Publications by authors named "WenWen Li"

Natural few-layer graphene is unambiguously identified from the Chang'e-5 lunar soil samples, which serves as a new platform for investigating extraterrestrial bodies.

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Background: We aim to explore the impact of excessive glutathione (GSH) intake on chemotherapy sensitivity in breast cancer.

Methods: Clinicopathological data were collected from 460 breast cancer patients who underwent adjuvant chemotherapy from January 2016 to December 2019 from Zhengzhou University People's Hospital. The clinicopathological characteristics following GSH treatment were collected and compared with those in Non-GSH group after 1:2 propensity score matching (PSM).

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Deciphering the complex interplay between neuronal activity and mitochondrial function is pivotal in understanding brain aging, a multifaceted process marked by declines in synaptic function and mitochondrial performance. Here, we identified an age-dependent coupling between neuronal and synaptic excitation and mitochondrial DNA transcription (E-TC), which operates differently compared to classic excitation-transcription coupling in the nucleus (E-TC). We demonstrated that E-TC repurposes molecules traditionally associated with E-TC to regulate mitochondrial DNA expression in areas closely linked to synaptic activation.

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To investigate the factors influencing the colonoscopy screening behavior of first-degree relatives of colorectal cancer patients and to provide a basis for formulating screening intervention strategies. In this study, 15 first-degree relatives of colorectal cancer patients in the Department of Medical Oncology of a tertiary hospital in Baoding City from May to July 2024 were selected as the research subjects, and face-to-face semi-structured interviews were conducted. The theme was analyzed and summarized based on the theory of planned behavior and Colaizzi's 7-step analysis method.

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Organoids are rapidly self-organizing 3D in vitro cultures derived from pluripotent stem cells (PSCs) or adult stem cells (ASCs) that possess disease-like characteristics with high success rates. Due to their ability to retain tissue structure, biological phenotypes, and genetic information, they have been utilized as a novel in vitro model for disease research. In recent years, scientists have established self-organizing 3D organoids for human endometrium, fallopian tubes, ovaries, and cervix by culturing stem cells with cytokines in 3D scaffolds.

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Dual-emission light-emitting diodes (DEDs) have great promising applications in medical imaging, optical communication, data storage, and three-dimensional display. The precise material design and advanced packaging technology for the construction of DEDs are still key challenges for practical application. We demonstrate a straightforward strategy to construct DEDs that deviates from traditional approaches, utilizing commercially available luminescent material of poly(9,9-dioctylfluorene---(4-(3-methylpropyl))diphenylamine) (TFB) and carbon dots (CDs).

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Blastic plasmacytoid dendritic cell neoplasm (BPDCN) is a rare and aggressive lymphohematopoietic malignancy associated with poor prognosis. We aimed to improve the understanding of BPDCN, explore its prognostic significance, and identify potential therapeutic targets. Data from 14 BPDCN patients were retrospectively collected and analyzed, focusing on their clinicopathological characteristics, diagnostic features, immunophenotype, treatment regimens, and prognostic factors.

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Article Synopsis
  • Metabolic dysfunction-associated steatohepatitis (MASH) and hepatitis C (HCV) are both significant contributors to liver damage and diseases such as cirrhosis and cancer, though their shared molecular mechanisms are not well understood.
  • Researchers analyzed gene expression data from various studies to identify 866 common differentially expressed genes (DEGs) associated with both MASH and hepatitis C, and found that cytokine production regulation was a key biological process involved.
  • A protein-protein interaction network highlighted 10 hub genes tied to the disease, and potential drug candidates like Budesonide and Dinoprostone were identified, with Budesonide showing promise in reducing harmful gene expression in treated cellular models.
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The polarization characteristics of atmospheric scattering are important for planetary studies and should not be ignored in radiative transfer simulations. In this study, what we believe to be a new vector radiative transfer model called the polarized adding method of discrete ordinate approximation (POLDDA) is proposed for use in remote sensing applications for ultraviolet-visible and near-infrared spectra. The single-layer radiative transfer process and inhomogeneous multi-layer connection are solved using the discrete ordinate method (DOM) and adding methods, respectively.

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Background: CT is commonly used to image patients with ischaemic stroke but radiologist interpretation may be delayed. Machine learning techniques can provide rapid automated CT assessment but are usually developed from annotated images which necessarily limits the size and representation of development data sets. We aimed to develop a deep learning (DL) method using CT brain scans that were labelled but not annotated for the presence of ischaemic lesions.

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Alzheimer's disease (AD) is a common neurodegenerative disease, neuroinflammation is an early pathological feature of AD. However, the alteration of the immune microenvironment in asymptomatic AD was not fully explained. In this study, we aimed to utilize the transcriptome data of AD patients in public databases to reveal the change of immune microenvironment in asymptomatic AD and screen the potential drug targets.

