABS resin wastewater could not carried out by the Fe0/GAC system after 40 days continuous running. Meanwhile, the availability of O2 and intrinsic reactivity of Fe0 play a key role on the form of passive film with different iron oxidation states. The passive film on the surface of iron chippings was formed by two phases: (a) local corrosion phase (0-20 d) and (b) co-precipitation phase (20-40 d), while that of GAC was mainly formed by the co-precipitation of corrosion products with SO4(2-) and PO4(3-) because SO4(2-) and PO4(3-) would not easily reach the Fe0 surface. Therefore, in order to avoid the occurrence of filler passivation, high concentrations of SO4(2-) and PO4(3-) in wastewater should be removed before the treatment process of the Fe/GAC system.


Acrylic Resins/chemistry , Acrylonitrile/chemistry , Butadienes/chemistry , Carbon/chemistry , Iron/chemistry , Polystyrenes/chemistry , Styrene/chemistry , Water Purification/methods , Adsorption , Microscopy, Electron, Scanning , Oxygen/chemistry , Phosphates/chemistry , Sulfur/chemistry , Surface Properties , Wastewater , Water Pollutants/chemistry , Water Pollutants, Chemical/analysis
14.
Chemosphere ; 93(11): 2805-13, 2013 Nov.
Article En | MEDLINE | ID: mdl-24125710

Oxidative degradation of Alizarin Red S (ARS) in aqueous solutions by using electro-Fenton was studied. At first, effect of operating parameters such as current density, aeration rate and initial pH on the degradation of ARS were studied by using UV-vis spectrum, respectively. Then, under the optimal operating conditions (current density: 10.0mAcm(-2), aeration rate: 1000mLmin(-1), initial pH: 2.8), the identification of degradation products of ARS was carried out by using GC-MS and HPLC, meanwhile its degradation pathway was proposed according to the intermediates. Considering the location, intensity and intensity ratio of fluorescence center peak of the ARS in aqueous solution, a convenient and quick monitoring method by using excitation-emission matrix fluorescence spectrum technology was developed to monitor the degradation degree of ARS through electro-Fenton process. Furthermore, it is suggested that the developed method would be promising for the quick analysis and evaluation of the degradation degree of the pollutants with π-conjugated system.


Anthraquinones/chemistry , Hydrogen Peroxide/chemistry , Iron/chemistry , Waste Disposal, Fluid/methods , Water Pollutants, Chemical/chemistry , Absorption , Adsorption , Anthraquinones/analysis , Fluorescence , Oxidation-Reduction , Water Pollutants, Chemical/analysis
15.
J Hazard Mater ; 250-251: 220-8, 2013 Apr 15.
Article En | MEDLINE | ID: mdl-23454461

In this study, the US-ZVI system was used to produce the strong reductants including H and nascent Fe(2+) ions to eliminate the toxicity of the high concentration p-nitrophenol (PNP) wastewater. The effect of the reactor structure, initial pH, ZVI dosage, ultrasonic power and initial PNP concentration on the removal efficiency of PNP from water was investigated intensively. The results show that a higher removal rate can be obtained by using a conical structure reactor, and the lower initial pH can aid the acceleration of PNP removal rate by using US-ZVI system. Furthermore, the removal efficiencies of PNP increased obviously with the increase of initial ZVI concentration from 0 to 15 gL(-1). Also, the treatment capacity of ZVI was enhanced remarkably by the ultrasonic irradiation, and the US-ZVI system can maintain high treatment efficiency for the high concentration PNP wastewater (500-10,000 mgL(-1)). Meanwhile, the high removal efficiency of PNP was mainly resulted from the synergistic reaction of ZVI and US. At last, the main degradation product (i.e., p-aminophenol) was detected by gas chromatography-mass spectrum (GC-MS). Thus, the reaction pathway of PNP in the US-ZVI system is proposed as a reducing process by the H and nascent Fe(2+) ions.


Iron/chemistry , Nitrophenols/isolation & purification , Water Pollutants, Chemical/isolation & purification , Water Purification/methods , Gas Chromatography-Mass Spectrometry , Hydrogen-Ion Concentration , Ions/chemistry , Kinetics , Models, Chemical , Nitrophenols/chemistry , Ultrasonics , Waste Disposal, Fluid/methods , Wastewater/chemistry , Water Pollution
16.
Chemosphere ; 90(4): 1470-7, 2013 Jan.
Article En | MEDLINE | ID: mdl-23036321

The degradation of 3,3'-iminobis-propanenitrile was investigated using the Fe(0)/GAC micro-electrolysis system. Effects of influent pH value, Fe(0)/GAC ratio and granular activated carbon (GAC) adsorption on the removal efficiency of the pollutant were studied in the Fe(0)/GAC micro-electrolysis system. The degradation of 3,3'-iminobis-propanenitrile was affected by influent pH, and a decrease of the influent pH values from 8.0 to 4.0 led to the increase of degradation efficiency. Granular activated carbon was added as cathode to form macroscopic galvanic cells between Fe(0) and GAC and enhance the current efficiency of the Fe(0)/GAC micro-electrolysis system. The GAC could only adsorb the pollutant and provide buffer capacity for the Fe(0)/GAC micro-electrolysis system, and the macroscopic galvanic cells of the Fe(0)/GAC micro-electrolysis system played a leading role in degradation of 3,3'-iminobis-propanenitrile. With the analysis of the degradation products with GC-MS, possible reaction pathway for the degradation of 3,3'-iminobis-propanenitrile by the Fe(0)/GAC micro-electrolysis system was suggested.


