Abstract
Three years ago continental guidelines were published referring management and follow-up of low risk thyroid cancer patients. The aim of this paper is to summarize the changes and new directions in this field. High risk patients require another protocol. Neck ultrasound plays important role in differential diagnosis and in detecting recurrences. Some new ultrasound techniques are discussed, too. FDG-PET can help to solve the problem of patients having negative scan and increased thyroglobulin level. In recent years there was an expansion of our knowledge about the pathomechanism of thyroid cancer. It appears that genetic alterations frequently play a key role in carcinogenesis. There are molecular methods that allow the detection of these genetic events in thyroid fine needle aspirations samples providing important information for diagnosis, management and prognosis. Instead of diagnostic whole body scanning the posttherapeutic scan became preferable but in high risk cases the diagnostic whole body scintigrams serve useful data. Primary therapy of thyroid cancer is an adequate surgery: total thyreoidectomy and, if necessary, lymph node dissection or limited surgery in selected cases. Nowadays radioguided surgery can help to improve the results. Radioiodine therapy (e.g. rest ablation) proved to be a safe and effective method to complete surgery. It can prevent relapses and results in longer survival. Thyroid hormone withdrawal or recombinant human thyrotropin stimulation can increase thyrotropin level before radioiodine treatment. These two methods have similar success rate of rest ablation but irradiation burden of blood is lower in the case of exogenous stimulation which avoids hypothyroid state and preserves quality of life. Since tumor cells fail to maintain the ability to perform physiological functions they undergo dedifferentiation. Therefore, an important aim is to reactivate some function of differentiated cells, e.g. iodine uptake, production of thyroperoxydase and thyroglobulin. Opportunities for this therapeutic effort are also mentioned. Restoration of iodine uptake enables radioisotope treatment. Until now there has been little interest in the development of new drugs for the treatment of thyroid cancer. However, advances in our understanding of tumor cell biology will lead to a paradigm shift in the therapy that is likely to benefit patients who have high risk disease and who do not almost have any therapeutic option. There are new drugs in clinical trials that appear to be more effective than earlier cytotoxic agents. Probably modern chemotherapy of advanced thyroid cancer will have significant results in the near future.
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