Acute Kidney Injury: Incidence, Aetiology, Management And Outcome Measures Of A Samoan Case Series

May 08, 2024

2.3. Study design and data collection

The present study is reported in line with the PROCESS 2020 criteria [10]. This was a single-center prospective observational study. Participants were recruited from the hospital patient information system by the lead investigator, a senior physician specializing in internal medicine. The inclusion criteria for participation were (1) adults (>18 years) admitted to general wards of Tupua Tamasese Meaole (TTM) Hospital with a diagnosis of AKI between December 1, 2019 and May 31, 2020, and (2) serum creatinine level of >200 μmol/L, and (3) compliance with the current Kidney Disease Improving Global Outcomes (KDIGO) criteria for AKI diagnosis. Patients with underlying chronic kidney disease who experienced an episode of AKI during the study period were also included in the present study. Exclusion criteria were (1) patients on chronic hemodialysis, (2) patients with underlying chronic kidney disease with no evidence of AKI, and (3) patients for whom it was not possible to ascertain a diagnosis (i.e., patients with one elevated serum creatinine result and no subsequent follow-up hematology). The hospital Laboratory Database was accessed to identify all patients admitted to TTM Hospital during the study period with a serum creatinine level greater than 200 μmol/L. This is higher than the reference intervals for normal creatinine levels reported in the literature (60–110 μmol/L for adult males, 45–90 μmol/L for adult females) [11]. This criterion was chosen to align with the criteria used by the Fijian teaching hospital that is affiliated with the Fiji National University: the 200mcmol/L criteria reflects their AKI triage management guidelines based on the low-resourced context. The present study therefore adopted the same criteria to evaluate the similarly low-resourced context of Samoa. A total of 1185 patients were identified, and a request for their complete medical records was made to the Medical Record Department. Each record was reviewed for its suitability, and a total of 1071 records did not meet inclusion criteria. The sample size for the present study was therefore 114 patients. The data collection form is an adaptation of the form used by the International Society for Nephrology for the Global Snapshot Project [12]. For each participant, the following information was collected:  

Cistance


HOW LONG DOES IT TAKE FOR CISTANCHE TO WORK FOR KIDNEY DISEASE PATIENTS?


2.3.1. Demographic and baseline characteristics 

• Demographic Information: age (years), gender (male/female), ethnicity (Samoan/Other). 

Admission Information: Admitting Department (Medica/Surgical/ Obstetrics&Gynecology), risk factors for AKI (age>75 years/Diabetes Mellitus/Chronic Liver Disease/Chronic Heart Failure/Chronic Kidney Disease/anemia (Hb < 9 g/dL)/none/unknown), AKI acquisition (community/hospital), baseline serum creatinine within previous 12 months (micromole/L).

• Presenting symptoms for suspicion of AKI: Dehydration (diarrhea/ vomiting/increased thirst/decreased intake), urinary symptoms (oliguria/polyuria/dysuria/haematuria/incontinence/urolith passed), swelling (anasarca/face & neck/upper limbs/lower limbs/ other), hypotension (MAP<65/shock and use of vasopressors/hemhemorrhage), pregnancy and delivery-related symptoms (PV bleeding/ coma/seizures/other), Fever, Traumatic injury (site), allergic reaction (specify), poisoning (specify).

• AKI KDIGO criteria-based diagnosis: increase in serum creatinine by 0.3 mg/dL or more within 48 h OR, increase in serum creatinine to 1.5 times baseline or more within the last 7 days OR, urine output less than 0.5 ml/kg/h for 6 h.


2.3.2. Aetiology

• Factors contributing to the development of AKI: dehydration (diarrhea/ vomiting/polyuria/decreased intake), liver (hepatorenal syndrome/ cirrhosis/acute liver failure), cardiac (acute myocardial infarct/ VHD/heart failure/pulmonary embolism/infective endocarditis/ cardiorenal syndrome), hypotension and shock (cardiogenic shock/ hemorrhage/sepsis/drug induced/anaphylaxis/post partum/hypotension of unclear cause), acute kidney diseases (acute glomerularnephritis/interstitial nephritis/pyelonephritis/rhabdomyolysis/ intravascular hemolysis), urinary obstruction (sone/tumor/prostate condition), infections (leptospirosis/dengue/TB, other bacterial/ other viral), pregnancy-related (miscarriage with septic shock/puerperal sepsis), systemic diseases (multiple myeloma/SLE/DIC/pre-eclampsia/PPH/hyperemesis gravidarum), nephrotoxic agents (ACEI/ARB, NSAIDS, aminoglycosides/chemotherapy/contrast), poisoning (yes/no). 

• Blood parameters on the day AKI was confirmed: Urea (umol/L), creatinine (umol/L), and urine output in the past 24 h (MLS). 

• Known infection site (yes/no), and if yes specify infection site.

• Other organ failures: pulmonary, cardiovascular, hepatic, hematological, neurological, none. 