Nitriles/chemistry , Water Pollutants, Chemical/chemistry , Water Purification/methods , Adsorption , Chemical Industry , Electrolysis , Iron , Nitriles/analysis , Water Pollutants, Chemical/analysis
17.
J Hazard Mater ; 241-242: 241-51, 2012 Nov 30.
Article En | MEDLINE | ID: mdl-23040315

As past studies presented, there is obvious defect that the fillers in the Fe(0)/GAC reactor begin to be passive after about 60 d continuous running, although the complicated, toxic and refractory ABS resin wastewater can be pretreated efficiently by the Fe(0)/GAC reactor. During the process, the Fe(3)(PO(4))(2) and FePO(4) crystals with high density in the passive film are formed by the reaction between PO(4)(3-) and Fe(2+)/Fe(3+). Meanwhile, they obstruct the formation of macroscopic galvanic cells between Fe(0) and GAC, which will lower the wastewater treatment efficiency of Fe(0)/GAC reactor. In this study, in order to remove the Fe(3)(PO(4))(2) and FePO(4) crystals on the surface of the passive fillers, the bacteria were acclimated in the passive Fe(0)/GAC reactor. According to the results, it can be concluded that the Fe(3)(PO(4))(2) and FePO(4) crystals with high density in the passive film could be decomposed or removed by the joint action between the typical propionic acid type fermentation bacteria and sulfate reducing bacteria (SRB), whereas the PO(4)(3-) ions from the decomposition of the Fe(3)(PO(4))(2) and FePO(4) crystals were released into aqueous solution which would be discharged from the passive Fe(0)/GAC reactor. Furthermore, the remained FeS and sulfur (S) in the passive film also can be decomposed or removed easily by the oxidation of the sulfur-oxidizing bacteria. This study provides some theoretical references for the further study of a cost-effective bio-regeneration technology to solve the passive problems of the fillers in the zero-valent iron (ZVI) or Fe(0)/GAC reactor.


Biofilms/growth & development , Charcoal/chemistry , Ferric Compounds/isolation & purification , Ferrous Compounds/isolation & purification , Iron/chemistry , Phosphates/isolation & purification , Water Purification/methods , Acrylic Resins/chemistry , Adaptation, Physiological , Bacteria, Aerobic/growth & development , Bacteria, Aerobic/physiology , Butadienes/chemistry , Crystallization , Facility Design and Construction , Microscopy, Electron, Scanning , Polystyrenes/chemistry , Spectrometry, X-Ray Emission , Surface Properties , Wastewater/chemistry , Water Purification/instrumentation
18.
Yan Ke Xue Bao ; 23(3): 136-42, 2007 Sep.
Article Zh | MEDLINE | ID: mdl-18041180

PURPOSE: To find new serum biomarkers in the serum of retinoblastoma (Rb) patient with surface enhanced laser desorption/ionization time-of-flight mass spectrometry (SELDI-TOF-MS) and protein chip technique. METHODS: SELDI-TOF-MS and IMAC30 and CM10 protein chips were used to analyze the protein profiles from serum of 18 patients with Rb and 17 age-matched controls. The protein profiling was analyzed statistically by Ciphergen protein chip software 3.0.2. The t-test was applied to compare the protein peak intensity. Fisher ratio-test was used to compare the predominance of differential protein peaks appeared in patients. RESULTS: With IMAC30 protein chips, there were 26 proteins appearing differently in serum of patients with Rb compared to normal children. Among them, 21 proteins, i.e. 7746, 70146, 117136, 30496, 70846, 72,996, 5889, 2544, 12575, 5489, 9658, 9575, 9929, 10161, 8955, 1886, 10617, 6209, 2411, 7374, 6614 m/z were up-regulated and 5 proteins, i.e. 8383, 7923, 7972, 8590, 66576 m/z, down-regulated (P < 0.001). Using the 7014 m/z protein peak, we could differentiate the patients with Rb from the healthy children with a sensitivity of 94.4% and a specificity of 82.4%. By CM10 protein chips, 4 proteins, including 3 up-regulated proteins (5890, 6097, 7798 m/z) and one down-regulated protein (8593 m/z), were detected in Rb patients (P < 0.01). The sensitivity and specificity were 83.3% and 70.6% respectively for 7 798 m/z protein. CONCLUSION: There are a few candidates of Rb biomarkers in the serum of Rb patient. SELDI Protein Chip technology could be a potential method in the clinical screening test of Rb.


Biomarkers, Tumor/blood , Protein Array Analysis , Retinoblastoma/blood , Case-Control Studies , Child , Child, Preschool , Female , Humans , Infant , Male , Retinoblastoma/diagnosis , Serum/chemistry , Spectrometry, Mass, Matrix-Assisted Laser Desorption-Ionization
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