Publications by authors named "Yujie Fu"

This study introduces a green, sustainable, and efficient approach for biotransforming sophoricoside into genistein from using by removal of one molecule of glucose by β-glucosidase, an edible microorganism immobilized on magnetic cellulose and treated with deep eutectic solvents (DES). The goal was to enhance the biotransformation ratio by optimizing reaction conditions and selecting the most suitable DES. Various DESs, including natural deep eutectic solvents (NADES), were assessed for their ability to improve catalytic performance.

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This study aims to evaluate the potential disease prevention and treatment functions of four types of traditional Chinese fermented Sojae Semen Praeparatum (SSP) by analyzing their nutritional active components and their effects on the gut microbiota. Raw soybeans and the four SSPs were administered as dietary supplements to normal SD rats for 6 weeks. Fecal samples were collected at weeks 0, 2, and 6 to assess changes in the gut microbiota.

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Pigeon pea is an important economic crop with medicinal and nutritional value. Unfortunately, pest infestation of leaves during postharvest storage seriously affects the quality of pigeon pea. Phytohormones play a crucial role in disease and pest defence by regulating the accumulation of specialized metabolites.

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Sorbitol is an important primary metabolite that serves as both a carbon source and signal to pathogens. The leaf diseases caused by Alternata alternata are particularly serious in crabapple (Malus micromalus). Here, we found that sorbitol can enhance the resistance of crabapple to A.

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root rot is a devastating fungal disease that causes significant yield losses in legume crops. A novel endophytic fungus R-423 isolated from pigeon pea had a significant antagonistic capacity against . R-423 extracts could inhibit growth and cause it to die.

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Dual atomic nanozymes (DAzymes) are promising for applications in the field of tumor catalytic therapy. Here, integrating with ultrasmall FeC nanoclusters, asymmetric coordination featuring Janus Zn-Fe dual-atom sites with an ON-Fe-Zn-N moiety embedded in a carbon vacancy-engineered hollow nanobox (Janus ZnFe DAs-FeC) was elaborately developed. Theoretical calculation revealed that the synergistic effects of Zn centers acting as both adsorption and active sites, oxygen-heteroatom doping, carbon vacancy, and FeC nanoclusters jointly downshifted the d-band center of Fe 3d orbitals, optimizing the desorption behaviors of intermediates *OH, thereby significantly promoting catalytic activity.

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Background: Chlamydia trachomatis (Ct) is the leading cause of tubal inflammation in women, with a high tendency for persistent asymptomatic infections. Antibiotics are currently the primary treatment for Ct infections of the reproductive tract. However, mounting evidence indicates an increasing incidence of persistent infections and recurrence due to antibiotic treatment failure, highlighting the urgent need for novel therapeutic approaches.

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Sorbitol, a main photosynthate and transport carbohydrate in all tree fruit species in Rosaceae, acts as a signal controlling resistance against Alternaria (A.) alternata in apple by altering the expression of the MdNLR16 resistance gene via the MdWRKY79 transcription factor. However, it is not known if N-methyladenosine (mA) methylation of the mRNAs of these genes participates in the process.

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Background: Sensitive skin (SS) is a multifactorial syndrome that affects about half of the world's population. However, there is no standardized treatment protocol. Photovoltaic technology has been widely used in recent years for the treatment of sensitive skin, but the efficacy of low-energy delicate pulsed light (DPL) in the treatment of sensitive skin is unknown.

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This study aims to address the challenge of detoxifying ginkgolic acid and transform it from waste into a valuable resource. By using pseudo-template molecular imprinting technology to chemically modify polysaccharide materials, we developed a polysaccharide-based molecular imprinted material (MMCC-CD/CS-MIP) for the targeted separation and controlled release of ginkgolic acid. Under optimal conditions, MMCC-CD/CS-MIP demonstrated excellent adsorption performance (Q = 47.

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This study utilizes deep eutectic solvent (DES)-assisted enhancement of cellulose-based immobilized probiotics for efficient biotransformation of isofraxidin from Acanthopanax senticosus. Among seven probiotic strains tested, Lactiplantibacillus plantarum CICC 20767 exhibited the best catalytic activity. We explored the effects of 12 different DESs with varying hydrogen bond donors on the conversion capacity of the immobilized probiotics, with the highest efficiency observed using ChCl/EG (4.

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Purpose: To explore the application effect of mind mapping-assisted flipped classroom in clinical endodontics teaching.

Methods: A total of 41 fifth-year undergraduates majoring in stomatology from School of Stomatology, Tongji University, finishing their clinical internship at Departments of Endodontics from October 2023 to March 2024, were randomly divided into control group (traditional teaching group, n=21) and experimental group (flipped classroom teaching group, n=20). Theoretical assessments were conducted on the day of entering the department and at the end of eight weeks in the department.

