keyword
https://read.qxmd.com/read/38665207/the-role-of-testis-specific-protein-y-encoded-like-2-in-kidney-injury
#21
JOURNAL ARTICLE
Mingxing Sui, Sijia Yan, Pei Zhang, Yuhong Li, Kewen Chen, Yanhua Li, Hanlan Lu, Yanfeng Li, Wenyu Zhao, Li Zeng
Renal ischemia-reperfusion injury (IRI) is a major cause of acute kidney injury (AKI). Recent findings suggest that Testis-Specific Protein Y-encoded-Like 2 (TSPYL2) plays a fibrogenic role in diabetes-associated renal injury. However, the role of TSPYL2 in IRI-induced kidney damage is not entirely clear. In this study, we found that the expression of TSPYL2 was upregulated in a mouse model of AKI and in the hypoxia/reoxygenation (H/R) cell model. Knockdown of TSPYL2 attenuated kidney injury after IRI. More specifically, the knockdown of TSPYL2 or aminocarboxymuconate-semialdehyde decarboxylase (ACMSD) alleviated renal IRI-induced mitochondrial dysfunction and oxidative stress in vitro and in vivo ...
May 17, 2024: IScience
https://read.qxmd.com/read/38664873/mir-208a-3p-regulated-by-circuqcrc2-suppresses-ischemia-reperfusion-induced-acute-kidney-injury-by-inhibiting-celf2-mediated-tubular-epithelial-cell-apoptosis-inflammation-and-ferroptosis
#22
JOURNAL ARTICLE
Peng Huang, Lingzhang Meng, Jun Pang, Haiting Huang, Jing Ma, Linlin He, Xu Lin
BACKGROUND: Acute kidney injury (AKI) is a prevalent clinical syndrome with persistent kidney dysfunction. Renal ischemia/reperfusion (I/R) injury is a major cause of AKI. miR-208a-3p overexpression attenuated myocardial I/R injury. This study aims to investigate the role and mechanism of miR-208a-3p in I/R-induced AKI. METHODS: AKI models were established using hypoxia/reoxygenation (H/R)-exposed tubule epithelial cell HK-2 and I/R-induced mice. The function and mechanism of miR-208a-3p were investigated by gain-or loss-of-function methods using real-time PCR, CCK-8, flow cytometry, ELISA, western blot, hematoxylin-eosin staining, Tunel assay, detection of Fe2+, ROS, BUN and Creatinine, and luciferase reporter assay...
April 26, 2024: Shock
https://read.qxmd.com/read/38664788/mettl14-mediated-n6-methyladenosine-modification-induces-the-ferroptosis-of-hypoxia-reoxygenation-induced-cardiomyocytes
#23
JOURNAL ARTICLE
Chunyu Zhao, Jianing Li
BACKGROUND: Hypoxia/reoxygenation (H/R) induces cardiomyocyte ferroptosis, a core remodeling event in myocardial ischemia/reperfusion injury. Methyltransferase-like 14 (METTL14) emerges as a writer of N6-methyladenosine (m6A) modification. This study was conducted to decipher the role of METTL14 in H/R-induced cardiomyocyte ferroptosis. METHODS: Mouse cardiomyocytes HL-1 were cultured and underwent H/R treatment. The degree of ferroptosis after H/R treatment was appraised by the cell counting kit-8 assay, assay kits (ROS/GSH/Fe2+ ), and Western blotting (GPX4/ACSL4)...
April 25, 2024: Journal of Cardiothoracic Surgery
https://read.qxmd.com/read/38662610/wtap-mediated-m6a-modification-of-klf6-aggravates-hypoxia-reoxygenation-induced-human-cardiomyocyte-injury
#24
JOURNAL ARTICLE
Mingcheng Fang, Ting Li, Zhiyong Wu
BACKGROUND: Myocardial infarction (MI) is a severe condition that typically results from the ischemia and necrosis of heart muscle. Kruppel-like factor 6 (KLF6) can aggravate myocardial ischemia/reperfusion injury. This work aims to reveal its role and mechanism in hypoxia/reoxygenation (H/R)-induced cardiomyocyte injury. METHODS: Human cardiomyocyte (AC16) was exposed to hypoxic treatment to mimic MI-like cell injury. mRNA expression levels of KLF6 and WT1 associated protein (WTAP) were detected by quantitative real-time polymerase chain reaction (qRT-PCR)...
