Preview

Biomedical Photonics

Advanced search

Photodynamic therapy of intradermal metastatic breast cancer (literature review)

https://doi.org/10.24931/2413-9432-2019-8-3-36-42

Abstract

In recent years, an increase in the incidence of breast cancer has been observed throughout the world, and in 20% of cases, with the development of intradermal metastases. The possibilities of surgical and radiation treatment of intradermal breast metastases are quite limited, and the effectiveness of polychemotherapy using standard regimens does not exceed 22–27%, while the period of remission, in general, is only 2–3 months. Photodynamic therapy (PDT) is a promising treatment for intradermal metastases of breast cancer. The experience of using PDT in this nosology is quite limited, but the results show its high efficiency and safety. Thus, several Russian studies are devoted to assessing the effectiveness of PDT of intradermal breast metastases with Photolon, a chlorin series photosensitizer. According to the authors, the therapeutic effect was achieved in 85–97% of patients (the percentage of patients with full and partial effect was 73–85%). Studies on the effectiveness of PDT in patients with the same nosology using the Photosens photosensitizer show a slightly lower effectiveness – the therapeutic effect was achieved in 81.8% of cases, while the proportion of patients with full and partial effect was only about 50%. Several studies have been carried out abroad on models of metastatic breast cancer using new photosensitizers (e.g. sodium sinoporphyrin) and new combined PDT regimens (e.g. adjuvant PDT with fluorouracil or Capecitabine). The obtained results demonstrate the promise of new approaches: PDT with sodium sinoporphyrin inhibited the growth of both the tumor itself and its metastases; the use of adjuvant regimens led to an increase in the tumor cells differentiation in the animal model, the cessation of tumor and metastatic foci growth.

About the Authors

R. I. Rakhimzhanova
Astana Medical University
Kazakhstan
Nur-Sultan


N. A. Shanazarov
Astana Medical University; Hospital of Medical Center of the Department of Presidential Affairs of the Republic of Kazakhstan
Kazakhstan
Nur-Sultan


D. E. Turzhanova
Astana Medical University
Kazakhstan
Nur-Sultan


References

1. Zlokachestvennye novoobrazovaniya v Rossii v 2017 godu (zabolevaemost’ i smertnost’) [Malignant neoplasms in Russia in 2017 (morbidity and mortality)], by Kaprin A.D., Starinskii V.V., Petrova G.V. as eds. Moscow, MNIOI im. P.A. Gertsena – filial FGBU «NMITS radiologii» Minzdrava Rossii, 2018. 250 p.

2. Rasulov S.R., Muradov A.M., Khamidov A.K., Khamidov Dzh.B. Endogenous intoxication syndrome in patients with breast cancer, Vestnik IPO v SZ RT, 2013, no. 1, pp. 14–16. (in Russian)

3. Semiglazov V.F. Strategic and practical approaches to solving the problem of breast cancer, Voprosy onkologii, 2012, vol. 58, no. 2, pp. 148–152. (in Russian)

4. Tverezovskii S.A., Cherenkov V.G., Petrov A.B., Strozhenkov M.M. Analysis of the status of diagnosis and treatment of breast cancer before and after the introduction of mammographic screening, Onkologiya. Zhurnal. im. P.A. Gertsena, 2015, no. 5, pp. 24–27. (in Russian)

5. Goranskaya E.V., Kaplan M.A. Photodynamic therapy of breast cancer metastases into skin, Radiatsiya i risk (Byulleten’ Natsional’nogo radiatsionno-epidemiologicheskogo registra), 2014, vol. 23, no. 3, pp. 34–42. (in Russian)

6. Tsyb A.F., Kaplan M.A, Romanko Yu.S. Fotodinamicheskaya terapiya [Photodynamic therapy]. Мoscow, Meditsinskoe informatsionnoe agentstvo Publ., 2009. 192 p.

7. Li T., Yan L. Functional Polymer Nanocarriers for Photodynamic Therapy, Pharmaceuticals (Basel), 2018, vol. 11(4), p. 133.

8. Mesquita M.Q., Dias C.J., Gamelas S., Fardilha M., Neves M.G.P.M.S., Faustino M.A.F. An insight on the role of photosensitizer nanocarriers for photodynamic therapy, An. Acad. Bras. Cienc., 2018, vol. 90(1), pp. 1101–1130.

