Submitted:
06 January 2025
Posted:
07 January 2025
You are already at the latest version
Abstract
Keywords:
1. Introduction

2. Materials and Methods
2.1. Genetic Background
2.2. Histopathological Picture
2.3. Diagnostics
| Features indicating a malignant process in an ultrasound examination of the thyroid gland |
|---|
| Hypoechogenicity |
| Irregular margins |
| Shape taller than wide |
| Central vascularization |
| Extension of the lesion beyond the thyroid gland |
| Solid structure |
3. Treatment
| Type of treatment | Type of cancer |
|---|---|
| Active supervision | DTC |
| Lobectomy | DTC |
| Thyroidectomy with/without nodulectomy | DTC, MTC, ATC |
| Chemotherapy | DTC, MTC, ATC |
| Radioterpia | DTC, MTC, ATC |
| Radioiodine ablation | DTC |
| Thyroid hormone suppression therapy | DTC |
| Radiofrequency ablation (RFA) | PTC, small recurrence, symptomatic in non-resectable cancers, MTC |
3.1. Photodynamic Therapy (PDT)
3.2. Translation
3.3. Mechanism of Photodynamic Therapy
3.4. Advantages
3.5. Defects
| Advantages of PDT | Disadvantages of PDT |
|---|---|
| Low invasiveness | It causes pain |
| Low costs compared to other oncological treatment methods | Dependence on the accuracy of pathological tissue irradiation |
| Possibility of outpatient use | High costs of preparation, transportation, and maintenance of equipment needed for PDT |
| Protection of surrounding tissues | Lack of specific standards and quality control |
| No long-term side effects | No use in case of disseminated cancers |
| Leaves minor scars or no scars at all. | Not applicable in the case of deeper, less oxygenated tumors |
| High effectiveness | |
| Also affecting the vascularization of the tumor - long-term effects | |
| Short therapy time | |
| Can be used multiple times and combined with other methods |
4. Application of Photodynamic Therapy in Thyroid Cancer
| Name | Formula | Ref. | |
| Hipericin | C30H16O8 | 33 | ![]() |
| Porphyrin | C44H34N8 | 34, 35, 36 | ![]() |
| Photofrin | C68H74N8O11 | 37, 38 | ![]() |
| Radachlorin | C38H41N5O9 | 39, 40 | ![]() |
| 5-Aminolevulinic acid (ALA) | C5H9NO3 | 38, 41 | ![]() |
| Name | Formula | ,Name | Structure | Ref |
|---|---|---|---|---|
| Sulforaphane | C6H9NOS2 | 4-methylsulfinyl-3-butenyl isothiocyanate | ![]() |
16, 44, 45 |
| Carboplatin | C6H12N2O2Pt | (SP-4-2)-diamino[cyclobutane-1,1-dicarboxylate(2-)-O,O']-platinum | ![]() |
46 |
| Genisteina | C15H10O5 | 5,7-dihydroxy-3-(4-hydroxyphenyl)chromen-4-one | ![]() |
47 |
5. Future Directions
Summary
List of Abbreviations
| 5-ALA | 5-aminolevulinic acid |
| AIF | apoptosis-inducing factor |
| AJCC | American Joint Committee on Cancer |
| ATA | American Thyroid Association |
| ATC | anaplastic thyroid cancer |
| BACC | fine-needle aspiration biopsy |
| DTC | differentiated thyroid cancer |
| EGFR | epidermal growth factor receptor |
| FTC | follicular thyroid cancer |
| H&E | hematoxylin and eosin |
| HCC | Hurthle cell carcinoma |
| HYP | hypericin |
| MAP, MAPK | mitogen-activated protein kinase |
| MEN | multiple endocrine neoplasia |
| MKI | multikinase inhibitors |
| MTC | medullary thyroid cancer |
| NIS | sodium-iodine symporter |
| PARP | poly(ADP-ribose) polymerase |
| PDT | photodynamic therapy |
| PI3K | 3-kinase phosphoinositide |
| PLP | porphyrin-HDL |
| PLP-PDT | PDT using PLP as PS |
| PS | photosensitizer |
| PTC | papillary thyroid cancer |
| PTEN | phosphatase and tensin homologue |
| RAI | radioactive iodine therapy |
| RFI | radiofrequency ablation |
| ROS | reactive oxygen species |
| SFE | sulforaphene |
| TNM | tumor, nodules, metastates |
| TSH | thyroid-stimulating hormone |
| USG | ultrasound examination |
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