Trial reportJAMA network open2022
Effects of Testing and Disclosing Ancestry-Specific Genetic Risk for Kidney Failure on Patients and Health Care Professionals: A Randomized Clinical Trial.
Trial report in JAMA network open, 2022. The graph could read no effect estimate from its abstract, so it casts no vote on the map. It is linked to trial NCT02234063 (Genomic Medicine Pilot for Hypertension and Kidney Disease in Primary Care), which is not on this map. Cited by 21 papers.
What it found
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The abstract states no effect estimate the extractor could read, or names no intervention and outcome on the map, so this paper lights no cell and moves no belief. It is still indexed, cited and linked below.
The trial behind it
Trials whose registry record cites this paper, or whose number appears in the abstract. A trial that started after this paper was published is citing it as background, not reporting it.
Genomic Medicine Pilot for Hypertension and Kidney Disease in Primary Care
Who cites it
21 citing papers in PubMed, 24 citations in OpenAlex.
- Genetic Testing for APOL1 in Adults With Hypertension: The GUARDD-US Randomized Clinical Trial.JAMA network open · 2026Trial
- Increased risk of kidney failure in patients with genetic kidney disorders.The Journal of clinical investigation · 2024Trial
- Recommendations for return of secondary genomic findings in observational cohort studies.Nature genetics · 2026Review
- An integrative review of APOL1 kidney disease with a focus on the Brazilian population.Clinics (Sao Paulo, Brazil) · 2026Review
- Beyond the test: patient-reported concerns and worries regarding kidney conditions andFrontiers in nephrology · 2026Article
- APOL1 kidney disease: conclusions from a Kidney Disease: Improving Global Outcomes (KDIGO) Controversies Conference.Kidney international · 2025Review
- Using Large Genomic Biobanks to Generate Insights into Genetic Kidney Disease.Seminars in nephrology · 2025Review
- Pharmacogenomics and risk stratification in cardiovascular care: Insights from randomized controlled trials.Medicine · 2025Review
- Psychological and behavioural considerations for integrating polygenic risk scores for disease into clinical practice.Nature human behaviour · 2025Review
- Interaction BetweenKidney international reports · 2025Article
- Employing effective recruitment and retention strategies to engage a diverse pediatric population in genomics research.American journal of human genetics · 2024Article
- Nephrologists' Views on a Workflow for Returning Genetic Results to Research Participants.Kidney international reports · 2024Article
- Defining Risk in APOL1-Associated Kidney Disease: The Story is Evolving!American journal of kidney diseases : the official journal of the National Kidney Foundation · 2024Article
- APOL1-Mediated Kidney Disease.JAMA · 2024Article
- Phenome-wide analysis reveals epistatic associations between APOL1 variants and chronic kidney disease and multiple other disorders.EBioMedicine · 2024Article
- A Conceptual Model to Achieve Health Equity in APOL-1 Clinical Studies.Health equity · 2024Article
- Monogenic and polygenic concepts in chronic kidney disease (CKD).Journal of nephrology · 2024Review
- Article
- Race, Ancestry, and Genetic Risk for Kidney Failure.American journal of kidney diseases : the official journal of the National Kidney Foundation · 2022Article
- Design and rationale of GUARDD-US: A pragmatic, randomized trial of genetic testing for APOL1 and pharmacogenomic predictors of antihypertensive efficacy in patients with hypertension.Contemporary clinical trials · 2022Article
Corrections and comments
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Authors and funding
15 authors at 7 institutions in 2 countries.
Funding
Abstract
importanceRisk variants in the apolipoprotein L1 (APOL1 [OMIM 603743]) gene on chromosome 22 are common in individuals of West African ancestry and confer increased risk of kidney failure for people with African ancestry and hypertension. Whether disclosing APOL1 genetic testing results to patients of African ancestry and their clinicians affects blood pressure, kidney disease screening, or patient behaviors is unknown.
objectiveTo determine the effects of testing and disclosing APOL1 genetic results to patients of African ancestry with hypertension and their clinicians. DESIGN, SETTING, AND
participantsThis pragmatic randomized clinical trial randomly assigned 2050 adults of African ancestry with hypertension and without existing chronic kidney disease in 2 US health care systems from November 1, 2014, through November 28, 2016; the final date of follow-up was January 16, 2018. Patients were randomly assigned to undergo immediate (intervention) or delayed (waiting list control group) APOL1 testing in a 7:1 ratio. Statistical analysis was performed from May 1, 2018, to July 31, 2020.
interventionsPatients randomly assigned to the intervention group received APOL1 genetic testing results from trained staff; their clinicians received results through clinical decision support in electronic health records. Waiting list control patients received the results after their 12-month follow-up visit. MAIN OUTCOMES AND MEASURES: Coprimary outcomes were the change in 3-month systolic blood pressure and 12-month urine kidney disease screening comparing intervention patients with high-risk APOL1 genotypes and those with low-risk APOL1 genotypes. Secondary outcomes compared these outcomes between intervention group patients with high-risk APOL1 genotypes and controls. Exploratory analyses included psychobehavioral factors.
resultsAmong 2050 randomly assigned patients (1360 women [66%]; mean [SD] age, 53 [10] years), the baseline mean (SD) systolic blood pressure was significantly higher in patients with high-risk APOL1 genotypes vs those with low-risk APOL1 genotypes and controls (137 [21] vs 134 [19] vs 133 [19] mm Hg; P = .003 for high-risk vs low-risk APOL1 genotypes; P = .001 for high-risk APOL1 genotypes vs controls). At 3 months, the mean (SD) change in systolic blood pressure was significantly greater in patients with high-risk APOL1 genotypes vs those with low-risk APOL1 genotypes (6 [18] vs 3 [18] mm Hg; P = .004) and controls (6 [18] vs 3 [19] mm Hg; P = .01). At 12 months, there was a 12% increase in urine kidney disease testing among patients with high-risk APOL1 genotypes (from 39 of 234 [17%] to 68 of 234 [29%]) vs a 6% increase among those with low-risk APOL1 genotypes (from 278 of 1561 [18%] to 377 of 1561 [24%]; P = .10) and a 7% increase among controls (from 33 of 255 [13%] to 50 of 255 [20%]; P = .01). In response to testing, patients with high-risk APOL1 genotypes reported more changes in lifestyle (a subjective measure that included better dietary and exercise habits; 129 of 218 [59%] vs 547 of 1468 [37%]; P < .001) and increased blood pressure medication use (21 of 218 [10%] vs 68 of 1468 [5%]; P = .005) vs those with low-risk APOL1 genotypes; 1631 of 1686 (97%) declared they would get tested again. CONCLUSIONS AND RELEVANCE: In this randomized clinical trial, disclosing APOL1 genetic testing results to patients of African ancestry with hypertension and their clinicians was associated with a greater reduction in systolic blood pressure, increased kidney disease screening, and positive self-reported behavior changes in those with high-risk genotypes.
trial registrationClinicalTrials.gov Identifier: NCT02234063.
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Read under generation 80e0d062 · epoch 390. Bibliography from PubMed, PubMed Central and OpenAlex; grants from NIH RePORTER; trial links from ClinicalTrials.gov; estimates, votes and beliefs from the Socratic graph.