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87 results on '"Marialuisa Sponziello"'

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1. The role of FOSL1 in stem-like cell reprogramming processes

2. Precision oncology for RET-related tumors

3. Establishment and maintenance of thyroid organoids from human cancer cells

4. Identification of Exosomal microRNAs and Their Targets in Papillary Thyroid Cancer Cells

5. Update on Fundamental Mechanisms of Thyroid Cancer

6. Expression of Leptin Receptor and Effects of Leptin on Papillary Thyroid Carcinoma Cells

7. Raman Spectroscopy Discloses Altered Molecular Profile in Thyroid Adenomas

8. A synonymous RET substitution enhances the oncogenic effect of an in-cis missense mutation by increasing constitutive splicing efficiency.

9. Expression of PAX8 Target Genes in Papillary Thyroid Carcinoma.

11. The legacy of the COVID-19 pandemics for thyroid cancer patients: towards the application of clinical practice recommendations

12. Papillary thyroid carcinoma as first and isolated neoplastic disease in a Lynch syndrome family member with a germline MLH1 mutation

13. Expression of miR-31-5p affects growth, migration and invasiveness of papillary thyroid cancer cells

15. Precision oncology for

16. Molecular analysis of fine-needle aspiration cytology in thyroid disease: where are we?

20. The COVID-19 outbreak and de-escalation of thyroid cancer diagnosis and treatment

21. Contemporary Thyroid Nodule Evaluation and Management

22. Analysis of serum microRNA in exosomal vehicles of papillary thyroid cancer

24. Long-term disease recurrence in the adipose tissue and striated muscles of a minimally invasive papillary thyroid carcinoma

25. Exploring the molecular insights of concurrent composite mucoepidermoid carcinoma and papillary thyroid carcinoma

26. Thyroid hormone therapy in differentiated thyroid cancer

27. Thyroid Cancer Patients With No Evidence of Disease: The Need for Repeat Neck Ultrasound

28. BRAFV600E-mutant cancers display a variety of networks by SWIM analysis: prediction of vemurafenib clinical response

29. Role of miR-139–5p in radioiodine-refractory thyroid cancers

30. In silico drug repurposing in COVID-19. A network-based analysis

32. Update on Fundamental Mechanisms of Thyroid Cancer

33. Performance of a dual-component molecular assay in cytologically indeterminate thyroid nodules

34. Analytical validation of a novel targeted next-generation sequencing assay for mutation detection in thyroid nodule aspirates and tissue

35. Evaluation of Polygenic Determinants of Non-Alcoholic Fatty Liver Disease (NAFLD) By a Candidate Genes Resequencing Strategy

36. Whole exome sequencing identifies a germline MET mutation in two siblings with hereditary wild-type RET medullary thyroid cancer

37. Low-risk papillary thyroid microcarcinoma: Optimal management toward a more conservative approach

38. BRAF

39. Comment on: BRAF mutation analysis by ARMS-PCR refines thyroid nodule management

40. Risk Stratification of Neck Lesions Detected Sonographically During the Follow-Up of Differentiated Thyroid Cancer

41. Genotype-Phenotype Correlation in a MODY 2 Family: An Under-Diagnosed Disease

42. Raman Spectroscopy Discloses Altered Molecular Profile in Thyroid Adenomas

43. Loss of Function SETD2 Mutations in Poorly Differentiated Metastases from Two Hürthle Cell Carcinomas of the Thyroid

44. Correction to: Exploring the molecular insights of concurrent composite mucoepidermoid carcinoma and papillary thyroid carcinoma

45. Human telomerase reverse transcriptase in papillary thyroid cancer: gene expression, effects of silencing and regulation by BET inhibitors in thyroid cancer cells

46. Expression of Leptin Receptor and Effects of Leptin on Papillary Thyroid Carcinoma Cells

47. Targeting post-translational histone modifications for the treatment of non-medullary thyroid cancer

48. Prediction of response to vemurafenib in BRAF V600E mutant cancers based on a network approach

49. BET bromodomain inhibitor JQ1 modulates microRNA expression in thyroid cancer cells

50. A synonymous RET substitution enhances the oncogenic effect of an in-cis missense mutation by increasing constitutive splicing efficiency

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