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Hidrojen peroksit ve mitokondrinin insan meme kanseri hücrelerine etkisi

Year 2023, Volume: 48 Issue: 1, 109 - 116, 31.03.2023
https://doi.org/10.17826/cumj.1187258

Abstract

Amaç: Bu çalışmada, hidrojen peroksit (H2O2), insan mezenkimal kök hücreleri (İMKH) ve insan meme kanseri hücrelerinden (MCF-7) izole edilen mitokondrilerin, MCF-7 hücre proliferasyonuna etkisinin değerlendirilmesi amaçlanmıştır.
Gereç ve Yöntem: İMKH ve MCF-7 hücrelerinin mitokondrileri kitte belirtilen protokollere göre izole edildi ve protein miktarı bikinkoninik asit yöntemiyle (BCA) ölçüldü. H2O2 dozları (0-1000 µM), MCF-7 ve İMKH’lerden elde edilen mitokondrilerin, MCF-7 hücrelerine transferi sonrasında hücre canlılığı tetrazolyum tuzu (MTT) yöntemiyle değerlendirildi. Örneklerin absorbans değerleri (570 nm) plate okuyucuyla ölçülerek hücre yüzdeleri hesaplandı.
Bulgular: İMKH’lerden izole edilen mitokondrilerin ATP düzeyinin, MCF-7’lerden daha yüksek olduğu bulundu. MCF-7 hücrelerinin canlılığı H2O2’nin 30 µM (%19), 40 µM (%26), 50 µM (%39), 75 µM (%39), 100 µM (%36), 200 µM (%28), 400 µM (%23), 800 µM (%22) ve 1000 µM dozunda %23 oranında anlamlı olarak azaldı. İMKH’lerin mitokondrilerinin tek başına transferinin hücre proliferasyonunda azalma eğilimine neden olduğu belirlenirken, herhangi bir anlamlılık tespit edilmedi. Ancak, 10 µM ve 1000 µM H2O2’yle birlikte yapılan sağlıklı mitokondri transferinin MCF-7’lerin çoğalmasını azalttığı belirlendi (sırasıyla %14 ve %8).
Sonuç: H2O2 ve İMKH’lerden izole edilen sağlıklı mitokondrilerin MCF-7 hücrelerine transferinin proliferatif süreçlerle ilişkili olduğu görülürken, kanser hücrelerine sağlıklı mitokondri naklinin, hastalığın tedavisinde umut vadeden yeni bir yöntem olabileceği düşünülmektedir.