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  • The study identifies twenty-two SWEET genes involved in transporting sugar for plant growth, revealing their distribution across eleven chromosomes and classification into four subfamilies.
  • It highlights that certain SWEET genes (JsSWEET1, JsSWEET9, and JsSWEET17) are highly expressed in female flower buds during crucial developmental stages, promoting sugar accumulation necessary for differentiation.
  • The research shows that JsSWEET1 enhances sucrose accumulation, while JsSWEET9 and JsSWEET17 facilitate fructose transport, offering insights into the SWEET gene family's role in plant flower development.
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By analyzing the relevant literature, we can accurately grasp the current status of diagnosis and treatment of chronic total occlusion of coronary artery, and clarify the development trend, research frontiers and hotspots of this disease. A literature search with "chronic total occlusion" as the title was performed in the Web of Science database. The title, author, abstract, keywords, institution, publication, country, reference, and other endnotes of the selected literature were exported in the form of text.

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  • American ginseng cultivation in China negatively impacts soil health, leading to lower pH and altered microbial communities over time.
  • Continuous planting reduces both the diversity and beneficial species of soil bacteria and fungi, while increasing harmful pathogens like Fusarium.
  • These changes in soil characteristics are likely contributing to challenges in successfully replanting American ginseng.
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The reconstruction of complete bacterial genomes is essential for microbial research, offering insights into genetic content, ontology and regulation. While Pacific Biosciences (PacBio) provides high-quality genomes, its cost remains a limitation. Oxford Nanopore Technologies (ONT) offers long reads at a lower cost, yet its error rate raises scepticism.

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Maps are fundamental medium to visualize and represent the real word in a simple and philosophical way. The emergence of the big data tide has made a proportion of maps generated from multiple sources, significantly enriching the dimensions and perspectives for understanding the characteristics of the real world. However, a majority of these map datasets remain undiscovered, unacquired and ineffectively used, which arises from the lack of numerous well-labelled benchmark datasets, which are of significance to implement the deep learning techniques into identifying complicated map content.

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Non-line-of-sight (NLOS) imaging aims at recovering the shape and albedo of hidden objects. Despite recent advances, real-time video of complex and dynamic scenes remains a major challenge owing to the weak signal of multiply scattered light. Here we propose and demonstrate a framework of spectrum filtering and motion compensation to realize high-quality NLOS video for room-sized scenes.

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Background: Left ventricular aneurysm (LVA) is a common complication of acute myocardial infarction. We aimed to investigate the association of the platelet-to-albumin ratio (PAR) with LVA formation in patients with acute ST segment elevation myocardial infarction (STEMI) who underwent primary percutaneous coronary intervention (PCI).

Methods: A total of 767 consecutive patients with STEMI were prospectively enrolled.

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Objective: This study aims to evaluate the clinical management and effectiveness of metagenomic next-generation sequencing (mNGS) in patients with pyogenic spinal infections.

Methods: We conducted a retrospective review of 17 patients diagnosed with pyogenic spinal infections and treated at our institution between October 2022 and February 2024. The cohort included 8 males and 9 females, with a mean age of 63.

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Article Synopsis
  • Weeding is crucial for agriculture, and with advancements in tech, automated weeding is seen as the future, particularly focusing on accurately detecting plants like corn and weeds that often look alike.* -
  • The paper introduces an improved detection model named DC-YOLO, which enhances feature extraction through a Dual Coordinate Attention model and optimizes up-sampling using a learnable feature reorganization method called CARAFE.* -
  • Testing on corn and weed datasets, the DC-YOLO model achieved a high detection accuracy of 95.7% mAP@0.5 with lower computational requirements and fewer parameters compared to other lightweight detection models.*
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The influence of chiral materials on organisms is crucial. However, there is little research on the impact of chiral carbon dots (CDs), a kind of typical chiral materials, on biology. Herein, chiral CDs (L-/D-CDs) were synthesized using the thermal polymerization method from citric acid and chiral cysteine.

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Meiosis, a process unique to germ cells, involves formation and repair of double-stranded nicks in DNA, pairing and segregation of homologous chromosomes, which ultimately achieves recombination of homologous chromosomes. Genetic abnormalities resulted from defects in meiosis are leading causes of infertility in humans. Meiotic sex chromosome inactivation (MSCI) plays a crucial role in the development of male germ cells in mammals, yet its underlying mechanisms remain poorly understood.

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Synopsis of recent research by authors named "WenWen Li"

  • - Wenwen Li's recent research primarily focuses on the intersections of biotechnology and genetics, exploring various biochemical mechanisms in organisms to enhance materials and treat diseases effectively.
  • - Significant findings include the synthesis of chiral carbon dots to improve silk's mechanical properties, and insights into both spermatogenesis concerning G6PC3 and the role of Peptostreptococcus anaerobius in colorectal cancer chemotherapy resistance, showcasing a blend of basic and applied biological sciences.
  • - Additional studies reveal innovative approaches in chronic disease treatment, such as utilizing exosomes for colitis therapy and investigating the transcription factor Pax6 in honeybee eye development, highlighting the diversity of Wenwen Li's research interests across different biological systems.