Implementation of Alert System for Early Diagnosis of Acute Kidney Injury: Paving the Way for National Public Health Advisory in India

Cheng X, Wu B, Liu Y, Mao H, Xing C. Incidence and diagnosis of acute kidney injury in hospitalized adult patients: a retrospective observational study in a tertiary teaching hospital in Southeast China. BMC Nephrol. 2017;18:203.

Article  PubMed  PubMed Central  Google Scholar 

Libório AB, Leite TT, Neves FM, de O, Teles F. Bezerra CT De M. AKI complications in critically ill patients: Association with mortality rates and RRT. CJASN. 2015;10:21–8.

Article  PubMed  Google Scholar 

Mehta RL, Cerdá J, Burdmann EA, Tonelli M, García-García G, Jha V, et al. International society of nephrology’s 0by25 initiative for acute kidney injury (zero preventable deaths by 2025): a human rights case for nephrology. Lancet. 2015;385:2616–43.

Article  PubMed  Google Scholar 

Makris K, Spanou L. Acute kidney injury: definition, pathophysiology and clinical phenotypes. Clin Biochem Rev. 2016;37:85–98.

PubMed  PubMed Central  Google Scholar 

Khwaja A. KDIGO clinical practice guidelines for acute kidney injury. Nephron Clin Pract. 2012;120:c179–184.

Article  PubMed  Google Scholar 

Rind DM, Safran C, Phillips RS, Wang Q, Calkins DR, Delbanco TL, et al. Effect of computer-based alerts on the treatment and outcomes of hospitalized patients. Arch Intern Med. 1994;154:1511–7.

Article  CAS  PubMed  Google Scholar 

Selby NM, Crowley L, Fluck RJ, McIntyre CW, Monaghan J, Lawson N, et al. Use of electronic results reporting to diagnose and monitor AKI in hospitalized patients. Clin J Am Soc Nephrol. 2012;7:533–40.

Article  PubMed  Google Scholar 

Wallace K, Mallard AS, Stratton JD, Johnston PA, Dickinson S, Parry RG. Use of an electronic alert to identify patients with acute kidney injury. Clin Med. 2014;14:22–6.

Article  Google Scholar 

Flynn N, Dawnay A. A simple electronic alert for acute kidney injury. Ann Clin Biochem. 2015;52:206–12.

Article  CAS  PubMed  Google Scholar 

Prendecki M, Blacker E, Sadeghi-Alavijeh O, Edwards R, Montgomery H, Gillis S, et al. Improving outcomes in patients with acute kidney injury: the impact of hospital based automated AKI alerts. Postgrad Med J. 2016;92:9–13.

Article  CAS  PubMed  Google Scholar 

Wilson FP, Martin M, Yamamoto Y, Partridge C, Moreira E, Arora T et al. Electronic health record alerts for acute kidney injury: multicenter, randomized clinical trial 2021;372.

Haase M, Kribben A, Zidek W, Floege J, Albert C, Isermann B, et al. Electronic alerts for acute kidney Injury. Deutsches Aerzteblatt Online; 2017.

Kaul A, Sharma RK, Tripathi R, Suresh KJ, Bhatt S, Prasad N. Spectrum of community-acquired acute kidney injury in India: a retrospective study. Saudi J Kidney Dis Transplant. 2012;23:619.

Google Scholar 

Vikrant S, Gupta D, Singh M. Epidemiology and outcome of acute kidney injury from a tertiary care hospital in India. Saudi J Kidney Dis Transplant. 2018;29:956.

Article  Google Scholar 

Prakash J, Singh TB, Ghosh B, Malhotra V, Rathore SS, Vohra R, et al. Changing epidemiology of community-acquired acute kidney injury in developing countries: analysis of 2405 cases in 26 years from eastern India. Clin Kidney J. 2013;6:150–5.

Article  PubMed  PubMed Central  Google Scholar 

Bhat L, Das B. Clinical validation and comparative study between the KDIGO 2012 AKI Criteria and the AACC Guidance Document 2020. Ind J Clin Biochem(024.

El-Khoury JM, Hoenig MP, Jones GRD, Lamb EJ, Parikh CR, Tolan NV, Wilson FP. AACC guidance document on laboratory investigation of acute kidney Injury. J Appl Lab Med. 2021;6(5):1316–37.

Article  PubMed  Google Scholar 

Wu Y, Chen Y, Li S, Dong W, Liang H, Deng M, et al. Value of electronic alerts for acute kidney injury in high-risk wards: a pilot randomized controlled trial. Int Urol Nephrol. 2018;50:1483–8.

Article  PubMed  PubMed Central  Google Scholar 

Bouchard J, Mehta RL. Acute kidney Injury in Western countries. Kidney Dis (Basel). 2016;2:103–10.

Article  PubMed  Google Scholar 

The STARRT-AKI Investigators for the Canadian Critical Care Trials Group, the Australian and New Zealand Intensive Care Society Clinical Trials Group, the United Kingdom Critical Care Research Group, the Canadian Nephrology Trials Network, and the Irish Critical Care Trials Group. Timing of initiation of renal-replacement therapy in acute kidney Injury. N Engl J Med. 2020;383:240–51.

Article  Google Scholar 

Susantitaphong P, Cruz DN, Cerda J, Abulfaraj M, Alqahtani F, Koulouridis I, et al. World incidence of AKI: a meta-analysis. Clin J Am Soc Nephrol. 2013;8:1482–93. https://doi.org/10.2215/CJN.00710113.

Article  PubMed  PubMed Central  Google Scholar 

Gauckler P, Shin JI, Mayer G, Kronbichler A. Eosinophilia and kidney disease: more than just an incidental finding? J Clin Med 2018;7.

Gujadhur A, Tiruvoipati R, Cole E, Malouf S, Ansari ES, Wong K. Serum bicarbonate may independently predict acute kidney injury in critically ill patients: an observational study. World J Crit Care Med. 2015;4:71–6.

Article  PubMed  PubMed Central  Google Scholar 

Kendrick J, Chonchol M, You Z, and Jovanovich A. Lower serum bicarbonate is associated with an increased risk of acute kidney injury. J Nephrol. 2020;34:433–9.

Article  PubMed  Google Scholar 

Hsu RK, Hsu C, The role of acute, kidney injury in chronic kidney disease. Semin Nephrol. 2016;36:283–92.

Article  PubMed  PubMed Central  Google Scholar 

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