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180 related items for PubMed ID: 38629942
1. High-altitude hypoxia exposure inhibits erythrophagocytosis by inducing macrophage ferroptosis in the spleen. Yang WP, Li MQ, Ding J, Li JY, Wu G, Liu B, Gao YQ, Wang GH, Luo QQ. Elife; 2024 Apr 17; 12():. PubMed ID: 38629942 [Abstract] [Full Text] [Related]
2. Increased erythrophagocytosis induces ferroptosis in red pulp macrophages in a mouse model of transfusion. Youssef LA, Rebbaa A, Pampou S, Weisberg SP, Stockwell BR, Hod EA, Spitalnik SL. Blood; 2018 Jun 07; 131(23):2581-2593. PubMed ID: 29666112 [Abstract] [Full Text] [Related]
3. Role of the spleen in the exaggerated polycythemic response to hypoxia in chronic mountain sickness in rats. Kam HY, Ou LC, Thron CD, Smith RP, Leiter JC. J Appl Physiol (1985); 1999 Nov 07; 87(5):1901-8. PubMed ID: 10562635 [Abstract] [Full Text] [Related]
4. Erythrocytes Display Metabolic Changes in High-Altitude Polycythemia. Qile M, Xu Q, Ye Y, Liu H, Gomchok D, Liu J, Wuren T, Ge RL. High Alt Med Biol; 2023 Jun 07; 24(2):104-109. PubMed ID: 37195723 [Abstract] [Full Text] [Related]
5. Quantitative Proteomics Reveals the Effects of Resveratrol on High-Altitude Polycythemia Treatment. Deng B, Liu W, Pu L, Wang X, Duan R, Wang T, Wang Z, Du L, Gao Z, Chen Z. Proteomics; 2020 Jul 07; 20(14):e1900423. PubMed ID: 32468662 [Abstract] [Full Text] [Related]
6. Phospholipase D regulates ferroptosis signal transduction in mouse spleen hypoxia response. Wang J, Hu Y, Xu Y, Long Q, Gu C, Tang C, Wang R, Yong S. Braz J Med Biol Res; 2024 Jul 07; 57():e13218. PubMed ID: 38451609 [Abstract] [Full Text] [Related]
7. Microfluidic study of retention and elimination of abnormal red blood cells by human spleen with implications for sickle cell disease. Qiang Y, Sissoko A, Liu ZL, Dong T, Zheng F, Kong F, Higgins JM, Karniadakis GE, Buffet PA, Suresh S, Dao M. Proc Natl Acad Sci U S A; 2023 Feb 07; 120(6):e2217607120. PubMed ID: 36730189 [Abstract] [Full Text] [Related]
8. Apoptosis is one cause of thrombocytopenia in patients with high-altitude polycythemia. Wang Z, Tenzing N, Xu Q, Liu H, Ye Y, Wen Y, Wuren T, Cui S. Platelets; 2023 Dec 07; 34(1):2157381. PubMed ID: 36597012 [Abstract] [Full Text] [Related]
9. Whole-Genome Sequencing Identifies the Egl Nine Homologue 3 (egln3/phd3) and Protein Phosphatase 1 Regulatory Inhibitor Subunit 2 (PPP1R2P1) Associated with High-Altitude Polycythemia in Tibetans at High Altitude. Gesang L, Gusang L, Dawa C, Gesang G, Li K. Dis Markers; 2019 Dec 07; 2019():5946461. PubMed ID: 31827636 [Abstract] [Full Text] [Related]
10. Excessive Iron Availability Caused by Disorders of Interleukin-10 and Interleukin-22 Contributes to High Altitude Polycythemia. Liu YS, Huang H, Zhou SM, Tian HJ, Li P. Front Physiol; 2018 Dec 07; 9():548. PubMed ID: 29872401 [Abstract] [Full Text] [Related]
