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Caribbean Island Urinary Iodine Survey 2018

Caribbean Island Urinary Iodine Survey 2018

Status
Completed
Phases
Unknown
Study type
Observational
Source
ClinicalTrials.gov
Registry ID
NCT04388540
Acronym
CRUISE
Enrollment
3080
Registered
2020-05-14
Start date
2018-01-01
Completion date
2019-06-30
Last updated
2021-01-25

For informational purposes only — not medical advice. Sourced from public registries and may not reflect the latest updates. Terms

Conditions

Iodine Deficiency

Brief summary

Many of the Caribbean island nations have no data on iodine status in their populations. Iodine deficiency in children can reduce IQ but can be easily corrected through a program of salt iodization. The study will be located at 11 islands of the Caribbean region. At each of the 11 study sites, we will measure the iodine status in school-age children by collecting morning spot urine samples for measurement of urinary iodine concentration (UIC). We will also measure height and weight in all children. We will collect a repeat, next-day spot urine sample in 1/3rd of children to adjust for intra-individual variation in spot UIC and calculate the distribution of population intake.

Detailed description

In well-controlled randomized trials in Europe and New Zealand, even mild-to-moderate iodine deficiency in school-age children reduces IQ (1); thus, its critical to avoid iodine deficiency in this age group. In countries effected by iodine deficiency, its sustainable elimination through iodized salt can contribute to socioeconomic development. The goal to eliminate iodine deficiency was first adopted globally at the World Summit for Children in 1990, and in 1994, WHO and UNICEF concluded that salt iodization is a safe, cost-effective and sustainable strategy to control iodine deficiency (2). In 2005, the World Health Assembly called on national governments to report on their iodine nutrition every three years. However, before the present survey, the ten countries included in this project had no data on iodine status in their populations, and household access to adequately iodized salt was also unknown. Thus, the study objectives were: * Assess the distribution of iodine intake of school-age children and their iodine status by measuring urinary iodine concentrations; * Assess the iodine content of household salt and of seasoning powders; * Based on the above, provide the preliminary evidence base on which to make initial recommendations for iodine strategy/programs in the region.

Interventions

None listed

Sponsors

Pan American Health Organization
CollaboratorOTHER
UNICEF
CollaboratorOTHER
Swiss Federal Institute of Technology
Lead SponsorOTHER

Study design

Observational model
ECOLOGIC_OR_COMMUNITY
Time perspective
CROSS_SECTIONAL

Eligibility

Sex/Gender
ALL
Age
6 Years to 12 Years
Healthy volunteers
Yes

Inclusion criteria

1. age at study enrolment 6 to 12 years 2. healthy; no known history of major medical illnesses and taking no chronic medications; 3. residence at the respective study site for 12 months or longer; 4. no use of iodine containing dietary supplements during the last 6 months; 5. no use of X-ray / CT contrast agent or iodine containing medication within the last year.

Design outcomes

Primary

MeasureTime frameDescription
Iodine status (UIC in spot urine samples)March 2018 to May 2019Assessment of iodine status based on median urinary iodine concentration in spot urine samples

Secondary

MeasureTime frameDescription
Iodine content in saltJanuary 2019 to May 2019Measurement of iodine concentration in salt samples brought in by participants

Countries

Antigua and Barbuda, Barbados, Belize, Dominica, Grenada, Jamaica, Saint Kitts and Nevis, Saint Lucia, Saint Vincent and the Grenadines, Trinidad and Tobago

Outcome results

None listed

Source: ClinicalTrials.gov · Data processed: Feb 4, 2026