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251. [Current standards and novel developments in the treatment of neuroendocrine tumors of the gastroenteropancreatic system].

252. Radiation-Induced Amplification of TGFB1-Induced Mesenchymal Stem Cell-Mediated Sodium Iodide Symporter ( NIS ) Gene 131 I Therapy.

253. Dual-targeted NIS polyplexes-a theranostic strategy toward tumors with heterogeneous receptor expression.

254. [Thyroid nodules: What now?]

255. A Novel Approach for Image-Guided 131 I Therapy of Pancreatic Ductal Adenocarcinoma Using Mesenchymal Stem Cell-Mediated NIS Gene Delivery.

256. Supportive therapy in gastroenteropancreatic neuroendocrine tumors: Often forgotten but important.

257. Advanced neuroendocrine tumours of the small intestine and pancreas: clinical developments, controversies, and future strategies.

258. [Differentiated thyroid cancer - is less (therapy) more?]

259. Leveraging the immune system to treat advanced thyroid cancers.

260. The added value of 68 Ga-DOTA-TATE-PET to contrast-enhanced CT for primary site detection in CUP of neuroendocrine origin.

261. Establishment of an Effective Radioiodide Thyroid Ablation Protocol in Mice.

262. [Advanced radioiodine-refractory differentiated thyroid cancer].

263. Impact of (68)Ga-DOTATATE PET/CT on the surgical management of primary neuroendocrine tumors of the pancreas or ileum.

264. Advanced radioiodine-refractory differentiated thyroid cancer: the sodium iodide symporter and other emerging therapeutic targets.

265. Neuroendocrine tumor recurrence: diagnosis with 68Ga-DOTATATE PET/CT.

266. Best supportive care from the conservative/non-surgical perspective and its costs in the treatment of patients with advanced medullary thyroid cancer: results of a Delphi panel.

267. Neuroendocrine tumors of the bronchopulmonary system (typical and atypical carcinoid tumors): current strategies in diagnosis and treatment. Conclusions of an expert meeting February 2011 in Weimar, Germany.

268. EGFR-Targeted Adenovirus Dendrimer Coating for Improved Systemic Delivery of the Theranostic NIS Gene.

269. Stimulation of retinoic acid-induced functional sodium iodide symporter (NIS) expression and cytotoxicity of ¹³¹I by carbamazepine in breast cancer cells.

270. Functional Imaging of Pheochromocytoma with Ga-DOTATOC and C-HED in a Genetically Defined Rat Model of Multiple Endocrine Neoplasia.

271. Thyroid function in breast cancer patients.

272. The biology of the sodium iodide symporter and its potential for targeted gene delivery.

273. The potential of 211Astatine for NIS-mediated radionuclide therapy in prostate cancer.

274. Functional sodium iodide symporter expression in breast cancer xenografts in vivo after systemic treatment with retinoic acid and dexamethasone.

275. Thymosin beta4 is an essential paracrine factor of embryonic endothelial progenitor cell-mediated cardioprotection.

276. Application of 188rhenium as an alternative radionuclide for treatment of prostate cancer after tumor-specific sodium iodide symporter gene expression.

277. [The practical relevance of the sodium iodide symporter].

278. Probasin promoter (ARR(2)PB)-driven, prostate-specific expression of the human sodium iodide symporter (h-NIS) for targeted radioiodine therapy of prostate cancer.

279. Mediastinal Parathyroid Tumor: Giant Adenoma or Carcinoma?

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