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1.
Obes Surg ; 2024 Apr 15.
Artigo em Inglês | MEDLINE | ID: mdl-38619773

RESUMO

PURPOSE: Quality follow-up (FU) is crucial after bariatric surgery. However, poor adherence after surgery is prevalent. This research aimed to explore the factors related to FU adherence after bariatric surgery in West China. MATERIALS AND METHODS: This study used a sequential explanatory mixed-methods research design. Participants (n = 177) were identified from the West China Hospital. Demographic information, disease profile, treatment information, and post-surgery FU information were obtained from the bariatric surgery database of the Division of Gastrointestinal Surgery of the West China Hospital. The survey data were analyzed using logistic regression. Semi-structured interviews with participants (n = 10) who had low adherence were conducted. The recording was transcribed verbatim and entered into qualitative data analysis software. Qualitative data were analyzed using a content analysis approach. RESULTS: Multiple logistic regression revealed that living in Chengdu (OR, 2.308), being employed (OR, 2.532), non-smoking (OR, 2.805), and having less than five years of obesity (OR, 2.480) were positive predictors of FU adherence within one year. Semi-structured interviews suggested that factors related to adherence to FU were lack of motivation, lack of opportunity, insufficient ability, and beliefs regarding consequences. CONCLUSION: Factors impacting one-year FU visit adherence after bariatric surgery include not only demographic and disease-related factors but also social and family factors. These results will provide evidence to support healthcare professionals in developing personalized postoperative FU management strategies.

2.
Biomater Sci ; 2024 Apr 12.
Artigo em Inglês | MEDLINE | ID: mdl-38607326

RESUMO

Developing effective nanomedicines to cross the blood-brain barrier (BBB) for efficient glioma theranostics is still considered to be a challenging task. Here, we describe the development of macrophage membrane (MM)-coated nanoclusters (NCs) of ultrasmall iron oxide nanoparticles (USIO NPs) with dual pH- and reactive oxygen species (ROS)-responsivenesses for magnetic resonance (MR) imaging and chemotherapy/chemodynamic therapy (CDT) of orthotopic glioma. Surface citrate-stabilized USIO NPs were solvothermally synthesized, sequentially modified with ethylenediamine and phenylboronic acid, and cross-linked with gossypol to form gossypol-USIO NCs (G-USIO NCs), which were further coated with MMs. The prepared MM-coated G-USIO NCs (G-USIO@MM NCs) with a mean size of 99.9 nm display tumor microenvironment (TME)-responsive gossypol and Fe release to promote intracellular ROS production and glutathione consumption. With the MM-mediated BBB crossing and glioma targeting, the G-USIO@MM NCs can specifically inhibit orthotopic glioma in vivo through the gossypol-mediated chemotherapy and Fe-mediated CDT. Meanwhile, USIO NPs can be dissociated from the NCs under the TME, thus allowing for effective T1-weighted glioma MR imaging. The developed G-USIO@MM NCs with simple components and drug as a crosslinker are promising for glioma theranostics, and may be extended to tackle other cancer types.

3.
Biomater Sci ; 12(6): 1346-1356, 2024 Mar 12.
Artigo em Inglês | MEDLINE | ID: mdl-38362780

RESUMO

Glioma, as a disease of the central nervous system, is difficult to be treated due to the presence of the blood-brain barrier (BBB) that can severely hamper the efficacy of most therapeutic agents. Hence, drug delivery to glioma in an efficient, safe, and specifically targeted manner is the key to effective treatment of glioma. With the advances in nanotechnology, targeted drug delivery systems have been extensively explored to deliver chemotherapeutic agents, nucleic acids, and contrast agents. Among these nanocarriers, dendrimers have played a significant role since they possess highly branched structures, and are easy to be decorated, thus offering numerous binding sites for various drugs and ligands. Dendrimers can be designed to cross the BBB for glioma targeting, therapy or theranostics. In this review, we provide a concise overview of dendrimer-based carrier designs including dendrimer surface modification with hydroxyl termini, peptides, and transferrin etc. for glioma imaging diagnostics, chemotherapy, gene therapy, or imaging-guided therapy. Finally, the future perspectives of dendrimer-based glioma theraputics are also briefly discussed.


