Publications by authors named "Yuzhen Li"

Mitochondria serve as the energy provider and enable life activities, and they are the only organelles containing extra-chromosomal DNA. Each mitochondrion contains multiple copies of its genome, which is usually referred to as mitochondrial DNA (mtDNA). mtDNA encodes necessary electron transport chain complex subunits, as well as the essential RNAs for their translation within the organelle.

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Covering: 2019 to 2024Secondary metabolites (SMs) are naturally occurring defense or signaling molecules that are also utilized as human and animal drugs, crop protection agents, and fine chemicals. Currently, SMs are primarily produced in monoculture settings, devoid of the intricate microbial interactions found in natural environments. Monoculture may lead to the silencing of gene clusters, requiring various genetic or bioprocess strategies to activate the biosynthesis of the corresponding metabolites.

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Coronary atherosclerosis (CAD) is characterized by arterial intima lipid deposition, chronic inflammation, and fibrous tissue proliferation, leading to arterial wall thickening and lumen narrowing. As the primary cause of coronary heart disease and acute coronary syndrome, CAD significantly impacts global health. Recent genetic studies have demonstrated CAD's polygenic and multifactorial nature, providing molecular insights for early diagnosis and risk assessment.

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The tumor microenvironment in glioblastoma (GBM) is characterized by a pronounced immunosuppressive state, which significantly hampers tumor treatment and contributes to treatment resistance. While our previous research established that black phosphorus nanosheets (BPNS) inhibited glioblastoma cell migration and invasion, the impact of BPNS on the anti-tumor-associated immune mechanism remains unexplored. This study firstly investigated whether BPNS could modulate the tumor microenvironment through immunotherapy and elucidated the underlying mechanisms.

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The second near-infrared window (NIR-II) fluorescence imaging has been widely adopted in basic scientific research and preclinical applications due to its exceptional spatiotemporal resolution and deep tissue penetration. Among the various fluorescent agents, organic small-molecule fluorophores are considered the most promising candidates for clinical translation, owing to their well-defined chemical structures, tunable optical properties, and excellent biocompatibility. However, many currently available NIR-II fluorophores exhibit an "always-on" fluorescence signal, which leads to background noise and compromises diagnostic accuracy during disease detection.

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Human muscle activity contains rich information that can reflect human movement patterns and conditions of diseases or physical abnormalities. Flexible pressure sensors enable the assessment of muscle tremors in Parkinson's disease (PD) through Force Myography (FMG). Here, an easily fabricated, ultra-sensitive, and stretchable piezoelectret pressure sensor is presented.

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Article Synopsis
  • - The study introduces a wearable sensor for detecting acetone in breath using a UV-assisted, flexible material made of polydimethylsiloxane (PDMS) and zinc oxide (ZnO), designed for nonintrusive health monitoring.
  • - This sensor can detect acetone concentrations from 1 to 100 ppm and performs reliably under various conditions, including mechanical strain and humidity, remaining stable for over 20 days.
  • - With a fast response time and focused gas detection capabilities, the device offers a practical solution for health management and advances in flexible sensor technology.
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  • * A standardized system for collecting and categorizing this data has been developed, including specific recommendations for measurement techniques and equipment based on usage contexts.
  • * A multi-center collaboration in China seeks to gather data on various skin conditions, linking it to disease information to better understand skin phenotype influences and improve treatment methods, while also working on non-invasive measurement technologies.
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  • The study investigates how Weitiao No. 3 (WD-3) affects the efficacy of anti-PD-1 immunotherapy in gastric cancer by analyzing the gut microbiota of healthy individuals, gastric cancer patients, and those treated with WD-3.
  • It found significant differences in gut bacteria compositions across the groups, highlighting a decrease in beneficial bacteria and an increase in those associated with treatment.
  • Moreover, both WD-3 and anti-PD-1 treatments enhanced T-cell responses while reducing regulatory T cells, leading to inhibited tumor cell growth and increased apoptosis in gastric cancer models.
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  • Psoriasis, an autoimmune disease, shows variations influenced by season and geography, highlighting the importance of studying double-stranded DNA (dsDNA) levels in relation to climate.
  • A study from 2016 to 2020 analyzed 10,110 psoriasis patients across different regions in China, focusing on how serum dsDNA levels differed by season and latitude.
  • Results indicated higher serum dsDNA levels in Northern and medium-latitude regions, during winter compared to summer, and emphasized the impact of factors like UV exposure, humidity, and age on dsDNA concentrations.
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Introduction: African swine fever (ASF) is a lethal and highly contagious transboundary animal disease with the potential for rapid international spread. In the absence of a widely available and definitively proven vaccine, rapid and early detection is critical for ASF control. The quick and user-friendly lateral flow assay (LFA) can easily be performed by following simple instructions and is ideal for on-site use.

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B cell activation is accompanied by dynamic metabolic reprogramming, supported by a multitude of nutrients that include glucose, amino acids, and fatty acids. Although several studies have indicated that fatty acid mitochondrial oxidation is critical for immune cell functions, contradictory findings have been reported. Carnitine palmitoyltransferase II (CPT2) is a critical enzyme for long-chain fatty acid oxidation in mitochondria.