9. Ji C., Gao Q., Dong X., Yin W., Gu Z., Gan Z., Zhao Y., Yin M. A size-reducible nanodrug with an aggregation-enhanced photodynamic effect for deep chemo-photodynamic therapy, Angew. Chem. Int. Ed. Engl., 2018, vol. 57(35), pp. 11384–11388.

10. Deng K., Li C., Huang S., Xing B., Jin D., Zeng Q., Hou Z., Lin J. Recent progress in near infrared light triggered photodynamic therapy, Small, 2017, vol. 13(44). doi: 10.1002/smll.201702299.

11. Hu J., Tang Y., Elmenoufy A.H., Xu H., Cheng Z., Yang X. Nanocomposite-based photodynamic therapy strategies for deep tumor treatment, Small, 2015, vol. 11(44), pp. 5860–5887.

12. Cheng Y., Cheng H., Jiang C., Qiu X., Wang K., Huan W., Yuan A., Wu J., Hu Y. Perfluorocarbon nanoparticles enhance reactive oxygen levels and tumour growth inhibition in photodynamic therapy, Nat Commun, 2015, vol. 6, pp. 8785.

13. Moret F., Reddi E. Strategies for optimizing the delivery to tumors of macrocyclic photosensitizers used in photodynamic therapy (pdt), J. Porphyr. Phthalocyanines, 2017, vol. 21, pp. 239–256.

14. Shanazarov N.A., Akhetov A.A., Seidalin N.K. First experience of using photodynamic therapy in Kazakhstan, Biomedical Photonics, 2017, vol. 6, no. 4s, pp. 37–38. (in Russian)

15. Gyulov Kh.Ya., Shanazarov N.A. Experience of using photodynamic therapy in Chelyabinsk Regional Clinical Oncology Center, Vestnik MTS UD PRK, 2017, no. 3(68), pp. 10–12. (in Russian)

16. Gehl J., Matthiessen L.M., Humphreys A. Management of cutaneous metastases by electrochemotherapy, J. Clin. Oncol., 2010, vol. 28, p. 15.

17. Sanarova E.V., Lantsova A.V., Dmitrieva M.V., Smirnova Z.S., Oborotova N.A. Photodynamic therapy – a way to increase the selectivity and effectiveness of tumor treatment, Rossiiskii bioterapevticheskii zhurnal, 2014, vol. 13, no. 3, pp. 109–118. (in Russian)

18. Istomin Yu.P., Artem’eva T.P., Tserkovskii D.A. . Clinical use of photodynamic therapy in oncology, Zdravookhranenie (Minsk), 2016, no. 10, pp. 54–58. (in Russian)

19. Lamberti M.J., Vittar N.B.R., Rivarola V.A. Breast cancer as photodynamic therapy target: Enhanced therapeutic efficiency by overview of tumor complexity, World J Clin Oncol, 2014, vol. 5(5), pp. 901–907.

20. Gamayunov S.V., SHakhova N.M., Denisenko A.N., Korchagina K.S., Grebenkina E.V., Skrebtsova R.R., Karov V.A., Terekhov V.M., Terent’ev I.G. Photodynamic therapy – advantages of the new methodology and specifics of the service organization, Tikhookeanskii meditsinskii zhurnal, 2014, no. 2(56), pp. 101–104. (in Russian)

21. Ponyaev A.I., Glukhova Ya.S., Chernykh Ya.S. Photosensitizers for photodynamic therapy (review), Izvestiya Sankt-Peterburgskogo gosudarstvennogo tekhnologicheskogo instituta (tekhnicheskogo universiteta), 2017, no. 41(67), pp. 71–78. (in Russian)

22. Banerjee S.M., MacRobert A.J., Mosse C.A., Periera B., Bown S.G., Keshtgar M.R.S. Photodynamic therapy: Inception to application in breast cancer, The Breast, 2017, vol. 31, pp. 105–113.

23. Pak D.D., Filonenko E.V., Saribekyan E.K. Intraoperative photodynamic therapy of patients with locally advanced stage IIIB and IIIC breast cancer, Fotodinamicheskaya terapiya i fotodiagnostika, 2013, vol. 2, no. 1, pp. 25–30. (in Russian)

24. George B.P., Abrahamse H. A Review on Novel Breast Cancer Therapies: Photodynamic Therapy and Plant Derived Agent Induced Cell Death Mechanisms, Anticancer Agents Med Chem, 2016, vol. 16(7), pp. 793–801.

