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Biomedical subjects

Michele Marinò

Publications and source records attributed to Michele Marinò.

12 recordsLinked to original sources

Clinical features of dysthyroid optic neuropathy: a European Group on Graves' Orbitopathy (EUGOGO) survey.

BACKGROUND: This study was performed to determine clinical features of dysthyroid optic neuropathy (DON) across Europe. METHODS: Forty seven patients with DON presented to seven European centres during one year. Local protocols for thyroid status, ophthalmic examination and further investigation were used. Each eye was classified as having definite, equivocal, or no DON. RESULTS: Graves' hyperthyroidism occurred in the majority; 20% had received radioiodine. Of 94 eyes, 55 had definite and 17 equivocal DON. Median Clinical Activity Score was 4/7 but 25% scored 3 or less, indicating severe inflammation was not essential. Best corrected visual acuity was 6/9 (Snellen) or worse in 75% of DON eyes. Colour vision was reduced in 33 eyes, of which all but one had DON. Half of the DON eyes had normal optic disc appearance. In DON eyes proptosis was > 21 mm (significant) in 66% and visual fields abnormal in 71%. Orbital imaging showed apical muscle crowding in 88% of DON patients. Optic nerve stretch and fat prolapse were infrequently reported. CONCLUSION: Patients with DON may not have severe proptosis and orbital inflammation. Optic disc swelling, impaired colour vision and radiological evidence of apical optic nerve compression are the most useful clinical features in this series.

Adult↗

TSH-Dependent expression of the LDL receptor-associated protein (RAP) in thyroid epithelial cells.

The low density lipoprotein (LDL) receptor-associated protein (RAP) is an endoplasmic reticulum (ER)-resident molecular chaperone for several LDL receptor family members and it also binds to thyroglobulin (Tg), the thyroid hormone precursor. Disruption of the RAP gene in thyrocytes results in impaired Tg secretion. To gain further insights into the function of RAP in the thyroid, we investigated whether its expression in thyrocytes is regulated by thyroid-stimulating hormone (TSH), a feature common to all proteins involved in thyroid hormone secretion. We found by immunofluorescence that in FRTL-5 cells cultured in the presence of TSH, RAP is expressed intracellularly. The levels of expression increased after exposure to TSH, beginning at 48 hours, in a concentration-dependent manner as observed by immunofluorescence and Western blotting. Expression of RAP was also increased by TSH in primary cultures of human thyrocytes as observed by Western blotting. In hypothyroid mice with high serum TSH, RAP was markedly increased compared with euthyroid mice as observed by immunohistochemistry and Western blotting. Based on these findings, we concluded that RAP is expressed by thyrocytes in a TSH-dependent manner, both in cultured thyroid cells and in vivo.

Animals↗

ClC-5 does not affect megalin expression and function in the thyroid.

Megalin is an endocytic receptor responsible for thyroglobulin (Tg) transcytosis, a process that favors hormone release. Accordingly, megalin KO mice have primary hypothyroidism. In the kidney, megalin expression is reduced when the gene encoding the chloride transporter ClC-5 is mutated. We investigated whether megalin expression and function in the thyroid are affected by ClC-5 using a ClC-5 KO mouse model. By Western blotting, ClC-5 was found in thyroid tissue extracts of WT, but not of ClC-5 KO mice. In addition, ClC-5 was found to be expressed by cultured thyroid cells (FRTL-5). The thyroid size, weight, and histology were similar in ClC- 5 KO and WT mice, as were the amounts of megalin in thyroid extracts. Accordingly, serum Tg, a measure of megalin-mediated transcytosis, was similar in WT and ClC-5 KO mice, suggesting that megalin function was unaffected. Thus, unlike in megalin KO mice, in ClC-5 KO mice thyroid function was unchanged, as indicated by the normal serum FT4 and TSH. We concluded that in the thyroid, unlike in the kidney, ClC-5 does not affect megalin expression and function, suggesting that megalin is differentially regulated in these two organs.

Animals↗

Defective thyroglobulin storage in LDL receptor-associated protein-deficient mice.