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Article Synopsis
  • The RIME algorithm, inspired by rime ice physics, initially aimed to predict outcomes but had limitations in feature selection; improvements were made to create the DDRIME algorithm, which includes a foraging mechanism and better crossover techniques.
  • In testing, DDRIME showed excellent performance in identifying key indicators like chronic heart failure and D-dimer, achieving over 98% accuracy in predicting outcomes for AECOPD patients on mechanical ventilation.
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An efficient and green method was developed using deep eutectic solvent assistance to enhance the biotransformation method of producing resveratrol from Polygonum cuspidatum Siebold & Zucc, using cellulose-based immobilised Aspergillus niger in the process. Various deep eutectic solvents (DES) were screened to obtain a superior biocatalytic effect. The increase in DES concentration aggravated the degree of cell membrane damage.

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During targeted treatment, oncogene-addicted tumor cells often evolve from an initial drug-sensitive state through a drug-tolerant persister bottleneck toward the ultimate emergence of drug-resistant clones. The molecular basis underlying this therapy-induced evolutionary trajectory has not yet been completely elucidated. Here, we employed a multifaceted approach and implicated the convergent role of transcription factor Yin Yang 1 (YY1) in the course of diverse targeted kinase inhibitors.

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Dysregulated expression of ribosomal protein S3A (RPS3A) is associated with the tissue infiltration of immune-related cells in a variety of cancers. However, the role of RPS3A in immune cell infiltration in glioma remains unclear. This study aimed to explore the role of RPS3A in the glioma immune microenvironment.

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Objectives: The potential association between oral health and nutritional status of the very old, has been poorly investigated. Thus, we carried out the cross-sectional study to evaluate the association of oral health with the nutritional status of the older adults.

Methods: 210 participants aged over 75 years were included in the study.

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Endophytic fungi can effectively regulate the biosynthesis of health-beneficial metabolites in plants. However, few studies have revealed how the accumulation of host metabolites varies during interactions with endophytic fungi. Here, pigeon pea hairy root cultures (PPHRCs) were cocultured with an endophytic fungus to explore the impact on the biosynthesis and accumulation of cajaninstilbene acid (CSA).

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Article Synopsis
  • The study introduces an innovative dual-functional cellulose-based hydrogel bioreactor combining molecular imprinting and enzyme immobilization to enhance biocatalytic performance.
  • The bioreactor uses cellulose-based molecularly imprinted polymers (CM-MIPs) and layered double hydroxide (LDH) to effectively immobilize the enzyme β-glucosidase, achieving high targeted adsorption and transformation efficiencies.
  • This approach significantly increases the transformation of phlorizin to phloretin and maintains over 70% efficiency after multiple uses, highlighting potential applications in the targeted recognition and transformation of natural phytochemicals.
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Sporopollenin is a natural biological macromolecule consisting of highly cross-linked carbon, hydrogen, and oxygen atoms, with a highly porous structure and multifunctional groups. In this work, a novel surface molecularly imprinted polymer based on magnetically aminated cattail sporopollenin (MACSp-SMIP) was prepared for the specific and efficient adsorption of resveratrol, with the aim of purifying resveratrol from Polygonum cuspidatum extracts. MACSp-SMIP was found to have a porous structure covered with the multi-layered sponge-like imprinted polymers.

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Background: The purpose of this study was to explore the expression of miR-665 in acute myocardial infarction (AMI) and evaluate its significance in the diagnosis and prognosis of AMI.

Methods: 100 patients with AMI were selected as the study group and 80 healthy subjects were chosen as the control group. The levels of miR-665 were detected by reverse transcription quantitative polymerase chain reaction (RT-qPCR) in the two groups.

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Article Synopsis
  • - Cyanobacteria are unique prokaryotes capable of photosynthesis and are being explored as a sustainable source for producing various bioproducts, but releasing these products efficiently poses a significant challenge.
  • - Current methods for breaking open cyanobacterial cells rely heavily on mechanical force, which is both energy-intensive and costly; phage-mediated lysis offers a more efficient and less intensive alternative.
  • - The study highlights the distinct characteristics of cyanobacterial cell walls that impact their strength and discusses the potential of optimizing phage lysins for effective lysis, while also addressing the obstacles faced in applying these biotechnological advancements.
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In this study, nine endophytic fungi capable of producing multiple phenolic compounds were screened and identified from 152 fungi isolated from pigeon pea in a natural habitat (Honghe, Yunnan Province, China). Talaromyces neorugulosus R-209 exhibited the highest potential for phenolic compound production. L-phenylalanine feeding was used to enhance phenolic compound production in T.

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Background: Previously, stage-IIIB non-small cell lung cancer (NSCLC) has been considered inoperable. In recent years, neoadjuvant immunotherapy has shown encouraging efficacy in the treatment of advanced stage NSCLC in several trials. However, the effectiveness and safety of neoadjuvant immunotherapy in treating stage-IIIB NSCLC are still unknown.

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