Skip to main content
Erschienen in: Lasers in Medical Science 2/2022

31.07.2021 | Original Article

Fractionated low-level laser irradiation on breast cancer (MCF 7 cells) treatment

verfasst von: Nursakinah Suardi, Pegah Moradi Khaniabadi, Aijesta Taggo, Siti Farrah Mursyida Zulbaharin, Daruliza Kernain Mohd Azman, Sylvester Jande Gemanam

Erschienen in: Lasers in Medical Science | Ausgabe 2/2022

Einloggen, um Zugang zu erhalten

Abstract

Breast cancer is responsible for one of the top leading causes of cancer deaths among women. Radiotherapy (RT) uses high energy radiation to kill cancer cells, but this method has been reportedly linked to risks of toxicity. Post-therapeutic relapse from RT believed to be caused by its toxicity is one of the challenges encountered during tumour therapy. Therefore, further attention should be devoted to developing novel anti-tumour therapeutic approaches. The role of low-level laser therapy (LLLT) in breast cancer management is to alleviate the side effects arising from RT, instead of acting against the tumour cells directly. This study investigated the effects of low-level laser (532 nm), as well as single and fractionated irradiation, on breast cancer MCF 7 cell line. Additionally, this study assessed the most effective laser parameter for fractionated irradiation. The MCF 7 cells were irradiated with green laser power at 1.5, 45.0, and 100.0 mW with a spot size diameter of 0.7 mm for 1, 5, 10, and 15 min. The irradiation was carried out in single, double, and triple fractionation separated by 5- and 10-min intervals in between the fractional regimes. The laser output of 100 mW showed a promising potential in killing cells with single fractionation. However, as the irradiation was fractionated into two, power of 1.5 mW appeared to be more effective in cell death, which contributed to the lowest percentage cells viable of 31.4% recorded in the study. It was proven that fractionated regime was more successful in tumour cell death.
Literatur
1.
Zurück zum Zitat (WHO), W.H.O (2011) The top 10 causes of death (WHO), W.H.O (2011) The top 10 causes of death
2.
Zurück zum Zitat Peidaee P, Almansour N, Shukla R, Pirogova E (2013) The cytotoxic effects of low intensity visible and infrared light on human breast cancer (MCF7) cells. Comput Struct Biotechnol J, 6(7), e201303015 Peidaee P, Almansour N, Shukla R, Pirogova E (2013) The cytotoxic effects of low intensity visible and infrared light on human breast cancer (MCF7) cells. Comput Struct Biotechnol J, 6(7), e201303015
3.
Zurück zum Zitat Dheyab MA, Aziz AA, Khaniabadi PM, Jameel MS (2021) Potential of a sonochemical approach to generate MRI-PPT theranostic agents for breast cancer. Photodiagnosis Photodyn Ther 33:10CrossRef Dheyab MA, Aziz AA, Khaniabadi PM, Jameel MS (2021) Potential of a sonochemical approach to generate MRI-PPT theranostic agents for breast cancer. Photodiagnosis Photodyn Ther 33:10CrossRef
4.