25. Goranskaya E.V., Ragulin Yu.A., Kapinus V.N., Yaroslavtsaeva E.V., Shubina A.M., Spichenkova I.S., Skugareva O.A. Immediate results of photodynamic therapy of breast cancer intradermal metastases, Onkokhirurgiya, 2011, vol. 3, no. 2, pp. 21–22. (in Russian)

26. Kaplan M.A., Kapinus V.N., Popuchiev V.V., Romanko Yu.S., Yaroslavtseva-Isaeva E.V., Spichenkova I.S., Shubina A.M., Borgul’ O.V., Goranskaya E.V. Photodynamic therapy: results and prospects, Radiatsiya i risk (Byulleten’ Natsional’nogo radiatsionno-epidemiologicheskogo registra), 2013, vol. 22, no. 3, pp. 115–123. (in Russian)

27. Evstifeev S.V., Kulaev M.T., Al’myashev A.Z., Skopin P.I., Begoulov I.V. Fluorescence diagnostics and photodynamic therapy of intradermal breast cancer metastases, Zlokachestvennye opukholi, 2017, vol. 7, no. 3-S1, pp. 75. (in Russian)

28. Wang X.,Hu J., Wang P., Zhang S., Liu Y., Xiong W., Liu Q. Analysis of the In Vivo and In Vitro Effects of Photodynamic Therapy on Breast Cancer by Using a Sensitizer, Sinoporphyrin Sodium, Theranostics, 2015, vol. 5(7), pp. 772–786.

29. Anand S., Denisyuk A., Bullock T., Govande M., Maytin E.V. A nontoxic approach for treatment of breast cancer and its metastases: capecitabine enhanced photodynamic therapy in a murine tumor mode, J Cancer Metastasis Treat, 2019, vol. 5, pp. 6.

30. Wyss P., Schwarz V., Dobler-Girdziunaite D., Hornung R., Walt H., Degen A., Fehr M. Photodynamic therapy of locoregional breast cancer recurrences using a chlorin-type photosensitizer, Int J Cancer, 2001, vol. 93(5), pp. 720–724

31. Banerjee S.M., MacRobert A.J., Mosse C.A., Periera B., Bown S.G., Keshtgar M.R.S. Photodynamic therapy: Inception to application in breast cancer, Breast, 2017, vol. 31, pp. 105–113.

32. Gel’fond M.L., Gafton G.I., Anisimov V.V. Neoadjuvant, intraoperative and adjuvant photodynamic therapy in combined treatment of certain nosological forms of malignant neoplasms in Aktual’nye problemy lazernoi meditsiny: sbornik nauchnykh trudov [Actual problems of laser medicine: collection of scientific papers] by Petrishchev N.N. as edt. Sankt-Peterburg, 2016, pp. 81–95.

33. Gel’fond M.L., Levchenko E.V., Mamontov O.Yu., Baldueva I.A., Nekhaeva T.L., Novik A.V., Anisimov V.V,, Semiletova Yu.V., Myasnyankin M.S. Neoadjuvant and intraoperative photodynamic therapy in the combined treatment of malignant neoplasms, Fotodinamicheskaya terapiya i fotodiagnostika, 2013, vol. 2, no. 3, pp. 54. (in Russian)

34. Wang Y., Xie Y., Li J., Peng Z.H., Sheinin Y., Zhou J., Oupický D. Tumor-penetrating nanoparticles for enhanced anticancer activity of combined photodynamic and hypoxia-activated therapy, ACS Nano, 2017, vol. 11, pp. 2227–2238.

35. Sobolev A.S. Modular nanotransporters – a multipurpose anticancer drug delivery platform, Vestnik rossiiskoi akademii nauk, 2013, vol. 83, no. 8. pp. 685–697. (in Russian)


Review

For citations:


Rakhimzhanova R.I., Shanazarov N.A., Turzhanova D.E. Photodynamic therapy of intradermal metastatic breast cancer (literature review). Biomedical Photonics. 2019;8(3):36-42. https://doi.org/10.24931/2413-9432-2019-8-3-36-42

Views: 1606


Creative Commons License
This work is licensed under a Creative Commons Attribution 4.0 License.


ISSN 2413-9432 (Print)