Publications by authors named "JiaQi Tan"

The gut microbiota, as a complex ecosystem, can affect many physiological aspects of the host's diet, disease development, drug metabolism, and immune system regulation. Polysaccharides have various biological activities including antioxidant, anti-tumor, and regulating gut microbiota, etc. Polysaccharides cannot be degraded by human digestive enzymes.

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Cysteine-rich polycomb-like proteins (CPPs), pivotal transcription factors crucial for evolution of plants from germination to maturity, and adaptation to environmental stresses, have not yet been characterized within the context of Moso bamboo. The CPP gene family of Moso bamboo was identified through bioinformatics, and the structural and functional attributes of the gene, including its physicochemical properties, evolutionary relationships, and gene-protein structures, were revealed. Additionally, the current study also offers valuable information on the patterns of gene expression in bamboo shoots during the period of accelerated development.

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  • This study investigates how biodegradable microplastics (BMPs) like PLA and PBAT affect the toxicity and bioaccumulation of cadmium (Cd) in lettuce.
  • Results indicate that BMPs can worsen Cd's negative effects on lettuce growth, with certain concentrations boosting or hindering photosynthesis and nutrient content.
  • The presence of BMPs also alters how Cd is stored and transported within the plant, impacting key biological processes and reducing the expression of important transporters and metabolic pathways.
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  • Head and neck squamous cell carcinoma (HNSCC) is a complex cancer with subtle early symptoms and a lack of effective screening methods, leading to low survival rates.
  • HNSCC tumors grow quickly and are aggressive, often not responding well to current treatments.
  • Histone posttranslational modifications (HPTMs) are crucial in the development and progression of HNSCC, and targeting these modifications with new drugs shows promise for improving treatment outcomes and patient prognosis.
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  • The study examines the environmental impact of multi-walled carbon nanotubes (MWCNTs) when combined with copper (Cu) on ryegrass growth, focusing on how different addition orders affect toxicity.
  • Results indicate that while Cu hinders ryegrass growth significantly, MWCNTs can have a beneficial 'hormesis' effect at lower concentrations, reducing oxidative stress.
  • The most harmful effects were observed with MWCNT-COOH, which caused a notable decrease in chlorophyll levels, and MWCNTs may help reduce Cu accumulation in plants by adsorbing it from the solution.
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Anthocyanins, as the most common and widely distributed flavonoid compounds, are widely present in fruits and vegetables. Anthocyanins show various biological activities including antioxidant, anticancer, anti-inflammatory, antibacterial, and immunomodulatory activities. Hence, anthocyanins are widely used in the fields of food and pharmaceuticals.

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The ecological threats of microplastics (MPs) have sparked research worldwide. However, changes in the topics of MP research over time and space have not been evaluated quantitatively, making it difficult to identify the next frontiers. Here, we apply topic modeling to assess global spatiotemporal dynamics of MP research.

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There have been persistent concerns about the safety risks associated with DDT residues in the environment. Studies have shown that exposure to DDT or its metabolites can cause various liver diseases. However, the mechanisms of liver toxicity haven't been well studied.

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Polyphenols, as important secondary metabolites in nature, are widely distributed in vegetables, fruits, grains, and other foods. Polyphenols have attracted widespread attention in the food industry and nutrition due to their unique structure and various biological activities. However, the health benefits of polyphenols are compromised owing to their structural instability and sensitivity to the external environment.

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Objective: Chronic low back pain (cLBP) affects nociceptive responses in the cerebellum, which leads to increased pain perception and sensorimotor control dysfunction. This study aimed to investigate altered functional connectivity in the anterior and posterior lobes of the cerebellum during cLBP.

Design: Twenty patients with cLBP and 18 healthy participants underwent 3.

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Plant microbiomes that comprise diverse microorganisms, including prokaryotes, eukaryotes and viruses, are the key determinants of plant population dynamics and ecosystem function. Despite their importance, little is known about how species interactions (especially trophic interactions) between microbes from different domains modify the importance of microbiomes for plant hosts and ecosystems. Using the common duckweed , we experimentally examined the effects of predation (by bacterivorous protists) and parasitism (by bacteriophages) within microbiomes on plant population size and ecosystem phosphorus removal.

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Polysaccharides with low toxicity and high biological activities are a kind of biological macromolecule. Recently, growing studies have confirmed that polysaccharides could improve obesity, diabetes, tumors, inflammatory bowel disease, hyperlipidemia, diarrhea, and liver-related diseases by changing the intestinal micro-environment. Moreover, polysaccharides could promote human health by regulating gut microbiota, enhancing production of short-chain fatty acids (SCFAs), improving intestinal mucosal barrier, regulating lipid metabolism, and activating specific signaling pathways.

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Purpose: Total knee arthroplasty (TKA) stands as a primary intervention for severe knee ailments, yet concerns remain regarding postoperative patient satisfaction and flexion instability. This study aims to evaluate the in-vivo kinematics of medial-pivot (MP) and posterior-stabilised (PS) designs during step-up activity, in comparison to the kinematics of the nonoperated contralateral knee.

Methods: Sixteen patients with PS-TKA and 14 with MP-TKA were retrospectively examined.

