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Glioma is the most common primary malignant brain tumor, which faces great challenges in clinical treatment due to its high invasiveness and resistance to existing treatments. In recent years, the zebrafish model has gradually become an important tool for glioma research due to its advantages such as easy genetic manipulation, strong optical transparency, and suitability for high-throughput imaging and drug screening. This article systematically reviews the three main strategies for zebrafish glioma modeling - chemical mutagenesis, genetic engineering and xenotransplantation, and describes their research applications in tumorigenesis, invasion process and treatment response. At the same time, this article deeply analyzes the limitations of the zebrafish model in terms of temperature differences, delayed development of the blood-brain barrier and immature immune system, and introduces the cutting-edge progress in recent years in the fields of CRISPR-mediated immune regulation, construction of high-temperature resistant strains and development of humanized models. Through a comprehensive review of current research applications, key challenges and future development directions, this article emphasizes the potential value of the zebrafish model as an important supplement to the mammalian model in exploring the immune mechanism of glioma and developing innovative treatment strategies.
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http://dx.doi.org/10.3389/fimmu.2025.1601656 | DOI Listing |
Korean J Anesthesiol
September 2025
Department of Anesthesiology and Pain Medicine, Korea University Ansan Hospital, Korea University College of Medicine, Ansan 15588, the Republic of Korea.
Background: Despite the well-known effects of elevated bilirubin in neonates, its neurotoxic potential in adults remains uncertain. In perioperative and hepatic disease contexts, transient bilirubin elevations are common; however, their direct contribution to cognitive dysfunction has not been clearly established. This study aimed to determine whether transient bilirubin elevation alone can impair cognition and disrupt blood-brain barrier (BBB) function in adult zebrafish, and to compare these effects with those of liver injury.
View Article and Find Full Text PDFNan Fang Yi Ke Da Xue Xue Bao
August 2025
Key Laboratory of Occupational Environment and Health, Guangzhou Twelfth People's Hospital, Guangzhou 510620, China.
Objectives: To investigate the role of ferroptosis in diquat-induced acute kidney injury (AKI) and its molecular mechanisms.
Methods: Transgenic zebrafish models with Tg (Eco.Tshb:EGFP) labeling of the renal tubules and Tg (lyz:dsRed2) labeling of the neutrophils were both divided into control group, gentamicin (positive control) group, diquat poisoning group, ferroptosis inhibitor group.
Phytomedicine
August 2025
Department of Pharmaceutical Biology, Institute of Pharmaceutical and Biomedical Sciences Johannes Gutenberg University, Staudinger Weg 5, 55128 Mainz, Germany. Electronic address:
Background: Non-small-cell lung cancer NSCLC is the major diagnosed type of lung cancers in the USA and Europe. It is generally related to poor prognosis and low rates of survival. Oleandrin is a cardiac glycoside occurring naturally in Nerium oleander (Apocynaceae).
View Article and Find Full Text PDFJ Hazard Mater
September 2025
Chemometrics and Molecular Modeling Laboratory, Department of Chemistry and Physics, Kean University,1000 Morris Avenue, Union, NJ 07083, USA. Electronic address:
The Toxic Substances Control Act (TSCA) mandates the U.S. EPA to monitor all chemicals used in the country, over 86,000 to date, posing a major challenge for comprehensive toxicity testing.
View Article and Find Full Text PDFEcotoxicol Environ Saf
September 2025
Key Laboratory of Green Prevention and Control of Tropical Agriculture and Forestry Disasters, School of Tropical Agriculture and Forestry, Hainan University, DanZhou 571737, China. Electronic address:
Cyantraniliprole is a widely used insecticide in rice that could induce cellular damage. However, the mechanism of cyantraniliprole induced cell apoptosis was not clear. The Split-Split-Plot analysis revealed that the expression of apoptosis-related genes was significantly impacted by exposure time, concentration, genotype, and their complex interactions.
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