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  1. 1.   Functionally diverse thymic medullary epithelial cells interplay to direct central tolerance
  2. Ushio, Aya; Matsuda-Lennikov, Mami; Kalle-Youngoue,Felix; Shimizu, Akihide; Abdelmaksoud, Abdalla; Kelly, Michael C; Ishimaru, Naozumi; Takahama, Yousuke
  3. Cell Reports. 2024, Apr 05; 43(4): 114072.
  1. 2.   Developmental conversion of thymocyte-attracting cells into self-antigen-displaying cells in embryonic thymus medulla epithelium
  2. Ohigashi, Izumi; White, Andrea J; Yang, Mei-Ting; Fujimori, Sayumi; Tanaka, Yu; Jacques, Alison; Kiyonari, Hiroshi; Matsushita, Yosuke; Turan,Sevilay; Kelly, Michael C; Anderson, Graham; Takahama, Yousuke
  3. eLife. 2024, Mar 11; 12
  1. 3.   Psychosocial Characteristics and Experiences in Patients with Multiple Endocrine Neoplasia Type 2 (MEN2) and Medullary Thyroid Carcinoma (MTC)
  2. Lockridge,Robin; Bedoya, Sima; Allen, Taryn; Widemann, Brigitte C; Akshintala, Srivandana; Glod, John; Wiener, Lori
  3. Children (Basel, Switzerland). 2022, May 25; 9(6):
  1. 4.   Multiple Endocrine Neoplasia Type 2B Presents Early in Childhood but Often Is Undiagnosed for Years
  2. Makri, Angeliki; Akshintala, Srivandana; Derse-Anthony, Claudia; Widemann, Brigitte; Stratakis, Constantine A.; Glod, John; Lodish, Maya
  3. JOURNAL OF PEDIATRICS. 2018, DEC; 203: 447-449.
  1. 5.   Pregnancy on vandetanib in metastatic medullary thyroid carcinoma associated with multiple endocrine neoplasia type 2B
  2. Thomas, Nicholas; Glod, John; Derse-Anthony, Claudia; Baple, Emma L; Obsborne, Nigel; Sturley, Rachel; Vaidya, Bijay; Newbold, Kate; Brooke, Antonia
  3. Clinical endocrinology. 2018, May; (5): 754-756.
  1. 6.   Absence of Ndn, encoding the Prader-Willi syndrome-deleted gene necdin, results in congenital deficiency of central respiratory drive in neonatal mice
  2. Ren, J.; Lee, S.; Pagliardini, S.; Gerard, M.; Stewart, C. L.; Greer, J. J.; Wevrick, R.
  3. Journal of Neuroscience. 2003 23(5): 1569-1573.
  1. 7.   Neurotrophin-3 modulates noradrenergic neuron function and opiate withdrawal
  2. Akbarian, S.; Bates, B.; Liu, R. J.; Skirboll, S. L.; Pejchal, T.; Coppola, V.; Sun, L. D.; Fan, G.; Kucera, J.; Wilson, M. A.; Tessarollo, L.; Kosofsky, B. E.; Taylor, J. R.; Bothwell, M.; Nestler, E. J.; Aghajanian, G. K.; Jaenisch, R.
  3. Molecular Psychiatry. 2001 6(5): 593-604.
  1. 8.   Pathophysiology of a sickle cell trait mouse model: Human alpha beta(S) transgenes with one mouse beta-globin allele
  2. Noguchi, C. T.; Gladwin, M.; Diwan, B.; Merciris, P.; Smith, R.; Yu, X. B.; Buzard, G.; Fitzhugh, A.; Keefer, L. K.; Schechter, A. N.; Moh, as
  3. Blood Cells Molecules and Diseases. 2001 27(6): 971-977.
  1. 9.   Germline and Somatic Mutations in the Tyrosine Kinase Domain of the Met Proto-Oncogene in Papillary Renal Carcinomas
  2. Schmidt, L.; Duh, F. M.; Chen, F.; Kishida, T.; Glenn, G.; Choyke, P.; Scherer, S. W.; Zhuang, Z. P.; Lubensky, I.; Dean, M.; Allikmets, R.; Chidambaram, A.; Bergerheim, U. R.; Feltis, J. T.; Casadevall, C.; Zamarron, A.; Bernues, M.; Richard, S.; Lips, C. J. M.; Walther, M. M.; Tsui, L. C.; Geil, L.; Orcutt, M. L.; Stackhouse, T.; Lipan, J.
  3. Nature Genetics. 1997 16(1): 68-73.
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