Hypothyroid offspring replacement with euthyroid wet nurses during lactation improves thyroid programming without modifying metabolic programming

ABSTRACT Objective Determine the milk quality effect during lactation on the metabolic and thyroid programming of hypothyroid offspring. Materials and methods Ten-week-old female Wistar rats were divided into two groups: euthyroid and thyroidectomy-caused hypothyroidism. The rats were matted and...

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Main Authors: Jorge Tapia-Martínez, Margarita Franco-Colín, Rocio Ortiz-Butron, Marisol Pineda-Reynoso, Edgar Cano-Europa
Format: Article
Language:English
Published: Brazilian Society of Endocrinology and Metabolism 2019-05-01
Series:Archives of Endocrinology and Metabolism
Subjects:
Online Access:http://www.scielo.br/scielo.php?script=sci_arttext&pid=S2359-39972019005003101&lng=en&tlng=en
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spelling doaj-e3a027e0315148e498b3d816a465355b2020-11-25T02:43:17ZengBrazilian Society of Endocrinology and MetabolismArchives of Endocrinology and Metabolism2359-42922019-05-01010.20945/2359-3997000000132S2359-39972019005003101Hypothyroid offspring replacement with euthyroid wet nurses during lactation improves thyroid programming without modifying metabolic programmingJorge Tapia-MartínezMargarita Franco-ColínRocio Ortiz-ButronMarisol Pineda-ReynosoEdgar Cano-EuropaABSTRACT Objective Determine the milk quality effect during lactation on the metabolic and thyroid programming of hypothyroid offspring. Materials and methods Ten-week-old female Wistar rats were divided into two groups: euthyroid and thyroidectomy-caused hypothyroidism. The rats were matted and, one day after birth, the pups were divided into three groups: euthyroid offspring (EO), hypothyroid offspring (HO) and hypothyroid with a euthyroid replacement wet nurse (HRO). During lactation, the milk quality and offspring body length were evaluated. The body weight and energy intake were determined on a weekly basis, as well as the metabolic profile at the prepubertal (P35-36) and postpubertal (P55-56) ages. At P56, the animals were sacrificed, the adipose tissues were weighed and the thyroid glands were dissected for histological processing. Results The milk of the hypothyroid wet nurse decreases proteins (16-26%), lipids (22-29%) and lactate (22-37%) with respect to euthyroid. The HO has a lower body weight gain (23-33%), length (11-13%) and energy intake (15-21%). In addition, HO presents impaired fasting glucose and dyslipidemia, as well as a reduction in seric thyroid hormone (18-34%), adipose reserves (26-68%) and thyroid gland weight (25-34%). The HO present thyroid gland cytoarchitecture alteration. The HRO develop the same metabolic alterations as the HO. However, the thyroid gland dysfunction was partially prevented because the HRO improved under about 10% of the serum thyroid hormone concentration, the thyroid gland weight although histological glandular changes presented. Conclusions The replacement of hypothyroid offspring with a euthyroid wet nurse during lactation can improve the thyroid programming without modifying metabolic programming.http://www.scielo.br/scielo.php?script=sci_arttext&pid=S2359-39972019005003101&lng=en&tlng=enCongenital hypothyroidismlactationmetabolic programmingthyroid programmingthyroid gland
collection DOAJ
language English
format Article
sources DOAJ
author Jorge Tapia-Martínez
Margarita Franco-Colín
Rocio Ortiz-Butron
Marisol Pineda-Reynoso
Edgar Cano-Europa
spellingShingle Jorge Tapia-Martínez
Margarita Franco-Colín
Rocio Ortiz-Butron
Marisol Pineda-Reynoso
Edgar Cano-Europa
Hypothyroid offspring replacement with euthyroid wet nurses during lactation improves thyroid programming without modifying metabolic programming
Archives of Endocrinology and Metabolism
Congenital hypothyroidism
lactation
metabolic programming
thyroid programming
thyroid gland
author_facet Jorge Tapia-Martínez
Margarita Franco-Colín
Rocio Ortiz-Butron
Marisol Pineda-Reynoso
Edgar Cano-Europa
author_sort Jorge Tapia-Martínez
title Hypothyroid offspring replacement with euthyroid wet nurses during lactation improves thyroid programming without modifying metabolic programming
title_short Hypothyroid offspring replacement with euthyroid wet nurses during lactation improves thyroid programming without modifying metabolic programming
title_full Hypothyroid offspring replacement with euthyroid wet nurses during lactation improves thyroid programming without modifying metabolic programming
title_fullStr Hypothyroid offspring replacement with euthyroid wet nurses during lactation improves thyroid programming without modifying metabolic programming
title_full_unstemmed Hypothyroid offspring replacement with euthyroid wet nurses during lactation improves thyroid programming without modifying metabolic programming
title_sort hypothyroid offspring replacement with euthyroid wet nurses during lactation improves thyroid programming without modifying metabolic programming
publisher Brazilian Society of Endocrinology and Metabolism
series Archives of Endocrinology and Metabolism
issn 2359-4292
publishDate 2019-05-01
description ABSTRACT Objective Determine the milk quality effect during lactation on the metabolic and thyroid programming of hypothyroid offspring. Materials and methods Ten-week-old female Wistar rats were divided into two groups: euthyroid and thyroidectomy-caused hypothyroidism. The rats were matted and, one day after birth, the pups were divided into three groups: euthyroid offspring (EO), hypothyroid offspring (HO) and hypothyroid with a euthyroid replacement wet nurse (HRO). During lactation, the milk quality and offspring body length were evaluated. The body weight and energy intake were determined on a weekly basis, as well as the metabolic profile at the prepubertal (P35-36) and postpubertal (P55-56) ages. At P56, the animals were sacrificed, the adipose tissues were weighed and the thyroid glands were dissected for histological processing. Results The milk of the hypothyroid wet nurse decreases proteins (16-26%), lipids (22-29%) and lactate (22-37%) with respect to euthyroid. The HO has a lower body weight gain (23-33%), length (11-13%) and energy intake (15-21%). In addition, HO presents impaired fasting glucose and dyslipidemia, as well as a reduction in seric thyroid hormone (18-34%), adipose reserves (26-68%) and thyroid gland weight (25-34%). The HO present thyroid gland cytoarchitecture alteration. The HRO develop the same metabolic alterations as the HO. However, the thyroid gland dysfunction was partially prevented because the HRO improved under about 10% of the serum thyroid hormone concentration, the thyroid gland weight although histological glandular changes presented. Conclusions The replacement of hypothyroid offspring with a euthyroid wet nurse during lactation can improve the thyroid programming without modifying metabolic programming.
topic Congenital hypothyroidism
lactation
metabolic programming
thyroid programming
thyroid gland
url http://www.scielo.br/scielo.php?script=sci_arttext&pid=S2359-39972019005003101&lng=en&tlng=en
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