Zurück zum Zitat Khaniabadi PM, Shahbazi-Gahrouei D, Aziz AA, Dheyab MA, Khaniabadi BM, Mehrdel B, Jameel MS (2020) Trastuzumab conjugated porphyrin-superparamagnetic iron oxide nanoparticle: a potential PTT-MRI bimodal agent for herceptin positive breast cancer. Photodiagnosis Photodyn Ther 31:101896CrossRef Khaniabadi PM, Shahbazi-Gahrouei D, Aziz AA, Dheyab MA, Khaniabadi BM, Mehrdel B, Jameel MS (2020) Trastuzumab conjugated porphyrin-superparamagnetic iron oxide nanoparticle: a potential PTT-MRI bimodal agent for herceptin positive breast cancer. Photodiagnosis Photodyn Ther 31:101896CrossRef
5.
Zurück zum Zitat Dheyab MA, Aziz AA, Jameel MS, Khaniabadi PM, Mehrdel B, Khaniabadi BM (2020, March) Gold-coated iron oxide nanoparticles as a potential photothermal therapy agent to enhance eradication of breast cancer cells. In Journal of Physics: Conference Series (Vol. 1497, No. 1, p. 012003). IOP Publishing Dheyab MA, Aziz AA, Jameel MS, Khaniabadi PM, Mehrdel B, Khaniabadi BM (2020, March) Gold-coated iron oxide nanoparticles as a potential photothermal therapy agent to enhance eradication of breast cancer cells. In Journal of Physics: Conference Series (Vol. 1497, No. 1, p. 012003). IOP Publishing
6.
Zurück zum Zitat Manan AA, Tamin NSI, Abdullah NH, Abidin AZ, Wahab M (2016) Malaysian National Cancer Registry Report 2007–2011. National Cancer Institute, Ministry of Health Malaysia 2016(16):203 Manan AA, Tamin NSI, Abdullah NH, Abidin AZ, Wahab M (2016) Malaysian National Cancer Registry Report 2007–2011. National Cancer Institute, Ministry of Health Malaysia 2016(16):203
7.
Zurück zum Zitat Sun YS, Zhao Z, Yang ZN, Xu F, Lu HJ, Zhu ZY, … Zhu HP (2017) Risk factors and preventions of breast cancer. Int J Biol Sci 13(11): 1387–1397 Sun YS, Zhao Z, Yang ZN, Xu F, Lu HJ, Zhu ZY, … Zhu HP (2017) Risk factors and preventions of breast cancer. Int J Biol Sci 13(11): 1387–1397
8.
Zurück zum Zitat Halyard M, Brown L, Mutter R (2015) Benefits, risks, and safety of external beam radiation therapy for breast cancer. Int J Women’s Health 449 Halyard M, Brown L, Mutter R (2015) Benefits, risks, and safety of external beam radiation therapy for breast cancer. Int J Women’s Health 449
9.
Zurück zum Zitat Mitchell G (2013) The rationale for fractionation in radiotherapy. Clin J Oncol Nurs 17(4):412–417CrossRef Mitchell G (2013) The rationale for fractionation in radiotherapy. Clin J Oncol Nurs 17(4):412–417CrossRef
10.
Zurück zum Zitat Baskar R, Lee KA, Yeo R, Yeoh KW (2012) Cancer and radiation therapy: current advances and future directions. Int J Med Sci 9(3):193–199CrossRef Baskar R, Lee KA, Yeo R, Yeoh KW (2012) Cancer and radiation therapy: current advances and future directions. Int J Med Sci 9(3):193–199CrossRef
11.
Zurück zum Zitat Cotler H, Chow R, Hamblin M, Carroll J (2016) The use of low level laser therapy (LLLT) for musculoskeletal pain. 118(24): 6072–6078 Cotler H, Chow R, Hamblin M, Carroll J (2016) The use of low level laser therapy (LLLT) for musculoskeletal pain. 118(24): 6072–6078
12.
Zurück zum Zitat Brosseau L, Welch V, Wells G, Tugwell P, Bie R, Gam A, … Morin M (2000) Low level laser therapy for osteoarthritis and rheumatoid arthritis: A metaanalysis. In The Journal of rheumatology (Vol. 27) Brosseau L, Welch V, Wells G, Tugwell P, Bie R, Gam A, … Morin M (2000) Low level laser therapy for osteoarthritis and rheumatoid arthritis: A metaanalysis. In The Journal of rheumatology (Vol. 27)
13.
