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1. 2-iodohexadecanal induces autophagy during goiter involution.

2. Valproic acid radiosensitizes anaplastic thyroid cells through a decrease of the DNA damage repair capacity.

3. A Potential Boron Neutron Capture Therapy Agent Selectively Suppresses High-Grade Glioma: In Vitro and in Vivo Exploration.

4. Bimodal Therapeutic Agents Against Glioblastoma, One of the Most Lethal Forms of Cancer.

5. Experimental studies of boron neutron capture therapy (BNCT) using histone deacetylase inhibitor (HDACI) sodium butyrate, as a complementary drug for the treatment of poorly differentiated thyroid cancer (PDTC).

6. Closo -Carboranyl- and Metallacarboranyl [1,2,3]triazolyl-Decorated Lapatinib-Scaffold for Cancer Therapy Combining Tyrosine Kinase Inhibition and Boron Neutron Capture Therapy.

7. Radiosensitivity enhancement of human thyroid carcinoma cells by the inhibitors of histone deacetylase sodium butyrate and valproic acid.

8. In vitro studies of DNA damage and repair mechanisms induced by BNCT in a poorly differentiated thyroid carcinoma cell line.

9. Experimental Studies of Boronophenylalanine ((10)BPA) Biodistribution for the Individual Application of Boron Neutron Capture Therapy (BNCT) for Malignant Melanoma Treatment.

10. Assessment of biological effectiveness of boron neutron capture therapy in primary and metastatic melanoma cell lines.

11. Protective effect of an antithyroid compound against γ-radiation-induced damage in human colon cancer cells.

12. Protection against radiation-induced damage of 6-propyl-2-thiouracil (PTU) in thyroid cells.

13. First evaluation of the biologic effectiveness factors of boron neutron capture therapy (BNCT) in a human colon carcinoma cell line.

14. Biochemical changes during goiter induction by methylmercaptoimidazol and inhibition by delta-iodolactone in rat.

15. 6 Iodo-delta-lactone reproduces many but not all the effects of iodide.

16. Inhibition of goiter growth and of cyclic AMP formation in rat thyroid by 2-iodohexadecanal.

17. Optimization of boron neutron capture therapy for the treatment of undifferentiated thyroid cancer.

18. Boron neutron capture therapy in cancer: past, present and future.

19. Nicotinamide increases thyroid radiosensitivity by stimulating nitric oxide synthase expression and the generation of organic peroxides.

20. [Boron neutron capture therapy applied to undifferentiated thyroid carcinoma].

21. Biodistribution of boron compounds in an animal model of human undifferentiated thyroid cancer for boron neutron capture therapy.

22. Biodistribution of p-borophenylalanine (BPA) in dogs with spontaneous undifferentiated thyroid carcinoma (UTC).

23. Boron neutron capture therapy for undifferentiated thyroid carcinoma: preliminary results with the combined use of BPA and BOPP.

24. First BNCT treatment of a skin melanoma in Argentina: dosimetric analysis and clinical outcome.

25. Experimental application of boron neutron capture therapy to undifferentiated thyroid carcinoma.

26. A new animal model for human undifferentiated thyroid carcinoma.

27. Selective uptake of p-borophenylalanine by undifferentiated thyroid carcinoma for boron neutron capture therapy.

28. The effect of chronic intraperitoneal infusion of bacterial endotoxin on exocrine pancreas function in rats.

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