April 9, 2024: Shock
https://read.qxmd.com/read/38661094/endothelial-lincrna-p21-alleviates-cerebral-ischemia-reperfusion-injury-by-maintaining-blood-brain-barrier-integrity
#25
JOURNAL ARTICLE
Yun-Hua Zhao, Yu Liang, Kang-Ji Wang, Sheng-Nan Jin, Xiao-Meng Yu, Qian Zhang, Jia-Yi Wei, Hui Liu, Wen-Gang Fang, Wei-Dong Zhao, Yuan Li, Yu-Hua Chen
Blood-brain barrier (BBB) disruption is increasingly recognized as an early contributor to the pathophysiology of cerebral ischemia/reperfusion (I/R) injury, and is also a key event in triggering secondary damage to the central nervous system. Recently, long non-coding RNA (lncRNA) have been found to be associated with ischemic stroke. However, the roles of lncRNA in BBB homeostasis remain largely unknown. Here, we report that long intergenic non-coding RNA-p21 (lincRNA-p21) was the most significantly down-regulated lncRNA in human brain microvascular endothelial cells (HBMECs) after oxygen and glucose deprivation/reoxygenation (OGD/R) treatment among candidate lncRNA, which were both sensitive to hypoxia and involved in atherosclerosis...
April 25, 2024: Journal of Cerebral Blood Flow and Metabolism
https://read.qxmd.com/read/38658442/neferine-alleviates-acute-kidney-injury-by-regulating-the-ppar-%C3%AE-nf-%C3%AE%C2%BAb-pathway
#26
JOURNAL ARTICLE
Yanying Xiong, Jin Zhong, Wenhang Chen, Xuan Li, Hong Liu, Ying Li, Weijian Xiong, Huihui Li
Acute kidney injury (AKI) is a cluster of clinical syndromes with diverse etiologies that ultimately result in a swift decline in kidney function. Regrettably, AKI lacks effective therapeutic agents at present. Neferine, a bioactive alkaloid derived from Lotus Plumule, has been reported to alleviate AKI triggered by cisplatin, ischemia/reperfusion (I/R), and sepsis by inhibiting inflammatory pathways. However, the precise molecular mechanisms underpinning its renoprotective effects remain elusive. Peroxisome proliferator-activated receptor alpha (PPAR-α), a regulator of lipid metabolism with anti-inflammatory properties, was investigated in this study to examine its role in neferine's renoprotective effects in cellular and mouse models of AKI...
April 24, 2024: Clinical and Experimental Nephrology
https://read.qxmd.com/read/38654271/hypoxia-exposure-blunts-angiogenic-signaling-and-upregulates-the-antioxidant-system-in-endothelial-cells-derived-from-elephant-seals
#27
JOURNAL ARTICLE
Kaitlin N Allen, Julia María Torres-Velarde, Juan Manuel Vazquez, Diana D Moreno-Santillán, Peter H Sudmant, José Pablo Vázquez-Medina
BACKGROUND: Elephant seals exhibit extreme hypoxemic tolerance derived from repetitive hypoxia/reoxygenation episodes they experience during diving bouts. Real-time assessment of the molecular changes underlying protection against hypoxic injury in seals remains restricted by their at-sea inaccessibility. Hence, we developed a proliferative arterial endothelial cell culture model from elephant seals and used RNA-seq, functional assays, and confocal microscopy to assess the molecular response to prolonged hypoxia...
April 23, 2024: BMC Biology
https://read.qxmd.com/read/38653371/pleiotropic-role-of-gas6-in-cardioprotection-against-ischemia-reperfusion-injury
#28
JOURNAL ARTICLE
Chenxi Lu, Yanbin Song, Xiaopeng Wu, Wangrui Lei, Junmin Chen, Xin Zhang, Qiong Liu, Chao Deng, Zhenxing Liang, Ying Chen, Jun Ren, Yang Yang
INTRODUCTION: Myocardial ischemia-reperfusion (IR) injury is a common medical issue contributing to the onset and progression of ischemic heart diseases (IHD). Growth arrest-specific gene 6 (GAS6) is vitamin K-dependent secretory protein, to promote cell proliferation and inhibit inflammation and apoptosis through binding with Tyro3, Axl, and Mertk (TAM) receptors. OBJECTIVES: Our study aimed to examine the effect of GAS6 pathways activation as a potential new treatment in myocardial ischemia-reperfusion (IR) injury...
