Terms: = Thyroid cancer AND PPARG, PPARG1, 5468, ENSG00000132170, PPARG2, NR1C3, HUMPPARG
80 results:
1. Prediction of potential mechanisms of rhubarb therapy for colorectal cancer based on network pharmacological analysis and molecular docking.
Yang F; Li X; Zhang Y; Ren Y; Zhang J; Xiao K
Medicine (Baltimore); 2024 Mar; 103(12):e37477. PubMed ID: 38518016
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2. Clinical value of multi-gene testing in distinguishing benign and malignant thyroid nodules.
Zhang M; Hu X; Liu L; Wang Y; Jiang J; Li H; Fei W; Zhong T; Jiang Z
Medicine (Baltimore); 2024 Jan; 103(4):e35960. PubMed ID: 38277563
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3. Detection of driver mutations in plasma cell-free nucleic acids in differentiated thyroid neoplasm.
Dutta S; Tarafdar S; Mukhopadhyay P; Bhattacharyya NP; Ghosh S
Eur J Endocrinol; 2023 Jan; 188(1):. PubMed ID: 36744987
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4. Clinicopathological significance of major fusion oncogenes in papillary thyroid carcinoma: An individual patient data meta-analysis.
Vuong HG; Le HT; Le TTB; Le T; Hassell L; Kakudo K
Pathol Res Pract; 2022 Dec; 240():154180. PubMed ID: 36306725
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5. Relationship of
Asya O; Yumuşakhuylu AC; Bağcı P; Kaya H; Gönen A; Gündoğdu Y; Muradov T; Şahin A; Oysu Ç
Acta Otorhinolaryngol Ital; 2022 Feb; 42(1):34-40. PubMed ID: 35292786
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6. Testing of mutations on thyroid nodules with indeterminate cytology: A prospective study of 112 patients in Argentina.
Tolaba N; Spedalletti Y; Bazzoni P; Galindez M; Cerioni V; Santillan C; Richter G; Herrera C; Sanchez L; Van Cawulaert L; Toscano MA; Nallar M; Monteros Alvi M; Moya CM
Endocrinol Diabetes Nutr (Engl Ed); 2022 Feb; 69(2):122-130. PubMed ID: 35256055
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7. The initial expression alterations occurring to transcription factors during the formation of breast cancer: Evidence from bioinformatics.
Dong X; Yang Y; Xu G; Tian Z; Yang Q; Gong Y; Wu G
Cancer Med; 2022 Mar; 11(5):1371-1395. PubMed ID: 35037412
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8. High Prevalence of DICER1 Mutations and Low Frequency of Gene Fusions in Pediatric Follicular-Patterned Tumors of the thyroid.
Bae JS; Jung SH; Hirokawa M; Bychkov A; Miyauchi A; Lee S; Chung YJ; Jung CK
Endocr Pathol; 2021 Sep; 32(3):336-346. PubMed ID: 34313965
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9. Identification of hub genes in thyroid carcinoma to predict prognosis by integrated bioinformatics analysis.
Pan Y; Wu L; He S; Wu J; Wang T; Zang H
Bioengineered; 2021 Dec; 12(1):2928-2940. PubMed ID: 34167437
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10. Integrative analysis of key candidate genes and signaling pathways in autoimmune thyroid dysfunction related to anti-CTLA-4 therapy by bioinformatics.
Zhang Y; Garofano F; Wu X; Schmid M; Krawitz P; Essler M; Schmidt-Wolf IGH
Invest New Drugs; 2020 Dec; 38(6):1717-1729. PubMed ID: 32500465
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11. Visceral Metastasis: A Prognostic Factor of Survival in Patients with Spinal Metastases.
Lun DX; Chen NW; Feng JT; Yang XG; Xu ZW; Li F; Hu YC
Orthop Surg; 2020 Apr; 12(2):552-560. PubMed ID: 32227458
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12. miRNA expression can classify pediatric thyroid lesions and increases the diagnostic yield of mutation testing.
