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    High Serum Levels of Thyroid-Stimulating Hormone and Sustained Weight Gain in Patients with Thyroid Cancer Undergoing Radioiodine Therapy

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    https://www.riss.kr/link?id=A103570226

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    Background and Objectives: The extent of weight gain and its association with clinical factors in patients undergoing radioiodine therapy for differentiated thyroid cancer remain unclear. We analyzed clinical factors related to sustained weight gain after serum thyroid-stimulating hormone (TSH) stimulation for radioiodine (I-131) therapy. Materials and Methods: The study population included 301 adult patients who underwent total thyroidectomy followed by radioiodine therapy and visited the thyroid clinic regularly. Group 1 received a single radioiodine therapy treatment, while group 2 received multiple radioiodine treatment. Data on transient weight gain, defined as weight gain that resolved (±5%) within 1 year after radioiodine therapy, were collected from medical records. Sustained weight gain was defined as body mass index after treatment (BMIpost) – BMI before treatment (BMIpre) ≥2 kg/m2 more than 1 year following radioiodine therapy. Subjective symptoms were scored by questionnaire. Logistic regression analysis was performed using various clinical and laboratory factors to identify risk factors associated with sustained weight gain. Results: Two hundred and fifty-nine (86%) patients showed transient weight gain and 23 (8%) patients showed sustained weight gain. TSH at therapy and T4-on TSH differed significantly in all patients and in the patients in group 1 with sustained weight gain. The proportion of patients with basal BMI≥25 kg/m2 in group 1 with sustained weight gain also differed significantly. Univariate analysis revealed that high serum levels of TSH at therapy (≥100 μIU/mL) and hypercholesterolemia were associated with sustained weight gain in group 1. Multivariate analysis showed that TSH at therapy levels ≥100 μIU/mL was associated with sustained weight gain in group 1. Of 283 patients remaining after excluding those with insufficient TSH suppression during follow-up, T4-on TSH levels were lower in the sustained weight gain group compared to those without sustained weight gain. TSH at therapy levels ≥100 μIU/mL were significantly associated with sustained weight gain in multivariate analysis. Conclusion: Most patients (86%) had transient weight gain after TSH at therapy, while 8% of patients showed sustained weight gain. Univariate and multivariate analysis revealed relatively high TSH levels (≥100 μIU/mL) to be a risk factor for patients that received a single dose of radioiodine therapy. Insufficient T4 dose was not associated with sustained weight gain.
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    Background and Objectives: The extent of weight gain and its association with clinical factors in patients undergoing radioiodine therapy for differentiated thyroid cancer remain unclear. We analyzed clinical factors related to sustained weight gain a...

    Background and Objectives: The extent of weight gain and its association with clinical factors in patients undergoing radioiodine therapy for differentiated thyroid cancer remain unclear. We analyzed clinical factors related to sustained weight gain after serum thyroid-stimulating hormone (TSH) stimulation for radioiodine (I-131) therapy. Materials and Methods: The study population included 301 adult patients who underwent total thyroidectomy followed by radioiodine therapy and visited the thyroid clinic regularly. Group 1 received a single radioiodine therapy treatment, while group 2 received multiple radioiodine treatment. Data on transient weight gain, defined as weight gain that resolved (±5%) within 1 year after radioiodine therapy, were collected from medical records. Sustained weight gain was defined as body mass index after treatment (BMIpost) – BMI before treatment (BMIpre) ≥2 kg/m2 more than 1 year following radioiodine therapy. Subjective symptoms were scored by questionnaire. Logistic regression analysis was performed using various clinical and laboratory factors to identify risk factors associated with sustained weight gain. Results: Two hundred and fifty-nine (86%) patients showed transient weight gain and 23 (8%) patients showed sustained weight gain. TSH at therapy and T4-on TSH differed significantly in all patients and in the patients in group 1 with sustained weight gain. The proportion of patients with basal BMI≥25 kg/m2 in group 1 with sustained weight gain also differed significantly. Univariate analysis revealed that high serum levels of TSH at therapy (≥100 μIU/mL) and hypercholesterolemia were associated with sustained weight gain in group 1. Multivariate analysis showed that TSH at therapy levels ≥100 μIU/mL was associated with sustained weight gain in group 1. Of 283 patients remaining after excluding those with insufficient TSH suppression during follow-up, T4-on TSH levels were lower in the sustained weight gain group compared to those without sustained weight gain. TSH at therapy levels ≥100 μIU/mL were significantly associated with sustained weight gain in multivariate analysis. Conclusion: Most patients (86%) had transient weight gain after TSH at therapy, while 8% of patients showed sustained weight gain. Univariate and multivariate analysis revealed relatively high TSH levels (≥100 μIU/mL) to be a risk factor for patients that received a single dose of radioiodine therapy. Insufficient T4 dose was not associated with sustained weight gain.

