Reliable quantification of the potential for equations based on spot urine samples to estimate population salt intake: protocol for a systematic review and meta-analysis.
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Author(s)
Type
Journal Article
Abstract
BACKGROUND: Methods based on spot urine samples (a single sample at one time-point) have been identified as a possible alternative approach to 24-hour urine samples for determining mean population salt intake. OBJECTIVE: The aim of this study is to identify a reliable method for estimating mean population salt intake from spot urine samples. This will be done by comparing the performance of existing equations against one other and against estimates derived from 24-hour urine samples. The effects of factors such as ethnicity, sex, age, body mass index, antihypertensive drug use, health status, and timing of spot urine collection will be explored. The capacity of spot urine samples to measure change in salt intake over time will also be determined. Finally, we aim to develop a novel equation (or equations) that performs better than existing equations to estimate mean population salt intake. METHODS: A systematic review and meta-analysis of individual participant data will be conducted. A search has been conducted to identify human studies that report salt (or sodium) excretion based upon 24-hour urine samples and spot urine samples. There were no restrictions on language, study sample size, or characteristics of the study population. MEDLINE via OvidSP (1946-present), Premedline via OvidSP, EMBASE, Global Health via OvidSP (1910-present), and the Cochrane Library were searched, and two reviewers identified eligible studies. The authors of these studies will be invited to contribute data according to a standard format. Individual participant records will be compiled and a series of analyses will be completed to: (1) compare existing equations for estimating 24-hour salt intake from spot urine samples with 24-hour urine samples, and assess the degree of bias according to key demographic and clinical characteristics; (2) assess the reliability of using spot urine samples to measure population changes in salt intake overtime; and (3) develop a novel equation that performs better than existing equations to estimate mean population salt intake. RESULTS: The search strategy identified 538 records; 100 records were obtained for review in full text and 73 have been confirmed as eligible. In addition, 68 abstracts were identified, some of which may contain data eligible for inclusion. Individual participant data will be requested from the authors of eligible studies. CONCLUSIONS: Many equations for estimating salt intake from spot urine samples have been developed and validated, although most have been studied in very specific settings. This meta-analysis of individual participant data will enable a much broader understanding of the capacity for spot urine samples to estimate population salt intake.
Date Issued
2016-09-21
Date Acceptance
2016-08-21
Citation
JMIR Research Protocols, 2016, 5 (3)
ISSN
1929-0748
Publisher
JMIR Publications
Journal / Book Title
JMIR Research Protocols
Volume
5
Issue
3
Copyright Statement
©Liping
Huang,
Michelle
Crino,
Jason
HY Wu, Mark
Woodward,
Mary-Anne
Land,
Rachael
McLean,
Jacqui
Webster
, Batsaikhan
Enkhtungalag,
Caryl
A Nowson,
Paul Elliott,
Mary
Cogswell,
Ulla Toft, Jose G Mill, Tania W Furlanetto,
Jasminka
Z Ilich,
Yet
Hoi Hong,
Damian
Cohall,
Leonella
Luzardo,
Oscar
Noboa,
Ellen
Holm,
Alexander
L Gerbes,
Bahaa
Senousy
, Sonat
Pinar
Kara,
Lizzy
M Brewster
, Hirotsugu
Ueshima,
Srinivas
Subramanian,
Boon
Wee Teo, Norrina
Allen,
Sohel
Reza
Choudhury
, Jorge
Polonia,
Yoshinari
Yasuda,
Norm
RC Campbell,
Bruce
Neal,
Kristina
S Petersen.
Originally
published
in JMIR
Research
Protocols
(http://www
.researchprotocols.or
g), 21.09.2016.
This is an open-access
article
distributed
under
the terms
of the Creative
Commons
Attribution
License
(http://creativecommons.or
g/licenses/by/2.0/),
which
permits
unrestricted
use, distribution,
and reproduction
in any medium,
provided
the original
work,
first published
in JMIR
Research
Protocols,
is properly
cited.
The complete
bibliographic
information,
a link to the original
publication
on http://www
.researchprotocols.or
g, as well as this copyright
and license
information
must be included.
Huang,
Michelle
Crino,
Jason
HY Wu, Mark
Woodward,
Mary-Anne
Land,
Rachael
McLean,
Jacqui
Webster
, Batsaikhan
Enkhtungalag,
Caryl
A Nowson,
Paul Elliott,
Mary
Cogswell,
Ulla Toft, Jose G Mill, Tania W Furlanetto,
Jasminka
Z Ilich,
Yet
Hoi Hong,
Damian
Cohall,
Leonella
Luzardo,
Oscar
Noboa,
Ellen
Holm,
Alexander
L Gerbes,
Bahaa
Senousy
, Sonat
Pinar
Kara,
Lizzy
M Brewster
, Hirotsugu
Ueshima,
Srinivas
Subramanian,
Boon
Wee Teo, Norrina
Allen,
Sohel
Reza
Choudhury
, Jorge
Polonia,
Yoshinari
Yasuda,
Norm
RC Campbell,
Bruce
Neal,
Kristina
S Petersen.
Originally
published
in JMIR
Research
Protocols
(http://www
.researchprotocols.or
g), 21.09.2016.
This is an open-access
article
distributed
under
the terms
of the Creative
Commons
Attribution
License
(http://creativecommons.or
g/licenses/by/2.0/),
which
permits
unrestricted
use, distribution,
and reproduction
in any medium,
provided
the original
work,
first published
in JMIR
Research
Protocols,
is properly
cited.
The complete
bibliographic
information,
a link to the original
publication
on http://www
.researchprotocols.or
g, as well as this copyright
and license
information
must be included.
Identifier
http://www.ncbi.nlm.nih.gov/pubmed/27655265
PII: v5i3e190
Subjects
24-hour urine collection
dietary salt
meta-analysis
sodium
spot urine collection
systematic review
Publication Status
Published
Coverage Spatial
Canada
Article Number
e190