Zurück zum Zitat Djavid GE, Mehrdad R, Ghasemi M, Hasan-Zadeh H, Sotoodeh-Manesh A, Pouryaghoub G (2007) In chronic low back pain, low level laser therapy combined with exercise is more beneficial than exercise alone in the long term: A randomised trial. Austr J Physiother Djavid GE, Mehrdad R, Ghasemi M, Hasan-Zadeh H, Sotoodeh-Manesh A, Pouryaghoub G (2007) In chronic low back pain, low level laser therapy combined with exercise is more beneficial than exercise alone in the long term: A randomised trial. Austr J Physiother
14.
Zurück zum Zitat Hopkins JT, McLoda TA, Seegmiller JG, Baxter GD (2004) Low-level laser therapy facilitates superficial wound healing in humans: a triple-blind, sham-controlled study. J Athl Train 39(3):223PubMedPubMedCentral Hopkins JT, McLoda TA, Seegmiller JG, Baxter GD (2004) Low-level laser therapy facilitates superficial wound healing in humans: a triple-blind, sham-controlled study. J Athl Train 39(3):223PubMedPubMedCentral
15.
Zurück zum Zitat Hodjati H, Rakei S, Johari HG, Geramizedeh B, Sabet B, Zeraatian S (2014) Low-level laser therapy: an experimental design for wound management: a case-controlled study in rabbit model. J Cutan Aesthet Surg 7(1):14–17CrossRef Hodjati H, Rakei S, Johari HG, Geramizedeh B, Sabet B, Zeraatian S (2014) Low-level laser therapy: an experimental design for wound management: a case-controlled study in rabbit model. J Cutan Aesthet Surg 7(1):14–17CrossRef
16.
Zurück zum Zitat Konstantinovic LM, Cutovic MR, Milovanovic AN, Jovic SJ, Dragin AS, Letic MD, Miler VM (2010) Low-level laser therapy for acute neck pain with radiculopathy: a double-blind placebo-controlled randomized study. Pain Medicine (United States) 11(8):1169–1178CrossRef Konstantinovic LM, Cutovic MR, Milovanovic AN, Jovic SJ, Dragin AS, Letic MD, Miler VM (2010) Low-level laser therapy for acute neck pain with radiculopathy: a double-blind placebo-controlled randomized study. Pain Medicine (United States) 11(8):1169–1178CrossRef
17.
Zurück zum Zitat Whelan HT, Buchmann EV, Dhokalia A, Kane MP, Whelan NT, Wong-Riley MTT, … Jett M (2003) Effect of NASA light-emitting diode irradiation on molecular changes for wound healing in diabetic mice. J Clin Laser Med Surg, 21(2), 67–74 Whelan HT, Buchmann EV, Dhokalia A, Kane MP, Whelan NT, Wong-Riley MTT, … Jett M (2003) Effect of NASA light-emitting diode irradiation on molecular changes for wound healing in diabetic mice. J Clin Laser Med Surg, 21(2), 67–74
18.
Zurück zum Zitat Jafarirad S, Hammami Torghabe E, Rasta SH, Salehi R (2018) A novel non-invasive strategy for low-level laser-induced cancer therapy by using new Ag/ZnO and Nd/ZnO functionalized reduced graphene oxide nanocomposites. Artificial Cells, Nanomedicine and Biotechnology 46(sup2):800–816CrossRef Jafarirad S, Hammami Torghabe E, Rasta SH, Salehi R (2018) A novel non-invasive strategy for low-level laser-induced cancer therapy by using new Ag/ZnO and Nd/ZnO functionalized reduced graphene oxide nanocomposites. Artificial Cells, Nanomedicine and Biotechnology 46(sup2):800–816CrossRef
19.
Zurück zum Zitat Baxter GD, Liu L, Petrich S, Gisselman AS, Chapple C, Anders JJ, Tumilty S (2017) Low level laser therapy (photobiomodulation therapy) for breast cancer-related lymphedema: a systematic review. BMC Cancer 17(1):833CrossRef Baxter GD, Liu L, Petrich S, Gisselman AS, Chapple C, Anders JJ, Tumilty S (2017) Low level laser therapy (photobiomodulation therapy) for breast cancer-related lymphedema: a systematic review. BMC Cancer 17(1):833CrossRef
