Evolution of photodynamic therapy application in the treatment of malignant neoplasms
https://doi.org/10.62546/3034-1477-2024-2-3-19-33
Abstract
Photodynamic therapy (PDT) is a modern non-invasive technique of antitumor treatment. In its basis local or systemic application light-sensitive compound-photosensitizer (FS), which is selectively nakuplen in pathological tissue. In the interaction with the light of a certain length of the wave in the presence of oxygen in the fabric of the triggered photochemical process, driving to the gibel cell and activation of the immune response. Accumulation of FS in the affected tissues and targeted light allows to achieve high selectivity of action and minimal damage to surrounding tissues. Absence of resistance to PDT and possibility of combination with traditional methods of tumor treatment (surgical, radiation, systemic antitumor therapy) increase efficiency of PDT use in treatment of malignant neoplasms of different localizations, including palliative care.
About the Authors
E. F. StranadkoRussian Federation
40 Studencheskaya Str., Moscow 121165
E. N. Pavlova
Russian Federation
Pavlova Elena Naumovna
56 Veteranov pr., St. Petersburg 198255
A. V. Anisimova
Russian Federation
56 Veteranov pr., St. Petersburg 198255
D. A. Polezhaev
Russian Federation
56 Veteranov pr., St. Petersburg 198255; 6–8 L. Tolstoy Str., St. Petersburg 197022
O. I. Fedorova
Russian Federation
56 Veteranov pr., St. Petersburg 198255
References
1. Ferlay J. Global Cancer Observatory: Cancer Today. International Agency for Research on Cancer: Lyon, France. Available online: https://gco.iarc.fr/today (accessed on 10 May 2024).
2. Bray F., Laversanne M., Sung H., Ferlay J., Siegel R.L., Soerjomataram I., Jemal A. Global cancer statistics 2022: GLOBOCAN estimates of incidence and mortality worldwide for 36 cancers in 185 countries // CA Cancer J. Clin. Published online 4 April 2024. doi: 10.3322/caac.21834.
3. Состояние онкологической помощи населению России в 2023 году / под ред. А. Д. Каприна, В. В. Старинского, А. О. Шахзадовой. М.: МНИОИ им. П. А. Герцена — филиал ФГБУ «НМИЦ радиологии» Минздрава России, 2024. 262 с.
4. Malignant neoplasms in Russia in 2022 (morbidity and mortality) / eds. A. D. Kaprin, V. V. Starinskij, A. O. Shakhzadovа, I. V. Lisichnikovа. Moscow: MNIOI im. P. A. Gertsena — filial FGBU «NMITs radiologii» Minzdrava Rossii, 2023. 275 р. (In Russ.)
5. Gubanova G.V., Belyaeva J.N., Shemetova G.N. Multimorbidity patient: stages of formation, risk factors and management tactics. Modern problems of science and education. Modern problems of science and education, 2015, Vol. 6. 319 р. (In Russ.)
6. Gantsev Sh.Kh., Starinskii V.V., Rakhmatullina I.R., Kudryashova L.N., Sultanov R.Z., Sakaeva D.D. Outpatient oncology. Moscow: Publishing house GEOTAR-Media, 2014. 448 р. (In Russ.)
7. Goncharenko G.V. Primary multiple malignat tumors most common localizations cancer — cancer study clinics. Research and Practical Medicine Journal, 2015, Vol. 2, No. 4, рр. 59–65 (In Russ.)
8. Filonenko E.V. Fluorescence diagnostics and photodynamic therapy: justification of applications and opportunities in oncology. Photodynamic therapy and photodyagnosis, 2014, Vol. 3, No. 1, рр. 3–7 (In Russ.)
9. Vrouenraets M.B., Visser G.W., Snow G.B., van Dongen G.A. Basic principles, applications in oncology and improved selectivity of photodynamic therapy // Anticancer Res. 2003. Vol. 23. Р. 505–522. PMID: 12680139.
10. Wu M., Huang X., Gao L., Zhou G., Xie F. The application of photodynamic therapy in plastic and reconstructive surgery // Front. Chem. 2022. Vol. 10. Р. 967312. doi: 10.3389/fchem.2022.967312.