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  • The paper discusses a new method for rearranging allylic sulfilimines, which can produce useful compounds like allylic sulfenamides.
  • This approach features a combination of S-alkylation and an unusual S-to-N rearrangement, facilitated by a chiral nickel complex under mild conditions.
  • The results show high selectivity in creating various allylic sulfenamides and provide insights into the relationship between the molecular structure and reactivity via DFT calculations.
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African swine fever (ASF) is a highly contagious and severe hemorrhagic transboundary swine viral disease with up to a 100% mortality rate, which leads to a tremendous socio-economic loss worldwide. The lack of safe and efficacious ASF vaccines is the greatest challenge in the prevention and control of ASF. In this study, we generated a safe and effective live-attenuated virus (LAV) vaccine candidate VNUA-ASFV-LAVL3 by serially passaging a virulent genotype II strain (VNUA-ASFV-L2) in an immortalized porcine alveolar macrophage cell line (3D4/21, 50 passages).

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Context: Milk has nutrient-rich but thermal sensitive matrix that undergoes varying degrees of Maillard reaction (MR) at heating conditions. The MR mainly occurs between lysine residues (Lys) and lactose composed of glucose (Glc) and galactose (Gal), which are abundantly sourced from dairy products. In the present study, the MRs of Glc and Gal with Lys at the initial and intermediate stages have been investigated theoretically using density functional theory (DFT) to simulate the gaseous and aqueous phases.

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Acetogenic bacteria (acetogens) are a class of microorganisms with conserved Wood-Ljungdahl pathway that can utilize CO and CO/H as carbon source for autotrophic growth and convert these substrates to acetate and ethanol. Acetogens have great potential for the sustainable production of biofuels and bulk biochemicals using C1 gases (CO and CO) from industrial syngas and waste gases, which play an important role in achieving carbon neutrality. In recent years, with the development and improvement of gene editing methods, the metabolic engineering of acetogens is making rapid progress.

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Article Synopsis
  • Research Gap
  • : While there is a lot of information on psoriasis in general, this study focuses on understanding how it specifically affects areas like the scalp, nails, palms, and genitals, where knowledge is limited.
  • Patient Insights
  • : An analysis of 346 psoriasis patients revealed that 81% had psoriasis in multiple special body areas, with nails being the most commonly affected. Notably, those with genital psoriasis had worse quality of life scores and were more likely to also have scalp and palm psoriasis.
  • Treatment Trends
  • : The research indicated that as the number of involved areas increased, particularly with genital psoriasis, more patients were treated with biologics, suggesting an increasing need for effective therapies in cases with multiple
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Ixekizumab is a monoclonal antibody targeting interleukin-17A that has shown significant improvement in alleviating psoriasis. However, data is sparse on the efficacy of ixekizumab in psoriasis patients in China. To investigate the efficacy of ixekizumab in Chinese psoriasis patients.

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Theta-mediated end joining (TMEJ) is critical for survival of cancer cells when other DNA double-stranded break repair pathways are impaired. Human DNA polymerase theta (Pol θ) can extend ssDNA oligonucleotides, but little is known about preferred substrates and mechanism. We show that Pol θ can extend both ssDNA and RNA substrates by unimolecular stem-loop synthesis initiated by only two 3' terminal base pairs.

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Advancements in long-read transcriptome sequencing (long-RNA-seq) technology have revolutionized the study of isoform diversity. These full-length transcripts enhance the detection of various transcriptome structural variations, including novel isoforms, alternative splicing events, and fusion transcripts. By shifting the open reading frame or altering gene expressions, studies have proved that these transcript alterations can serve as crucial biomarkers for disease diagnosis and therapeutic targets.

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B cell activation is accompanied by dynamic metabolic reprogramming, supported by a multitude of nutrients that include glucose, amino acids and fatty acids. While several studies have indicated that fatty acid mitochondrial oxidation is critical for immune cell functions, contradictory findings have been reported. Carnitine palmitoyltransferase II (CPT2) is a critical enzyme for long-chain fatty acid oxidation in mitochondria.

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Context: The Xihuang pill (XHP) is a traditional Chinese medicine formulation that has been historically used in the prevention and treatment of proliferative breast diseases. However, there is a lack of guidelines that offer recommendations for its clinical use.

Objective: The task force from the Chinese Guangdong Pharmaceutical Association aims to develop evidence-based guidelines for XHP to prevent and treat proliferative breast diseases.

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Introduction: The treatment options for moderate to severe psoriasis (msPsO) in China have been greatly increased with the approvals of biologics. However, the unmet needs and treatment preferences of systemic treatments for msPsO in China remain unclarified.

Methods: Fifty dermatologists and 300 patients with msPsO (41% with severe psoriasis) were surveyed for effectiveness, safety, treatment convenience, and treatment preferences (using a choice-based conjoint questionnaire).

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Melasma is an acquired hypermelanotic condition characterized by the presence of irregular light-to-dark brown macules that primarily manifest on the sun-exposed areas of the skin, particularly the face. The management of melasma poses significant challenges, as it is often recalcitrant to treatment and tends to recur despite successful treatment. In this study, we explored a safe, easy, and effective melasma treatment strategy.

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The clustered regularly interspaced short palindromic repeat (CRISPR)-associated protein 9 (Cas9) gene editing has attracted extensive attentions in various fields, however, its clinical application is hindered by the lack of effective and safe delivery system. Herein, we reported a cationic micelle nanoparticle composed of cholesterol-modified branched small molecular PEI (PEI-CHO) and biodegradable PEG-b-polycarbonate block copolymer (PEG-PC), denoted as PEG-PC/PEI-CHO/pCas9, for the CRISPR/Cas9 delivery to realize genomic editing in cancer. Specifically, PEI-CHO condensed pCas9 into nanocomplexes, which were further encapsulated into PEG-PC nanoparticles (PEG-PC/PEI-CHO/pCas9).

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