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An Efficacy Trial of a Gravity Fed Household Water Treatment Device as a Delivery System for Zinc

An Efficacy Trial of a Gravity Fed Household Water Treatment Device as a Delivery System for Zinc in Zinc Deficient Children and Women From Low Income Settings

Status
Completed
Phases
NA
Study type
Interventional
Source
ClinicalTrials.gov
Registry ID
NCT01481181
Enrollment
270
Registered
2011-11-29
Start date
2011-08-31
Completion date
2012-09-30
Last updated
2014-02-28

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

Conditions

Diarrhoea

Keywords

zinc water diarrhoea growth preschool children

Brief summary

In low-income settings in developing countries unsafe water is one of the leading causes of high prevalence of waterborne diseases such as diarrhoea.Zinc is an essential trace element that has a critical role in growth and immunity. Supplementation with zinc is considered effective in reducing morbidity from diarrhoeal and other infectious diseases. Verstergaard Frandsen S.A. (Switzerland) has developed a point-of-use water filtration system called LifeStraw®Family (LSF) that removes water's turbidity, reduces the microbiological contamination and enriches water with zinc at a concentration of 3.5 mg/L. The objective of the study is to assess the efficacy of LSF to increase the zinc status (serum zinc concentration) and intake in Kenyan children aged 2-5years with zinc deficiency.The study hypotheses are: A. Use of the LSF device will reduce microbiological contamination of the household supply of drinking and cooking water; B. Use of the LSF device will increase zinc intakes in preschool children; C. Use of the LSF device will increase serum zinc concentration in preschool children; D. Achieving A, B and C will improve growth in preschool children; E. Achieving A, B and C will reduce the frequency and duration of diarrheal disease in preschool children and in members of the participating households.

Detailed description

Introduction: In low-income settings in developing countries unsafe water is one of the leading causes of high prevalence of waterborne diseases such as diarrhoea. Point-of-use water treatment systems are currently considered by UNICEF as more effective in delivering safe drinking water than interventions applied at source. Zinc is an essential trace element that has a critical role in growth and immunity. Supplementation with zinc is considered effective in reducing morbidity from diarrhoeal and other infectious diseases. Verstergaard Frandsen S.A. (Switzerland) has developed a point-of-use water filtration system called LifeStraw®Family (LSF) that removes water's turbidity, reduces the microbiological contamination and enriches water with zinc at a concentration of 3.5 mg/L. Objective: To assess the efficacy of LSF to increase the zinc status (serum zinc concentration) and intake in Kenyan children aged 2-5years with zinc deficiency. Study Design and Methods: A study population living in an area with low Zn status and sharing the same unimproved water supply will be included in the trial and randomly assigned to one of the treatment groups for 12 months. All households will receive hygiene practice recommendations (HPRs). In addition to HPR, group one will receive the LSF device with the zinc delivery system; group 2 will receive HPRs and a LSF without zinc delivery system, and group 3 will receive HPRs. At baseline, mid-point and end-point, anthropometrics (weight, height, mid-upper arm circumference MUAC), and 7 ml whole blood will be collected from preschool children for determination of SZn, C-reactive protein (CRP), hemoglobin (Hb) and serum ferritin (SF). Children and adult subjects remaining zinc deficient at completion of the trial will receive zinc supplements. Expected outcome: This study will investigate the efficacy of a water treatment device as a means to provide Zn in communities where high prevalence of surface water use and zinc deficiency coexists. Increasing the microbiological quality of water and the contemporaneous low dose fortification with zinc, could prove useful in the global effort to control zinc deficiency and increase the supply of clean drinking water

Interventions

DIETARY_SUPPLEMENTZinc enriched water

3mg zinc/L of purified water from a filter installed in the households

Sponsors

Wageningen University
Lead SponsorOTHER

Study design

Allocation
RANDOMIZED
Intervention model
PARALLEL
Primary purpose
PREVENTION
Masking
TRIPLE (Subject, Caregiver, Investigator)

Eligibility

Sex/Gender
ALL
Age
2 Years to 45 Years
Healthy volunteers
No

Inclusion criteria

* Children found to have serum zinc concentration \<65μg/dL at pre screening. * Women that have become pregnant during the study.

Exclusion criteria

for children: * Subjects with severe anemia (Hb\<7g/dl) * Subjects with severe zinc deficiency (SZn\<40 μg/dL) * Subjects receiving zinc supplementation * Subject with chronic diseases affecting zinc metabolism, such as kidney diseases or chronic gastrointestinal disease. * Subjects participating in any other clinical trials in the study site

Design outcomes

Primary

MeasureTime frameDescription
zinc statusone yearAt baseline, endpoint and at a randomly assigned screening between month 1 and 11, a 6 ml whole blood sample will be collected by venipuncture in 2-5y children (N=270). The blood sample will be used to determine concentration of zinc in the serum (SZn). Inflammation indicator C-reactive protein (CRP) will be analysed to adjust SZn values.

Secondary

MeasureTime frame
rates of diarrhoea and growth in preschool childrenone year

Countries

Kenya

Outcome results

None listed

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