11. Castano A.P., Demidova T.N., Hamblin M.R. Mechanisms in photodynamic therapy: Part three. Photosensitizer pharmacokinetics, biodistribution, tumor localization and modes of tumor destruction // Photodiagnosis Photodyn. Ther. 2005. Jun. Vol. 2, No. 2. Р. 91–106. doi: 10.1016/S1572-1000(05)00060-8. Epub 2005. Aug. 10. PMID: 25048669; PMCID: PMC4108218.
12. Algorri J.F., Ochoa M., Roldán-Varona P., Rodríguez-Cobo L., López-Higuera J.M. Photodynamic Therapy: A Compendium of Latest Reviews // Cancers. 2021. Vol. 13, No. 17. Р. 4447. doi: 10.3390/cancers13174447.
13. Baskaran R., Lee J., Yang S.G. Clinical development of photodynamic agents and therapeutic applications // Biomaterials research. 2018. Vol. 22, No. 1. Р. 25. doi: 10.1186/s40824-018-0140-z.
14. Krammer B. Vascular effects of photodynamic therapy // Anticancer Res. 2001. Vol. 21, No. 6B. Р. 4271–4277.
15. Castano A.P., Mroz P., Hamblin M.R. Photodynamic therapy and anti-tumour immunity // Nat. Rev. Cancer. 2006. Vol. 6. Р. 535–545. doi.org/10.1038/nrc1894.
16. Gelfond M.L., Rogachev M.V. Photodynamic therapy. Fundamental and practical aspects: a textbook for students in the system of higher and additional professional education. St. Petersburg: NMIC of Oncology named after N. N. Petrov. 2018. 148 р. (In Russ.)
17. Correia J.H., Rodrigues J.A., Pimenta S., Dong T., Yang Z. Photodynamic Therapy Review: Principles, Photosensitizers, Applications, and Future Directions // Pharmaceutics. 2021. Vol. 13, No. 9. Р. 1332. doi: 10.3390/pharmaceutics13091332.
18. Klochikhin A.L., Byrikhina V.V., Gorokhov V.V. Photodynamic therapy for malignant nasal tumors. Russian Rhinology, 2017, Vol. 25, No. 1, рр. 46– 49 (In Russ.)
19. Kim M.M., Darafsheh A. Light Sources and Dosimetry Techniques for Fhotodynamic Therapy // Photochem Photobiol. 2020. Vol. 96. Р. 280–294. doi: 10.1111/php.13219.
20. Aebisher D., Szpara J., Bartusik-Aebisher D. Advances in Medicine: Photodynamic Therapy // Int. J. Mol. Sci. 2024. Vol. 25, No. 15. Р. 8258. doi: 10.3390/ijms25158258.
21. Kruglova L.S., Surkichin S.I., Gryazeva N.V., Kholupova L.S. Photodynamic therapy in dermatology and cosmetology. Manual. Moscow. Publishing group «GEOTAR-Media». 2020
22. Loschenov V.B., Linkov K.G., Savelyeva T.A., Loschenov M.V., Model S.S., Borodkin A.V. Hardware and instrumentation for fluorescence diagnostics and photodynamic therapy. Photodynamic therapy and photodiagnostics, 2013, Vol. 2, No. 3, рр. 17–25 (In Russ.)
23. Raab O. Uber die Wirkung fluorescirender Stoffe auf Infusorien // Z. Biol. 1900. Vol. 39. Р. 524–546.
24. Tappeiner H., Jesionek H. Therapeutische Versuche mit fluoreszierenden Stoffe // Münch. Med. Wschr. 1903. Vol. 50. Р. 2042–2044.
25. Tappeiner H., Jodlbauer A. Uber die Wirkung der photodynamischen (fluoreszierenden) Stoffen auf Protozoen und Enzyme // Dtsch. Arch. Klin. Med. 1904. Vol. 80. Р. 427–437.
26. Hausmann W.H. Die sensibilisierende Wirkung des Hеmatoporphyrins // Biochem Z. 1910. Vol. 30. Р. 276–316.
27. Policard A. Etudes sur les aspects offerts par des tumeurs experimentales examines a la lumiere de Wood // CR Soc Biol. 1924. Vol. 91. Р. 1423–1424.