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    참고문헌 (Reference)

    1 Brunova J, "Weight gain in patients after therapy for hyperthyroidism" 93 (93): 529-531, 2003

    2 Rathi MS, "Weight gain during the treatment of thyrotoxicosis using conventional thyrostatic treatment" 31 (31): 505-508, 2008

    3 Watts MR, "Weight gain and treatment for thyrotoxicosis" 95 (95): 57-58, 2002

    4 Sohn SY, "Weight changes in patients with differentiated thyroid carcinoma during postoperative long-term follow-up under thyroid stimulating hormone suppression" 30 (30): 343-351, 2015

    5 Jonklaas J, "Weight changes in euthyroid patients undergoing thyroidectomy" 21 (21): 1343-1351, 2011

    6 Handkiewicz-Junak D, "Total thyroidectomy and adjuvant radioiodine treatment independently decrease locoregional recurrence risk in childhood and adolescent differentiated thyroid cancer" 48 (48): 879-888, 2007

    7 Murakami M, "Thyrotropin receptors in brown adipose tissue: thyrotropin stimulates type II iodothyronine deiodinase and uncoupling protein-1 in brown adipocytes" 142 (142): 1195-1201, 2001

    8 Davies T, "The TSH receptor reveals itself" 110 (110): 161-164, 2002

    9 Ik Dong Yoo, "The Success Rate of Initial 131I Ablation in Differentiated Thyroid Cancer: Comparison Between Less Strict and Very Strict Low Iodine Diets" 대한핵의학회 46 (46): 34-40, 2012

    10 Sorisky A, "TSH receptor in adipose cells" 32 (32): 468-474, 2000

    1 Brunova J, "Weight gain in patients after therapy for hyperthyroidism" 93 (93): 529-531, 2003

    2 Rathi MS, "Weight gain during the treatment of thyrotoxicosis using conventional thyrostatic treatment" 31 (31): 505-508, 2008

    3 Watts MR, "Weight gain and treatment for thyrotoxicosis" 95 (95): 57-58, 2002

    4 Sohn SY, "Weight changes in patients with differentiated thyroid carcinoma during postoperative long-term follow-up under thyroid stimulating hormone suppression" 30 (30): 343-351, 2015

    5 Jonklaas J, "Weight changes in euthyroid patients undergoing thyroidectomy" 21 (21): 1343-1351, 2011

    6 Handkiewicz-Junak D, "Total thyroidectomy and adjuvant radioiodine treatment independently decrease locoregional recurrence risk in childhood and adolescent differentiated thyroid cancer" 48 (48): 879-888, 2007

    7 Murakami M, "Thyrotropin receptors in brown adipose tissue: thyrotropin stimulates type II iodothyronine deiodinase and uncoupling protein-1 in brown adipocytes" 142 (142): 1195-1201, 2001

    8 Davies T, "The TSH receptor reveals itself" 110 (110): 161-164, 2002

    9 Ik Dong Yoo, "The Success Rate of Initial 131I Ablation in Differentiated Thyroid Cancer: Comparison Between Less Strict and Very Strict Low Iodine Diets" 대한핵의학회 46 (46): 34-40, 2012