The molecular chaperone receptor-associated protein (RAP) is required for biosynthesis of megalin, an endocytic receptor for follicular thyroglobulin (Tg), the thyroid hormone precursor. RAP also binds to Tg itself, suggesting that it may affect Tg trafficking in various manners. To elucidate RAP function, we have studied the thyroid phenotype in RAP-knockout (RAP-KO) mice and found a reduction of Tg aggregates into thyroid follicles. Serum Tg levels were significantly increased compared with those of wild-type (WT) mice, suggesting a directional alteration of Tg secretion. In spite of these abnormalities, hormone secretion was maintained as indicated by normal serum thyroxine levels. Because Tg in thyroid extracts from RAP-KO mice contained thyroxine residues as in WT mice, we concluded that in RAP-KO mice, follicular Tg, although reduced, was nevertheless sufficient to provide normal hormone secretion. Serum TSH was increased in RAP-KO mice, and although no thyroid enlargement was observed, some histological features resembling early goiter were present. Megalin was decreased in RAP-KO mice, but this did not affect thyroid function, probably because of the concomitant reduction of follicular Tg. In conclusion, RAP is required for the establishment of Tg reservoirs, but its absence does not affect hormone secretion.

Animals↗

Thyroid dysfunction in megalin deficient mice.

Megalin mediates transcytosis of thyroglobulin (Tg), the thyroid hormone precursor, resulting in its passage into the bloodstream. The process involves especially hormone-poor Tg, which may favour hormone secretion by preventing competition with hormone-rich Tg for proteolytic degradation. To gain more insight into the role of megalin, here we studied thyroid function and histology in megalin deficient mice compared with WT mice. As expected from the knowledge that megalin mediates Tg transcytosis, serum Tg levels were significantly reduced in homozygous (megalin-/-) mice, which, more importantly, were found to be hypothyroid, as demonstrated by significantly reduced serum free thyroxine and significantly increased serum thyroid stimulating hormone (TSH) levels. In heterozygous (megalin+/-) mice, in which megalin expression was normal, thyroid function was unaffected. Although the serological phenotype in megalin-/- mice was not associated with histological alterations or goiter, our results support a major role of megalin in thyroid hormone secretion.

Animals↗

Kidney expression of RhoA, TGF-beta1, and fibronectin in human IgA nephropathy.

BACKGROUND: The Rho/transforming growth factor-beta (TGF-beta) system plays a crucial role in the progression of renal damage due to stimulation of extracellular matrix molecule deposition. In fact, the in vitro TGF-beta-mediated production of fibronectin, one of the major TGF-beta-regulated extracellular components, has recently been correlated with Rho protein signalling molecules. Although a close relationship between increased renal tissue levels of TGF-beta1 and fibronectin has been reported in IgA nephropathy, no data are available on renal tissue expression of Rho proteins. METHODS: This study was designed to assess in IgA nephropathy patients the kidney tissue immunohistochemical expression of RhoA, TGF-beta1, and fibronectin, and the rate of immunoreactivity for each antigen by image analysis. RESULTS: An increase in RhoA, TGF-beta1, and fibronectin expression was detected in tubulointerstitium and in glomeruli of IgA nephropathy compared to normal kidneys; in particular, RhoA was found also in proximal tubules, unlike control kidneys and mainly at the cell boundary level, which is in keeping with its activated form. The image analysis confirmed that the kidney tissue levels of RhoA, TGF-beta1, and fibronectin were significantly enhanced in the patients. CONCLUSION: This study suggests that RhoA may represent a key molecule in the signalling transduction pathway of profibrotic signals in IgA nephropathy.

Adolescent↗

RET/PTC3 rearrangement and thyroid differentiation gene analysis in a struma ovarii fortuitously revealed by elevated serum thyroglobulin concentration.

Struma ovarii (SO) is usually asymptomatic and only in a few cases it is associated with thyrotoxicosis. The presurgical diagnosis is very uncommon. In the majority of cases a pelvic mass is discovered at physical examination or by abdominal ultrasound. Only the hystopathologic examination is able to reveal the characteristic features of SO, with thyroid cells organized in follicles as the main tumoral tissue constituent. The histologic recognition of malignancy is not easy and usually requires an exhaustive sampling of the lesion to evaluate the extracapsular invasion. We report the case of a 59-year-old woman who came to our observation for the fortuitous finding of elevated serum thyroglobulin (Tg) levels (600-800 ng/mL). Because the thyroid function was normal and the ultrasound showed only a subcentrimetric nodule, the clinical suspicious of a SO was considered. Ultrasound examination of the abdomen showed a solid mass of 2 cm in the left ovary. A (131)I uptake was observed at scintiscan in the site of the solid mass. Three months after the resection of the left ovary serum Tg levels were markedly reduced (106 ng/mL), and its values continued to decrease down to 34 ng/mL at last control. The histology showed that the ovarian mass was mainly constituted of thyroid tissue (98%), with no malignant features. The molecular analysis of several thyroid differentiation gene mRNAs in the SO tissue showed an abundant expression of all genes but pendrin (PDS). A reduced PDS mRNA expression might explain the defective thyroxine (T(4)) production. Despite the absence of malignant features, the expression of RET/PTC3 rearrangement was found, raising the possibility of a potential malignant nature of the tumor. A cancer-free period of 3-4 years, as in our patient, is not long enough to definitively exclude a late onset metastatic disease but, unfortunately, the patient died of nonmedical reasons. In conclusion, we report a case of SO that, to our knowledge, is the first in which the clinical suspicion arose from the inappropriately elevated presurgical serum levels of Tg. A quite exhaustive molecular analysis of thyroid specific genes and oncogenes provided two interesting findings: the low PDS mRNA expression, which may explain the low hormonal production and the absence of thyrotoxicosis and the presence of a RET/PTC3 rearrangement, which prompts the possibility of a late malignant evolution.

