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Sonodynamic therapy with photosensitizers and its combination with photodynamic therapy in treatment of malignant tumors

Abstract

The article reviews mechanisms of sonodynamic therapy with photosensitizers (ultrasound + photosensitizer) and combination of sonodynamic with photodynamic therapy (ultrasound + photosensitizer + light exposure) for treatment of malignant tumors. Efficacy of these methods with photosensitizers of different chemical structure in experimental study in vitro and in vivo on different tumor models and in clinical trials was assessed.

 

About the Authors

D. A. Zerkovskiy
N.N. Alexandrova Republic Research and Practical Centre of oncology and medical radiology, Minsk, Belarus
Belarus


E. N. Alexandrova
N.N. Alexandrova Republic Research and Practical Centre of oncology and medical radiology, Minsk, Belarus
Belarus


T. P. Laptsevich
N.N. Alexandrova Republic Research and Practical Centre of oncology and medical radiology, Minsk, Belarus
Belarus


Ju. P. Istomin
N.N. Alexandrova Republic Research and Practical Centre of oncology and medical radiology, Minsk, Belarus
Belarus


References

1. Ультразвук в терапии злокачественных опухолей / Под ред. К.П. Балицкого. – Киев: Наукова думка, 1977 – 157 с.

2. Kremkau F.W. Cancer therapy with ultrasound: A historical review // J. Clin. Ultrasound . – 1979. – Vol. 7. – P. 287–300.

3. Rosenthal I., Sostaric J. Z., Riesz P. Sonodynamic therapy – a review of the synergistic effects of drugs and ultrasound // Ultrasonics Sonochem. – 2004. – Vol. 11(3). – P. 349–363.

4. Lagneaux L. Ultrasonic low–energy treatment: A novel approach to induce apoptosis in human leukemic cells // Exp. Hematol. – 2002. – Vol. 30, Issue 11. – P. 1293–1301.

5. Ashush H. et al. Apoptosis induction of human myeloid leukemic cells by ultrasound exposure // Cancer Res. – 2000 – Vol. 60. – P. 1014–1020.

6. Сергеева Н.С. и др. Влияние различных режимов низкочастотного ультразвука на выживаемость опухолевых клеток человека in vitro // Бюлл. экспер. биол. мед. – 2001. – Т.131, № 3. – С. 331–334.

7. Бирюков Ю.В. О влиянии ультразвука низкой частоты на клетки опухоли в эксперименте // Груд. хирургия. – 1989. – № 3 – С. 64–69.

8. Kaufman G. E. et al. Lysis and viability of cultured mammalian cells exposed to 1 MHz ultrasound // Ultrasound Med. Biol. – 1977. – Vol. 3, Issue 1. – P. 21–25.

9. Hrazdira I., Skorpıkova J., Dolnıkova M. Ultrasonically induced alterations of cultured tumour cells // Eur. J. Ultrasound. – 1998. – Vol. 8. – P. 43–49.

10. Fang H. Y. et al. The effects of power on–off durations of pulsed ultrasound on the destruction of cancer cells // Int. J. Hyperthermia. – 2007 – Vol. 23, No 4. – P. 371–380.

11. Dai S., Hu S., Wu C. Apoptotic effect of sonodynamic therapy mediated by hematoporphyrin monomethyl ether on C6 glioma cells in vitro // Acta Neurochir. – 2009. – Vol. 151. – P. 1655–1661.

12. Андронова Н. В. и др. Комбинированная терапия злокачественных опухолей с использованием локального ультразвукового воздействия (экспериментальное исследование) // Рос. биотерап. ж. – 2005. – Т. 4, № 3. – С.103–107.

13. Nonaka M. et al. Sonodynamic therapy consisting of focused ultrasound and a photosensitizer causes a selective antitumor effect in a rat intracranial glioma model // Anticancer Res. – 2009. – Vol. 29, No.3. – P. 943–950.