28. Kou J., Dou D., Yang L. Porphyrin photosensitizers in photodynamic therapy and its applications // Oncotarget. 2017. Vol. 8, No. 46. Р. 81591–81603. doi: 10.18632/oncotarget.20189.
29. Lipson R.L., Baldes E.J., Olsen A.M. The use of a derivative of hematoporphyrin in tumor detection // J. Natl. Cancer Inst. 1961. Vol. 26. Р. 1–8.
30. Lipson R.L., Gray M.J., Baldes E.J. Hematoporphyrin derivative for detection and management of cancer // Proc 9th International Cancer Congress. Tokyo. Japan, 1966. 393 р.
31. Kelly J.F., Snell M.E. Hematoporphyrin derivative: a possible aid in the diagnosis and therapy of carcinoma of the bladder // J. Urol. 1976. Vol. 115. Р. 150–151.
32. Meiman T.H. Stimulated optical radiation in ruby // Nature. 1960. Vol. 187, No. 4736. Р. 493–494.
33. Hecht J. Lasers in medicine. Laser Focus World, 1994, June, рр. 53–55 (In Russ.)
34. Dougherty T.J., Thoma R.E., Boyle D., Weishaupt K.R. Photoradiation therapy of malignant tumors; Role of the laser // Lasers in Photomedicine and Photobiology. New York, Springer. 1980: 67–75.
35. Dougherty T.J., Kaufman J.E., Goldfarb A. Photoradiation therapy for the treatment of malignant tumors // Can. Res. 1978. Vol. 38. Р. 2628–2635.
36. Stranadko E.F., Skobelkin O.K., Vorozhtsov G.N., Mironov A.F. et al. Five years of experience in the clinical application of photodynamic therapy. Russian Journal of Oncology, 1998, Vol. 4, рр. 13–18 (In Russ.)
37. Stranadko E.F., Ryabov M.V. Photosensitizers of the chlorin group are a step forward in the development of photodynamic therapy. The Almanakh Clinical Medicine, 2006, Vol. XII, рр. 36–37 (In Russ.)
38. Kaplan M.A., Romanko Yu.S. Laser photodynamic therapy (review, state of the problem and prospects). Physiotherapy, balneology and rehabilitation, 2004, Vol. 1, рр. 43–48 (In Russ.)
39. Kaplan M. A., Kapinus V.N., Popuchiev V. V., Romanko Yu.S., Yaroslavtseva-Isaeva E.V., Spichenkva I.S., Shubina A.M., Borgul O.V., Goranskaya E.V. Photodynamic therapy: results and prospects. Radiation and Risk, 2013, Vol. 22, No 3, рр. 115–123 (In Russ.)
40. Filonenko E.V. Clinical implementation and scientific development of photodynamic therapy in Russia in 2010–2020. Biomedical Photonics, 2021, Vol. 10, No 4, рр. 4–22 (In Russ.)
41. Yanovsky R. L., Bartenstein D. W., Rogers G. S., Isakoff S. J., Chen S. T. Photodynamic therapy for solid tumors: A review of the literature // Photodermatol Photoimmunol Photomed. 2019. Vol. 35, No 5. Р. 295–303. doi: 10.1111/phpp.12489.
42. Agostinis P., Berg K., Cengel K.A., Foster T.H., Girotti A.W., Gollnick S.O., Hahn S.M., Hamblin M.R., Juzeniene A., Kessel D., Korbelik M., Moan J., Mroz P., Nowis D., Piette J., Wilson B.C., Golab J. Photodynamic therapy of cancer: an update // CA Cancer J. Clin. 2011 Jul-Aug. Vol. 61, No. 4. Р. 250–281. doi: 10.3322/caac.20114. Epub 2011 May 26. PMID: 21617154; PMCID: PMC3209659
43. Olyushin V.E., Kukanov K.K., Nechaeva A.S., Sklyar S.S., Vershinin A.E., Dikonenko M.V., Golikova A.S., Mansurov A.S., Safarov B.I., Rinda A.Yu., Papayan G.V. Photodynamic therapy in neurooncology. Biomedical Photonics, 2023, Vol. 12, No, 3, рр. 25–35 (In Russ.)
