cadmium has been researched along with Acute Kidney Injury in 20 studies
Timeframe | Studies, this research(%) | All Research% |
---|---|---|
pre-1990 | 5 (25.00) | 18.7374 |
1990's | 3 (15.00) | 18.2507 |
2000's | 1 (5.00) | 29.6817 |
2010's | 8 (40.00) | 24.3611 |
2020's | 3 (15.00) | 2.80 |
Authors | Studies |
---|---|
Fan, RF; Gong, ZG; Liu, ZP; Wang, L; Wang, ZY; Zhao, Y | 1 |
Chen, K; Huang, Y; Li, Y; Liu, C; Liu, L; Liu, Y; Ma, H; Tan, K; Wang, H; Zhang, X; Zhang, XD | 1 |
Chen, S; Fang, Y; Hu, K; Li, Y; Tang, J; Wu, Z; Xu, L; Zhang, N; Zhang, Y | 1 |
Barbier, O; Jacobo-Estrada, T; Santoyo-Sánchez, M; Thévenod, F | 1 |
Anwar, HM; Elshaer, SS; Mohamed Ali, OS; Zohni, MSE | 1 |
Lash, LH | 1 |
Abarikwu, SO; Adebayo, OL; Badejo, TA; Iserhienrhien, BO; Otuechere, CA | 1 |
Čapek, J; Flídr, P; Hauschke, M; Libra, A; Roušar, T; Roušarová, E | 1 |
Deumer, G; Dumont, X; Hantson, P; Haufroid, V; Hoet, P; Lison, D | 1 |
Edwards, JR; Prozialeck, WC | 1 |
Chattipakorn, N; Kobroob, A; Wongmekiat, O | 1 |
Dalton, TP; Dragin, N; Girijashanker, K; He, L; Miller, ML; Nebert, DW; Richardson, DD; Schneider, SN; Soleimani, M; Stringer, KF; Wang, B | 1 |
Eto, S; Hashimoto, O; Ikeda, M; Ito, Y; Kaizu, K; Komine, N; Uriu, K | 1 |
Elinder, CG | 1 |
Sha, J; Tang, Y; Wu, Y; Yang, Y; Ye, X; Yu, B; Zheng, Z | 1 |
Goyer, RA | 1 |
Basinger, MA; Holscher, MA; Jones, MM; Jones, SG | 1 |
Nagai, Y; Sasaki, M; Sato, M | 1 |
Alexander, GV; Gonick, HC; Indraprasit, S | 1 |
Friberg, L; Piscator, M | 1 |
4 review(s) available for cadmium and Acute Kidney Injury
Article | Year |
---|---|
Cadmium Handling, Toxicity and Molecular Targets Involved during Pregnancy: Lessons from Experimental Models.
Topics: Acute Kidney Injury; Animals; Cadmium; Calcification, Physiologic; Female; Fertility; Humans; Maternal Exposure; Mice; Pre-Eclampsia; Pregnancy | 2017 |
Environmental and Genetic Factors Influencing Kidney Toxicity.
Topics: Activation, Metabolic; Acute Kidney Injury; Aristolochic Acids; Arsenic; Cadmium; Drug Contamination; Fluorides; Food Contamination; Humans; Kidney Cortex Necrosis; Membrane Transport Proteins; Metals, Heavy; Oxidative Stress; Plant Preparations; Renal Insufficiency, Chronic; Solvents; Tetrachloroethylene; Triazines; Trichloroethylene | 2019 |
Mechanisms of cadmium-induced proximal tubule injury: new insights with implications for biomonitoring and therapeutic interventions.
Topics: Acute Kidney Injury; Animals; Apoptosis; Biomarkers; Cadmium; Cadmium Poisoning; Cell Adhesion; Environmental Pollutants; Humans; Kidney Tubules, Proximal | 2012 |
Mechanisms of lead and cadmium nephrotoxicity.
Topics: Acute Kidney Injury; Cadmium; Humans; Kidney Tubular Necrosis, Acute; Kidney Tubules, Proximal; Lead | 1989 |
16 other study(ies) available for cadmium and Acute Kidney Injury
Article | Year |
---|---|
Epigenetic regulator BRD4 is involved in cadmium-induced acute kidney injury via contributing to lysosomal dysfunction, autophagy blockade and oxidative stress.
Topics: Acute Kidney Injury; Autophagy; Cadmium; Cell Cycle Proteins; Epigenesis, Genetic; Humans; Lysosomes; Nuclear Proteins; Oxidative Stress; Transcription Factors | 2022 |
Single Atom-Engineered NIR-II Gold Clusters with Ultrahigh Brightness and Stability for Acute Kidney Injury.
Topics: Acute Kidney Injury; Cadmium; Fluorescent Dyes; Gold; Humans; Indocyanine Green; Optical Imaging | 2023 |
Cadmium (Cd) and 2,2',4,4'-tetrabromodiphenyl ether (BDE-47) co-exposure induces acute kidney injury through oxidative stress and RIPK3-dependent necroptosis.