Female↗

Glycosaminoglycans provide a binding site for thyroglobulin in orbital tissues of patients with thyroid-associated ophthalmopathy.

The presence of thyroglobulin (Tg) in orbital tissues of patients with thyroid-associated ophthalmopathy (TAO) supports a role of Tg in TAO pathogenesis. To search for Tg-binding sites in orbital tissues, because Tg is a heparin-binding protein, we investigated its binding to glycosaminoglycans (GAGs) that are abundant in orbital tissues: chondroitin sulfate B (CSB) and C (CSC) and hyaluronic acid (HA). Both in solid phase and solution phase assays purified human Tg bound to GAGs. In solid-phase assays, binding was increased by coincubation with heparin or GAGs in solution, or with an antibody against a Tg heparin-binding sequence (Arg2489-Glu2503), possibly suggesting crosslinking of Tg molecules induced by GAGs or by the presumably bivalent antibody. Orbital tissue extracts from TAO patients that contained Tg were subjected to high-salt treatment, which resulted in separation of Tg from GAGs, as observed by column chromatography. After separation from GAGs, the Tg in orbital tissue extracts acquired the ability to bind to immobilized CSB, and heparin enhanced binding, resembling the findings with purified human Tg. Therefore, we conclude that GAGs provide binding sites for Tg in orbital tissues, which may explain the presence of Tg in orbital tissues of patients with TAO.

Adipose Tissue↗

Long-term safety of orbital radiotherapy for Graves' ophthalmopathy.

We investigated the long-term side-effects of orbital radiotherapy (OR) in 204 patients with Graves' ophthalmopathy (GO), irradiated from 1972-1996 [44 by cobalt unit (CU) and 160 by linear accelerator (LA), mostly combined with glucocorticoids], with a 5- to 25-yr follow-up (median, 11 yr). Cataract was observed in 21 patients (10%) 3-21 yr after OR, with a higher (not significant) prevalence in CU-treated patients (18% vs. 8% in LA-treated patients). The prevalence of cataract was higher, although not significantly, in CU-treated patients aged less than 60 yr, but not in LA-treated patients, compared with the general population. Mild, asymptomatic retinopathy was observed in 1 of 7 patients (14%) with diabetes and hypertension, in 1 of 31 patients (3%) with hypertension alone, and in 0 of 11 patients with diabetes alone. No tumors were observed in 157 patients submitted to computed tomography scan of orbital and adjacent regions. In conclusion, OR is a safe treatment, not associated with an increased frequency of cataract, provided a high voltage apparatus is used. Hypertension, especially if associated with diabetes, may represent a relative contraindication, as it may cause retinopathy. Although no secondary tumors were detected, due to the long latency of radiation-induced tumors, OR should be restricted to patients older than 35 yr.

Adolescent↗

Thyroglobulin in orbital tissues from patients with thyroid-associated ophthalmopathy: predominant localization in fibroadipose tissue.