April 21, 2024: Journal of Advanced Research
https://read.qxmd.com/read/38650141/atf3-egr1-regulates-myocardial-ischemia-reperfusion-injury-induced-autophagy-and-inflammation-in-cardiomyocytes
#29
JOURNAL ARTICLE
Li Li, Gang Fu, Caiyun Liu, Yanling Liu
Myocardial ischemia/reperfusion injury (MIRI) is an irreversible adverse event during the management of coronary heart disease that lacks effective controls. The underlying mechanism of MIRI still requires further investigation. Recent studies have suggested that overexpression of ATF3 protects against MIRI by regulating inflammatory responses, ferroptosis, and autophagy. The downstream target of ATF3, EGR1, also showed cardioprotective properties against MIRI by promoting autophagy. Therefore, further investigating the effect of ATF3/EGR1 pathway on MIRI-induced inflammation and autophagy is needed...
March 31, 2024: Cellular and Molecular Biology
https://read.qxmd.com/read/38643868/inhibition-of-usp14-ameliorates-renal-ischemia-reperfusion-injury-by-reducing-tfap2a-stabilization-and-facilitating-mitophagy
#30
JOURNAL ARTICLE
Yang Li, Boqing Dong, Ying Wang, Huanjing Bi, Jing Zhang, Chenguang Ding, Chenge Wang, Xiaoming Ding, Wujun Xue
Mitochondrial dysfunction is recognized as a pivotal contributor to the pathogenesis of renal ischemia-reperfusion (IR) injury. Mitophagy, the process responsible for removing damaged protein aggregates, stands as a critical mechanism safeguarding cells against IR injury. Currently, the role of deubiquitination in regulating mitophagy still needs to be completely elucidated. This study aimed to evaluate the impact of ubiquitin-specific peptidase 14 (Usp14), a deubiquitinase, in IR injury by influencing mitophagy...
April 19, 2024: Translational Research: the Journal of Laboratory and Clinical Medicine
https://read.qxmd.com/read/38641746/cpd-a1-alleviates-acute-kidney-injury-by-inhibiting-ferroptosis
#31
JOURNAL ARTICLE
Ying Chen, Ming-Fei Wu, Man-Man Xie, Yang Lu, Chao Li, Shuai-Shuai Xie, Wen-Xian Ma, Ming-Lu Ji, Rui Hou, Ze-Hui Dong, Ruo-Bing He, Meng-Meng Zhang, Hao Lu, Li Gao, Jia-Gen Wen, Juan Jin, Xiao-Wu Dong, Jin-Xin Che, Xiao-Ming Meng
Acute kidney injury (AKI) is defined as sudden loss of renal function characterized by increased serum creatinine levels and reduced urinary output with a duration of 7 days. Ferroptosis, an iron-dependent regulated necrotic pathway, has been implicated in the progression of AKI, while ferrostatin-1 (Fer-1), a selective inhibitor of ferroptosis, inhibited renal damage, oxidative stress and tubular cell death in AKI mouse models. However, the clinical translation of Fer-1 is limited due to its lack of efficacy and metabolic instability...
April 19, 2024: Acta Pharmacologica Sinica
https://read.qxmd.com/read/38641064/the-multifaceted-role-of-intracellular-glycosylation-in-cytoprotection-and-heart-disease
#32
REVIEW
Priya Umapathi, Akanksha Aggarwal, Fiddia Zahra, Bhargavi Narayanan, Natasha E Zachara
The modification of nuclear, cytoplasmic, and mitochondrial proteins by O-linked β-N-acetylglucosamine (O-GlcNAc) is an essential post-translational modification common in metazoans. O-GlcNAc is cycled on and off proteins in response to environmental and physiological stimuli impacting protein function, which, in turn, tunes pathways that include transcription, translation, proteostasis, signal transduction, and metabolism. One class of stimulus that induces rapid and dynamic changes to O-GlcNAc is cellular injury, resulting from environmental stress (for instance, heat shock), hypoxia/reoxygenation injury, ischemia reperfusion injury (heart attack, stroke, trauma hemorrhage), and sepsis...