Assuntos
Dendrímeros , Glioma , Humanos , Barreira Hematoencefálica/metabolismo , Dendrímeros/química , Medicina de Precisão , Glioma/diagnóstico por imagem , Glioma/tratamento farmacológico , Glioma/metabolismo , Sistemas de Liberação de Medicamentos/métodos
4.
J Environ Manage ; 352: 120037, 2024 Feb 14.
Artigo em Inglês | MEDLINE | ID: mdl-38194872

RESUMO

Herbicide abuse has a significantly negative impact on soil microflora and further influences the ecological benefit. The regulating measures and corresponding mechanisms mitigating the decreased bacterial diversity due to herbicide use have rarely been studied. A field experiment containing the application gradient of an efficient maize herbicide thiencarbazone-methyl·isoxaflutole was performed. The relationship between soil bacterial community and thiencarbazone-methyl·isoxaflutole use was revealed. Modified attapulgite was added to explore its impacts on soil microflora under the thiencarbazone-methyl·isoxaflutole application. Based on the analytic network process-entropy weighting method-TOPSIS method model, the ecological benefit focusing on microbial responses was quantitatively estimated along with technical effectiveness and economic benefit. The results showed that the diversity indices of soil microflora, especially the Inv_Simpson index, were reduced at the recommended, 5 and 10 times the recommended dosages of thiencarbazone-methyl·isoxaflutole use. The Flavisolibacter bacteria was negatively correlated with the residues in soils based on the random forest model and correlation analysis, indicating a potential degrader of thiencarbazone-methyl·isoxaflutole residues. The structural equation model further confirmed that the high soil water content and soil pH promoted the function of Flavisolibacter bacteria, facilitated the dissipation of thiencarbazone-methyl·isoxaflutole residues and further improved the diversity of soil microflora. In addition, the presence of modified attapulgite was found to increase the soil pH, which may improve bacterial diversity through the regulating pathway. This explained the high ecological benefits of the treatment where the thiencarbazone-methyl·isoxaflutole was applied at the recommended dosage rates in conjunction with modified attapulgite addition. Therefore, the comprehensive benefits of thiencarbazone-methyl·isoxaflutole application with a focus on ecological benefits can be improved by regulating the soil pH with modified attapulgite.


Assuntos
Herbicidas , Isoxazóis , Compostos de Magnésio , Compostos de Silício , Herbicidas/química , Solo , Bactérias/metabolismo , Microbiologia do Solo
5.
Hepatology ; 79(1): 79-95, 2024 Jan 01.
Artigo em Inglês | MEDLINE | ID: mdl-37125628

RESUMO

BACKGROUND AND AIMS: Extrachromosomal circular DNAs (eccDNAs) are prevalent in cancer genomes and emerge as a class of crucial yet less characterized oncogenic drivers. However, the structure, composition, genome-wide frequency, and contribution of eccDNAs in HCC, one of the most fatal and prevalent cancers, remain unexplored. In this study, we provide a comprehensive characterization of eccDNAs in human HCC and demonstrate an oncogenic role of microRNA (miRNA)-17-92-containing eccDNAs in tumor progression. APPROACH AND RESULTS: Using the circle-sequencing method, we identify and characterize more than 230,000 eccDNAs from 4 paired samples of HCC tumor and adjacent nontumor liver tissues. EccDNAs are highly enriched in HCC tumors, preferentially originate from certain chromosomal hotspots, and are correlated with differential gene expression. Particularly, a series of eccDNAs carrying the miRNA-17-92 cluster are validated by outward PCR and Sanger sequencing. Quantitative PCR analyses reveal that miRNA-17-92-containing eccDNAs, along with the expression of their corresponding miRNAs, are elevated in HCC tumors and associated with poor outcomes and the age of HCC patients. More intriguingly, exogenous expression of artificial DNA circles harboring the miR-17-92 cluster, which is synthesized by the ligase-assisted minicircle accumulation method, can significantly accelerate HCC cell proliferation and migration. CONCLUSIONS: These findings delineate the genome-wide eccDNAs profiling of HCC and highlight the functional significance of miRNA-containing eccDNAs in tumorigenesis, providing insight into HCC pathogenesis and cancer therapy, as well as eccDNA and miRNA biology.


