Kumar H, Jilanee D, Mehta SM, Gul A, Shah SMH, Saleem S, Sarfraz MB, Ashraf SU, Wali S (2022) Frequency and predictors of acute kidney injury in patients with acute coronary syndrome in a tertiary care hospital: a retrospective study. Cureus 14(2):e21869
PubMed PubMed Central Google Scholar
Schmucker J, Fach A, Becker M, Seide S, Bünger S, Zabrocki R, Fiehn E, Würmann-Busch B, Pohlabeln H, Günther K, Ahrens W, Hambrecht R, Wienbergen H (2018) Predictors of acute kidney injury in patients admitted with ST-elevation myocardial infarction-results from the Bremen STEMI-Registry. Eur Heart J Acute Cardiovasc Care 7:710–722
Cosentino N, Resta M, Somaschini A, Campodonico J, Lucci C, Moltrasio M, Bonomi A, Cornara S, Camporotondo R, Demarchi A, De Ferrari G, Bartorelli A, Marenzi G (2021) Acute kidney injury and in-hospital mortality in patients with ST-elevation myocardial infarction of different age groups. Int J Cardiol 344:8–12
Butt K, D’Souza J, Yuan C, Jayakumaran J, Nguyen M, Butt H, Abusaada K (2020) Correlation of the neutrophil-to-lymphocyte ratio (NLR) and platelet-to-lymphocyte ratio (PLR) with contrast-induced nephropathy in patients with acute coronary syndrome undergoing percutaneous coronary interventions. Cureus 12(12):e11879
PubMed PubMed Central Google Scholar
Abdalla M, Ahmed K, Yousef B (2022) Incidence and risk factors of contrast-induced acute kidney injury in sudanese patients undergoing coronary angiography: a descriptive prospective study. Cureus 14(2):e21876
PubMed PubMed Central Google Scholar
Uzunhasan I, Yildiz A, Arslan S, Abaci O, Kocas C, Kocas B, Cetinkal G, Dalgic Y, Karaca O, Dogan S (2017) Contrast-induced acute kidney injury is associated with long-term adverse events in patients with acute coronary syndrome. Angiology 68(7):621–626
Article CAS PubMed Google Scholar
Natha J, Javaheri P, Kruger D, Benterud E, Pearson W, Tan Z, Ma B, Tyrrell B, Har B, Graham M, James M (2020) Patient experience after risk stratification and follow-up for acute kidney injury after cardiac catheterization: patient survey. CJC Open 3(3):337–344
Article PubMed PubMed Central Google Scholar
Vera M, Koch C, Kavsak P, El-Khoury J (2021) Determination of 97.5th and 99th percentile upper reference limits for heart-type fatty acid-binding protein (H-FABP) in a US population. Clin Chim Acta 523:397–401
Article CAS PubMed Google Scholar
Al-Hadi H, William B, Fox K (2009) Serum level of heart-type fatty acid-binding protein in patients with chronic renal failure. Sultan Qaboos Univ Med J 9(3):311–314
PubMed PubMed Central Google Scholar
Moon MG, Yoon CH, Lee K, Kang SH, Youn TJ, Chae IH (2021) Evaluation of heart-type fatty acid-binding protein in early diagnosis of acute myocardial infarction. J Korean Med Sci 36(8):e61
Article CAS PubMed PubMed Central Google Scholar
Kamijo-Ikemori A, Ichikawa D, Matsui K, Yokoyama T, Sugaya T, Kimura K (2013) Urinary L-type fatty acid-binding protein (L-FABP) as a new urinary biomarker promulgated by the Ministry of Health, Labour and Welfare in Japan. Rinsho Byori 61(7):635–640
Sunayama T, Yatsu S, Matsue Y, Dotare T, Maeda D, Ishiwata S, Nakamura Y, Suda S, Kato T, Hiki M, Kasai T, Minamino T (2022) Urinary liver-type fatty acid-binding protein as a prognostic marker in patients with acute heart failure. ESC Heart Fail 9(1):442–449