April 17, 2024: Journal of Biological Chemistry
https://read.qxmd.com/read/38640125/xinnaotongluo-liquid-protects-h9c2-cells-from-h-r-induced-damage-by-regulating-mdm2-steap3
#33
JOURNAL ARTICLE
Jiankun Cui, Qinwen Wang, Minghao Li
Xinnaotongluo liquid has been used to improve the clinical symptoms of patients with myocardial infarction. However, the molecular mechanism of Xinnaotongluo liquid is not completely understood. H9c2 cells exposed to hypoxia/reoxygenation (H/R) was used to simulate damage to cardiomyocytes in myocardial infarction in vitro. The biological indicators of H9c2 cells were measured by cell counting kit-8, enzyme linked immunoabsorbent assay, and western blot assay. In H/R-induced H9c2 cells, a markedly reduced murine double minute 2 (MDM2) was observed...
2024: PloS One
https://read.qxmd.com/read/38629905/a-metal-organic-cage-derived-cascade-antioxidant-nanozyme-to-mitigate-renal-ischemia-reperfusion-injury
#34
JOURNAL ARTICLE
Cheng Huang, Yucen Deng, Rongze Ma, Hucheng Ge, Fuzhong Gong, Jinghui Yang, Xinyuan Zhu, Youfu Wang
In the field of contemporary medicine, inflammation has emerged as a significant concern in global public health. Among the current anti-inflammatory strategies, nanozymes possess distinctive advantages and demonstrate unexpected efficacy in combating inflammation. However, the indeterminate structures and limited enzyme-like activity exhibited by most developed nanozymes impede their clinical translation and therapeutic effectiveness. In this paper, we developed a nanozyme derived from a well-defined metal-organic cage (MOC)...
April 17, 2024: Nanoscale
https://read.qxmd.com/read/38621976/-tetrahydropalmatine-inhibiting-mitophagy-through-ulk1-fundc1-pathway-to-alleviate-hypoxia-reoxygenation-injury-in-h9c2-cells
#35
JOURNAL ARTICLE
Gao-Jie Xin, Zi-Xin Liu, Yuan-Yuan Chen, Hui-Yu Zhang, Fan Guo, Han Peng, Lei Li, Xiao Han, Jian-Xun Liu, Jian-Hua Fu
This study explored the specific mechanism by which tetrahydropalmatine(THP) inhibited mitophagy through the UNC-51-like kinase 1(ULK1)/FUN14 domain containing 1(FUNDC1) pathway to reduce hypoxia/reoxygenation(H/R) injury in H9c2 cells. This study used H9c2 cells as the research object to construct a cardiomyocyte H/R injury model. First, a cell viability detection kit was used to detect cell viability, and a micro-method was used to detect lactate dehydrogenase(LDH) leakage to evaluate the protective effect of THP on H/R injury of H9c2 cells...
March 2024: Zhongguo Zhong Yao za Zhi, Zhongguo Zhongyao Zazhi, China Journal of Chinese Materia Medica
https://read.qxmd.com/read/38621913/-ginsenoside-re-regulates-mitochondrial-biogenesis-through-nrf2-ho-1-pgc-1%C3%AE-pathway-to-reduce-hypoxia-reoxygenation-injury-in-h9c2-cells
#36
JOURNAL ARTICLE
Gao-Jie Xin, Yuan-Yuan Chen, Zi-Xin Liu, Shu-Juan Xu, Hui-Yu Zhang, Fan Guo, Han Peng, Lei Li, Xiao Han, Jian-Xun Liu, Jian-Hua Fu
This article explored the mechanism by which ginsenoside Re reduces hypoxia/reoxygenation(H/R) injury in H9c2 cells by regulating mitochondrial biogenesis through nuclear factor E2-related factor 2(Nrf2)/heme oxygenase-1(HO-1)/peroxisome prolife-rator-activated receptor gamma coactivator-1α(PGC-1α) pathway. In this study, H9c2 cells were cultured in hypoxia for 4 hours and then reoxygenated for 2 hours to construct a cardiomyocyte H/R injury model. After ginsenoside Re pre-administration intervention, cell activity, superoxide dismutase(SOD) activity, malondialdehyde(MDA) content, intracellular reactive oxygen species(Cyto-ROS), and intramitochondrial reactive oxygen species(Mito-ROS) levels were detected to evaluate the protective effect of ginsenoside Re on H/R injury of H9c2 cells by resisting oxidative stress...
