Thiocyanate in food and iodine in milk: From domestic animal feeding to improved understanding of cretinism

被引:58
作者
Laurberg, P [1 ]
Andersen, S
Knudsen, N
Ovesen, L
Nohr, SB
Pedersen, IB
机构
[1] Aalborg Hosp, Dept Endocrinol & Med, DK-9000 Aalborg, Denmark
[2] Aalborg Hosp, Dept Obstet & Gynaecol, DK-9000 Aalborg, Denmark
[3] Bispebjerg Hosp, Dept Med 1, Copenhagen, Denmark
[4] Danish Food Adm, Inst Food Res & Nutr, Copenhagen, Denmark
关键词
D O I
10.1089/105072502761016520
中图分类号
R5 [内科学];
学科分类号
1002 ; 100201 ;
摘要
Transport of iodine in the mammary gland into breast milk plays a central role in various fields of prevention of thyroid diseases. First, a sufficient content of iodine in the mother's milk is necessary for normal brain development in the breastfed child. This is attained by expression during lactation in the mammary gland of the sodium iodide symporter (NIS), also responsible for iodine transport in the thyroid. Milk iodine content varies with the iodine intake of the mother, and urinary iodine excretion in groups of mothers seems to be a valuable indicator of the iodine status of their breastfed children. Second, iodine in dairy products provides a considerable part of iodine intake in many populations. Thiocyanate from rapeseed feeding of cows decreases milk iodine content, probably by competitive inhibition of NIS in the mammary gland. Alterations in feeding of dairy cows may alter the iodine content of consumer milk, and this may influence the risk of thyroid diseases in the population. Thiocyanate inhibition of iodine transport into milk may also be operative in humans with a high thiocyanate intake. This could further impair iodine status in breastfed children in low-iodine intake areas of the world. It can be speculated that a low-iodine content of mother's milk because of inhibition of NIS in the mammary gland may be one factor of importance for development of myxedematous cretinism.
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页码:897 / 902
页数:6
相关论文
共 36 条
[31]   Analysis of human sodium iodide symporter gene expression in extrathyroidal tissues and cloning of its complementary deoxyribonucleic acids from salivary gland, mammary gland, and gastric mucosa [J].
Spitzweg, C ;
Joba, W ;
Eisenmenger, W ;
Heufelder, AE .
JOURNAL OF CLINICAL ENDOCRINOLOGY & METABOLISM, 1998, 83 (05) :1746-1751
[32]   BIOACTIVE ORGANOSULFUR PHYTOCHEMICALS IN BRASSICA-OLERACEA VEGETABLES - A REVIEW [J].
STOEWSAND, GS .
FOOD AND CHEMICAL TOXICOLOGY, 1995, 33 (06) :537-543
[33]   The mammary gland iodide transporter is expressed during lactation and in breast cancer [J].
Tazebay, UH ;
Wapnir, IL ;
Levy, O ;
Dohan, O ;
Zuckier, LS ;
Zhao, QH ;
Deng, HF ;
Amenta, PS ;
Fineberg, S ;
Pestell, RG ;
Carrasco, N .
NATURE MEDICINE, 2000, 6 (08) :871-878
[34]  
TEXIER F, 1983, PRESSE MED, V12, P769
[35]   THE IODIDE CONCENTRATING MECHANISM OF THE RAT THYROID AND ITS INHIBITION BY THIOCYANATE [J].
VANDERLAAN, JE ;
VANDERLAAN, WP .
ENDOCRINOLOGY, 1947, 40 (06) :403-416
[36]   ENDEMIC INFANTILE HYPOTHYROIDISM IN A SEVERE ENDEMIC GOITER AREA OF CENTRAL-AFRICA [J].
VANDERPAS, J ;
BOURDOUX, P ;
LAGASSE, R ;
RIVERA, M ;
DRAMAIX, M ;
LODY, D ;
NELSON, G ;
DELANGE, F ;
ERMANS, AM ;
THILLY, CH .
CLINICAL ENDOCRINOLOGY, 1984, 20 (03) :327-340