Assuntos
Carcinoma Hepatocelular , Neoplasias Hepáticas , MicroRNAs , Família Multigênica , Humanos , Carcinoma Hepatocelular/genética , DNA Circular/genética , Neoplasias Hepáticas/genética , MicroRNAs/genética , Reação em Cadeia da Polimerase
6.
Artigo em Inglês | MEDLINE | ID: mdl-38064608

RESUMO

Background: Ovarian endometriomas, resulting from the invasion of endometriosis into ovarian tissue, can significantly affect ovarian reserve, potentially leading to infertility. When conservative treatments fail, it may further aggravate ovarian reserve decline by invading the ovarian cortex and, in severe cases, result in premature ovarian failure and infertility. Objective: This study aimed to investigate the impact of various hemostasis methods on ovarian reserve function in cases of laparoscopic cystectomy for ovarian endometriomas. Methods: We conducted a systematic review and meta-analysis to assess the effects of different hemostasis techniques used during laparoscopic cystectomy for ovarian endometriomas. A comprehensive analysis of relevant literature was performed, focusing on the impact of bipolar electrocoagulation, ultrasonic scalpel, and suture hemostasis on ovarian reserve function. The evaluation criteria included Anti-Müllerian hormone levels and antral follicle counts. Results: Our analysis revealed significant variations in the impact of hemostasis methods on ovarian reserve function. While all methods aimed to stop bleeding during surgery, the thermal damage to surrounding tissues differed. Bipolar electrocoagulation, ultrasonic scalpel, and suture hemostasis showed varying effects on ovarian reserve, with implications for post-operative fertility. Conclusions: The choice of the hemostasis method in laparoscopic cystectomy for ovarian endometriomas has a crucial influence on ovarian reserve function. Our findings emphasize the need to consider the potential consequences of thermal damage when selecting a hemostasis technique. Clinicians should weigh the benefits and risks of each method to protect ovarian reserve function effectively. This study offers valuable insights for guiding clinical practice, ensuring optimal outcomes for patients facing endometrioma-related fertility challenges.

8.
Environ Sci Pollut Res Int ; 30(58): 122726-122739, 2023 Dec.
Artigo em Inglês | MEDLINE | ID: mdl-37975985

RESUMO

Large risks and opportunities arise for production operations as a result of international governmental initiatives to limit carbon emissions. In instance, high-emitting manufacturing processes may be a reflection of productive inefficiencies and the uncertainty of the prices of carbon dioxide emissions. Recently, there has been a lot of attention paid to the topic of ecologically responsible supply chain management. Therefore, participants in the supply chain have worked together to create effective contracts, often known as green supply chain management contracts. In order to demonstrate the key role of financial efficiency, environmental sustainability, and supply chain management in sustainable growth and digital technology development, this study considers the data for BRICS economies over the period of 2008-2022. However, under the supply chain management, this study considers the innovation efficiency, input, and output to evaluate the external determinants. However, this study employs the OLS, 2SLS, and AMG estimator to demonstrate the robust and reliable outcomes for selected economies. In compile words, this study divides empirical scheme into two different explained variables such as sustainable growth and development of digital technologies. However, to show empirical scheme very catchy, the present study uses the simultaneous equation models. Therefore, all selected indicators of sustainable growth contribute to economic growth efficiently except the foreign direct investment. Besides for the digital technology development, all factors significantly contribute to digital technologies except the carbon emissions and foreign direct investment. Additional robust tests confirm the consistency and stability of the findings reached in this research. Thus, to improve economic performance, digital economy development, and sustainability, authorities in BRICS areas should develop strategies that enhance digital economy development under the green supply chain management.


