Literature DB >> 16670159

Proliferative activity of human thyroid cells in various age groups and its correlation with the risk of thyroid cancer after radiation exposure.

Ali G Saad1, Seena Kumar, Elaine Ron, Jay H Lubin, Jerzy Stanek, Kevin E Bove, Yuri E Nikiforov.   

Abstract

CONTEXT: The thyroid gland is vulnerable to the carcinogenic effects of ionizing radiation, and there is a well-documented inverse correlation between thyroid cancer and age at exposure, particularly for ages less than 20 yr. One of the factors responsible for this phenomenon may be more rapid cell proliferation in children.
OBJECTIVE: The objective of this study was to determine the proliferative rate of normal human thyroid cells in different age groups.
DESIGN: We used immunohistochemical analysis to determine the Ki-67 proliferative index in 117 thyroid glands obtained at autopsy, including 25 fetal thyroids (11-40 wk gestation), 55 childhood thyroids (0-19 yr), and 37 adult thyroids (20-60 yr).
RESULTS: The rate of Ki-67 labeling in the three groups was 7.4 +/- 6.10, 0.23 +/- 0.15, and 0.08 +/- 0.04% respectively, demonstrating an overall trend for diminishing proliferative activity of thyroid cells with increasing age. However, a lack of correlation was noted between the slopes of cancer risk calculated from previous studies of irradiated populations and proliferative rate in the pediatric age intervals of 0-4 and 5-9 yr, suggesting that other factors are likely to be responsible for the particularly high sensitivity to radiation-induced thyroid cancer among the youngest children.
CONCLUSIONS: Our findings of a general decrease in proliferative activity of thyroid cells with age may explain, at least in part, the higher risks of radiation-related thyroid cancer in children compared with adults. However, the variation in the rate of cell proliferation is unlikely to be responsible entirely for this phenomenon and other factors may also be involved.

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Year:  2006        PMID: 16670159     DOI: 10.1210/jc.2006-0417

Source DB:  PubMed          Journal:  J Clin Endocrinol Metab        ISSN: 0021-972X            Impact factor:   5.958


  27 in total

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2.  In utero exposure to iodine-131 from Chernobyl fallout and anthropometric characteristics in adolescence.

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3.  Epithelial hyperplasia is responsible for the compensatory enlargement of remaining thyroid lobe after thyroidectomy.

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4.  American Thyroid Association Scientific Statement on the Use of Potassium Iodide Ingestion in a Nuclear Emergency.

Authors:  Angela M Leung; Andrew J Bauer; Salvatore Benvenga; Alina V Brenner; James V Hennessey; James R Hurley; Stacey A Milan; Arthur B Schneider; Krishnamurthi Sundaram; Daniel J Toft
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5.  No thyroid abnormalities in patients submitted to cardiac catheterization in the first eighteen months of life.

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8.  Thyroid Cancer after Childhood Exposure to External Radiation: An Updated Pooled Analysis of 12 Studies.

Authors:  Lene H S Veiga; Erik Holmberg; Harald Anderson; Linda Pottern; Siegal Sadetzki; M Jacob Adams; Ritsu Sakata; Arthur B Schneider; Peter Inskip; Parveen Bhatti; Robert Johansson; Gila Neta; Roy Shore; Florent de Vathaire; Lena Damber; Ruth Kleinerman; Michael M Hawkins; Margaret Tucker; Marie Lundell; Jay H Lubin
Journal:  Radiat Res       Date:  2016-04-29       Impact factor: 2.841

9.  Observations on factors that influence thyroid nodules in diabetic and non-diabetic patients in the Zhejiang province of China.

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10.  A screening study of thyroid cancer and other thyroid diseases among individuals exposed in utero to iodine-131 from Chernobyl fallout.

Authors:  M Hatch; A Brenner; T Bogdanova; A Derevyanko; N Kuptsova; I Likhtarev; A Bouville; V Tereshchenko; L Kovgan; V Shpak; E Ostroumova; E Greenebaum; L Zablotska; E Ron; M Tronko
Journal:  J Clin Endocrinol Metab       Date:  2008-12-23       Impact factor: 5.958

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