Publications by authors named "Dong Pei"

Although nanotheranostics have great potential in tumor immunotherapy, their effectiveness is often hindered by low immunogenic cell death (ICD) and inactivated immune responses in the tumor immunosuppressive microenvironment (TIME). Such vulnerability may lead to metastasis or recurrence, especially in triple-negative breast cancer (TNBC). Addressing this challenge, the study presents a multimodal immunotherapeutic approach using a self-enhanced ICD copper (Cu)-based hollow nanogenerator.

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Gas therapy (GT) and/or phototherapy have been recently employed as immunogenic cell death (ICD) agents for activating immunotherapy, whereas the effective activation of sufficient immune responses remains an enormous challenge in such single therapeutic modality. In this study, a near-infrared (NIR)-triggered programmable nanomotor with hydrogen sulfide (HS) and nitric oxide (NO) generation is well designed to achieve oncotherapy by cascading mild photothermal, gas, and reactive oxygen species (ROS)-reinforced immunogenic cell death. In brief, a gas signal molecule donor NOSH with HS and NO capable of on-demand HS and NO release was synthesized and then loaded into hollow mesoporous copper sulfide nanoparticles (termed as HCuSNPs) with an inherent NIR absorption and surface modification activity to obtain the programmable nanomotor (termed as NOSH@PEG-HCuSNPs).

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Purpose: Despite the promising application of stereotactic body radiotherapy (SBRT) in renal cell carcinoma (RCC), the optimal time and method for assessing tumor responses to SBRT remain unclear. We aimed to compare the utility of Response Evaluation Criteria in Solid Tumors (RECIST) 1.1 and modified RECIST (mRECIST) in RCC response assessment and clarify the tumor shrinkage pattern post-SBRT.

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Oxidative stress is closely related to the occurrence and development of ischaemic stroke. Natural plant polysaccharides have potential value in inhibiting oxidative stress and preventing ischaemic stroke. Here, a novel neutral polysaccharide named LICP009-3F-1a with a Mw of 10,780 Da was separated and purified from L.

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Purpose: The therapeutic efficacy of metastatic renal cell carcinoma (mRCC) has been significantly enhanced with the advent of immune checkpoint inhibitors (ICIs). However, there are limited data on the efficacy of Tislelizumab in patients with mRCC. This study aimed to assess the effectiveness and safety of Tislelizumab plus tyrosine kinase inhibitor (TKI) for patients with mRCC.

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The SiO/graphite composite is recognized as a promising anode material for lithium-ion batteries (LIBs), owing to the high theoretical capacity of SiO combined with the excellent stability of graphite. However, the inherent disadvantage of volume expansion in silicon-based anodes places significant challenges on the solid electrolyte interphase (SEI) and severely degrades the electrochemical performance. Rational formulation of electrolyte, including its additives, is crucial in accommodating and optimizing the composition of the SEI and enhancing the cell performance.

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Article Synopsis
  • The study evaluates parenchymal volume analysis (PVA) as a potential alternative to nuclear renal scan (NRS) for assessing split renal function (SRF) before and after partial nephrectomy (PN) with warm ischemia.
  • Preoperatively, PVA showed a strong correlation with NRS findings, indicating its reliability for SRF assessment (49.4% vs. 50.0%, P = .501).
  • Results suggest that while PVA is consistent with NRS preoperatively, the efficacy of PVA remains uncertain for post-operative SRF evaluation after PN, indicating a need for further investigation.
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  • Using a protonic ceramic electrocatalytic membrane reactor, methane is converted into higher-value chemicals like benzene with high efficiency and minimal emissions.
  • The system achieved a 15.6% methane conversion rate and an 11.4% benzene yield, which outperform traditional thermochemical methods by 15.7% and 16.0%, respectively.
  • The reactor also effectively removes hydrogen, maintaining stable operation for 45 hours and allowing for catalyst regeneration, presenting a promising solution for reducing carbon impact in chemical processing.
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Background: Adolescent idiopathic scoliosis (AIS) is a complex three-dimensional deformity, and up to now, there has been no literature reporting the analysis of a large sample of X-ray imaging parameters based on artificial intelligence (AI) for it. This study is based on the accurate and rapid measurement of x-ray coronal imaging parameters in AIS patients by AI, to explore the differences and correlations, and to further investigate the risk factors in different groups, so as to provide a theoretical basis for the diagnosis and surgical treatment of AIS.