Assuntos
Dióxido de Carbono , Desenvolvimento Econômico , Humanos , Desenvolvimento Industrial , Investimentos em Saúde , Eficiência
9.
Biomater Sci ; 11(22): 7387-7396, 2023 Nov 07.
Artigo em Inglês | MEDLINE | ID: mdl-37791576

RESUMO

Nanoplatforms with amplified passive tumor targeting and enhanced protein resistance can evade unnecessary uptake by the reticuloendothelial system and achieve high tumor retention for accurate tumor theranostics. To achieve this goal, we here constructed phosphorus core-shell tecto dendrimers (CSTDs) with a rigid aromatic backbone core as a nanoplatform for enhanced fluorescence and single-photon emission computed tomography (SPECT) dual-mode imaging of tumors. In this study, the phosphorus P-G2.5/G3 CSTDs (G denotes generation) were partially conjugated with tetraazacyclododecane tetraacetic acid (DOTA), cyanine5.5 (Cy5.5) and 1,3-propane sulfonate (1,3-PS) and then labeled with 99mTc. The formed P-G2.5/G3-DOTA-Cy5.5-PS CSTDs possess good monodispersity with a particle size of 10.1 nm and desired protein resistance and cytocompatibility. Strikingly, compared to the counterpart material G3/G3-DOTA-Cy5.5-PS with both the core and shell components being soft poly(amidoamine) dendrimers, the developed P-G2.5/G3-DOTA-Cy5.5-PS complexes allow for more efficient cellular uptake and more significant penetration in 3-dimensional tumor spheroids in vitro, as well as more significant tumor retention and accumulation for enhanced dual-mode fluorescence and SPECT (after labelling with 99mTc) tumor imaging in vivo. Our studies suggest that the rigidity of the core for the constructed CSTDs matters in the amplification of the tumor enhanced permeability retention (EPR) effect for improved cancer nanomedicine development.


Assuntos
Dendrímeros , Neoplasias , Humanos , Tomografia Computadorizada de Emissão de Fóton Único , Linhagem Celular Tumoral
10.
Obes Surg ; 33(11): 3510-3516, 2023 11.
Artigo em Inglês | MEDLINE | ID: mdl-37804471

RESUMO

BACKGROUND AND PURPOSE: Dumping syndrome (DS) is a shared but underappreciated complication after metabolic-bariatric surgery. The purpose of the study was to investigate the prevalence and intensity of symptoms suggestive of DS and their relationship with health-related quality of life (HRQOL) after laparoscopic sleeve gastrectomy (LSG). METHOD: A retrospective cohort study was performed for all patients with a history of sleeve gastrectomy between July 2017 and July 2022 in our center. Basial clinic statistics were gathered from electronic medical database, the prevalence and severity of DS were assessed by Dumping Symptom Rating Scale (DSRS), and HRQOL is collected through the Short Form Health Survey 36 (SF-36). RESULT: In total, 133 of 202 patients completed the questionnaire (response rate 65.8%). A total of 64.7% (N = 86) of participants were female, aged 34.0 (IQR 26.0-39.0) years at completion of the questionnaire, with a mean body mass index of 35.8 (IQR 31.4-40.5) kg/m2. The prevalence of symptoms suggestive of DS was 45.9% (N = 61), and the associated protective factor was the time between surgery and study. Compared with the patients without DS, patients with DS scored significantly worse on four of eight SF-36 subdomains. CONCLUSION: Symptoms suggestive of early dumping syndrome after sleeve gastrectomy are common and are associated with a worse health-related quality of life, which deserves clinical attention. Additional counselling, education, and care are needed to mitigate the decline in quality of life caused by dumping symptoms.


Assuntos
Laparoscopia , Obesidade Mórbida , Humanos , Feminino , Masculino , Síndrome de Esvaziamento Rápido/epidemiologia , Síndrome de Esvaziamento Rápido/etiologia , Síndrome de Esvaziamento Rápido/diagnóstico , Obesidade Mórbida/cirurgia , Incidência , Qualidade de Vida , Estudos Retrospectivos , Laparoscopia/efeitos adversos , Gastrectomia/efeitos adversos
11.
Sci Total Environ ; 905: 167280, 2023 Dec 20.
Artigo em Inglês | MEDLINE | ID: mdl-37742950