Topics: Acute Kidney Injury; Animals; Cadmium; Ether; Ethyl Ethers; HEK293 Cells; Humans; Mice; Mice, Inbred C57BL; Necroptosis; Oxidative Stress; Reactive Oxygen Species; Receptor-Interacting Protein Serine-Threonine Kinases; Tumor Necrosis Factor-alpha | 2023 |
Relevance of cystatin-C, N-acetylglucosaminidase, and Interleukin-18 with the diagnosis of acute kidney injury induced by cadmium in rats.
Topics: Acetylglucosaminidase; Acute Kidney Injury; Animals; Biomarkers; Blood Urea Nitrogen; Cadmium; Cystatin C; Gene Expression Regulation; Interleukin-18; Male; Rats, Sprague-Dawley | 2017 |
Selenium and rutin alone or in combination do not have stronger protective effects than their separate effects against cadmium-induced renal damage.
Topics: Acute Kidney Injury; Animals; Cadmium; Drug Therapy, Combination; Lipid Peroxidation; Male; Rats; Rats, Wistar; Rutin; Selenium; Treatment Outcome | 2016 |
Neutrophil gelatinase-associated lipocalin production negatively correlates with HK-2 cell impairment: Evaluation of NGAL as a marker of toxicity in HK-2 cells.
Topics: Acetaminophen; Acute Kidney Injury; Biomarkers; Cadmium; Cell Line; Cell Survival; Cisplatin; Gentamicins; Humans; Lipocalin-2; Mercury; tert-Butylhydroperoxide | 2017 |
Acute kidney injury following acute liver failure: potential role of systemic cadmium mobilization?
Topics: Acute Kidney Injury; Adult; Aged; Belgium; Cadmium; Case-Control Studies; Comorbidity; Environmental Pollutants; Female; Hospitals, University; Humans; Intensive Care Units; Lead; Liver Failure, Acute; Male; Middle Aged; Young Adult; Zinc | 2012 |
Caffeic acid phenethyl ester ameliorates cadmium-induced kidney mitochondrial injury.
Topics: Acute Kidney Injury; Animals; Cadmium; Caffeic Acids; Environmental Pollutants; Male; Mitochondria; Oxidative Stress; Phenylethyl Alcohol; Rats; Rats, Wistar | 2012 |
Enhanced cadmium-induced testicular necrosis and renal proximal tubule damage caused by gene-dose increase in a Slc39a8-transgenic mouse line.
Topics: Acute Kidney Injury; Amino Acid Sequence; Animals; Cadmium; Cation Transport Proteins; Chromosomes, Artificial, Bacterial; Endothelial Cells; Gene Dosage; Kidney Tubules, Proximal; Lung; Male; Mice; Mice, Transgenic; Molecular Sequence Data; Necrosis; Phenotype; RNA, Messenger; Testis | 2007 |
[The effects of acute administration of cadmium chloride on renal hemodynamics in rats].
Topics: Acute Kidney Injury; Animals; Blood Pressure; Cadmium; Cadmium Chloride; Chlorides; Glomerular Filtration Rate; Hematocrit; Hemodynamics; Male; Rats; Rats, Sprague-Dawley; Renal Circulation; Vascular Resistance | 1993 |
[Too much alarm about cadmium? The risk of epidemics of cadmium-induced renal failure is there, but it is a minor risk].
Topics: Acute Kidney Injury; Cadmium; Cadmium Poisoning; Disease Outbreaks; Humans; Risk Factors; Sweden | 1998 |
[Application of cerium cytochemical method in observation of renal injury caused by oxygen free radical with cadmium induction].
Topics: Acute Kidney Injury; Animals; Cadmium; Cerium; Electron Probe Microanalysis; Free Radicals; Histocytochemistry; Hydrogen Peroxide; Kidney Tubules, Proximal; Male; Oxygen; Rats | 1999 |
Dependence on chelating agent properties of nephrotoxicity and testicular damage in male mice during cadmium decorporation.
Topics: Acute Kidney Injury; Animals; Cadmium; Chelating Agents; Cysteine; Kidney Tubular Necrosis, Acute; Male; Mice; Sorbitol; Spin Labels; Testis; Thiocarbamates | 1988 |
Increased urinary excretion of collagen metabolites in cadmium-metallothionein nephropathy.
Topics: Acute Kidney Injury; Animals; Cadmium; Female; Hydroxylysine; Hydroxyproline; Metallothionein; Mice; Rats; Rats, Inbred Strains | 1987 |
Tissue composition of major and trace elements in uremia and hypertension.
Topics: Acute Kidney Injury; Adult; Aged; Aluminum; Autopsy; Barium; Cadmium; Calcium; Creatinine; Humans; Hypertension; Kidney Cortex; Kidney Failure, Chronic; Lead; Lithium; Liver; Middle Aged; Nickel; Phosphorus; Potassium; Silver; Sodium; Spleen; Tin; Titanium; Trace Elements; Uremia | 1974 |
[The long-term effects of cadmium].
Topics: Acute Kidney Injury; Adolescent; Adult; Aged; Cadmium; Cadmium Poisoning; Child; Environmental Exposure; Environmental Pollution; Female; Food Contamination; Half-Life; Humans; Industrial Waste; Japan; Kidney; Male; Middle Aged; Poisoning; Time Factors | 1972 |