14. Wood A.K.W. et al. The antivascular action of physiotherapy ultrasound on murine tumors // Ultrasound Med Biol. – 2005. – Vol. 31, No 10. – P. 1403–1410.

15. Martins B. I. et al. Survival of cultured mammalian cells exposed to ultrasound // Rad. Environm. Biophys. – 1977. – Vol. 14. – P. 243–250.

16. Kobayashi H., Sakuma S. Treatment of human superficial tumors by ionizing radiation combined with ultrasound // Nippon Igaku Hoshasen Gakkai Zasshi. – 1991. – Vol. 51, No 2. – P. 149–154.

17. N. Yumita et al. Hematoporphyrin as a sensitizer of cell damaging effect of ultrasound // Jpn. J. Cancer Res. – 1989. – Vol. 80. – P. 219–222.

18. Kessel D., Porphyrin–induced enhancement of ultrasound cytotoxicity // Int. J. Radiat. Biol. – 1994. – Vol. 66, No 2. – P. 221–228.

19. Заболотный Д.И., Пухлик С.М., Пионтковская М.Б. Новые возможности применения сонодинамической терапии в онкоринологии // Вестник оториноларингологии. – 2006. – № 3. – С. 23–26.

20. Hiraoka W. et al. Comparison between sonodynamic effect and photodynamic effect with photosensitizers on free radical formation and cell killing // Ultrasonics Sonochemistry – 2006. – Vol. 13. – P. 535–542.

21. Yumita N. et al. Sonodynamically–induced apoptosis, necrosis, and active oxygen generation by mono–l–aspartyl chlorin e6 // Cancer Sci. – 2008. – Vol. 99, No 1. – P. 166–172.

22. Umemura S. et al. Sonodynamically induced effect of rose bengal on isolated sarcoma 180 cells // Cancer Chemother/ Pharmacol. – 1999. – Vol. 43, No 5. – P. 389–393.

23. He Y. et al. 5-Aminolaevulinic acid enhances ultrasound-induced mitochondrial damage in K562 cells // Ultrasonics. – 2010. – Vol. 50. – P. 777–781.

24. Zheng R. et al. The sonodynamic effects of chlorin e6 on the proliferation of human lung adenocarcinoma cell SPCA–1 // Chin. J. Lung Cancer. – 2010. – Vol. 13, No 3. – P. 201–205.

25. Tserkovsky D.A., Alexandrova E.N., IstominY.P. Photolon enhancement of ultrasound cytotoxicity // Exp. Oncol. – 2011. – Vol. 33, No 2. – P. 107–109.

26. Umemura S.I., Yumita N., Nishigaki R. Enhancement of ultrasonically induced cell-damage by a gallium-porphyrin complex ATX-70 // Jpn. J. Cancer Res. – 1993. – Vol. 84. – P. 582.

27. Yumita N., Han Q.S., Umemura S. Sonodynamically induced apoptosis with porfimer sodium in HL–60 cells // Anticancer Drugs. – 2007. – Vol. 18, No 10. – P. 1149–1156.

28. Li J. et al. In vitro study of hematoporphyrin monomethyl ether– mediated sonodynamic effects on C6 glioma cells / // Neurol. Sci. – 2008 – Vol. 29. – P. 229–235.

29. Wang P. et al. Comparison between sonodynamic effects with protoporphyrin IX and hematoporphyrin on the сytoskeleton of Ehrlich ascites carcinoma cells // Cancer Biother. Radiopharm. – 2010. – Vol. 25, No 1. – P. 55–64.

30. Tachibana K. et al. Enhancement of cell killing of HL-60 cells by ultrasound in the presence of the photosensitizing drug Photofrin II // Cancer Letters. – 1993. – Vol. 72, No 3. – P. 195–199.

31. Umemura K. et al. Sonodynamically induced antitumor effect of pheophorbide a / // Cancer Lett. – 1996. – Vol. 102, No 1–2. – P. 151–157.

