Changes induced by hypothyroidism in insulin secretion and in the properties of islet plasma membranes

This work was aimed at elucidating the effect of thyroid function on the physiology and biochemistry of the islet-cell population within the endocrine pancreas. To this end, we performed a comparative study of the physicochemical properties of islet-cell membranes and of the dynamics of glucose-indu...

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Publicado: 1993
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Acceso en línea:https://bibliotecadigital.exactas.uba.ar/collection/paper/document/paper_13813455_v101_n5_p263_Diaz
http://hdl.handle.net/20.500.12110/paper_13813455_v101_n5_p263_Diaz
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spelling paper:paper_13813455_v101_n5_p263_Diaz2023-06-08T16:12:23Z Changes induced by hypothyroidism in insulin secretion and in the properties of islet plasma membranes B cell membrane Fluorescence polarization Hypothyroidism Pancreatic islets Rat 1,6 diphenyl 1,3,5 hexatriene fluorescent dye insulin thyroxine animal article cell membrane chemistry fluorescence polarization hypothyroidism male pancreas islet pathophysiology physical chemistry physiology rat rat strain thermodynamics viscosity Animal Cell Membrane Chemistry, Physical Diphenylhexatriene Fluorescence Polarization Fluorescent Dyes Hypothyroidism Insulin Islets of Langerhans Male Rats Rats, Wistar Support, Non-U.S. Gov't Thermodynamics Thyroxine Viscosity This work was aimed at elucidating the effect of thyroid function on the physiology and biochemistry of the islet-cell population within the endocrine pancreas. To this end, we performed a comparative study of the physicochemical properties of islet-cell membranes and of the dynamics of glucose-induced insulin secretion in isolated pancreatic islets prepared from euthyroid i.e. control (C), hypothyroid (H), and thyroxin-supplemented hypothyroid (HT) rats. H rats were obtained by injecting normal rats with 131iodine, while HT rats consisted of H rats treated with thyroxin (T4). Insulin secretion was studied in isolated islets perifused with 3.3 and 16.6 mM glucose. Physicochemical properties of the partially purified islet plasma membranes were assessed by measurements of fluorescence polarization with the fluorophore 1, 6-diphenyl-1, 3, 5-hexatriene (DPH) as a lipidic molecular probe. Insulin output during either the first or second phase of insulin secretion in H islets was significantly lower than in C islets. The slope of the curve in the second phase of insulin secretion was also lesser in H than in C islets, suggesting an additional defect in their velocity of hormone release. T4 administration of H rats reversed the decrease in insulin output to the range found in C islets but was incapable of correcting the defect in the hormone-secretion velocity. Several changes were found in the physicochemical properties of the membranes obtained from H islets as compared to C islets. There was an increase in the membrane-lipid-microviscosity values, a smaller modification of phase-transition values in response to changes in temperature, lower flow-activation-energy (ΔE) values below and above the temperature-dependent phase transition (Tt and a lack of ΔE changes after islet incubation with glucose. These differences would indicate that islet membranes in H animals exhibit an increase both in their microviscoity i.e. a decrease in their microfluidity and in the degree of order of their lipid bilayer as well as a decrease in their capacity to undergo changes in ΔE in response to glucose. T4 administration reversed the majority of these alterations. These results suggest that changes in the physicochemical properties of the islet membranes induced by hypothyroidism - especially with respect to lipid composition and microviscosity -could account, at least to some extent, for the decreased amount and lower velocity of H islets in the release of insulin in response to glucose. In addition, these results emphasize the modulatory function of thyroid hormones in this fundamental pancreatic process. © 1993 Informa UK Ltd All rights reserved: reproduction in whole or part not permitted. 1993 https://bibliotecadigital.exactas.uba.ar/collection/paper/document/paper_13813455_v101_n5_p263_Diaz http://hdl.handle.net/20.500.12110/paper_13813455_v101_n5_p263_Diaz
institution Universidad de Buenos Aires
institution_str I-28
repository_str R-134
collection Biblioteca Digital - Facultad de Ciencias Exactas y Naturales (UBA)
topic B cell membrane
Fluorescence polarization
Hypothyroidism
Pancreatic islets
Rat
1,6 diphenyl 1,3,5 hexatriene
fluorescent dye
insulin
thyroxine
animal
article
cell membrane
chemistry
fluorescence polarization
hypothyroidism
male
pancreas islet
pathophysiology
physical chemistry
physiology
rat
rat strain
thermodynamics
viscosity
Animal
Cell Membrane
Chemistry, Physical
Diphenylhexatriene
Fluorescence Polarization
Fluorescent Dyes
Hypothyroidism
