Clinical Trials Logo

Clinical Trial Summary

Sickle cell disease (SCD) is an inherited blood disorder associated with acute illness and organ damage. In high resource settings, early screening and treatment greatly improve quality of life. In low resource settings, however, mortality rate for children is high (50-90%). Low-cost and accurate screening techniques are critical to reducing the burden of the disease, especially in remote/rural settings. The most common and severe form of SCD is sickle cell anemia (SCA), caused by the inheritance of genes causing abnormal forms of hemoglobin (called sickle hemoglobin or hemoglobin S) from both parents. The asymptomatic or carrier form of the disease, known as sickle cell trait (SCT), is caused by the inheritance of only one variant gene from one of the parents. In areas such as Nepal, β-thalassemia (another inherited blood disorder) and SCD are both prevalent, and some combinations of these diseases lead to severe symptoms. The purpose of this study is to determine the accuracy of low-cost point-of-care techniques for screening and detecting sickle cell disease, sickle cell trait, and β-thalassaemia, which will subsequently inform on feasible solutions for detecting the disease in rural, remote, or low-resource settings. One of the goals of the study is to evaluate the feasibility of techniques, such as the sickling test with low-cost microscopy and machine learning, HbS solubility test, commercial lateral-flow assays (HemoTypeSC and Sickle SCAN), and the Gazelle Hb variant test, to supplement or replace gold standard tests (HPLC or electrophoresis), which are expensive, require highly trained personnel, and are not easily accessible in remote/rural settings. The investigators hypothesize that: 1. an automated sickling test (standard sickling test enhanced using low-cost microscopy and machine learning) has a higher overall accuracy than conventional screening techniques (solubility and sickling tests) to detect hemoglobin S in blood samples 2. the automated sickling test can additionally classify SCD, SCT and healthy individuals with a sensitivity greater than 90%, based on morphology changes of red blood cells, unlike conventional sickling or solubility tests that do not distinguish between SCD and SCT cases 3. Gazelle diagnostic device can detect β-thalassaemia and SCD/SCT with an overall accuracy greater than 90%, compared with HPLC as the reference test


Clinical Trial Description

Overall, the hypothesis is that an assessment of the performance and accuracies of low-cost point-of-care techniques (automated sickling test, solubility test, lateral-flow assays, Gazelle Hb variant test) against HPLC tests will provide researchers and health workers with feasible alternative options for screening and detecting SCD, SCT and β-thalassaemia in a variety of situations based on the needs of the communities and the resources available. Objectives Objectives specific to the current study are to: 1. Determine accuracy (sensitivity and specificity) of automated sickling test to detect HbS, compared to gold standard HPLC, and to conventional solubility test 2. Determine whether SCD, SCT and healthy individuals can be classified using the automated sickling test that leverages machine learning on images of blood films under hypoxia 3. Validate accuracy (>95% sensitivity and specificity) of lateral- flow assays (HemoTypeSC and Sickle SCAN) to detect SCD/SCT, and of Gazelle variant test to detect SCD, SCT, and β-thalassaemia; and determine if low-cost techniques can potentially replace HPLC/electrophoresis tests in rural and remote settings Long-term objectives of the overall project are to: 1. Implement trained machine learning algorithm to classify SCD, SCT and healthy individuals during screening tests in Nepal 2. Implement relevant low-cost point-of-care techniques in rural and remote communities of Nepal using insights and conclusions from current study The plan of the study to screen the communities (e.g. in Nepalgunj, in Vancouver) using the following: a. Low-cost screening i. Sickling test with low-cost microscope and automated screening with machine learning ii. Sickling test with traditional microscope (conventional manual screening used in Nepal) iii. HbS solubility test iv. Commercial point-of-care assays (HemoTypeSC and Sickle SCAN) v. Gazelle Hb variant test b. Gold standard test: HPLC, for determining the accuracies of low-cost screening techniques De-identified data (images of blood films and associated documentation) will also be deposited in an online public repository, such as the Federated Research Data Repository (FRDR). FRDR is a service of the Digital Research Alliance of Canada (Alliance), a not-for-profit organization that supports digital research infrastructure in Canada. FRDR is hosted on national infrastructure, managed and administered by the Digital Research Alliance of Canada. ;


Study Design


Related Conditions & MeSH terms


NCT number NCT05506358
Study type Interventional
Source University of British Columbia
Contact
Status Completed
Phase N/A
Start date September 20, 2022
Completion date March 30, 2023

See also
  Status Clinical Trial Phase
Completed NCT02227472 - Working Memory and School Readiness in Preschool-Aged Children With Sickle Cell Disease
Recruiting NCT06301893 - Uganda Sickle Surveillance Study (US-3)
Recruiting NCT04398628 - ATHN Transcends: A Natural History Study of Non-Neoplastic Hematologic Disorders
Completed NCT02522104 - Evaluation of the Impact of Renal Function on the Pharmacokinetics of SIKLOS ® (DARH) Phase 4
Recruiting NCT04688411 - An mHealth Strategy to Improve Medication Adherence in Adolescents With Sickle Cell Disease N/A
Terminated NCT03615924 - Effect of Ticagrelor vs. Placebo in the Reduction of Vaso-occlusive Crises in Pediatric Patients With Sickle Cell Disease Phase 3
Recruiting NCT03937817 - Collection of Human Biospecimens for Basic and Clinical Research Into Globin Variants
Completed NCT04134299 - To Assess Safety, Tolerability and Physiological Effects on Structure and Function of AXA4010 in Subjects With Sickle Cell Disease N/A
Completed NCT04917783 - Health Literacy - Neurocognitive Screening in Pediatric SCD N/A
Completed NCT02580565 - Prevalence of Problematic Use of Equimolar Mixture of Oxygen and Nitrous Oxide and Analgesics in the Sickle-cell Disease
Recruiting NCT04754711 - Interest of Nutritional Care of Children With Sickle Cell Disease on Bone Mineral Density and Body Composition N/A
Completed NCT04388241 - Preliminary Feasibility and Efficacy of Behavioral Intervention to Reduce Pain-Related Disability in Pediatric SCD N/A
Recruiting NCT05431088 - GBT021601-021: A Study in Adult and Pediatric Participants With SCD Phase 2/Phase 3
Completed NCT01158794 - Genes Influencing Iron Overload State
Recruiting NCT03027258 - Point-of-Delivery Prenatal Test Results Through mHealth to Improve Birth Outcome N/A
Withdrawn NCT02960503 - Macrolide Therapy to Improve Forced Expiratory Volume in 1 Second in Adults With Sickle Cell Disease Phase 1/Phase 2
Completed NCT02565082 - Evaluation of the Hemostatic Potential in Sickle Cell Disease Patients N/A
Completed NCT02567695 - A Single-Dose Relative Bioavailability Study Of GBT440 300 mg Capsules in Healthy Subjects Phase 1
Withdrawn NCT02630394 - A Pilot Study of Azithromycin Prophylaxis for Acute Chest Syndrome in Sickle Cell Disease Phase 1
Completed NCT02567682 - Drug Interaction Study of GBT440 With Caffeine, S-warfarin, Omeprazole, and Midazolam in Healthy Subjects Phase 1