32. Liu Q. et al. Sonodynamic effects of protoporphyrin IX disodium salt on isolated sarcoma 180 cells // Ultrasonics. – 2006. – Vol. 45, No 1–4. – P. 56–60.

33. Mi N. et al. Induction of sonodynamic effect with protopophyrin IX on isolate hepatoma 22 cells // Ultrasound Med. Biol. – 2009. – Vol. 35, No 4. – P. 680–686.

34. Wang X.B. et al. Study of cell killing effect on S180 by ultrasound activating protoporphyrin IX // Ultrasonics. – 2008. – Vol. 48, No 2. – P. 135–140.

35. Miyoshi N., Misik V., Riesz P. Sonodynamic toxicity of gallium–porphyrin analogue ATX–70 in human leukemia cells // Radiat. Res. – 1997. – Vol. 148, No 1. – P. 43–47.

36. Yumita N. et al. Sonodynamically induced antitumor effect of 4–formyloximethylidene–3–hydroxy–2–vinyl–deuterio–porphynyl(IX)–6,7–dia spartic acid (ATX–S10) // Jpn. J. Cancer Res. – 2000. – Vol. 91, No 2. – P. 255–260.

37. Xu J. et al. Sonodynamic action of pyropheophorbide–a methyl esther in liver cancer cells // J. Ultrasound Med. – 2010. – Vol. 29, No 7. – P. 1031–1037.

38. Chen Z. et al. Use of a novel sonosensitizer in sonodynamic therapy of U251 glioma cells in vitro // Exp. Ther. Med. – 2012. – Vol. 3, No 2. – P. 273–278.

39. Yumita N., Nishigaki T., Umemura K. Synergetic effect of ultrasound and hematoporphyrin on sarcoma 180 // J. Jpn. Cancer. Res. – Vol. 81. – 1990. – P. 304.

40. Yumita N., Sasaki K., Umemura S., Yukawa A. Sonodynamically induced antitumor effect of gallium–porphyrin complex by focused ultrasound on experimental kidney tumor // Cancer Lett. – 1997. – Vol. 112, No 1. – P. 79–86.

41. Yumita N., Umemura S. Sonodynamic therapy with photofrin II on AH130 solid tumor. Pharmacokinetics, tissue distribution and sonodynamic antitumoral efficacy of photofrin II // Cancer Chemother. Pharmacol. – 2003. – Vol. 51, No. 2. – P. 174–178.

42. Yumita N., Umemura S. Sonodynamic antitumour effect of chloroaluminum phthalocyanine tetrasulfonate on murine solid tumour // J. Pharm. Pharmacol. –2004. – Vol. 56, No. 1. – P. 85–90.

43. Yumita N. Sonodynamic therapy on chemically induced mammary tumor: pharmacokinetics, tissue distribution and sonodynamically induced antitumor effect of gallium–porphyrin complex ATX–70 // Cancer Chemother. Pharmacol. – 2007. – Vol. 60. – P. 891–897.

44. Liu Q. et al. Comparison between sonodynamic effect with protoporphyrin IX and hematoporphyrin on sarcoma 180 // Cancer Chemother Pharmacol. – 2007. – Vol. 60, No 5. – P. 671–680.

45. Wang X., Lewis T., Mitchell D. The tumoricidal effect of sonodynamic therapy (SDT) on S–180 sarcoma in mice // Integr. Cancer Ther. – 2008. – Vol. 7. – P. 96–102.

46. Wang X. et al. Sonodynamically induced anti–tumor effect with protoporphyrin IX on hepatoma–22 solid tumor // Ultrasonics. – 2011. – Vol. 51, No 5. – P. 539–546.

47. Sazgarnia A. et al. A novel nanosonosensitizer for sonodynamic therapy: in vivo study on a colon tumor model // J. Ultrasound Med. – 2011. – Vol. 30, No 10. – P. 1321–1329.

48. Alamolhoda M. et al. Comparing the in vivo sonodynamic effects of dual– and single–frequency ultrasound in breast adenocarcinoma // Journal of Medical Ultrasonics. – 2012. – Vol. 39, No 3. – P. 115–125.