February 2024: Zhongguo Zhong Yao za Zhi, Zhongguo Zhongyao Zazhi, China Journal of Chinese Materia Medica
https://read.qxmd.com/read/38613636/circdiaph3-aggravates-h-r-induced-cardiomyocyte-apoptosis-and-inflammation-through-mir-338-3p-srsf1-axis
#37
JOURNAL ARTICLE
Lin Lin, Li Wang, Aimin Li, Yanzhuo Li, Xiaolong Gu
Acute myocardial infarction (AMI) is one of the most prevalent cardiovascular diseases, accounting for a high incidence rate and high mortality worldwide. Hypoxia/reoxygenation (H/R)-induced myocardial cell injury is the main cause of AMI. Several studies have shown that circular RNA contributes significantly to the pathogenesis of AMI. Here, we established an AMI mouse model to investigate the effect of circDiaph3 in cardiac function and explore the functional role of circDiaph3 in H/R-induced cardiomyocyte injury and its molecular mechanism...
April 13, 2024: Journal of Bioenergetics and Biomembranes
https://read.qxmd.com/read/38608825/sdf-1-cxcr4-axis-participants-in-the-pathophysiology-of-adult-patients-with-moyamoya-disease
#38
JOURNAL ARTICLE
Shuaiyu Ren, Qingdong Han, Peng Zhou, Zongqi Wang, Yabo Huang
BACKGROUND: Moyamoya disease (MMD) is characterized by an abundance of moyamoya vessels; however, the precise mechanism driving the spontaneous angiogenesis of these compensatory vessels remains unclear. Previous research has established a link between the stromal cell-derived factor-1 (SDF-1)/ CXC receptor 4 (CXCR4) axis and angiogenesis under hypoxic conditions. Nevertheless, the alterations in this axis within the cerebrospinal fluid, arachnoid membranes and vascular tissue of MMD patients have not been fully investigated...
April 10, 2024: Journal of Stroke and Cerebrovascular Diseases: the Official Journal of National Stroke Association
https://read.qxmd.com/read/38608473/the-sp1-sirt1-acly-signaling-axis-mediates-fatty-acid-oxidation-in-renal-ischemia-reperfusion-induced-renal-fibrosis
#39
JOURNAL ARTICLE
Huailiang Wu, Liyan Wang, Peng Kang, Xiangjun Zhou, Wei Li, Zhongyuan Xia
BACKGROUND: Renal ischemia-reperfusion is the primary cause of acute kidney injury (AKI). Clinically, most patients who experience ischemia-reperfusion injury eventually progress gradually to renal fibrosis and chronic kidney disease (CKD). However, the underlying mechanism for AKI to CKD transition remain absent. Our study demonstrated that the downregulation of sirtuin 1 (Sirt1)-mediated fatty acid oxidation (FAO) facilitates IRI-induced renal fibrosis. METHODS: The IRI animal model was established, and ribonucleic acid (RNA) sequencing was used to explore potential differentially expressed genes (DEGs) and pathways...
April 11, 2024: International Immunopharmacology
https://read.qxmd.com/read/38607518/pioglitazone-ameliorates-ischemia-reperfusion-induced-acute-kidney-injury-via-oxidative-stress-attenuation-and-nlrp3-inflammasome
#40
JOURNAL ARTICLE
Zhenfeng Ye, Jing Zhang, Zhou Xu, Zhangwang Li, Gaomin Huang, Bin Tong, Panpan Xia, Yunfeng Shen, Honglin Hu, Peng Yu, Xiaoqing Xi
Acute kidney injury (AKI) induced by renal ischemia/reperfusion injury (IRI) is a severe clinical condition. ROS accumulation, antioxidant pathways deficiency, and inflammation are involved in IRI. Pioglitazone (Pio) exerts anti-inflammatory and antioxidant effects. The aim of this study was to explore the protective effects of pioglitazone against IRI-induced AKI. Pathogen-free Sprague-Dawley (SD) rats were arbitrarily divided into four groups: Sham operation group Control (CON) group, CON + Pio group, I/R + Saline group, and I/R + Pio group...
April 12, 2024: Human Cell
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