Methods: Retrospective analysis of 3192 patients aged 8-18 years who had a full-length orthopantomogram of the spine and were diagnosed with AIS at the First Affiliated Hospital of Zhengzhou University from January 2019 to March 2024.

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Natural products play a vital role in human health because people find that they can reduce the incidence of many diseases, such as cancer and cardiovascular diseases. Therefore, researchers have developed many effective techniques for screening and separating active compounds from natural products. High-speed countercurrent chromatography is a unique unsupported liquid-liquid chromatography technology that has been widely used in the separation of natural products.

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In this work, different injection modes (single injection, overlapping injection, and continuous injection) of countercurrent chromatography were used and compared for the isolation and purification of glabridin from the crude extract of Glycyrrhiza glabra. The two-phase solvent system consisting of n-hexane/ethyl acetate/methanol/water (5:4:5:4, v/v) was employed as stationary and mobile phases. Compared with single injection mode, both overlapping injection and continuous injection modes exhibited higher separation efficiency at the same sample loading capacity.

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Conventional consecutive separation methods based on overlapping injection modes produce interactions between samples as the separation time increases. This will lead to a reduction in the purity of the target due to the gradual saturation of the stationary phase distribution. To enhance the purity of the sample preparation and separation efficiency, we devised a consecutive separation method under high-performance counter-current chromatography (HPCCC) utilizing co-current elution and overlapping injection.

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Walnut (Juglans regia L.), an important contributor to oil production among woody plants, encounters research constraints due to difficulties in the subcellular localization and functional analysis of its proteins. These limitations arise from the protracted fruiting cycle and the absence of a reliable transient gene transformation system and organelle markers.

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  • Carbon-supported Fe-based catalysts show promise for converting CO into valuable chemicals like alkenes due to their effective active sites and strong interactions with carbon support.
  • Although progress has been made in improving their performance through various modifications, the impact of the porosity of carbon supports on the catalysts' effectiveness has not been thoroughly studied.
  • Research findings indicate that larger meso and macro-pores in the carbon support enhance the formation of beneficial FeC phases for efficient bond coupling, ultimately increasing the production of valuable carbon-based chemicals, particularly alcohols.
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  • * The study highlights the importance of immune evasion-related genes in ccRCC, identifying eight specific genes that are associated with how well patients respond to immunotherapy.
  • * A predictive model was developed using these genes, which can accurately forecast patients' progression-free survival and may improve clinical decision-making by offering personalized treatment strategies.
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Objectives: To assess the efficacy and safety of preoperative neoadjuvant everolimus in renal angiomyolipomas (AML) patients with or without Tuberous Sclerosis Complex (TSC).

Materials And Methods: This multi-institutional retrospective study enrolled renal AML patients who underwent partial nephrectomy (PN) or total nephrectomy after receiving at least 1 month of pre-operative everolimus. Imaging evaluations were collected before and after treatment, along with demographic, surgical, and follow-up information.

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Owing to its ability to separate substances with a broad scope of polarities, exploring the three-phase solvent systems (TPSSs) with high-speed countercurrent chromatography is a topic of interest in separation science, and their retention volumes should be more concerned. This study primarily investigates the behavior of retention volumes while examining the isolation abilities of the TPSS in the technique above. We took standard compounds, including sophoricoside, Sudan red 7B, and rotenone, which have a broad range of polarity, for investigation in this study and separated them using different four-liquid TPSSs made up of water, acetonitrile, methyl acetate, and n-hexane (WAMH).