20.
Zurück zum Zitat Magrini TD, dos Santos NV, Milazzotto MP, Cerchiaro G, da Silva Martinho H (2012) Low-level laser therapy on MCF 7 cells: a micro-Fourier transform infrared spectroscopy study. J Biomed Opt 17(10):1015161CrossRef Magrini TD, dos Santos NV, Milazzotto MP, Cerchiaro G, da Silva Martinho H (2012) Low-level laser therapy on MCF 7 cells: a micro-Fourier transform infrared spectroscopy study. J Biomed Opt 17(10):1015161CrossRef
21.
Zurück zum Zitat Laakso L, McDonnell A, Powell K (2007) The effects of low level laser therapy (LLLT) on human breast cancer cell lines in vitro Laakso L, McDonnell A, Powell K (2007) The effects of low level laser therapy (LLLT) on human breast cancer cell lines in vitro
22.
Zurück zum Zitat Hamblin MR, Nelson ST, Strahan JR (2018) Photobiomodulation and cancer: what is the truth? Photomed Laser Surg 36(5):241–245CrossRef Hamblin MR, Nelson ST, Strahan JR (2018) Photobiomodulation and cancer: what is the truth? Photomed Laser Surg 36(5):241–245CrossRef
23.
Zurück zum Zitat Zecha JAEM, Raber-Durlacher JE, Nair RG, Epstein JB, Sonis ST, Elad S, … Bensadoun RJ (2016) Low level laser therapy/photobiomodulation in the management of side effects of chemoradiation therapy in head and neck cancer: part 1: mechanisms of action, dosimetric, and safety considerations. Support Care Cancer, 24(6), 2781–2792 Zecha JAEM, Raber-Durlacher JE, Nair RG, Epstein JB, Sonis ST, Elad S, … Bensadoun RJ (2016) Low level laser therapy/photobiomodulation in the management of side effects of chemoradiation therapy in head and neck cancer: part 1: mechanisms of action, dosimetric, and safety considerations. Support Care Cancer, 24(6), 2781–2792
24.
Zurück zum Zitat Sperandio FF, Giudice FS, Correa L, Decio SP Jr, Hamblin MR, de Sousa S (2013) Low-level laser therapy can produce increased aggressiveness of dysplastic and oral cancer cell lines by modulation of Akt/mTOR signaling pathway 71(2):839–847 Sperandio FF, Giudice FS, Correa L, Decio SP Jr, Hamblin MR, de Sousa S (2013) Low-level laser therapy can produce increased aggressiveness of dysplastic and oral cancer cell lines by modulation of Akt/mTOR signaling pathway 71(2):839–847
25.
Zurück zum Zitat Bamps M, Dok R, Nuyts S (2018) Low-level laser therapy stimulates proliferation in head and neck squamous cell carcinoma cells. Front Oncol 8(August):1–6 Bamps M, Dok R, Nuyts S (2018) Low-level laser therapy stimulates proliferation in head and neck squamous cell carcinoma cells. Front Oncol 8(August):1–6
26.
Zurück zum Zitat da Silva JL, Silva-de-Oliveira AFS, Andraus RAC, Maia LP (2020) Effects of low level laser therapy in cancer cells—a systematic review of the literature. Lasers Med Sci 35(3):523–529CrossRef da Silva JL, Silva-de-Oliveira AFS, Andraus RAC, Maia LP (2020) Effects of low level laser therapy in cancer cells—a systematic review of the literature. Lasers Med Sci 35(3):523–529CrossRef
27.
