Age- and gender-specific reference intervals of TSH and free T4 in an iodine-replete area: Data from Korean National Health and Nutrition Examination Survey IV (2013–2015)

Возрастно- и полоспецифичные референтные интервалы ТТГ и свободного Т4 в условиях достаточного потребления йода: данные Национального обследования здоровья и питания Кореи IV (2013–2015)
Tae Hyuk Kim, Jae Hoon Chung, So Young Park, Hae In Kim, Hyun‐Kyung Oh, Hye Won Jang, Myung‐Hee Shin, Sun Wook Kim
2018-02-01

Korea National Health and Nutrition Examination Survey (KNHANES)TSH reference intervalage- and gender-specificfree T4 reference intervaliodine-replete population
BACKGROUND: Establishment of the reference interval of thyroid-stimulating hormone (TSH) is critical in the diagnosis of thyroid dysfunction and is affected by age, gender, iodine nutrition, and ethnicity. The aim of this study was to determine the reference intervals of TSH and free thyroxin (FT4) from a large, nationwide data of Korea where iodine intake is more than adequate. METHODS: We analyzed data from the Korea National Health and Nutrition Examination Survey VI that measured serum TSH, FT4, and thyroid peroxidase antibody from 7,061 individuals (urinary iodine measurement in 6,565). Age- and gender-specific reference intervals were established from 95% confidence limits from the 2.5 to 97.5 percentile of TSH (log-transformed) and FT4 in reference populations. RESULTS: The geometric mean of TSH was 2.16 ± 0.01 mIU/L, with the lowest value found in the middle aged group (2.04 ± 0.02 mIU/L) and higher values noted in age groups of 10-19 and over 70 years (2.38 ± 0.02 and 2.32 ± 0.07 mIU/L, respectively). The association of TSH and age was U-shaped. The overall reference interval of TSH was 0.59-7.03 mIU/L. Mean FT4 was 1.25 ± 0.003 ng/dL (16.09 ± 0.039 pmol/L), and it showed a small but continuous decrease after 20 years of age (P < 0.001). There was a significant positive correlation between TSH and urine iodine concentration (r = 0.154, P < 0.001). CONCLUSIONS: The reference interval of TSH in Korea, where iodine intake is above the requirement, was 0.59-7.03 mIU/L and showed U-shaped change with age, which was a similar pattern to iodine intake. The reference interval of FT4 was 0.92-1.60 ng/dL. The geometric mean and upper limit of TSH were higher than those of Western populations, reflecting the paramount importance of iodine intake on thyroid function.
1
In an iodine-replete Korean population, the overall TSH reference interval is 0.59–7.03 mIU/L (2.5–97.5 percentile).
2
Mean FT4 was 1.25 ng/dL (16.09 pmol/L) with a continuous small decrease after age 20 (P < 0.001); FT4 reference interval was 0.92–1.60 ng/dL.
3
TSH geometric mean was 2.16 mIU/L, lowest in middle-aged group (2.04) and higher in ages 10–19 (2.38) and >70 (2.32), showing a U-shaped association with age.
4
The geometric mean and upper limit of TSH in this Korean (iodine-abundant) population are higher than reported Western population values, implicating iodine intake's strong effect on thyroid function.
5
There was a significant positive correlation between TSH and urine iodine concentration (r = 0.154, P < 0.001).

Serum thyroid-stimulating hormone (TSH) and free thyroxine (FT4) levels in the Korean population (iodine-replete area) from the Korea National Health and Nutrition Examination Survey

Age- and gender-specific reference intervals and population distribution patterns (including geometric mean, percentiles, age-related U-shaped association, and correlation with urinary iodine) of serum TSH and FT4

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2018-02-01
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Tae Hyuk Kim
Jae Hoon Chung
So Young Park
Hae In Kim
Hyun‐Kyung Oh
Hye Won Jang
Myung‐Hee Shin
Sun Wook Kim
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