Ibanez B, James S, Agewall S, Antunes M, Bucciarelli-Ducci C, Bueno H, Caforio A, Crea F, Goudevenos J, Halvorsen S, Hindricks G, Kastrati A, Lenzen M, Prescott E, Roffi M, Valgimigli M, Varenhorst C, Vranckx P, Widimský P, ESC Scientific Document Group (2018) 2017 ESC Guidelines for the management of acute myocardial infarction in patients presenting with ST-segment elevation: The Task Force for the management of acute myocardial infarction in patients presenting with ST-segment elevation of the European Society of Cardiology (ESC). Eur Heart J 39(2):119–177
Levey A, Stevens L, Schmid C, Zhang Y, Castro A, Feldman H, Kusek J, Eggers P, Van Lente F, Greene T, Coresh J (2009) CKD-EPI (Chronic kidney disease epidemiology collaboration): a new equation to estimate glomerular filtration rate. Ann Intern Med 150(9):604–612
Article PubMed PubMed Central Google Scholar
Ad-Hoc Working Group of ERBP, Fliser D, Laville M, Covic A, Fouque D, Vanholder R, Juillard L, Van Biesen W (2012) A European Renal Best Practice (ERBP) position statement on the Kidney Disease Improving Global Outcomes (KDIGO) clinical practice guidelines on acute kidney injury: part 1: definitions, conservative management, and contrast-induced nephropathy. Nephrol Dial Transplant 27(12):4263–4272
Khot U, Jia G, Moliterno D, Lincoff M, Khot M, Harrington R, Topol E (2003) Prognostic importance of physical examination for heart failure in non-ST-elevation acute coronary syndromes the enduring value of killip classification. JAMA 290(16):2174–2181
Article CAS PubMed Google Scholar
Tinder P (1969) Determination of blood glucose. Ann Clin Biochem 6:24
Aminlari M, Vaseghi T (1987) A new colorimetric method for determination of creatine phosphokinase. Anal Biochem 164(2):397–404
Article CAS PubMed Google Scholar
Jaffe M (1886) Ueber den Niederschlag, welchen Pikrinsäure in normalem Harn erzeugt und über eine neue Reaction des Kreatinins. ZPhysiolChem 10:391–400
Peake M, Whiting M (2006) Measurement of serum creatinine–current status and future goals. Clin Biochem Rev 27:173–184
PubMed PubMed Central Google Scholar
Liu Y, Tian M, Jiang X, Luo J, Yi Z (2014) Evaluation of a heart-type fatty acid-binding protein detection kit for diagnosis of the acute coronary syndrome. Nan Fang Yi Ke Da Xue Xue Bao 34(6):901–903
Taussky HH (1961) Creatinine and creatine in urine and serum. In: Seligson D (ed) Standard methods of clinical chemistry, vol 3. Academic Press, New York, pp 99–113
Faul F, Erdfelder E, Lang AG, Buchner A (2007) G*Power 3: a flexible statistical power analysis program for the social, behavioral, and biomedical sciences. Behav Res Methods 39:175–191
Prowle J, Calzavacca P, Licari E, Ligabo V, Echeverri J, Bagshaw S, Haase-Fielitz A, Haase M, Ostland V, Noiri E, Westerman M, Devarajan P, Bellomo R (2015) Combination of biomarkers for diagnosis of acute kidney injury after cardiopulmonary bypass. Ren Fail 37(3):408–416
Article CAS PubMed Google Scholar
Deftereos S, Giannopoulos G, Tzalamouras V, Raisakis K, Kossyvakis C, Kaoukis A, Panagopoulou V, Karageorgiou S, Avramides D, Toutouzas K, Hahalis G, Pyrgakis V, Manolis A, Alexopoulos D, Stefanadis C, Cleman M (2013) Renoprotective effect of remote ischemic post-conditioning by intermittent balloon inflations in patients undergoing percutaneous coronary intervention. J Am Coll Cardiol 61:1949–1955