Zurück zum Zitat Meijer TG, Naipal KA, Jager A, Van Gent DC (2017) Ex vivo tumor culture systems for functional drug testing and therapy response prediction. Futur Sci OA 3(2) Meijer TG, Naipal KA, Jager A, Van Gent DC (2017) Ex vivo tumor culture systems for functional drug testing and therapy response prediction. Futur Sci OA 3(2)
28.
Zurück zum Zitat Stoddart MJ (2011) Cell viability assays: introduction. In M. J. Stoddart (Ed.), Mammalian Cell Viability: Methods and Protocols (pp. 1–6) Stoddart MJ (2011) Cell viability assays: introduction. In M. J. Stoddart (Ed.), Mammalian Cell Viability: Methods and Protocols (pp. 1–6)
29.
Zurück zum Zitat Shaheen F, Hammad Aziz M, Fakhar-e-Alam M, Atif M, Fatima M, Ahmad R, ... Ahmed M (2017) An in vitro study of the photodynamic effectiveness of GO-Ag nanocomposites against human breast cancer cells. Nanomaterials, 7(11), 401 Shaheen F, Hammad Aziz M, Fakhar-e-Alam M, Atif M, Fatima M, Ahmad R, ... Ahmed M (2017) An in vitro study of the photodynamic effectiveness of GO-Ag nanocomposites against human breast cancer cells. Nanomaterials, 7(11), 401
31.
Zurück zum Zitat Subramani R (2017) Pregnancy and breast cancer. progress in Molecular Biology and Translational Science 151: 81–111 Subramani R (2017) Pregnancy and breast cancer. progress in Molecular Biology and Translational Science 151: 81–111
32.
Zurück zum Zitat Kara C, Selamet H, Gökmenoğlu C, Kara N (2018) Low level laser therapy induces increased viability and proliferation in isolated cancer cells. Cell Prolif 51(2):1–6CrossRef Kara C, Selamet H, Gökmenoğlu C, Kara N (2018) Low level laser therapy induces increased viability and proliferation in isolated cancer cells. Cell Prolif 51(2):1–6CrossRef
33.
Zurück zum Zitat Otani K, Naito Y, Sakaguchi Y, Seo Y, Takahashi Y, Kikuta J, … Ishii M (2016) Cell-cycle-controlled radiation therapy was effective for treating a murine malignant melanoma cell line in vitro and in vivo. Sci Rep, 6(August): 1–8 Otani K, Naito Y, Sakaguchi Y, Seo Y, Takahashi Y, Kikuta J, … Ishii M (2016) Cell-cycle-controlled radiation therapy was effective for treating a murine malignant melanoma cell line in vitro and in vivo. Sci Rep, 6(August): 1–8
34.
Zurück zum Zitat Hall E, Giaccia A (2012) Radiobiology for the radiologist. In Lippincott Williams & Wilkins (7th ed.) Hall E, Giaccia A (2012) Radiobiology for the radiologist. In Lippincott Williams & Wilkins (7th ed.)
35.
Zurück zum Zitat Harrington K, Jankowska P, Hingorani M (2007) Molecular biology for the radiation oncologist: the 5Rs of radiobiology meet the hallmarks of cancer. Clin Oncol 19(8):561–571CrossRef Harrington K, Jankowska P, Hingorani M (2007) Molecular biology for the radiation oncologist: the 5Rs of radiobiology meet the hallmarks of cancer. Clin Oncol 19(8):561–571CrossRef
Metadaten
Titel
Fractionated low-level laser irradiation on breast cancer (MCF 7 cells) treatment
verfasst von
Nursakinah Suardi
Pegah Moradi Khaniabadi
Aijesta Taggo
Siti Farrah Mursyida Zulbaharin
Daruliza Kernain Mohd Azman
Sylvester Jande Gemanam
Publikationsdatum
31.07.2021
Verlag
Springer London
Erschienen in
Lasers in Medical Science / Ausgabe 2/2022
Print ISSN: 0268-8921
Elektronische ISSN: 1435-604X
DOI
https://doi.org/10.1007/s10103-021-03384-0

Weitere Artikel der Ausgabe 2/2022

Lasers in Medical Science 2/2022 Zur Ausgabe