Insulin
Islets of Langerhans
Male
Rats
Rats, Wistar
Support, Non-U.S. Gov't
Thermodynamics
Thyroxine
Viscosity
spellingShingle B cell membrane
Fluorescence polarization
Hypothyroidism
Pancreatic islets
Rat
1,6 diphenyl 1,3,5 hexatriene
fluorescent dye
insulin
thyroxine
animal
article
cell membrane
chemistry
fluorescence polarization
hypothyroidism
male
pancreas islet
pathophysiology
physical chemistry
physiology
rat
rat strain
thermodynamics
viscosity
Animal
Cell Membrane
Chemistry, Physical
Diphenylhexatriene
Fluorescence Polarization
Fluorescent Dyes
Hypothyroidism
Insulin
Islets of Langerhans
Male
Rats
Rats, Wistar
Support, Non-U.S. Gov't
Thermodynamics
Thyroxine
Viscosity
Changes induced by hypothyroidism in insulin secretion and in the properties of islet plasma membranes
topic_facet B cell membrane
Fluorescence polarization
Hypothyroidism
Pancreatic islets
Rat
1,6 diphenyl 1,3,5 hexatriene
fluorescent dye
insulin
thyroxine
animal
article
cell membrane
chemistry
fluorescence polarization
hypothyroidism
male
pancreas islet
pathophysiology
physical chemistry
physiology
rat
rat strain
thermodynamics
viscosity
Animal
Cell Membrane
Chemistry, Physical
Diphenylhexatriene
Fluorescence Polarization
Fluorescent Dyes
Hypothyroidism
Insulin
Islets of Langerhans
Male
Rats
Rats, Wistar
Support, Non-U.S. Gov't
Thermodynamics
Thyroxine
Viscosity
description This work was aimed at elucidating the effect of thyroid function on the physiology and biochemistry of the islet-cell population within the endocrine pancreas. To this end, we performed a comparative study of the physicochemical properties of islet-cell membranes and of the dynamics of glucose-induced insulin secretion in isolated pancreatic islets prepared from euthyroid i.e. control (C), hypothyroid (H), and thyroxin-supplemented hypothyroid (HT) rats. H rats were obtained by injecting normal rats with 131iodine, while HT rats consisted of H rats treated with thyroxin (T4). Insulin secretion was studied in isolated islets perifused with 3.3 and 16.6 mM glucose. Physicochemical properties of the partially purified islet plasma membranes were assessed by measurements of fluorescence polarization with the fluorophore 1, 6-diphenyl-1, 3, 5-hexatriene (DPH) as a lipidic molecular probe. Insulin output during either the first or second phase of insulin secretion in H islets was significantly lower than in C islets. The slope of the curve in the second phase of insulin secretion was also lesser in H than in C islets, suggesting an additional defect in their velocity of hormone release. T4 administration of H rats reversed the decrease in insulin output to the range found in C islets but was incapable of correcting the defect in the hormone-secretion velocity. Several changes were found in the physicochemical properties of the membranes obtained from H islets as compared to C islets. There was an increase in the membrane-lipid-microviscosity values, a smaller modification of phase-transition values in response to changes in temperature, lower flow-activation-energy (ΔE) values below and above the temperature-dependent phase transition (Tt and a lack of ΔE changes after islet incubation with glucose. These differences would indicate that islet membranes in H animals exhibit an increase both in their microviscoity i.e. a decrease in their microfluidity and in the degree of order of their lipid bilayer as well as a decrease in their capacity to undergo changes in ΔE in response to glucose. T4 administration reversed the majority of these alterations. These results suggest that changes in the physicochemical properties of the islet membranes induced by hypothyroidism - especially with respect to lipid composition and microviscosity -could account, at least to some extent, for the decreased amount and lower velocity of H islets in the release of insulin in response to glucose. In addition, these results emphasize the modulatory function of thyroid hormones in this fundamental pancreatic process. © 1993 Informa UK Ltd All rights reserved: reproduction in whole or part not permitted.
title Changes induced by hypothyroidism in insulin secretion and in the properties of islet plasma membranes
title_short Changes induced by hypothyroidism in insulin secretion and in the properties of islet plasma membranes
title_full Changes induced by hypothyroidism in insulin secretion and in the properties of islet plasma membranes
title_fullStr Changes induced by hypothyroidism in insulin secretion and in the properties of islet plasma membranes
title_full_unstemmed Changes induced by hypothyroidism in insulin secretion and in the properties of islet plasma membranes
title_sort changes induced by hypothyroidism in insulin secretion and in the properties of islet plasma membranes
publishDate 1993
url https://bibliotecadigital.exactas.uba.ar/collection/paper/document/paper_13813455_v101_n5_p263_Diaz
http://hdl.handle.net/20.500.12110/paper_13813455_v101_n5_p263_Diaz
_version_ 1768543574846078976