RESUMO

To highlight how biochar affects the interaction between inorganic nitrogen species (ammonium nitrogen, nitrate nitrogen, and nitrite nitrogen: NH4+-N, NO3¯-N, and NO2¯-N) and phosphorus species (calcium phosphate, iron phosphate, and aluminum phosphate: CaP, FeP and AlP) in soil and plant uptake of these nutrients, walnut shell (WS)- and corn cob (CC)-derived biochars (0.5 %, 1 %, 2 %, and 4 %, w/w) were added to a weakly alkaline soil, and then Chinese cabbages were planted. The results showed that the changes in soil inorganic nitrogen were related to biochar feedstock, pyrolysis temperature, and application rate. For soil under the active nitrification condition (dominant NO3¯-N), a significant decrease in the NH4+-N/NO3¯-N ratio after biochar addition indicates enhanced nitrification (excluding WS-derived biochars at 2 % and 4 %), which can be explained by the most positive response of ammonia-oxidizing archaeal amoA to biochar addition. The CC-derived biochar more effectively enhanced soil nitrification than WS-derived biochar did. The addition of 4 % of biochars significantly increased soil inorganic phosphorus, and the addition of CC-derived biochars more effectively increased Ca2P than WS-derived biochars. Biochars significantly decreased plant uptake of phosphorus, while generally had little influence on plant uptake of nitrogen. Interestingly, NO2¯-N in soil significantly positively correlated with total phosphorus in both soil and plant, and significantly negatively correlated with phoC, indicating that a certain degree of NO2¯-N accumulation in soil slightly facilitated plant uptake of phosphorus but inhibited phoC-harboring bacteria. The NO3¯-N in soil significantly positively correlated with Ca2P and Ca8P, while the NH4+-N/NO3¯-N ratio significantly negatively correlated with Ca10P and FeP, indicating that the enhanced nitrification seemed to facilitate the change in phosphorus to readly available ones. This study will help determine how to scientifically and rationally use biochar to regulate inorganic nitrogen and phosphorus species in soil and plant uptake of these nutrients.


Assuntos
Fertilizantes , Solo , Fertilizantes/análise , Fósforo , Nitrogênio/análise , Dióxido de Nitrogênio , Carvão Vegetal
12.
Environ Technol ; : 1-11, 2023 Aug 17.
Artigo em Inglês | MEDLINE | ID: mdl-37589513

RESUMO

The processes of surfactant-enhanced soil washing have been widely applied to the remediation of polycyclic aromatic hydrocarbon (PAH)-contaminated soil, accompanied by the production of soil washing eluent. In this study, novel composite materials of beads containing alginate, carboxymethyl cellulose and diatomite (SCD) were used to encapsulate Bacillus subtilis to remove phenanthrene (PHE) from simulated soil washing eluent with rhamnolipid. The effects of dosage, pH and temperature on the PHE removal performance were explored, and the optimal PHE removal conditions [SCD bead dose 16.2% (w:v), pH 7.1 and 30.6°C] were determined using response surface methodology. After incubation in simulated soil washing eluent for 7 d, SCD beads removed 84.92% of PHE, which was 49.18% higher than by free bacteria. In addition, SCD beads mainly removed PHE through biodegradation processes, and the degradation rate (1.38 mg L-1 d-1) was higher than that of free bacteria (0.64 mg L-1 d-1). Characterization results revealed that the immobilized substrate provided the micro-environment for bacteria and reduced the intense effect of high rhamnolipid concentration. Reusability results showed that SCD beads could be recycled four times to remove 80.05% of PHE. Collectively, SCD beads have great prospects for the decontamination of soil-washing eluent containing complex components.

13.
PLoS One ; 18(6): e0287099, 2023.
Artigo em Inglês | MEDLINE | ID: mdl-37319291

RESUMO

Quantifying the colors of objects is useful in a wide range of applications, including medical diagnosis, agricultural monitoring, and food safety. Accurate colorimetric measurement of objects is a laborious process normally performed through a color matching test in the laboratory. A promising alternative is to use digital images for colorimetric measurement, due to their portability and ease of use. However, image-based measurements suffer from errors caused by the non-linear image formation process and unpredictable environmental lighting. Solutions to this problem often perform relative color correction among multiple images through discrete color reference boards, which may yield biased results due to the lack of continuous observation. In this paper, we propose a smartphone-based solution, that couples a designated color reference board with a novel color correction algorithm, to achieve accurate and absolute color measurements. Our color reference board contains multiple color stripes with continuous color sampling at the sides. A novel correction algorithm is proposed to utilize a first-order spatial varying regression model to perform the color correction, which leverages both the absolute color magnitude and scale to maximize the correction accuracy. The proposed algorithm is implemented as a "human-in-the-loop" smartphone application, where users are guided by an augmented reality scheme with a marker tracking module to take images at an angle that minimizes the impact of non-Lambertian reflectance. Our experimental results show that our colorimetric measurement is device independent and can reduce up to 90% color variance for images collected under different lighting conditions. In the application of reading pH values from test papers, we show that our system performs 200% better than human reading. The designed color reference board, the correction algorithm, and our augmented reality guiding approach form an integrated system as a novel solution to measure color with increased accuracy. This technique has the flexibility to improve color reading performance in systems beyond existing applications, evidenced by both qualitative and quantitative experiments on example applications such as pH-test reading.


