77 research outputs found

    Functional characterization of human thyroid tissue with immunohistochemistry

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    Immunohistochemistry provides insights in the expression of functional proteins and of their localization in normal thyroid tissue and in thyroid diseases. In hyperfunctional thyroid tissues, staining for sodium/iodide symporter (NIS), pendrin, thyroid peroxidase (TPO), and thyroglobulin (Tg) is increased. In hypofunctioning thyroid tissues, NIS staining is markedly decreased; in benign hypofunctioning adenomas, the expression of the other functional proteins is unmodified or slightly decreased, whereas their expression is profoundly decreased or absent in differentiated thyroid carcinoma

    Gene expression signature discriminates sporadic from post-radiotherapy-induced thyroid tumors

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    Both external and internal exposure to ionizing radiation are strong risk factors for the development of thyroid tumors. Until now, the diagnosis of radiation-induced thyroid tumors has been deduced from a network of arguments taken together with the individual history of radiation exposure. Neither the histological features nor the genetic alterations observed in these tumors have been shown to be specific fingerprints of an exposure to radiation. The aim of our work is to define ionizing radiation-related molecular specificities in a series of secondary thyroid tumors developed in the radiation field of patients treated by radiotherapy. To identify molecular markers that could represent a radiation-induction signature, we compared 25K microarray transcriptome profiles of a learning set of 28 thyroid tumors, which comprised 14 follicular thyroid adenomas (FTA) and 14 papillary thyroid carcinomas (PTC), either sporadic or consecutive to external radiotherapy in childhood. We identified a signature composed of 322 genes which discriminates radiation-induced tumors (FTA and PTC) from their sporadic counterparts. The robustness of this signature was further confirmed by blind case-by-case classification of an independent set of 29 tumors (16 FTA and 13 PTC). After the histology code break by the clinicians, 26/29 tumors were well classified regarding tumor etiology, 1 was undetermined, and 2 were misclassified. Our results help shed light on radiation-induced thyroid carcinogenesis, since specific molecular pathways are deregulated in radiation-induced tumors

    Increased expression of AP2 and Sp1 transcription factors in human thyroid tumors: a role in NIS expression regulation?

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    BACKGROUND: Sodium/iodide symporter (NIS) is a key protein in iodide transport by thyroid cells and this activity is a prerequisite for effective radioiodide treatment of thyroid cancer. In the majority of thyroid cancers, however, iodide uptake is reduced, probably as a result of decreased NIS protein expression. METHODS: To identify the mechanisms that negatively affect NIS expression in thyroid tumors, we performed electrophoresis mobility shift assays and immunoblot analysis of nuclear protein extracts from normal and tumoral thyroid tissues from 14 unrelated patients. RESULTS: Two proteins closely related to the transcription factors AP2 and Sp1 were identified in the nuclear extracts. Expression of both AP2 and Sp1 in nuclear extracts from thyroid tumors was significantly higher than that observed in corresponding normal tissues. CONCLUSION: These observations raise the possibility that NIS expression, and subsequently iodide transport, are reduced in thyroid tumors at least in part owing to alterations in the binding activity of AP2 and Sp1 transcription factors to NIS promoter

    Hes1 Is Required for Appropriate Morphogenesis and Differentiation during Mouse Thyroid Gland Development

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    Notch signalling plays an important role in endocrine development, through its target gene Hes1. Hes1, a bHLH transcriptional repressor, influences progenitor cell proliferation and differentiation. Recently, Hes1 was shown to be expressed in the thyroid and regulate expression of the sodium iodide symporter (Nis). To investigate the role of Hes1 for thyroid development, we studied thyroid morphology and function in mice lacking Hes1. During normal mouse thyroid development, Hes1 was detected from E9.5 onwards in the median anlage, and at E11.5 in the ultimobranchial bodies. Hes1−/− mouse embryos had a significantly lower number of Nkx2-1-positive progenitor cells (p<0.05) at E9.5 and at E11.5. Moreover, Hes1−/− mouse embryos showed a significantly smaller total thyroid surface area (−40 to −60%) compared to wild type mice at all study time points (E9.5−E16.5). In both Hes1−/− and wild type mouse embryos, most Nkx2-1-positive thyroid cells expressed the cell cycle inhibitor p57 at E9.5 in correlation with low proliferation index. In Hes1−/− mouse embryos, fusion of the median anlage with the ultimobranchial bodies was delayed by 3 days (E16.5 vs. E13.5 in wild type mice). After fusion of thyroid anlages, hypoplastic Hes1−/− thyroids revealed a significantly decreased labelling area for T4 (−78%) and calcitonin (−65%) normalized to Nkx2-1 positive cells. Decreased T4-synthesis might be due to reduced Nis labelling area (−69%). These findings suggest a dual role of Hes1 during thyroid development: first, control of the number of both thyrocyte and C-cell progenitors, via a p57-independent mechanism; second, adequate differentiation and endocrine function of thyrocytes and C-cells