11. Vitamin E Reduces Hypobaric Hypoxia-Induced Immune Responses in Male Rats. Goswami AR, Ghosh T. High Alt Med Biol; 2019 Mar 07; 20(1):12-21. PubMed ID: 30523700 [Abstract] [Full Text] [Related]
12. A rat model of high altitude polycythemia rapidly established by hypobaric hypoxia exposure. Li PB, Nie HJ, Liu W, Deng BN, Zhu HL, Duan RF, Chen ZL, Wang H. Zhongguo Ying Yong Sheng Li Xue Za Zhi; 2014 Nov 07; 30(6):526-31. PubMed ID: 26016362 [Abstract] [Full Text] [Related]
13. [Mechanism of IL-17 Signaling Pathway in Spleen Inflammatory Response Induced by Altitude Hypoxia in Mice]. Yong S, Guo Y, Chen X, Xu Y, Hu Y. Sichuan Da Xue Xue Bao Yi Xue Ban; 2024 Jan 20; 55(1):118-124. PubMed ID: 38322537 [Abstract] [Full Text] [Related]
14. Deciphering the Efficacy and Mechanism of Astragalus membranaceus on High Altitude Polycythemia by Integrating Network Pharmacology and In Vivo Experiments. Liu X, Zhang H, Yan J, Li X, Li J, Hu J, Shang X, Yang H. Nutrients; 2022 Nov 23; 14(23):. PubMed ID: 36500998 [Abstract] [Full Text] [Related]
15. Mitochondrial DNA 10609T promotes hypoxia-induced increase of intracellular ROS and is a risk factor of high altitude polycythemia. Jiang C, Cui J, Liu F, Gao L, Luo Y, Li P, Guan L, Gao Y. PLoS One; 2014 Nov 23; 9(1):e87775. PubMed ID: 24498190 [Abstract] [Full Text] [Related]
16. Associations of high-altitude polycythemia with polymorphisms in PIK3CD and COL4A3 in Tibetan populations. Fan X, Ma L, Zhang Z, Li Y, Hao M, Zhao Z, Zhao Y, Liu F, Liu L, Luo X, Cai P, Li Y, Kang L. Hum Genomics; 2018 Jul 27; 12(1):37. PubMed ID: 30053909 [Abstract] [Full Text] [Related]
17. Serum Inflammatory Factor Profiles in the Pathogenesis of High-Altitude Polycythemia and Mechanisms of Acclimation to High Altitudes. Yi H, Yu Q, Zeng D, Shen Z, Li J, Zhu L, Zhang X, Xu Q, Song H, Kong P. Mediators Inflamm; 2021 Jul 27; 2021():8844438. PubMed ID: 34483727 [Abstract] [Full Text] [Related]
18. Differential splenic responses to hyperoxic breathing at high altitude in Sherpa and lowlanders. Holmström PK, Harman TS, Kalker A, Steiner B, Hawkins E, Jorgensen KC, Zhu KT, Kunwar AJ, Thakur N, Dhungel S, Sherpa N, Day TA, Schagatay EK, Bigham AW, Brutsaert TD. Exp Physiol; 2024 Apr 27; 109(4):535-548. PubMed ID: 38180087 [Abstract] [Full Text] [Related]
19. Regulation of plasma volume in male lowlanders during 4 days of exposure to hypobaric hypoxia equivalent to 3500 m altitude. Schlittler M, Gatterer H, Turner R, Regli IB, Woyke S, Strapazzon G, Rasmussen P, Kob M, Mueller T, Goetze JP, Maillard M, van Hall G, Feraille E, Siebenmann C. J Physiol; 2021 Feb 27; 599(4):1083-1096. PubMed ID: 33124686 [Abstract] [Full Text] [Related]
20. GATA-1 Promotes Erythroid Differentiation Through the Upregulation of miR-451a and miR-210-3p Expressions in CD34+ Cells in High-Altitude Polycythemia. Liu F, Hu C, Ding J, Fu C, Wang S, Li T. High Alt Med Biol; 2023 Mar 27; 24(1):59-67. PubMed ID: 36749159 [Abstract] [Full Text] [Related] Page: [Next] [New Search]