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158 related items for PubMed ID: 37818043
1. Multiomics and bioinformatics identify differentially expressed effectors in the brain of Toxoplasma gondii infected masked palm civet. Yuan H, Jiang T, Zhang WD, Yang Z, Luo S, Wang X, Zhu X, Qi S, Mahmmod YS, Zhang XX, Yuan ZG. Front Cell Infect Microbiol; 2023; 13():1267629. PubMed ID: 37818043 [Abstract] [Full Text] [Related]
2. Unveiling of brain transcriptome of masked palm civet (Paguma larvata) with chronic infection of Toxoplasma gondii. Yuan H, Zhang XX, Yang ZP, Wang XH, Mahmmod YS, Zhang P, Yan ZJ, Wang YY, Ren ZW, Guo QY, Yuan ZG. Parasit Vectors; 2022 Jul 24; 15(1):263. PubMed ID: 35871661 [Abstract] [Full Text] [Related]
7. VEGF Production Is Regulated by the AKT/ERK1/2 Signaling Pathway and Controls the Proliferation of Toxoplasma gondii in ARPE-19 Cells. Quan JH, Ismail HAHA, Cha GH, Jo YJ, Gao FF, Choi IW, Chu JQ, Yuk JM, Lee YH. Front Cell Infect Microbiol; 2020 Jul 24; 10():184. PubMed ID: 32432052 [Abstract] [Full Text] [Related]
10. Transcriptomic analysis of global changes in cytokine expression in mouse spleens following acute Toxoplasma gondii infection. He JJ, Ma J, Song HQ, Zhou DH, Wang JL, Huang SY, Zhu XQ. Parasitol Res; 2016 Feb 24; 115(2):703-12. PubMed ID: 26508008 [Abstract] [Full Text] [Related]
11. Low genetic diversity in the masked palm civet Paguma larvata (Viverridae). Patou ML, Chen J, Cosson L, Andersen DH, Cruaud C, Couloux A, Randi E, Zhang S, Veron G. J Zool (1987); 2009 Jul 24; 278(3):218-230. PubMed ID: 32336891 [Abstract] [Full Text] [Related]
12. The Role of PI3K/AKT Pathway and NADPH Oxidase 4 in Host ROS Manipulation by Toxoplasma gondii. Choi HG, Gao FF, Zhou W, Sun PR, Yuk JM, Lee YH, Cha GH. Korean J Parasitol; 2020 Jun 24; 58(3):237-247. PubMed ID: 32615737 [Abstract] [Full Text] [Related]
15. The complete mitochondrial genome of the masked palm civet (Paguma larvata, Mammalia, Carnivora). Zhang D, Xu L, Bu H, Wang D, Xu C, Wang R. Mitochondrial DNA A DNA Mapp Seq Anal; 2016 Sep 24; 27(5):3764-5. PubMed ID: 26403137 [Abstract] [Full Text] [Related]
16. Brain proteomic differences between wild-type and CD44- mice induced by chronic Toxoplasma gondii infection. Yang J, Du F, Zhou X, Wang L, Li S, Fang R, Zhao J. Parasitol Res; 2018 Aug 24; 117(8):2623-2633. PubMed ID: 29948204 [Abstract] [Full Text] [Related]
17. Transcriptomic analysis of mouse liver reveals a potential hepato-enteric pathogenic mechanism in acute Toxoplasma gondii infection. He JJ, Ma J, Elsheikha HM, Song HQ, Huang SY, Zhu XQ. Parasit Vectors; 2016 Aug 03; 9(1):427. PubMed ID: 27488578 [Abstract] [Full Text] [Related]
18. SIRT1 Promotes Host Protective Immunity against Toxoplasma gondii by Controlling the FoxO-Autophagy Axis via the AMPK and PI3K/AKT Signalling Pathways. Lee J, Kim J, Lee JH, Choi YM, Choi H, Cho HD, Cha GH, Lee YH, Jo EK, Park BH, Yuk JM. Int J Mol Sci; 2022 Nov 05; 23(21):. PubMed ID: 36362370 [Abstract] [Full Text] [Related]
20. TEAD4 functions as a prognostic biomarker and triggers EMT via PI3K/AKT pathway in bladder cancer. Chi M, Liu J, Mei C, Shi Y, Liu N, Jiang X, Liu C, Xue N, Hong H, Xie J, Sun X, Yin B, Meng X, Wang B. J Exp Clin Cancer Res; 2022 May 17; 41(1):175. PubMed ID: 35581606 [Abstract] [Full Text] [Related] Page: [Next] [New Search]