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The K uptake permease/high-affinity K/K transporter (KUP/HAK/KT) family is the most prominent group of potassium (K) transporters, playing a key role in K uptake, transport, plant growth and development, and stress tolerance. However, the presence and functions of the KUP/HAK/KT family in Moso bamboo ( (Carriere) J. Houzeau), the fastest-growing plant, have not been studied.

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Ultrasound assisted hot water extraction (UAHWE) was applied to extraction of polysaccharides from Taraxacum mongolicum with hot water as extract solvent. Experimental factors in UAHWE process were optimized by response surface methodology. The optimal extraction parameters to achieve the highest Taraxacum mongolicum polysaccharides (TMPs) yield (12.

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Background: Emerging evidence suggests that pyroptosis, a form of programmed cell death, has been implicated in cancer progression. The involvement of specific proteins in pyroptosis is an area of growing interest. TOM20, an outer mitochondrial membrane protein, has recently garnered attention for its potential role in pyroptosis.

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Background: KNOTTED1-like homeobox (KNOX) genes, plant-specific homologous box transcription factors (TFs), play a central role in regulating plant growth, development, organ formation, and response to biotic and abiotic stresses. However, a comprehensive genome-wide identification of the KNOX genes in Moso bamboo (Phyllostachys edulis), the fastest growing plant, has not yet been conducted, and the specific biological functions of this family remain unknown.

Results: The expression profiles of 24 KNOX genes, divided into two subfamilies, were determined by integrating Moso bamboo genome and its transcriptional data.

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Gambogenic acid (GNA), a caged xanthone derived from Garcinia hanburyi, exhibits a wide range of anti-cancer properties. The caged skeleton of GNA serves as the fundamental pharmacophore responsible for its antitumor effects. However, limited exploration has focused on the structural modifications of GNA.

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Traditional Chinese medicines are tremendous sources of polysaccharides, which are of great interest in the human welfare system as natural medicines, food, and cosmetics. This review aims to highlight the recent trends in extraction (conventional and non-conventional), purification and analytic techniques of traditional Chinese medicine polysaccharides (TCMPs), and the chemical structure, biological activities (anti-tumor, hypoglycemic, antioxidant, intestinal flora regulation, immunomodulatory, anti-inflammatory, anti-aging, hypolipidemic, hepatoprotective, and other activities), and the underlying mechanisms of polysaccharides extracted from 76 diverse traditional Chinese medicines were compared and discussed. With this wide coverage, a total of 164 scientific articles were searched from the database including Google Scholar, PubMed, Web of Science, and China Knowledge Network.

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Fruits and vegetables contain polysaccharides, polyphenols, antioxidant enzymes, and various vitamins, etc. Fruits and vegetables polysaccharides (FVPs), as an important functional factor in health food, have various biological activities such as lowering blood sugar, blood lipids, blood pressure, inhibiting tumors, and delaying aging, etc. In addition, FVPs exhibit good physicochemical properties including low toxicity, biodegradability, biocompatibility.

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  • Understanding the evolution and molecular behavior of CAR-T cells after they are infused into patients is crucial for improving therapy tactics for B-ALL.
  • A detailed study analyzed 7,578 CAR-T cells from 26 B-ALL patients, identifying eight distinct CAR-T cell subtypes and linking them to treatment outcomes, with certain subtypes associated with longer remission and others indicating potential relapse.
  • The research also highlights factors triggering the transformation of CAR-T cells into less effective subtypes and suggests ways to enhance their functional capabilities, paving the way for better management of leukemia.
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To understand the effect of coupling parameters between two ultrasonic waves on acoustic cavitation, in this work, Keller-Miksis equation was introduced to built a bubble dynamics model that was used to describe the dynamic evolution of bubble and to discuss the effect of dual-frequency coupling parameters, such as frequency difference f (5 ∼ 280 kHz), phase difference φ (0 ∼ 7π/4 rad), and power allocation ratio β (0 ∼ 9), on acoustic cavitation in the presence of two ultrasonic waves irradiation. The enhancement and attenuation effect of cavitation have also been analyzed in detail by comparing the different dual-frequency combinations with single-frequency mode. It was found that all coupling parameters have a significant impact on acoustic cavitation, where the smaller values of f and φ were employed when β = 1, the stronger cavitation intensity was observed.

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  • * Results showed that after 28 days, earthworms exposed to DBDPE and MPs had 2.61 times more DBDPE in their tissues compared to those exposed only to DBDPE.
  • * MPs not only facilitated the uptake of DBDPE through adsorption but also negatively impacted earthworm health, leading to enhanced accumulation of DBDPE in their bodies, highlighting risks posed by the combination of MPs and novel brominated flame retardants (NBFRs).
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To understand how microbiota influence plant populations in nature, it is important to examine the biogeographic distribution of plant-associated microbiomes and the underlying mechanisms. However, we currently lack a fundamental understanding of the biogeography of plant microbiomes across populations and the environmental and host genetic factors that shape their distribution. Leveraging the broad distribution and extensive genetic variation in duckweeds (the Lemna species complex), we identified key factors that governed plant microbiome diversity and compositional variation geographically.

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