2.3.3. Management 

• Non-dialytic treatment at the time of AKI diagnosis: fluid therapy, diuretics, vasopressors, antibiotics, urinary diversion (percutaneous nephrostomy, cystectomy, urethral catheterization), fluid restriction, other. 

• Patient received dialysis (yes/no). 

• Indication for starting dialysis: fluid overload, symptomatic uremia, electrolyte or acid-based disturbance, intoxication/poisoning, other. • Number of days from diagnosis of AKI to initiation of hemodialysis (days). 

• Blood parameters on the day hemodialysis was started: Urea (mmol/ L), creatinine (umol/L), urine output in the past 24 h (MLS). 

kidney function

2.3.4. Outcome 

• Patient status: Alive/deceased.

• Cause of death: kidney failure, infection/sepsis, cardiovascular, shock, dehydration, hemorrhage, pregnancy-related, liver failure, pulmonary condition, neurological, trauma, poisoning, systemic illness, malignancy, unknown


2.4. Data analysis 

The data was analyzed using Microsoft Excel and STATA statistical software packages. Descriptive analysis and pivot tables were performed initially, followed by a comparison of binary variables (unpaired t-test significant at p < 0.05) and the unadjusted Kaplan-Meier curve. 


3. Results

3.1. Demographics and baseline characteristics

The sample population (N = 114) ranged from 18 to 92 years of age (mean = 55.8 years), with 66 (57.9%) male and 48 (42.1%) female participants (Table 2). Community-acquired AKI was identified in 75% of cases (85/114). 80% of cases (91/114) were admitted to the Department of Internal Medicine, 19% 22/114) to the Department of Surgery, and 0.9% (1/114) to the Department of Obstetrics and Gynecology. On admission, 52.6% of cases presented with Stage 1 AKI, followed by Stage 3 AKI (27.2%) and Stage 2 AKI (20.2%). The study cohort was characterized by Non-Communicable Diseases (NCDs), 54 cases (47%) presenting with hypertension, 49 cases (43%) with chronic kidney disease, 47 cases (41%) with Type 2 Diabetes Mellitus, 36 cases (32%) with heart failure, 1 case (1%) with chronic liver disease, and 49 cases (43%) reporting 2 or more of these NCD co-morbidities. 


3.2. Incidence

There was a total of 114 AKI admissions over the 6-month study period. An average of 19 admissions per month computes to a hospital-based incidence of 26.8 per 1000 admissions per 6 months. The population based incidence was 1880.9 per million population per year. The Samoan population is currently estimated to be 200, 581 and so this translates to approximately 378 AKI cases per year. 


3.3. Aetiology

The most common precipitating causes of AKI were dehydration (79%) and sepsis (64%) (Fig. 2). Cardiovascular events accounted for 36% of cases. The remaining causes were shock (16%), nephrotoxic agents (10%), urinary obstruction (3.6%), acute liver failure (1.8%), and pregnancy-related (0.9%). 


3.4. Management

The leading treatment modalities were Intravenous Antibiotics (79%) and Intravenous Fluids (63%). There were 27 cases (24%) who met indications for hemodialysis, and 5 cases agreed to proceed with intermittent acute hemodialysis using the Fresenius 4008b machine. The average time from AKI diagnosis to initiation of dialysis was 2.4 days. The indications for hemodialysis were electrolyte imbalance, acid-base disturbance, and/or refractory fluid overload. Overall, the 5 cases underwent an average of 3.8 sessions of hemodialysis. Two patients experienced recovery of kidney function, where the reversal occurred within an average of 16 days. One patient progressed to End-Stage Kidney Disease requiring permanent maintenance hemodialysis. The last two patients passed away while receiving hemodialysis treatments, and the cause of death was sepsis. 

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3.5. Outcome 

During the 6-month study period, 20.2% (23/114) cases died during admission. The leading causes of death as classified on the death certificates were Cardiovascular Events (35%) and Sepsis (35%) (Fig. 3). The remaining causes of death were pulmonary disease (22%), malignancy (4%), and neurological events (4%). 


Table 2 Age and gender distribution for study participants. 

cistanche benefits for kidney


cistanche benefits for kidney

Fig. 2. Precipitating causes of AKI 

cistanche benefits for kidney

Fig. 3. Causes of death.  


Patients were followed up 3 months post-discharge. A total of 91 cases (79.8%) were alive when discharged from hospital. The AKI was resolved in 23 cases (25%). The AKI did not resolve 40 cases (40%), of which 26 were known CKD cases, and 14 were de-novo cases. A total of 23 patients (25%) died within three months (10 died in hospital, 13 died at home). A total of 5 cases (6%) were lost to follow-up. 