References

  • Al-Humaidi RB, Fayed B, Shakartalla SB, Jagal J, Jayakumar MN, Shareef ZMA et al. Optimum inhibition of mcf-7 breast cancer cells by efficient targeting of the macropinocytosis using optimized paclitaxel-loaded nanoparticles. Life Sci. 2022;305:120778..
  • Alamdari SG, Amini M, Jalilzadeh N, Baradaran B, Mohammadzadeh R, Mokhtarzadeh A et al. Recent advances in nanoparticle-based photothermal therapy for breast cancer. J Control Release. 2022;349:269-303.
  • Comsa S, Cimpean AM, Raica M. The story of MCF-7 breast cancer cell line: 40 years of experience in research. Anticancer Res. 2015;35:3147-54.
  • Levenson AS, Jordan VC. Mcf-7: The first hormone-responsive breast cancer cell line. Cancer Res. 1997;57:3071-8.
  • Soule HD, Vazguez J, Long A, Albert S, Brennan M. A human cell line from a pleural effusion derived from a breast carcinoma. J Natl Cancer Inst. 1973;51:1409-16.
  • Lim SD, Sun C, Lambeth JD, Marshall F, Amin M, Chung L et al. Increased nox1 and hydrogen peroxide in prostate cancer. The Prostate. 2005;62:200-7.
  • Szatrowski TP, Nathan CF. Production of large amounts of hydrogen peroxide by human tumor cells. Cancer Res. 1991;51:794-8.
  • Abbasi A, Pakravan N, Hassan ZM. Hyaluronic acid optimises therapeutic effects of hydrogen peroxide-induced oxidative stress on breast cancer. J Cell Physiol. 2021;236:1494-514.
  • Tang J, Wang N, Wu J, Ren P, Li J, Yang L et al. Synergistic effect and reduced toxicity by intratumoral injection of cytarabine-loaded hyaluronic acid hydrogel conjugates combined with radiotherapy on lung cancer. Invest New Drugs. 2019;37:1146-57.
  • Vilema-Enriquez G, Arroyo A, Grijalva M, Amador-Zafra RI, Camacho J. Molecular and cellular effects of hydrogen peroxide on human lung cancer cells: Potential therapeutic implications. Oxid Med Cell Longev. 2016;2016:1908164.
  • McCully JD, del Nido PJ, Emani SM. Mitochondrial transplantation for organ rescue. Mitochondrion. 2022;64:27-33.
  • Osellame LD, Blacker TS, Duchen MR. Cellular and molecular mechanisms of mitochondrial function. Best Pract Res Clin Endocrinol Metab. 2012;26:711-23.
  • Chang JC, Chang HS, Wu YC, Cheng WL, Lin TT, Chang HJ et al. Mitochondrial transplantation regulates antitumour activity, chemoresistance and mitochondrial dynamics in breast cancer. J Exp Clin Cancer Res. 2019;38:30.
  • Kheirandish-Rostami M, Roudkenar MH, Jahanian-Najafabadi A, Tomita K, Kuwahara Y, Sato T et al. Mitochondrial characteristics contribute to proliferation and migration potency of mda-mb-231 cancer cells and their response to cisplatin treatment. Life Sci. 2020;244:117339.
  • Caicedo A, Fritz V, Brondello JM, Ayala M, Dennemont I, Abdellaoui N et al. Mitoception as a new tool to assess the effects of mesenchymal stem/stromal cell mitochondria on cancer cell metabolism and function. Sci Rep. 2015;5:9073.
  • Roushandeh AM, Tomita K, Kuwahara Y, Jahanian-Najafabadi A, Igarashi K, Roudkenar MH et al. Transfer of healthy fibroblast-derived mitochondria to hela rho(0) and sas rho(0) cells recovers the proliferation capabilities of these cancer cells under conventional culture medium, but increase their sensitivity to cisplatin-induced apoptotic death. Mol Biol Rep. 2020;47:4401-11.
  • Strober W. Trypan blue exclusion test of cell viability. Curr Protoc Immunol. 2015;111:A3.B. 1-A3.B.3.
  • Chua PJ, Yip GWC, Bay BH. Cell cycle arrest induced by hydrogen peroxide is associated with modulation of oxidative stress related genes in breast cancer cells. Exp Biol Med. 2009;234:1086-94.
  • Liu SL, Lin X, Shi DY, Cheng J, Wu CQ, Zhang YD, et al. Reactive oxygen species stimulated human hepatoma cell proliferation via cross-talk between pi3-k/pkb and jnk signaling pathways. Arch Biochem Biophys. 2002;406:173-82.
  • Sharma S, Venkatesan V, Prakhya BM, Bhonde R. Human mesenchymal stem cells as a novel platform for simultaneous evaluation of cytotoxicity and genotoxicity of pharmaceuticals. Mutagenesis. 2015;30:391-9.
  • Marabini L, Calo R, Braga PC. Protective effect of erdosteine metabolite I against hydrogen peroxide-induced oxidative DNA-damage in lung epithelial cells. Arzneimittelforschung. 2011;61:700-6.
  • Vasanthan J, Gurusamy N, Rajasingh S, Sigamani V, Kirankumar S, Thomas EL et al. Role of human mesenchymal stem cells in regenerative therapy. Cells. 2021;10:54.
  • Gomzikova MO, James V, Rizvanov AA. Mitochondria donation by mesenchymal stem cells: Current understanding and mitochondria transplantation strategies. Front Cell Dev Biol. 2021;9:653322.
  • Elliott RL, Jiang XP, Head JF. Mitochondria organelle transplantation: Introduction of normal epithelial mitochondria into human cancer cells inhibits proliferation and increases drug sensitivity. Breast Cancer Res Treat. 2012;136:347-54.
  • Aharoni-Simon M, Ben-Yaakov K, Sharvit-Bader M, Raz D, Haim Y, Ghannam W et al. Oxidative stress facilitates exogenous mitochondria internalization and survival in retinal ganglion precursor-like cells. Sci Rep. 2022;12:5122.
  • Coppi E, Pugliese AM, Urbani S, Melani A, Cerbai E, Mazzanti B et al. Atp modulates cell proliferation and elicits two different electrophysiological responses in human mesenchymal stem cells. Stem Cells. 2007;25:1840-9.
  • Drew B, Leeuwenburgh C. Method for measuring atp production in isolated mitochondria: Atp production in brain and liver mitochondria of fischer-344 rats with age and caloric restriction. Am J Physiol Regul Integr Comp Physiol. 2003; 285:R1259-67.