Assuntos
Realidade Aumentada , Aplicativos Móveis , Humanos , Smartphone , Colorimetria , Iluminação
14.
Sci Total Environ ; 883: 163676, 2023 Jul 20.
Artigo em Inglês | MEDLINE | ID: mdl-37100153

RESUMO

Sulfamethoxazole (SMX, a sulfonamide antibiotic) is ubiquitously present in various aqueous systems, which can accelerate the spread of antibiotic resistance genes, induce genetic mutations, and even disrupt the ecological equilibrium. Considering the potential eco-environmental risk of SMX, this study explored an effective technology using Shewanella oneidensis MR-1 (MR-1) and nanoscale zero-valent iron-enriched biochar (nZVI-HBC) to remove SMX from aqueous systems with different pollution levels (1-30 mg·L-1). SMX removal by nZVI-HBC and nZVI-HBC + MR-1 (55-100 %) under optimal conditions (iron/HBC ratio of 1:5, 4 g·L-1 nZVI-HBC, and 10 % v/v MR-1) was more effective than its removal by MR-1 and biochar (HBC) (8-35 %). This was due to the catalytic degradation of SMX in the nZVI-HBC and nZVI-HBC + MR-1 reaction systems because of accelerated electron transfer during oxidation of nZVI and reduction of Fe(III) to Fe(II). When SMX concentration was lower than 10 mg·L-1, nZVI-HBC + MR-1 effectively removed SMX (removal rate of approximately 100 %) when compared to nZVI-HBC (removal rate of 56-79 %). In addition to oxidation degradation of SMX by nZVI in the nZVI-HBC + MR-1 reaction system, MR-1-driven dissimilatory iron reduction accelerated electron transfer to SMX, thereby enhancing reductive degradation of SMX. However, a considerable decline in SMX removal from the nZVI-HBC + MR-1 system (42 %) was observed when SMX concentrations ranged 15-30 mg·L-1, which was due to the toxicity of accumulated degradation products of SMX. A high interaction probability between SMX and nZVI-HBC promoted the catalytic degradation of SMX in the nZVI-HBC reaction system. The results of this study provide promising strategies and insights for enhancing antibiotic removal from aqueous systems with different pollution levels.


Assuntos
Sulfametoxazol , Poluentes Químicos da Água , Ferro , Antibacterianos , Carvão Vegetal , Água
15.
Bull Environ Contam Toxicol ; 110(5): 83, 2023 Apr 24.
Artigo em Inglês | MEDLINE | ID: mdl-37093286

RESUMO

This field study explored safe rice production in Cd-contaminated red paddy soil by application of the combined Si-/Se- containing foliar inhibitors (Si or Se) and the mixture amendments of quicklime (Q), polyacrylamide (A), or/and sepiolite (S) at low (1) and high (2) application rates. The results showed that all treatments increased soil pH and decreased total P and soil organic matter (excluding QSe2). With the increasing application rates, QAS significantly decreased the available Cd because of the enhanced stabilization, while QSi and QSe significantly increased the available Cd because of the inhibited plant uptake. After remediation, QA1, QSi2, and QSe2 most effectively decreased the uptake Cd by rice to meet the threshold of National Food Safety Standard of China. The treatments excluding Q1, QA1, QSi1, and QSi2 did not dramatically change the bacterial community structure in soil. Collectively, QSe2 was recommended for remediating Cd-contaminated red paddy soil.