4. Discussion 

The present study described the experience of AKI among patients attending the national referral tertiary hospital in Samoa. This is the first published research study on AKI from a Pacific Island country. A hospital-based AKI incidence of 26.8 per 1000 admissions per 6 months was calculated for Samoa. Among a total of 114 AKI hospital admissions, 75% of cases were community-acquired, and more than 40% presented with NCD co-morbidities. The main precipitating factors for AKI were dehydration (79%) and sepsis (64%). The in-patient mortality rate was 20.2% (n = 23), where 78.3% (n = 18) of cases were community-acquired AKI, and 21.7% (n = 5) were hospital-acquired AKI. The leading causes of mortality were cardiovascular events (35%) and sepsis (35%). In the 3 months following discharge from the hospital, 25% of AKI cases had completely resolved, 25% of patients had died, and 18.7% of AKI cases had progressed to chronic kidney disease. 

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In the present study, the majority of AKI hospital presentations were among people in the 50–69 age group with multiple NCD co-morbidities. This finding aligns with the well-recognized NCD public health crisis in the Pacific Islands, and may also explain why our baseline demographics are more comparable to AKI presentations for high-income countries than low-lower-middle-income countries (LLMICs) [12]. The AKI Global Snapshot study found that AKI in LLMICs tends to occur among young adults with no NCD co-morbidities. The NCD crisis public health crisis may also partly account for the fact that the AKI hospital admission rate in Samoa (2.7%) is similar to that of a high-income country Australia (1.6%). Where the Samoan experience is typical of the LLMIC setting is in the overwhelmingly high proportion of community-acquired AKI presentations, a finding most probably associated with multiple reasons for delayed hospital care (i.e., transport/logistics, preference for traditional medicine). 

In our study cohort, 24% (n = 27) of patients met the indications for hemodialysis, and of these, only 18.5% (n = 5) proceeded with haehemodialysis. Given that three of these patients died while undergoing hemodialysis, it may be that our population will only consider hemodialysis when the patient is truly critical. Unfortunately, the chance of survival in such cases is small. It was outside the scope of this study to explore the health beliefs, attitudes, and behaviors of patients and their families with regard to hemodialysis, and this should be considered in future studies. It may be that the reluctance to proceed with haemodialysis in Samoa is linked to the perception that it is the hemodialysis, rather than the advanced stages of life-threatening disease(s), that is the cause of death. 

The AKI!Now Initiative is a global strategy aimed at creating greater awareness, recognition, and management of AKI [13]. Partnering with health promotion activities and delivering key public health messages should make a positive contribution to reducing the burden of AKI in Samoa. World Kidney Day (March 10th) is an annual event that offers a national platform to highlight acute/chronic kidney disease. These initiatives should be favorable to health policymakers, given the evidence that investment in AKI prevention strategies will reduce the financial and resource burden of acute/chronic kidney disease into the future [14]. 

Further research to build on the present study is desirable, and opportunities exist under the International Society of Nephrology Dehyduration for Kidney Health Research Initiative. Future studies should be multi-center in design, and should use the international standard reference intervals to define abnormally high creatinine levels (>110 μmol/L for adult males, >90 μmol/L for adult females). Given that dehydration was the leading precipitating factor in our Samoan cohort, a collaboration between our research team and this ISN initiative should be welcomed. The results from Samoa may be translational to other Pacific Island countries, and a Pan-Pacific Island study may be considered. 


4.1. Limitations of the present study 

The generalizability of the study findings may be compromised by the study design (single-center), cohort sample size, and study duration. The present study focused on the adult population, and we acknowledge that it is important for future studies to investigate kidney disease among children and adolescents. A greater number of cases may have been included in the sample size, however: (1)The serum creatinine criteria (>200 μmol/L) may have excluded AKI cases of lesser severity from inclusion in the study, (2) The inconsistent coding of AKI diagnosis into the hospital Patient Information System may have excluded cases from inclusion in the study, and (3) the creatinine reagent was out of stock for three weeks of the study period, prohibiting case identification. The present study underestimated rather than overestimated the incidence of AKI in Samoa.  


5. Conclusion 

This is the first published research study on AKI in the Pacific Islands and shows that the hospital-based incidence and unfavorable outcomes of AKI are high in Samoa. The present study design underestimates the true hospital and national burden of AKI. Greater awareness of this under-recognized condition is warranted among the public, government officers, and health professionals. There is currently international goodwill and momentum to address the burden of acute and chronic kidney disease worldwide, and Samoa has an opportunity to lead efforts in the Pacific Islands. 


Provenance and peer review Not commissioned, externally peer-reviewed. 

Ethical approval for the present study was obtained from the Fiji National University College Health Research Ethics Committee (CHREC) and the Government of Samoa Ministry of Health – Health Research Committee (MoH-HRC). Gatekeeper approval was also obtained from the Deputy Director General of the TTM Hospital.

Please state any sources of funding for your research None. 

Author's contribution The work was undertaken by NMC as part of his Master's studies, and MLP and FL were his supervisors. Colleague AK assisted with the revision of the Master's thesis into the present format for journal publication. 

Please state any conflicts of interest No conflicts of interest to declare. 


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