Yamanaka T, Kawai Y, Miyoshi T, Mima T, Takagaki K, Tsukuda S, Kazatani Y, Nakamura K, Ito H (2015) Remote ischemic preconditioning reduces contrast-induced acute kidney injury in patients with ST elevation myocardial infarction: a randomized controlled trial. Int J Cardiol 178:136–141
Tai H, Jiang X, Lan Z, Li Y, Kong L, Yao S, Song N, Lv M, Wu J, Yang P, Xiao X, Yang G, Kuang J, Jia L (2021) Tanshinone IIA combined with CsA inhibit myocardial cell apoptosis induced by renal ischemia–reperfusion injury in obese rats. BMC Complement Med Ther 21:100
Article CAS PubMed PubMed Central Google Scholar
Li Y, Shi D, Zhang H, Yao X, Ren K (2022) Magnetic resonance imaging of contrast-induced acute renal injury and related pathological alterations in vivo. Anal Cell Pathol (Amst) 2022:6984200
Horikawa T, Maehata J, Hashimoto F, Ikuhara T, Araki H, Umeno H, Sano Y, Ishikawa C, Takagi H, Watanabe A, Koizumi T (2022) Constructing a continuous hemodiafiltration-type circulatory model of acute kidney injury in pigs. Ther Apher Dial 26:507–514
Article CAS PubMed PubMed Central Google Scholar
Shacham Y, Gal-Oz A, Flint N, Keren G, Arbel Y (2016) Serum uric acid levels and renal impairment among ST-segment elevation myocardial infarction patients undergoing primary percutaneous intervention. Cardiorenal Med 6:191–197
Article CAS PubMed PubMed Central Google Scholar
Taduru SS, Ramakrishnan M, Mustafa RA, Baweja PS (2017) Comparison of the frequency of acute kidney injury in patients with renal transplant who underwent percutaneous coronary intervention versus coronary artery bypass graft surgery. Am J Cardiol 120:1104–1109
Mezhonov EM, Vyalkina YA, Vakulchik KA, Halaev SVS (2018) Contrast-induced acute renal injury after percutaneous coronary interventioni in patients with ST-segment elevation myocardial infarction. Kardiologiia 8:5–11
Shirakabe A, Hata N, Kobayashi N, Okazaki H, Shinada T, Tomita K, Yamamoto M, Tsurumi M, Matsushita M, Yamamoto Y, Yokoyama S, Asai K, Shimizu W (2015) Serum heart-type fatty acid-binding protein level can be used to detect acute kidney injury on admission and predict an adverse outcome in patients with acute heart failure. Circ J 79:119–128
Shirakabe A, Hata N, Kobayashi N, Okazaki H, Matsushita M, Shibata Y, Uchiyama S, Sawatani T, Asai K, Shimizu W (2019) Worsening renal failure in patients with acute heart failure: the importance of cardiac biomarkers. ESC Heart Fail 6:416–427
Article PubMed PubMed Central Google Scholar
Haybar H, Assareh A, Mohammadzadeh M, Hovyzian S (2020) Relationship between level of heart type fatty acid binding protein (before and after procedures) with acute renal failure after PCI in patients under PCI. Cardiovasc Hematol Disord Drug Targets 20:41–46
Article CAS PubMed Google Scholar
Yamamoto T, Noiri E, Ono Y, Doi K, Negishi K, Kamijo A, Kimura K, Fujita T, Kinukawa T, Taniguchi H, Nakamura K, Goto M, Shinozaki N, Ohshima S, Sugaya T (2007) Renal L-type fatty acid-binding protein in acute ischemic injury. J Am Soc Nephrol 18:2894–2902
Article CAS PubMed Google Scholar
Hwang Y, Hyun M, Choi B, Chun S, Cho M (2014) Acute kidney injury after using contrast during cardiac catheter
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