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Human health is under growing threat from the increasing incidence of bacterial infections. Through their antimicrobial mechanisms, bacteria use appropriate strategies to overcome the antimicrobial effects of antibiotics. The enhanced effects of synergistic strategies on drug-resistant bacteria and biofilms have led to increasing interest in these approaches in recent years.

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Introduction: Astragaloside IV (AS-IV) is an index for the quality evaluation of the traditional Chinese medicine Astragalus and an important material basis for Astragalus to exert its medicinal effects, and it is difficult to obtain a single AS-IV by ordinary separation methods.

Objective: To find a new isolation method that can prepare AS-IV quickly and efficiently.

Methodology: AS-IV was isolated from Astragalus membranaceus extract by high-speed countercurrent chromatography using a two-phase solvent system consisting of ethyl acetate/n-butanol/water (4.

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Skin cancer images have hair occlusion problems, which greatly affects the accuracy of diagnosis and classification. Current dermoscopic hair removal methods use segmentation networks to locate hairs, and then uses repair networks to perform image repair. However, it is difficult to segment hair and capture the overall structure between hairs because of the hair being thin, unclear, and similar in color to the entire image.

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  • A deep learning model was developed to automatically reconstruct coronary CT angiography (CCTA) images for patients with origin anomalies, stents, or bypass grafts.
  • The model was trained on data from over 8,000 patients and showed successful reconstruction rates of up to 100% for certain conditions, with higher image quality scores compared to manual methods.
  • The deep learning approach also significantly reduced the time it takes for image processing, cutting it down from around 465 seconds to just 11 seconds, enhancing clinical workflow.
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  • Large language models have potential for enhancing radiology workflows, but their effectiveness in structured tasks like RADS categorization hasn't been thoroughly investigated.
  • This study tested three chatbots (Claude-2, GPT-3.5, and GPT-4) on categorizing radiology reports according to RADS standards, exploring different prompting strategies to see which produced the best results.
  • Results revealed that Claude-2 performed the best, particularly when using few-shot prompts and guideline PDFs, achieving 57% overall accuracy, while all chatbots displayed low performance without effective prompt engineering.
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Targeted regulation using transgrafting technology has become a trend. However, the mechanisms of transgene-derived signal communication between rootstocks and scions remain unclear in woody plants. Here, we grafted wild-type (WT) walnut ( L.

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The epoxy propanol molecular cage bonded silica stationary phase, RCC3-GLD@silica, synthesized through the ring-opening reaction of secondary amine with epoxy propanol using RCC3-R as the scaffold unit, was successfully prepared as confirmed by infrared spectroscopy, thermogravimetric analysis, and nitrogen adsorption-desorption characterization. This stationary phase demonstrated excellent separation performance in both reversed-phase and hydrophilic chromatography modes, effectively separating a wide variety of compounds including alkylbenzenes, polycyclic aromatic hydrocarbons, phenols, anilines, sulfonamides, nucleosides, amino acids, sugars, and acids. The development of RCC3-GLD@silica benefits from the synergistic effects of its hydrophobic and hydrophilic actions, as evidenced by the U-shaped characteristic of the retention factor for nucleoside compounds with changes in the aqueous content of the mobile phase, further confirming the simultaneous presence of reversed-phase and hydrophilic chromatography mechanisms.

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  • A new method has been developed for continuously separating Voriconazole enantiomers using sulfobutyl ether-β-cyclodextrin (SBE-β-CD) as a chiral selector in high-speed countercurrent chromatography (HSCCC).
  • The separation process utilized a two-phase solvent system and demonstrated a successful scale-up using an analytical HSCCC instrument, maintaining consistent separation and enhancing throughput by 11 times.
  • The preparative HSCCC achieved the separation of 506 mg of racemate, yielding enantiomers with over 99% purity, as confirmed by high-performance liquid chromatography.
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