    Tumor-Associated Macrophages (TAMs) Form an Interconnected Cellular Supportive Network in Anaplastic Thyroid Carcinoma

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    BACKGROUND: A relationship between the increased density of tumor-associated macrophages (TAMs) and decreased survival was recently reported in thyroid cancer patients. Among these tumors, anaplastic thyroid cancer (ATC) is one of the most aggressive solid tumors in humans. TAMs (type M2) have been recognized as promoting tumor growth. The purpose of our study was to analyze with immunohistochemistry the presence of TAMs in a series of 27 ATC. METHODOLOGY/PRINCIPAL FINDINGS: Several macrophages markers such as NADPH oxidase complex NOX2-p22phox, CD163 and CD 68 were used. Immunostainings showed that TAMs represent more than 50% of nucleated cells in all ATCs. Moreover, these markers allowed the identification of elongated thin ramified cytoplasmic extensions, bestowing a "microglia-like" appearance on these cells which we termed "Ramified TAMs" (RTAMs). In contrast, cancer cells were totally negative. Cellular stroma was highly simplified since apart from cancer cells and blood vessels, RTAMs were the only other cellular component. RTAMs were evenly distributed and intermingled with cancer cells, and were in direct contact with other RTAMs via their ramifications. Moreover, RTAMs displayed strong immunostaining for connexin Cx43. Long chains of interconnected RTAMs arose from perivascular clusters and were dispersed within the tumor parenchyma. When expressed, the glucose transporter Glut1 was found in RTAMs and blood vessels, but rarely in cancer cells. CONCLUSION: ATCs display a very dense network of interconnected RTAMs in direct contact with intermingled cancer cells. To our knowledge this is the first time that such a network is described in a malignant tumor. This network was found in all our studied cases and appeared specific to ATC, since it was not found in differentiated thyroid cancers specimens. Taken together, these results suggest that RTAMs network is directly related to the aggressiveness of the disease via metabolic and trophic functions which remain to be determined

    Altérations géniques du métabolisme de l'iode au cours de la tumorigenèse thyroïdienne

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    LE KREMLIN-B.- PARIS 11-BU Méd (940432101) / SudocPARIS-BIUP (751062107) / SudocSudocFranceF

    Quelle stratégie pour les produits matures chez Sanofi-Synthélabo

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    PARIS-BIUP (751062107) / SudocSudocFranceF