49. Barati A.H., Mokhtari–Dizaji M. Ultrasound dose fractionation in sonodynamic therapy // Ultrasound Med. Biol. – 2010. – Vol. 36, No 6. – P. 880–887.

50. Shi H. et al. Pharmacokinetic study of a novel sonosensitizer chlorin–e6 and its sonodynamic anti–cancer activity in hepatoma–22 tumor–bearing mice // Biopharm. Drug Dispos. – 2011. – Vol. 32, No 6. – P. 319–332.

51. Chen B. et al. The tumor affinity of chlorin e6 and its sonodynamic effects on non–small cell lung cancer // Ultrason. Sonochem. – 2013. – Vol. 20, No 2. – P. 667–673.

52. Nonaka M. et al. Sonodynamic therapy consisting of focused ultrasound and a photosensitizer causes a selective antitumor effect in a rat intracranial glioma model // Anticancer Res. – 2009. – Vol. 29, No 3. – P. 943–950.

53. Ohmura T. et al. Sonodynamic therapy with 5–aminolevulinic acid and focused ultrasound for deep–seated intracranial glioma in rat // Anticancer Res. – 2011. – Vol. 31, No 7. – P. 2527–2533.

54. Jeong E.G. et al. Sonodynamically induced antitumor effects of 5-aminolevulinic Acid and fractionated ultrasound irradiation in an orthotopic rat glioma model // Ultrasound Med Biol. – 2012. – Vol. 38, No 12. – P. 2143–2150.

55. Заболотный Д.И., Пухлик С.М., Пионтковская М.Б. Новые возможности применения сонодинамической терапии в онкоринологии // Вестник оториноларингологии. – 2006. – № 3. – С. 23–26.

56. Kessel D. Modes of photodynamic vs. sonodynamic cytotoxicity // J. Photochem. Photobiol. – 1995. – Vol. 28. – P. 219–221.

57. Jin Z.H. Combination effect jf photodynamic and sonodynamic therapy on experimental skin squamous cell carcinoma in C3H/ HeN mice // J. Dermatol. – 2000. – Vol. 27. – P. 294–306.

58. Nomikou N. et al. The effects of ultrasound and light on indocyanine-green-treated tumour cells and tissues // Chem. Med Chem. – 2012. – Vol. 7, No 8. – P. 1465–1471.

59. Bakhshizadeh M. et al. Effects of Combined Sonodynamic and Photodynamic Therapies on a Colon Carcinoma Tumor Model // Iran J Basic Med Sci – 2011. – Vol. 14, No 3. – P. 205–212.

60. Tserkovsky D.A. et al. Effects of combined sonodynamic and photodynamic therapies with photolon on a glioma C6 tumor model // Exp Oncol. – 2012. – Vol. 34, No 4. – P. 332–335.

61. Wang, X., Mitchell D., Lewis T. J. Primary clinical use of sonodynamic therapy (SDT) for advanced breast cancer // Journal of Clinical Oncology. – 2008. – Vol. 26, No 15. – P. 12–29.

62. Wang X. et al. Sonodynamic and photodynamic therapy in advanced refractory breast cancer // Journal of Clinical Oncology. – 2012. – Vol. 30, No 27, suppl. – P. 118.

63. Kenyon, J.N., Fulle R.J., Lewis T.J. Activated Cancer Therapy Using Light and Ultrasound – A Case Series of Sonodynamic Photodynamic Therapy in 115 Patients Over a 4 Year Period // Current Drug Therapy. – 2009. – Vol. 4. – P. 179–193.


Review

For citations:


Zerkovskiy D.A., Alexandrova E.N., Laptsevich T.P., Istomin J.P. Sonodynamic therapy with photosensitizers and its combination with photodynamic therapy in treatment of malignant tumors. Photodynamic therapy and photodyagnosis. 2014;3(2):18-23. (In Russ.)

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