Renal Impairment
74 drugs34,438 FAERS reportsMedDRA PT
GET
/api/v1/reaction/renal-impairmentReference statistics only. FAERS reports are voluntarily submitted and are not incidence rates, safety signals, or causal evidence. The drugs below are ranked by how often this reaction appears on FAERS reports for each drug — high share does not mean the drug caused the reaction, and absence from this list does not mean the reaction never occurred. This is not a symptom checker.
DefinitionNLM MeSH D051437
Conditions in which the KIDNEYS perform below the normal level in the ability to remove wastes, concentrate URINE, and maintain ELECTROLYTE BALANCE; BLOOD PRESSURE; and CALCIUM metabolism. Renal insufficiency can be classified by the degree of kidney damage (as measured by the level of PROTEINURIA) and reduction in GLOMERULAR FILTRATION RATE.
Source: U.S. National Library of Medicine — MeSH (Renal Insufficiency)
Drugs reporting Renal Impairment (74)
Share = reports listing this reaction ÷ total matched reports for the drug. — means the upstream totals query failed at ingest and the denominator is unknown.
- 1Nitroprusside3810%
- 2Dextran 70110%
- 3Tepotinib508.8%
- 4Sodium Carbonate198.4%
- 5Nedosiran18.3%
- 6Mannitol3938.1%
- 7Migalastat397.4%
- 8Cidofovir936.7%
- 9Terlipressin196.6%
- 10Foscarnet2506.4%
- 11Vecuronium946.2%
- 12Coumarin106.1%
- 13Tolvaptan8286.0%
- 14Etomidate1255.8%
- 15Flucytosine725.4%
- 16Elvitegravir8345.2%
- 17Isoflurane944.9%
- 18Cobicistat1,0154.9%
- 19Daprodustat864.9%
- 20Finerenone1244.7%
- 21Adefovir594.7%
- 22Edoxaban2784.4%
- 23Tenofovir Alafenamide1,7954.3%
- 24Tenofovir Disoproxil3,0124.3%
- 25Telavancin54.2%
- 26Basiliximab4604.0%
- 27Flavoxate44.0%
- 28Metyrosine33.9%
- 29Hepatitis B Immune Globulin23.9%
- 30Miglitol363.9%
- 31Emtricitabine2,9513.8%
- 32Glucarpidase133.7%
- 33Dopamine1353.6%
- 34Tenofovir3,3093.6%
- 35Entrectinib573.5%
- 36Sodium Gluconate43.5%
- 37Abacavir5463.4%
- 38Relebactam33.4%
- 39Ganciclovir3443.2%
- 40Nelfinavir653.1%
- 41Dolutegravir6003.1%
- 42Febuxostat5063.1%
- 43Darunavir5663.0%
- 44Amphotericin6053.0%
- 45Amphotericin B6053.0%
- 46Succinylcholine1123.0%
- 47Norepinephrine3982.8%
- 48Doravirine292.8%
- 49Sodium Bicarbonate7802.8%
- 50Crotamiton172.8%
- 51Voclosporin2352.8%
- 52Nafcillin252.8%
- 53Momelotinib322.7%
- 54Raltegravir4422.7%
- 55Sparsentan1392.7%
- 56Miltefosine102.7%
- 57Valganciclovir4802.6%
- 58Azilsartan1012.5%
- 59Eplerenone2972.4%
- 60Tacrolimus3,6272.4%
- 61Vonoprazan1582.3%
- 62Vancomycin1,5052.3%
- 63Mycophenolic Acid7162.3%
- 64Lamivudine1,0702.3%
- 65Efavirenz2422.2%
- 66Remdesivir2802.1%
- 67Sirolimus2642.0%
- 68Entecavir2252.0%
- 69Cyclosporine2,1221.9%
- 70Maraviroc411.8%
- 71Sodium Zirconium Cyclosilicate581.7%
- 72Zirconium581.7%
- 73Cysteamine201.5%
- 74Bictegravir807—
Related reactions
Other reactions most often co-reported on the same drug set. Ranked by Jaccard similarity over drug-id sets — pure data-derived co-occurrence, not a clinical relationship.
- Blood Creatinine Increased25 shared · 0.24
- Anhedonia20 shared · 0.21
- Emotional Distress22 shared · 0.18
- Renal Injury13 shared · 0.15
- Renal Failure43 shared · 0.15
- Osteoporosis13 shared · 0.15
- Bone Density Decreased11 shared · 0.14
- Osteopenia9 shared · 0.12
- Respiratory Failure17 shared · 0.11
- Osteonecrosis9 shared · 0.11
Literature
Recent PubMed references pinned to Renal Insufficiency as a MeSH major topic. About the reaction term itself — not about any specific drug.
- A Retrospective comparative analysis of postoperative renal function modification following retrograde intrarenal surgery versus minimally invasive percutaneous nephrolithotomy (≤ 26Ch) using serum creatinine-based metrics.World journal of urology · 2026 · Candela L, Scilipoti P, Villa L, et al.PMID 42207339DOI 10.1007/s00345-026-06490-2
- Donor Acute Kidney Injury and Outcomes After Deceased Donor Kidney Transplantation: A 50-Case Single-Center Study From Japan.Clinical transplantation · 2026 · Nakamura Y, Yokoyama T, Miki K, et al.PMID 42206547DOI 10.1111/ctr.70581
- Triglyceride-glucose index and subclinical left ventricular dysfunction across cardiovascular-kidney-metabolic syndrome stages: a 7-year retrospective cohort study.Frontiers in endocrinology · 2026 · Tsai KZ, Lin GM, Yun C, et al.PMID 42205253DOI 10.3389/fendo.2026.1783741
- Prediction of acute kidney injury after total aortic arch replacement with postoperative serum lactate: a retrospective cohort study.Renal failure · 2026 · Tang X, Li C, Ren J, et al.PMID 42204447DOI 10.1080/0886022X.2026.2671444
- Time-updated explainable machine learning predicts short-term mortality in peritoneal dialysis patients.Renal failure · 2026 · Wang Q, Ding Y, Luo Q, et al.PMID 42204441DOI 10.1080/0886022X.2026.2666955
- Machine learning-based prediction of a high-risk kidney function trajectory class after acute kidney injury.BMJ health & care informatics · 2026 · Liu CL, Tain YL, Lin CC, et al.PMID 42203305DOI 10.1136/bmjhci-2025-101578
Note. FAERS reports are voluntarily submitted and are NOT incidence rates, signals, or causal evidence. Counts reflect reporting volume, not how often a reaction occurs. Reference statistics only.