    CARACTERISATION MOLECULAIRE DES FORMES METASTATIQUES DE CARCINOME MEDULLAIRE DE LA THYROÏDE

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    Le carcinome médullaire de la thyroïde (CMT) est une tumeur neuroendocrine rare, se développant à partir des cellules sécrétant la calcitonine. Cette tumeur survient dans un contexte familial dans un tiers des cas. Toutes les formes germinales et près de 40% des formes sporadiques sont causées par une mutation ponctuelle activatrice de l oncogène RET, codant pour un récepteur membranaire à activité tyrosine kinase. Les événements oncogéniques à l origine des formes sporadiques non mutées RET restent mal définis, à l exception de mutations activatrices des oncogènes RAS découvertes récemment.Le pronostic péjoratif du CMT est essentiellement lié à un envahissement ganglionnaire précoce. A ce titre, la chirurgie initiale est souvent insuffisante et les formes métastatiques ont longtemps été considérées en impasse thérapeutique. L avènement récent des inhibiteurs séléctifs de tyrosine kinases (ITK) a apporté un nouvel élan à la prise en charge des tumeurs réfractaires, certains d entre eux incluant dans leur spectre d action le récepteur RET. Mais l optimisation de ces traitements requiert une connaissance préalable des mécanismes moléculaires sous-jacents au développement tumoral.Dans ce contexte et en nous appuyant sur une collection importante de prélèvements humains, nous avons cherché à approfondir la decription du paysage génomique du CMT.Dans un premier temps, nous avons évalué les anomalies structurales ponctuelles et chromosomiques présentées par les CMT. Nous avons montré, par optimisation de méthodes de séquençage, que les mutations des gènes RET et RAS interviennent dans plus de 96% des cas et que ces évènements sont mutuellement exclusifs. Ces mutations permettent de distinguer plusieurs groupes d agressivité et de réponse aux traitements par ITK. Nous avons également observé - par technique d hybridation génomique comparative - des anomalies de grande ampleur récurrentes dans cette pathologie : les délétions du bras court du chromosome 1 et des chromosomes entiers 4 et 22 apparaissent comme étant des évènements précoces et indépendants de la tumorigenèse du CMT.Dans un second temps, nous avons déterminé - par approche de type biopuce - les profils d expression de microARN dans les CMT. Certains de ces régulateurs post-transcriptionnels majeurs semblent liés au caractère invasif de la tumeur, et notamment les miR-21, miR-199 et miR-129. Nous avons également démontré le potentiel d utilisation des microARN miR-21 et miR-199 en tant que biomarqueurs circulants du CMT. L impact fonctionnel des formes précurseurs mir-21 et mir-129 a ensuite été évalué par transfection dans les modèles cellulaires TT et MZ-CRC1.Les observations ainsi obtenues offrent de nombreuses perspectives d études. Elles permettent la définition de marqueurs tissulaires distinguant a priori les tumeurs métastatiques et/ou réfractaires aux thérapies. Enfin, elles mettent en lumière de nouvelles pistes pour la découverte de cibles thérapeutiques additionnelles dans cette pathologie.Medullary thyroid carcinoma (MTC) is a rare neuroendocrine tumor, arising from calcitonin-secreting cells. This cancer occurs in a family context in a third of cases. All inherited forms and nearly 40% of sporadic forms are caused by activating point-mutations in the RET oncogene, coding for a tyrosine-kinase receptor. Other oncogenic events causing sporadic cases remain unclear, but activating mutations of RAS oncogenes have been discovered recently.Prognosis of MTC is essentially linked to early lymph node occurrence. Initial surgery of metastatic forms is often insufficient and patients are considered in therapeutic dead-end. The recent advent of selective tyrosine-kinase inhibitors (TKIs) has brought a new impetus to the management of refractory tumors, some of them targeting the RET receptor. Optimization of these treatments require improving knowledge of the underlying molecular mechanisms of tumor development.In this context and helped by a large collection of human specimens, we have sought to deepen the description of genomic landscape of MTC.At first, we evaluated the structural and chromosomal abnormalities presented by MTC. We showed, by optimizing sequencing methods, that RET and RAS mutations are involved in over 96% of the cases, these events are mutually exclusives. These mutations can distinguish several groups of aggressiveness and of response to TKI treatments. We also observed, by comparative genomic hybridization techniques, recurrent abnormalities such as deletion of the short arm of chromosome 1 and loss of entire chromosomes 4 and 22. These losses appear to be early events of tumorigenesis MTC.In a second step, we determined - by a microarray approach the microRNA expression profile of MTC. Some of these post-transcriptional regulators seem related to tumor invasiveness, such as miR-21, miR-199 and miR-129. We demonstrated the potential of microRNAs miR-21 and miR-199 as circulating diagnosis biomarkers of MTC. The functional impact of the precursor forms mir-21 and mir-129 was then evaluated by transfection in TT and MZ- CRC1 cellular models.Observations obtained pave the way for a lot of new potential studies. They allow the definition of tissue biomarkers distinguishing metastatic forms or refractory patients. Finally, they highlight new pathways for the discovery of additional therapeutic targets in this disease.PARIS11-SCD-Bib. électronique (914719901) / SudocSudocFranceF

    Un exemple de thérapie moléculaire ciblée (l'imatinib mesylate (glivec®))

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    PARIS-BIUP (751062107) / SudocSudocFranceF
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