Diagnostic Innovations for Pediatric Tuberculosis in Bolivia

ConditionTuberculosis
Trial statusRecruiting
Trial phaseNot listed
Trial typeObservational
Biological sexAll
Age2-14
SponsorTulane University

About this trial

Pediatric tuberculosis (TB) continues to pose diagnostic challenges in low- and middle-income countries with high rates of TB disease, due to the well-described impact of paucibacillary disease in children, and current TB culture and polymerase-chain reaction tests are of limited usefulness due to cost, restricted availability, and poor sensitivity in specimens available from younger children. Our team of experts from Tulane, Johns Hopkins University, Universidad Peruana Cayetano Heredia, and Asociación Benéfica Prisma have confronted all of these challenges through more than 25 years of collaboration in Peru and Bolivia. Our goal is to directly address the challenges of TB in children by evaluating a new diagnostic approach developed by MPI Tony Hu at Tulane University using a CRISPR-mediated TB assay (CRISPR-TB) optimized to detect circulating Mycobacterium tuberculosis cell-free DNA (Mtb-cfDNA), and used to analyze cryopreserved serum in pilot studies from adults and children with presumptive TB, their asymptomatic household contacts, and a cohort of symptomatic children living with HIV (CLHIV) at high risk for TB. Results from symptomatic adult cohorts yielded a pooled sensitivity of 93%; specificity of 93%; positive predictive value of 95%; and negative predictive value of 92%. In limited pilot studies in CLHIV CRISPR-TBD results accurately identified all confirmed TB (13/13) and most children with unconfirmed TB (80%; 52/65). We propose to enroll 200 presumptive TB cases and an equal number of well control subjects in each of 2 study populations (test population and validation population) identified through clinics associated with the "Dr. Mario Ortiz Suarez" Children's Hospital in Santa Cruz, Bolivia. We will determine the distribution of cfDNA concentrations in peripheral blood in a "test population" composed of two age-based groups of children (2 months-6 years, 7-14 years) with respiratory disease grouped by likelihood of TB based on the NIH consensus case definitions (confirmed TB, unconfirmed TB, and unlikely TB) and in age-matched controls grouped by presence of latent TB infection (LTBI), with cfDNA measured serially in time among TB cases receiving antibiotic therapy. We will also validate standard ranges of quantitative cfDNA established for clinical subgroups of children with TB disease or LTBI in an independent validation cohort. An additional aim will determine the correlation between quantitative cfDNA and quantitative imaging-based TB scores based on evidence of disease in the lung, the primary target organ in TB disease, by (1) chest radiograph, measured by computer-aided analysis using the CAD4TB v7 system, and by (2) lung ultrasound, performed with a portable/low-cost probe assisted by machine learning algorithms for automatic interpretation. These biomarkers will be tested as potential cofactors that may be combined with cfDNA levels in peripheral blood, to improve the detection of TB disease in children. The results of this study will be the first step in a process to find a path to allow detection of the many "unconfirmed" TB cases and ideally make the diagnosis of pediatric TB in reach for low resource settings where it is so critically needed.

Eligibility criteria

This trial does not accept healthy volunteers

Qualifiers

Children presenting for evaluation for symptomatic respiratory disease and suspicion of tuberculosis will be eligible for enrollment (inclusion criteria based on Bolivian Ministry of Health guidelines for suspect cases of tuberculosis in children

Disqualifiers

prior treatment for TB within the past year,

current treatment for prevention of TB,

weight < 2.5 kg., or

clinical instability,

Trial population

Children from clinic population in Santa Cruz Bolivia

Trial design

Design model

Case-control

Time perspective

Prospective

Treatments tested in this trial

  • Quantiferon Gold

    Diagnostic test

    Test for TB infection

  • HIV serology

    Diagnostic test

    Test for HIV infection

  • Respiratory secretion culture (sputum or gastric aspirate_

    Diagnostic test

    TB culture by MODS

  • Chest radiograph

    Diagnostic test

    Chest imaging test by traditional X ray

  • Lung ultrasound

    Diagnostic test

    Chest imaging test by ultrasound

  • cell free DNA test

    Diagnostic test

    Blood test for TB infection

Treatment groups

1,220 Participants
are divided into 4 treatment groups
Group A: Presumptive pediatric TB cases-- Test population6 interventions
Group B: Control group--Test population3 interventions
Group C: Presumptive pediatric TB cases-- Validation population6 interventions
Group D: Control group--Validation population3 interventions

Trial outcomes

Primary outcomes

1

Cell free DNA level

Cell free DNA level

Time frame
Baseline and 2 months post treatment for TB cases on therapy

Secondary outcomes

1

CAD4TB score

Artificial intelligence interpretation of chest radiograph for likelihood of TB

Time frame
At presentation for case grou

Other outcomes

Sponsors and contacts

Click on the lead sponsor to view all of their trials.

Tulane University

Lead sponsor

Asociacion Benefica Prisma

Collaborator

Universidad Peruana Cayetano Heredia

Collaborator

Johns Hopkins Bloomberg School of Public Health

Collaborator