Assuntos
Oryza , Poluentes do Solo , Cádmio/análise , Oryza/química , Poluentes do Solo/análise , Poluição Ambiental , Solo/química
16.
MedComm (2020) ; 4(3): e248, 2023 Jun.
Artigo em Inglês | MEDLINE | ID: mdl-37063610

RESUMO

Recent technological advances have re-invigorated the interest in nuclear translation (NT), but the underlying mechanisms and functional implications of NT remain unknown. Here we show that NT is enhanced in malignant cancer cells and is associated with rapid cell growth. Nuclear ribopuromycylation analyses in a panel of diverse cell lines revealed that NT is scarce in normal immortalized cells, but is ubiquitous and robust in malignant cancer cells. Moreover, NT occurs in the nucleolus and requires normal nucleolar function. Intriguingly, NT is reduced by cellular stresses and anti-tumor agents and positively correlates with cancer cell proliferation and growth. By using a modified puromycin-associated nascent chain proteomics, we further identified numerous oncoproteins that are preferentially translated in the nucleus, such as transforming growth factor-beta 2 (TGFB2) and nucleophosmin 1 (NMP1). Specific overexpression of TGFB2 and NMP1 messenger RNAs in the nucleus can increase their protein levels and promote tumorigenesis. These findings establish a previously unknown link between NT and malignancy and suggest that cancer cells might have adapted a mechanism of NT to support their need for rapid growth, which highlight the potential of NT in tumorigenesis and might also open up new possibilities for therapeutic targeting of cancer-specific cellular functions.

17.
PLoS Pathog ; 19(1): e1011131, 2023 01.
Artigo em Inglês | MEDLINE | ID: mdl-36701392

RESUMO

The rapid emergence of SARS-CoV-2 variants of concern, the complexity of infection, and the functional redundancy of host factors, underscore an urgent need for broad-spectrum antivirals against the continuous COVID-19 pandemic, with drug repurposing as a viable therapeutic strategy. Here we report the potential of RNA G-quadruplex (RG4)-targeting therapeutic strategy for SARS-CoV-2 entry. Combining bioinformatics, biochemical and biophysical approaches, we characterize the existence of RG4s in several SARS-CoV-2 host factors. In silico screening followed by experimental validation identify Topotecan (TPT) and Berbamine (BBM), two clinical approved drugs, as RG4-stabilizing agents with repurposing potential for COVID-19. Both TPT and BBM can reduce the protein level of RG4-containing host factors, including ACE2, AXL, FURIN, and TMPRSS2. Intriguingly, TPT and BBM block SARS-CoV-2 pseudovirus entry into target cells in vitro and murine tissues in vivo. These findings emphasize the significance of RG4 in SARS-CoV-2 pathogenesis and provide a potential broad-spectrum antiviral strategy for COVID-19 prevention and treatment.


Assuntos
COVID-19 , SARS-CoV-2 , Humanos , Animais , Camundongos , SARS-CoV-2/metabolismo , RNA , Pandemias , Antivirais/metabolismo , Internalização do Vírus , Glicoproteína da Espícula de Coronavírus
18.
Environ Sci Pollut Res Int ; 30(1): 739-751, 2023 Jan.
Artigo em Inglês | MEDLINE | ID: mdl-35902529

RESUMO

Few studies have carried out soil washing experiments using pot experiments to simulate in situ soil washing operations, particularly for alkaline soils. This study explored the effects of multiple washing operations using pot experiments on the removal efficiencies of potentially toxic metals (PTM) from alkaline farmland soil and the reuse strategy of washed soil for safe agricultural production. The results showed that the removal efficiencies of Cd, Pb, Cu, and Zn after seven washings with a mixed chelator (EDTA, GLDA, and citric acid) were 41.1%, 47.1%, 14.7%, and 26.5%, respectively, which was close to the results of the EDTA treatment. For the alkaline soil studied, the second washing with the mixed chelators most effectively removed PTM owing to the activation of them after the first washing operation. The mixed chelator more effectively increased the proportion of stable fraction of PTM and maintained soil nutrients (e.g., nitrogen content) than EDTA, indicating little disturbance of alkaline soil quality after washing with the mixed chelator. After the amendment of the washed soil, there was no visible difference in the biomass weight of crops from the soils washed with different agents, indicating that the inhibitory effect of both washing agents on plant growth was effectively alleviated. The Cd and Pb contents in Z. mays were below the threshold of Hygienical Standard for Feeds of China (GB 13078-2017) (1 and 30 mg·kg-1). Moreover, after three cropping operations, the available concentrations of PTM in the soil washed with the mixed chelator were lower than those in the soil washed with EDTA, indicating the value and potential of agricultural reuse of alkaline farmland soil washed with the mixed chelator.