Franco AT; Labourier E; Ablordeppey KK; Surrey LF; Mostoufi-Moab S; Isaza A; Adzick NS; Kazahaya K; Kumar G; Bauer AJ
Pediatr Blood Cancer; 2020 Jun; 67(6):e28276. PubMed ID: 32196952
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13. A Novel Risk Stratification System for thyroid Nodules With Indeterminate Cytology-A Pilot Cohort Study.
Gomes-Lima CJ; Auh S; Thakur S; Zemskova M; Cochran C; Merkel R; Filie AC; Raffeld M; Patel SB; Xi L; Wartofsky L; Burman KD; Klubo-Gwiezdzinska J
Front Endocrinol (Lausanne); 2020; 11():53. PubMed ID: 32132976
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14. Evaluation of BRAF, RAS, RET/PTC, and PAX8/pparg alterations in different Bethesda diagnostic categories: A multicentric prospective study on the validity of the 7-gene panel test in 1172 thyroid FNAs deriving from different hospitals in South Italy.
Bellevicine C; Migliatico I; Sgariglia R; Nacchio M; Vigliar E; Pisapia P; Iaccarino A; Bruzzese D; Fonderico F; Salvatore D; Biondi B; Masone S; Novizio V; Scavuzzo F; Serino D; De Palma M; Chiofalo MG; Botti G; Pezzullo L; Nuzzo V; Spiezia S; De Chiara G; Iorio S; Conzo G; Docimo G; Faggiano A; Bongiovanni M; Malapelle U; Colao A; Triassi M; Troncone G;
Cancer Cytopathol; 2020 Feb; 128(2):107-118. PubMed ID: 31821746
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15. Hobnail cells in encapsulated papillary thyroid carcinoma: Report of 2 cases with immunohistochemical and molecular findings and literature analysis.
Agarwal S; Sadiq Q; Ortanca I
Pathol Res Pract; 2020 Mar; 216(3):152678. PubMed ID: 31740230
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16. Macrofollicular Variant of Follicular thyroid Carcinoma: A Rare Underappreciated Pitfall in the Diagnosis of thyroid Carcinoma.
Bongiovanni M; Sykiotis GP; La Rosa S; Bisig B; Trimech M; Missiaglia E; Gremaud M; Salvatori Chappuis V; De Vito C; Sciarra A; Foulkes WD; Pusztaszeri M
Thyroid; 2020 Jan; 30(1):72-80. PubMed ID: 31701808
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17. Molecular Variants and Their Risks for Malignancy in Cytologically Indeterminate thyroid Nodules.
Goldner WS; Angell TE; McAdoo SL; Babiarz J; Sadow PM; Nabhan FA; Nasr C; Kloos RT
Thyroid; 2019 Nov; 29(11):1594-1605. PubMed ID: 31469053
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18. Hürthle cell lesions on thyroid fine needle aspiration cytology: Molecular and histologic correlation.
Schatz-Siemers N; Brandler TC; Oweity T; Sun W; Hernandez A; Levine P
Diagn Cytopathol; 2019 Oct; 47(10):977-985. PubMed ID: 31293091
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19. Mutational profiling of poorly differentiated and anaplastic thyroid carcinoma by the use of targeted next-generation sequencing.
Duan H; Li Y; Hu P; Gao J; Ying J; Xu W; Zhao D; Wang Z; Ye J; Lizaso A; He Y; Wu H; Liang Z
Histopathology; 2019 Dec; 75(6):890-899. PubMed ID: 31230400
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20. Nuclear Receptors Are Differentially Expressed and Activated in KAIMRC1 Compared to MCF7 and MDA-MB231 Breast cancer Cells.
Nehdi A; Ali R; Alhallaj A; Alzahrani H; Samman N; Mashhour A; Baz O; Barhoumi T; Alghanem B; Khan A; Alriyees L; Boudjelal M
Molecules; 2019 May; 24(11):. PubMed ID: 31141879
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