44. Ren Z., Wen J., Mo Y., Zhang P., Chen H., Wen J. A systematic review and meta-analysis of fluorescent-guided resection and therapy-based photodynamics on the survival of patients with glioma // Lasers in Medical Science. 2022. Vol. 37, No 2. Р. 789–797. doi: 10.1007/s10103-021-03426-7.
45. Azzouzi A. R., Barret E., Moore C. M., Villers A., Allen C., Scherz A., Muir G., de Wildt M., Barber N. J., Lebdai S., Emberton M. TOOKAD(®) Soluble vascular-targeted photodynamic (VTP) therapy: determination of optimal treatment conditions and assessment of effects in patients with localised prostate cancer // BJU international. 2013. Vol. 112, No. 6. Р. 766–774. doi: 10.1111/bju.12265.
46. Federal Law of November 21, 2011 No. 323-FZ (as amended on April 28, 2023) «On the fundamentals of protecting the health of citizens in the Russian Federation» (In Russ.)
47. RLS (Register of Medicines of Russia) (In Russ.)
48. Letter dated April 24, 2023 No. 00-10-30-4-06/5714 of the Federal Compulsory Medical Insurance Fund On the possibility of using scientific literature as a source regulating the issues of assessing the quality of medical care when conducting an examination of the quality of medical care in the absence of clinical recommendations and (or) standards of medical care» (In Russ.)
49. Decree of the Government of the Russian Federation of December 28, 2023 No. 2353 «On the Program of State Guarantees for the provision of free medical care to citizens for 2024 and for the planning period of 2025 and 2026» (In Russ.)
50. Order of the Ministry of Health of the Russian Federation No. 116n dated February 19, 2021 «On approval of the procedure for providing medical care to the adult population for cancer» (In Russ.)
51. Clinical recommendations. Thermal and chemical burns. Sunburns. Burns of the respiratory tract. 2021–2022–2023 (01/17/2023). Approved by the Ministry of Health of the Russian Federation (In Russ.)
52. Korchagina K.S., Gamayunov S.V., Voropaeva L.A., Shakhova N.M. Pathomorphological changes in tissues after PDT. Oncology Bulletin of the Volga, 2017, Vol. 30, No. 3, рр. 64–68 (In Russ.)
53. Bychkov M.B., Bagrova S.G., Karpenko T.D. Stabilization of the disease as an important factor in the evaluation of the effectiveness of treatment and prognosis of survival for cancer patients. Russian Journal of Oncology, 2016, Vol. 21, No. 1–20, рр. 6–10 (In Russ.)
54. Baskaran R., Lee J., Yang S.G. Clinical development of photodynamic agents and therapeutic applications // Biomaterials research. 2018. Vol. 22, No. 1. Р. 25. Clinical development of photodynamic agents and therapeutic applications. doi: 10.1186/s40824-018-0140-z.
55. Filonenko E.V. The history of development of fluorescence diagnosis and photodynamic therapy nd their capabilities in oncology. January 2015. Russian Journal of General Chemistry, 2015, Vol. 85, No. 1, рр. 211–216 (In Russ.)
56. Moole H., Tathireddy H., DharmapuriS., Moole V., Boddireddy R., Yedama P., Dharmapuri S., Uppu A., Bondalapati N., Duvvuri A. Success of Photodynamic Therapy in Palliating Patients with Nonresectable Cholangiocarcinoma: A Systematic Review and Meta-Analysis // World J. Gastroenterol. 2017. Vol. 23. Р. 1278– 1288. doi: 10.3748/wjg.v23.i7.1278.
57. Oleinick N.L., Evans H.H. The Photobiology of Photodynamic Therapy: Cellular Targets and Mechanisms // Radiat. Res. 1998. Vol. 150, No. 5. Р. 146–156. doi: 10.2307/3579816.
Review
For citations:
Stranadko E.F., Pavlova E.N., Anisimova A.V., Polezhaev D.A., Fedorova O.I. Evolution of photodynamic therapy application in the treatment of malignant neoplasms. Clinical Case in Oncology. 2024;2(3):19-33. (In Russ.) https://doi.org/10.62546/3034-1477-2024-2-3-19-33