Publications by authors named "Xia Jia"

Article Synopsis
  • Cadmium (Cd) contamination in soils poses significant environmental issues due to its toxicity and potential for secondary pollution, prompting the need for safer remediation methods, especially those involving Cd-resistant microbes.
  • Researchers isolated two Cd-resistant bacterial strains, Citrobacter farmeri and Cupriavidus gilardii, which produce extracellular polymeric substances (EPS) that enhance Cd uptake and promote the growth of oilseed rape plants.
  • The study found that both bacterial strains increased oilseed rape biomass and Cd accumulation significantly, with C. gilardii showing a slightly higher capability in promoting plant growth and nutrient absorption compared to C. farmeri, making them promising candidates for environmentally friendly soil remediation.
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  • - Systemic lupus erythematosus (SLE) is a chronic autoimmune disease that causes the body to attack its own tissues and organs due to harmful autoantibodies and immune complexes.
  • - Chinese medicine (CM) can help manage SLE by reducing complications, improving treatment effectiveness, and minimizing medication toxicity, but its treatment methods are complex and involve various processes.
  • - The review highlights the latest research on the causes of SLE, including genetic and immune factors, and examines the molecular mechanisms behind effective Chinese herbal treatments used in clinical settings.
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Triple-negative breast cancer (TNBC) poses a challenging prognosis due to early metastasis driven by anoikis resistance. Identifying crucial regulators to overcome this resistance is vital for improving patient outcomes. In this study, a genome-wide CRISPR/Cas9 knockout screen in TNBC cells has identified tyrosine-protein phosphatase nonreceptor type 14 (PTPN14) as a key regulator of anoikis resistance.

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  • * The study introduces GSAMs, a combination of surfactant self-assembled monolayers and graphene membranes, which help overcome air-water interaction issues and improve the resolution of cryo-EM.
  • * Using GSAMs, researchers achieved a 3.3-Å resolution reconstruction of a 100-kDa protein complex and successfully analyzed small proteins, enhancing understanding and control of protein interactions at the air-water interface.
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Secondary injury of cerebral hemorrhage is induced by systemic inflammatory cascades, which are related to perihematomal brain edema, cellular apoptosis, and the disruption of the blood-brain barrier. This study was to specifically elaborate the relationship of circulating/cerebrospinal T lymphocytes and Glasgow Coma Scale (GCS) score at 6 months after intracerebral hemorrhage (ICH). The enrolled patients were divided into 2 groups based on GCS score: the favorable prognosis group (GCS > 12) and unfavorable prognosis group (GCS ≤ 12).

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Non-communicable diseases (NCDs), including cardiovascular diseases, cancer, metabolic diseases, and skeletal diseases, pose significant challenges to public health worldwide. The complex pathogenesis of these diseases is closely linked to oxidative stress and inflammatory damage. Nuclear factor erythroid 2-related factor 2 (Nrf2), a critical transcription factor, plays an important role in regulating antioxidant and anti-inflammatory responses to protect the cells from oxidative damage and inflammation-mediated injury.

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Enhancing sensitivity to sorafenib can significantly extend the duration of resistance to it, offering substantial benefits for treating patients with hepatocellular carcinoma (HCC). However, the role of ferroptosis in influencing sorafenib sensitivity within HCC remains pivotal. The enhancer of zeste homolog 2 (EZH2) plays a significant role in promoting malignant progression in HCC, yet the relationship between ferroptosis, sorafenib sensitivity, and EZH2 is not entirely clear.

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Next-generation androgen receptor signaling inhibitors (ARSIs), such as enzalutamide (Enza) and darolutamide (Daro), are initially effective for the treatment of advanced prostate cancer (PCa) and castration-resistant prostate cancer (CRPC). However, patients often relapse and develop cross-resistance, which consequently makes drug resistance an inevitable cause of CRPC-related mortality. By conducting a comprehensive analysis of GEO datasets, CRISPR genome-wide screening results, ATAC-seq data, and RNA-seq data, we systemically identified PAK1 as a significant contributor to ARSI cross-resistance due to the activation of the PAK1/RELA/hnRNPA1/AR-V7 axis.

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Our previous studies have highlighted the potential therapeutic efficacy of dendrobine, an alkaloid, in atherosclerosis (AS), nevertheless, the underlying mechanism remains unclear. This study employs a combination of network pharmacology and in vitro experiments to explore the regulatory pathways involved. Through network pharmacology, the biological function for intersection targets between dendrobine and AS were identified.

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Northwest China has been experiencing severe land degradation for a long time due to various natural and social elements. Evaluating and analyzing the process of occurrence and driving mechanism of land degradation sensitivity in this area is crucial for enhancing the local ecological environment. In this study, 18 social and environmental elements were used to construct a land degradation sensitivity index (LDSI) evaluation system in the area from vegetation, climate, management, soil, and geomorphology five factors.

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High-quality specimen preparation plays a crucial role in cryo-electron microscopy (cryo-EM) structural analysis. In this study, we have developed a reliable and convenient technique called the graphene sandwich method for preparing cryo-EM specimens. This method involves using two layers of graphene films that enclose macromolecules on both sides, allowing for an appropriate ice thickness for cryo-EM analysis.