Assuntos
Isópodes , Metais Pesados , Poluentes do Solo , Animais , Solo , Metais Pesados/análise , Ácido Edético , Cádmio , Fazendas , Chumbo , Poluentes do Solo/análise , Quelantes
19.
Sci Total Environ ; 860: 160499, 2023 Feb 20.
Artigo em Inglês | MEDLINE | ID: mdl-36436644

RESUMO

Combined effects of potentially toxic materials (PTMs) released from production activities on microbial communities in environmental flimsy area are poorly recognised. Microplastics (MPs) and potentially toxic elements (PTEs) were investigated in soils and river sediments in a headwater catchment from the Qinghai-Tibet Plateau. Their co-effects on microbial communities and the controlling factors affecting communities were further explored. Results showed that MPs and PTEs significantly accumulated in soils and sediments. Among which fragment-shaped MPs and copper (Cu) dominated, with mean contents of 1.11 × 104 and 1.81 × 104 items kg-1 and 13.80 and 7.33 mg kg-1 in soils and sediments, respectively. Distribution index (0.54) suggested that fiber-shaped MPs preferred to transport into rivers and deposited in sediments. The film mulching contributed significantly to the occurrence of fragment-shaped MPs, while Cu may be derived from industrial wastewater. The antagonistic effect between fiber-shaped MPs and zinc (Zn) on soil microbial structure was found based on their obtuse angle in canonical correlation analysis. While the synergistic effect between total phosphorus (TP) and Cu on diversity was detected by interaction detector model (q(TP ∩ Cu) >q(TP) >q(Cu), p < 0.05). Soil TP and Cu were identified as controlling factors influencing diversity through random forest model and factor detector (q(TP) = 0.49, q(Cu) = 0.36, p < 0.05), which may be related to direct nutrient supply and microbial resistance, respectively. The negative effects of MPs on structure might be counteracted by increasing Zn content, while the co-existence of TP and Cu further increased diversity. A diagnostic framework, which involves background data collection, sampling analysis, characterisation and relationship investigation, was proposed to explore the co-effects of complex pollution and factors on communities. This study may provide strategies to mitigate the negative effects on microorganisms in the environment.


Assuntos
Microbiota , Microplásticos , Plásticos , Cobre/toxicidade , Solo/química , Zinco , Monitoramento Ambiental
20.
Micromachines (Basel) ; 13(12)2022 Dec 08.
Artigo em Inglês | MEDLINE | ID: mdl-36557467

RESUMO

This paper describes the application of bonded magnetic abrasive powders (MAPs) in the magnetic abrasive finishing (MAF) process. In order to improve the poor finishing performance and short service life of MAPs in polishing super-hard materials, a double-stage atomization technique was used to successfully manufacture MAPs with a CBN as an abrasive phase. The prepared results show that CBN abrasives with their original structure were deeply and densely embedded on the surface of spherical MAPs. Based on the MAF process, a five-level and four-factor central composite design experiment was carried out to verify the developed MAPs polishing performance on the finishing of cemented carbide parts (864 Hv). Working gap, rotational speed, feed rate of a workpiece, and mesh number of MAP were considered as influence factors. The analysis data was used to understand different interactions of significant parameters. A regression model for predicting the change of surface roughness was obtained, and the optimal parameter combination was figured out through a solution of a quadratic equation in Design-Expert software. According to MAF results, the strong cutting ability of atomized CBN MAPs improved the surface roughness of cemented carbide by over 80% at the optimum parameters. The strong cutting ability of atomized CBN MAPs can produce good surface quality on the hard materials. The findings of this research can promote a large-scale application of MAF technology in the surface polishing of hard materials.

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