UNLABELLED: One of the hypotheses that explains the pathogenesis of thyroid-associated ophthalmopathy (TAO) is that thyroglobulin (Tg) is transported through a retrograde lymphatic route to orbital tissues (OT), where it elicits autoimmune damage. In a previous study we demonstrated the presence of intact Tg of thyroid origin in OT from three patients with TAO. The present study was undertaken to investigate this issue further, by increasing the number of patients, by analyzing the distribution of Tg in OT, and by investigating possible relations between the presence of Tg in OT and the clinical features of patients. OT was obtained from seven patients with TAO who underwent decompressive orbitotomy via a transpalpebral approach. Patients were designated P10 to P16. Inflamed palpebral skin, retrobulbar fibroadipose tissue and extraocular muscle surgical samples were collected separately. Tissue extracts were prepared by homogenization and analyzed for the presence of Tg using two different techniques. We first performed immunoprecipitation experiments, in which a rabbit polyclonal anti-Tg antibody was used to capture Tg on protein A and a mouse monoclonal anti-Tg antibody was used to re-veal captured Tg by Western blotting. Intact 330-kd Tg was detected in retrobulbar fibroadipose tissue extracts from three patients (P10, P11, and P16), whereas no Tg was detected in retrobulbar fibroadipose tissue extracts from the remaining four patients. Tg was not detected in the extraocular muscle extracts from all patients studied. In addition, intact 330-kd Tg was found in the inflamed palpebral skin extract from one patient (P10). No Tg was detected in OT extracts from two patients without thyroid or eye disease and in abdominal adipose tissue extracts from two obese patients without thyroid or eye disease. We then searched for Tg by enzyme-linked immunosorbent assay (ELISA), using the same antibodies used for immunoprecipitation. Tg was detected in retrobulbar fibroadipose tissue extracts from four patients (P10, P11, P12, and P16) and in the inflamed palpebral skin extract from patient P10, in amounts ranging from approximately 125 to approximately 400 pg/microg of tissue protein. Again, Tg was not detected in extraocular muscle extracts. A positive gradient between Tg in OT and Tg in the serum was observed in patient P12. Using an ELISA approach, we found that Tg in OT from three TAO patients (P10, P11, and P12) contained thyroxine (T4) residues (mean T(4) CONTENT: 2.42 molecules per molecule of Tg), indicating that Tg had originated in the thyroid. Combining the results obtained in our previous and present study, we found a possible relation between the presence of Tg in OT and the previous treatment with radioiodine. Thus, of the seven patients (3 in the previous and 4 in the present study) in whose OT Tg was found, six had been treated with radioiodine, whereas of the three patients with no Tg in their OT none had been treated with radioiodine. In conclusion, Tg was found in OT extracts from patients with TAO by immunoprecipitation in three of seven cases and by ELISA in four of seven cases. Tg was found in retrobulbar fibroadipose tissue, but not in extraocular muscles. There was a relation between the presence of Tg in OT and the previous treatment with radioiodine. Our results support the hypothesis that Tg may play a role as a coantigen in the pathogenesis of TAO. Further studies are needed to investigate this possibility.

Adipose Tissue↗

Binding of heparin to human thyroglobulin (Tg) involves multiple binding sites including a region corresponding to a binding site of rat Tg.

OBJECTIVE: Binding of thyroglobulin (Tg) to heparin allows efficient Tg interaction with its endocytic receptor, megalin. Rat Tg (rTg) binds to heparin using an exposed carboxyl terminal region (RELPSRRLKRPLPVK, Arg2489-Lys2503) rich in positively charged residues which is, however, not entirely conserved in human Tg (hTg) (Arg2489-Glu2503, REPPARALKRSLWVE). Here, we investigated whether and how this difference affects binding of heparin. DESIGN: To compare binding of heparin to rTg and hTg. To investigate the role of the sequence 2489-2503 using a peptide-based approach. METHODS: Binding of biotin-labeled heparin to rTg, hTg and to Tg peptides was measured in solid phase assays. RESULTS: Heparin bound to rTg with moderately high affinity (K(d): 34.2 nmol/l, K(i): 37.6 nmol/l) and to hTg with lower affinity (K(d): 118 nmol/l, K(i): 480 nmol/l) and to a lower extent. Binding was dose-dependent and saturable, and was reduced by several specific competitors (Tg itself, unlabeled heparin, lactoferrin). Heparin bound to synthetic peptides corresponding to the rat (rTgP) and to the human (hTgP) Tg sequence 2489-2503. Heparin bound to rTgP to a greater extent and with greater affinity than to hTgP. An antibody against hTgP reduced binding of heparin to intact hTg by 30%, suggesting that in hTg this region is, in part, involved in heparin binding, but also that other regions account for most of the binding. Starting from the sequence of rTgP, we designed 6 synthetic 'mutant' peptides by replacing one amino acid residue of rTgP with the corresponding residue of the sequence of hTgP. Heparin bound to 5 of 6 mutant peptides to a lower extent and with lower affinity than to rTgP. CONCLUSIONS: In spite of a reduced binding ability of the sequence 2489-2503, hTg binds to heparin, in part, using alternative, as yet unidentified, binding sites. Substitution of both positive and neutral residues within the sequence 2489-2503 reduced heparin-binding, suggesting that not only charge, but also sequence and/or conformation, may account for the heparin-binding ability of this region of Tg.

Adolescent↗