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Importance: Studies exploring the association of body weight and metabolic status with graft function deterioration (GFD) after kidney transplantation have produced inconsistent findings. Few studies have examined whether metabolically healthy overweight or obesity (MHO) may contribute to GFD.

Objective: To evaluate associations of overweight or obesity and metabolic disorders with GFD in recipients of kidney transplant.

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Ischemia-reperfusion injury (IRI) is a major cause of acute kidney injury, which is a serious clinical condition with no effective pharmacological treatment. Mesenchymal stem cell-derived extracellular vesicles (MSC-EVs) significantly alleviate kidney IRI; however, the underlying mechanisms and key molecules conferring renoprotection remain elusive. In this study, we characterized the protein composition of MSC-EVs using a proteomics approach and found that mitochondrial protein superoxide dismutase 2 (SOD2) was enriched in MSC-EVs.

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As a key component in non-enzyme resistance system, flavonoids play a crucial role in the plant growth and defenses, which are significantly affected by biotic and abiotic factors such as fungi, bacteria, viruses, heavy metals, and atmospheric CO. Arbuscular mycorrhizal fungi (AMF) play an important role in enhancing plant tolerance to adverse environments, which can significantly affect the synthesis of flavonoids by forming mycorrhizal symbionts with plant roots. However, few studies explored the combined effects of AMF, elevated CO, and heavy metals on flavonoids in plants.

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Ethnopharmacological Relevance: In traditional Chinese medicine, Shen Nong, BenCao Jing, and Compendium of Materia Medica (Bencao Gangmu), Panax ginseng, and its prescriptions have been used for the treatment of dementia, depression, weight loss, Xiaoke disease (similar to diabetes), and vertigo. All these diseases are associated with the drug-controllable risk factors for Alzheimer's disease (AD), including depression, obesity, diabetes, and hypertension. Ginsenoside Rg1, one of the main active ingredients of P.

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Introduction: The tissue stiffness of donor kidneys in transplantation may increase due to pathological changes such as glomerulosclerosis and interstitial fibrosis, and those changes associate worse outcomes in kidney transplantation recipients. Ultrasound elastography is a noninvasive imaging examination with the ability to quantitatively reflect tissue stiffness. Aim of this study was to evaluate the prognostic value of ultrasound elastography for adverse kidney outcome in kidney transplantation recipients.

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Neutralizing antibodies (nAbs), the popular antiviral drugs used for the treatment of COVID-19, are effective in reducing viral load and hospitalization. Currently, most nAbs are screened from convalescent or vaccinated individuals through single B-cell sequencing which requires cutting-edge facilities. Moreover, owing to the rapid mutation of SARS-CoV-2, some approved nAbs are no longer effective.

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Desertification seriously restricts sustainable development in the arid-semiarid areas of the eastern section of the China-Mongolia-Russia Economic Zone, especially in China and Mongolia. In this study, the potential range of desertification was bounded. Spatio-temporal dynamics from 2000 to 2020 were analyzed using best-performing indices (fvc, albedo and LST).

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Article Synopsis
  • Heavy metal pollution in soil and global warming are bad for plants, but special fungi called arbuscular mycorrhizal fungi (AMF) can help them survive.
  • This study focused on how AMF helps a plant called alfalfa deal with toxic cadmium in the soil and higher temperatures.
  • The results showed that AMF makes alfalfa stronger by increasing its nutrient absorption and improving its defenses against stress from both heat and cadmium.
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Background: Chronic kidney disease (CKD) is characterized by persistent damage to kidney function or structure. Progression to end-stage leads to adverse effects on multiple systems. However, owing to its complex etiology and long-term cause, the molecular basis of CKD is not completely known.

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  • Global warming and heavy metal pollution like cadmium (Cd) often occur together, affecting ecosystems and plant growth.
  • This study investigated how the arbuscular mycorrhizal fungus *Glomus mosseae* influences the production of flavonoids and phenolic acids in alfalfa under elevated temperatures and Cd exposure.
  • Findings show that *Glomus mosseae* can enhance the levels of beneficial compounds in alfalfa, despite reduced fungal colonization due to temperature rise, suggesting its role in helping plants cope with metal contamination in changing environments.
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Introduction: Soil bacteria not only maintain the biodiversity of forest ecosystems but also affect soil nutrient cycling and ecosystem function. Nonetheless, the spatial pattern and patchy distribution of dominant bacterial community components in soil are still rarely explored.

Method: The spatial pattern and distribution of the dominant bacterial community components and their influential factors were investigated using traditional statistics, geostatistics, and kriging spatial interpolation methods in the Huoditang region of the Qinling Mountains, China.

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Cadmium (Cd) migration in the rhizosphere soil is easily affected by plants and microorganisms. Global warming significantly affects plant growth, and arbuscular mycorrhizal fungi (AMF) can chelate heavy metals by mycelium, cell wall components, and mycelial secretion. Here, we investigated the regulation of Glomus mosseae on Cd migration in the rhizosphere soil of alfalfa under elevated temperature (ET, + 3 °C).

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A major hurdle for single particle cryo-EM in structural determination lies in the specimen preparation impaired by the air-water interface (AWI) and preferential particle-orientation problems. In this work, we develop functionalized graphene grids with various charges via a dediazoniation reaction for cryo-EM specimen preparation. The graphene grids are paraffin-assistant fabricated, which appear with less contaminations compared with those produced by polymer transfer method.

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