    10 Sorisky A, "TSH receptor in adipose cells" 32 (32): 468-474, 2000

    11 de Lloyd A, "TSH receptor activation and body composition" 204 (204): 13-20, 2010

    12 Arora S, Anubhuti, "Role of neuropeptides in appetite regulation and obesity--a review" 40 (40): 375-401, 2006

    13 Lu S, "Role of extrathyroidal TSHR expression in adipocyte differentiation and its association with obesity" 11 : 17-, 2012

    14 Ambrosi B, "Relationship of thyroid function with body mass index and insulin-resistance in euthyroid obese subjects" 33 (33): 640-643, 2010

    15 Wartofsky L, "Radioiodine treatment of well-differentiated thyroid cancer" 42 (42): 506-513, 2012

    16 Forte V, "Obesity, diabetes, the cardiorenal syndrome, and risk for cancer" 2 (2): 143-162, 2012

    17 Haslam DW, "Obesity" 366 (366): 1197-1209, 2005

    18 Virdis A, "Microvascular endothelial dysfunction in obesity and hypertension" 19 (19): 2382-2389, 2013

    19 Fagour C, "Low physical activity in patients with type 2 diabetes: the role of obesity" 39 (39): 85-87, 2013

    20 Pears J, "Long-term weight changes in treated hyperthyroid and hypothyroid patients" 35 (35): 180-182, 1990

    21 Valcavi R, "Influence of thyroid status on serum immunoreactive leptin levels" 82 (82): 1632-1634, 1997

    22 Giuffrida FM, "Heterogeneous behavior of lipids according to HbA1c levels undermines the plausibility of metabolic syndrome in type 1 diabetes: data from a nationwide multicenter survey" 11 : 156-, 2012

    23 Wang YC, "Health and economic burden of the projected obesity trends in the USA and the UK" 378 (378): 815-825, 2011

    24 Sun Y, "Ghrelin stimulation of growth hormone release and appetite is mediated through the growth hormone secretagogue receptor" 101 (101): 4679-4684, 2004

    25 Bell A, "Functional TSH receptor in human abdominal preadipocytes and orbital fibroblasts" 279 (279): C335-C340, 2000

    26 Valyasevi RW, "Differentiation of human orbital preadipocyte fibroblasts induces expression of functional thyrotropin receptor" 84 (84): 2557-2562, 1999

    27 Gimenez-Palop O, "Circulating ghrelin in thyroid dysfunction is related to insulin resistance and not to hunger, food intake or anthropometric changes" 153 (153): 73-79, 2005

    28 Jee SH, "Body mass index and cancer risk in Korean men and women" 123 (123): 1892-1896, 2008

    29 Kapadia KB, "Association between altered thyroid state and insulin resistance" 3 (3): 156-160, 2012

    30 Goh VH, "Are BMI and other anthropometric measures appropriate as indices for obesity? A study in an Asian population" 45 (45): 1892-1898, 2004

    31 Starkey KJ, "Adipose thyrotrophin receptor expression is elevated in Graves' and thyroid eye diseases ex vivo and indicates adipogenesis in progress in vivo" 30 (30): 369-380, 2003

    32 Crisp M, "Adipogenesis in thyroid eye disease" 41 (41): 3249-3255, 2000

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    학술지 이력

    학술지 이력
    연월일 이력구분 이력상세 등재구분
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    2014-11-04 학술지명변경 외국어명 : Journal of Korean Thyroid Association -> Clinical and Experimental Thyroidology KCI등재후보
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    기준연도 WOS-KCI 통합IF(2년) KCIF(2년) KCIF(3년)
    2016 0.08 0.08 0.13
    KCIF(4년) KCIF(5년) 중심성지수(3년) 즉시성지수
    0.14 0.13 0.355 0
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