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Journal Abstract Search


250 related items for PubMed ID: 31809508

  • 1. Intracerebroventricular administration of the thyroid hormone analog TRIAC increases its brain content in the absence of MCT8.
    Bárez-López S, Grijota-Martínez C, Liao XH, Refetoff S, Guadaño-Ferraz A.
    PLoS One; 2019; 14(12):e0226017. PubMed ID: 31809508
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  • 2. Intracerebroventricular High Doses of 3,3',5-Triiodothyroacetic Acid at Juvenile Stages Improve Peripheral Hyperthyroidism and Mediate Thyromimetic Effects in Limited Brain Regions in a Mouse Model of Monocarboxylate Transporter 8 Deficiency.
    Grijota-Martínez C, Montero-Pedrazuela A, Hidalgo-Álvarez J, Bárez-López S, Guadaño-Ferraz A.
    Thyroid; 2023 Apr; 33(4):501-510. PubMed ID: 36565029
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  • 3. Adult Mice Lacking Mct8 and Dio2 Proteins Present Alterations in Peripheral Thyroid Hormone Levels and Severe Brain and Motor Skill Impairments.
    Bárez-López S, Grijota-Martínez C, Ausó E, Fernández-de Frutos M, Montero-Pedrazuela A, Guadaño-Ferraz A.
    Thyroid; 2019 Nov; 29(11):1669-1682. PubMed ID: 31359845
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  • 4. 3,3',5-Triiodothyroacetic Acid Transporters.
    Chen Z, Yildiz S, Markova B, de Rooij LJ, Leeuwenburgh S, Hamers T, Peeters RP, Heuer H, Meima ME, Visser WE.
    Thyroid; 2024 Aug; 34(8):1027-1037. PubMed ID: 38836423
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  • 5. Effect of Triiodothyroacetic Acid Treatment in Mct8 Deficiency: A Word of Caution.
    Bárez-López S, Obregon MJ, Martínez-de-Mena R, Bernal J, Guadaño-Ferraz A, Morte B.
    Thyroid; 2016 May; 26(5):618-26. PubMed ID: 26701289
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  • 10. Impact of Early Intervention with Triiodothyroacetic Acid on Peripheral and Neurodevelopmental Findings in a Boy with MCT8 Deficiency.
    Ünsal Y, Hayran G.
    J Clin Res Pediatr Endocrinol; 2024 Mar 11; 16(1):116-122. PubMed ID: 38054413
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  • 11. Long-Term Efficacy of T3 Analogue Triac in Children and Adults With MCT8 Deficiency: A Real-Life Retrospective Cohort Study.
    van Geest FS, Groeneweg S, van den Akker ELT, Bacos I, Barca D, van den Berg SAA, Bertini E, Brunner D, Brunetti-Pierri N, Cappa M, Cappuccio G, Chatterjee K, Chesover AD, Christian P, Coutant R, Craiu D, Crock P, Dewey C, Dica A, Dimitri P, Dubey R, Enderli A, Fairchild J, Gallichan J, Garibaldi LR, George B, Hackenberg A, Heinrich B, Huynh T, Kłosowska A, Lawson-Yuen A, Linder-Lucht M, Lyons G, Monti Lora F, Moran C, Müller KE, Paone L, Paul PG, Polak M, Porta F, Reinauer C, de Rijke YB, Seckold R, Menevşe TS, Simm P, Simon A, Spada M, Stoupa A, Szeifert L, Tonduti D, van Toor H, Turan S, Vanderniet J, de Waart M, van der Wal R, van der Walt A, van Wermeskerken AM, Wierzba J, Zibordi F, Zung A, Peeters RP, Visser WE.
    J Clin Endocrinol Metab; 2022 Feb 17; 107(3):e1136-e1147. PubMed ID: 34679181
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  • 13. Changes in thyroid status during perinatal development of MCT8-deficient male mice.
    Ferrara AM, Liao XH, Gil-Ibáñez P, Marcinkowski T, Bernal J, Weiss RE, Dumitrescu AM, Refetoff S.
    Endocrinology; 2013 Jul 17; 154(7):2533-41. PubMed ID: 23696569
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  • 14. Mice deficient in MCT8 reveal a mechanism regulating thyroid hormone secretion.
    Di Cosmo C, Liao XH, Dumitrescu AM, Philp NJ, Weiss RE, Refetoff S.
    J Clin Invest; 2010 Sep 17; 120(9):3377-88. PubMed ID: 20679730
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  • 16. Identification of Human TRIAC Transmembrane Transporters.
    Becker PC, Güth-Steffens M, Lazarow K, Sonntag N, Braun D, Masfaka I, Renko K, Schomburg L, Köhrle J, von Kries JP, Schweizer U, Krause G, Protze J.
    Thyroid; 2024 Jul 17; 34(7):920-930. PubMed ID: 38801167
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  • 17. Sobetirome and its Amide Prodrug Sob-AM2 Exert Thyromimetic Actions in Mct8-Deficient Brain.
    Bárez-López S, Hartley MD, Grijota-Martínez C, Scanlan TS, Guadaño-Ferraz A.
    Thyroid; 2018 Sep 17; 28(9):1211-1220. PubMed ID: 29845892
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