The effects of hydrogen peroxide and mitochondria on human breast cancer cells

Year 2023, Volume: 48 Issue: 1, 109 - 116, 31.03.2023
https://doi.org/10.17826/cumj.1187258

Abstract

Purpose: It was aimed to evaluate the effect of hydrogen peroxide (H2O2), mitochondria isolated from human breast cancer cells (MCF-7) and human mesenchymal stem cells (IMSCs) on MCF-7 cell proliferation in this study.
Materials and Methods: Mitochondria of IMSCs and MCF-7 cells were isolated according to the protocols specified in the kit and the protein amount of mitochondria was measured by the bicinchoninic acid method (BCA). H2O2 doses (0-1000 µM), mitochondria obtained from MCF-7 and IMSCs were transferred to MCF-7 cells and the viability was evaluated by tetrazolium salt (MTT) method. The cell percentages were calculated by measuring absorbance of the samples at 570 nm with a plate reader.
Results: It was found that, ATP level of the mitochondria isolated from IMSCs was higher than MCF-7s. MCF-7 cell viability decreased significantly in 30 µM (%19), 40 µM (%26), 50 µM (%39), 75 µM (%39), 100 µM (%36), 200 µM (%28), 400 µM (%23), 800 µM (%22) and 1000 µM (%23) H2O2 doses. The transfer of IMSCs mitochondria caused a tendency to decrease in cell proliferation, but no significance was detected. But, it was found that healthy mitochondria transfer with 10 µM and 1000 µM H2O2 reduced the proliferation of MCF-7s (respectively %14 and % 8).
Conclusion: It was determined that the transfer of healthy mitochondria isolated from IMSCs and H2O2 to MCF-7 is associated with proliferative processes, however transplantation of the healthy mitochondria into cancer cells is thought to be a promising new method in the treatment of the disease.

References

  • Al-Humaidi RB, Fayed B, Shakartalla SB, Jagal J, Jayakumar MN, Shareef ZMA et al. Optimum inhibition of mcf-7 breast cancer cells by efficient targeting of the macropinocytosis using optimized paclitaxel-loaded nanoparticles. Life Sci. 2022;305:120778..
  • Alamdari SG, Amini M, Jalilzadeh N, Baradaran B, Mohammadzadeh R, Mokhtarzadeh A et al. Recent advances in nanoparticle-based photothermal therapy for breast cancer. J Control Release. 2022;349:269-303.
  • Comsa S, Cimpean AM, Raica M. The story of MCF-7 breast cancer cell line: 40 years of experience in research. Anticancer Res. 2015;35:3147-54.
  • Levenson AS, Jordan VC. Mcf-7: The first hormone-responsive breast cancer cell line. Cancer Res. 1997;57:3071-8.
  • Soule HD, Vazguez J, Long A, Albert S, Brennan M. A human cell line from a pleural effusion derived from a breast carcinoma. J Natl Cancer Inst. 1973;51:1409-16.
  • Lim SD, Sun C, Lambeth JD, Marshall F, Amin M, Chung L et al. Increased nox1 and hydrogen peroxide in prostate cancer. The Prostate. 2005;62:200-7.
  • Szatrowski TP, Nathan CF. Production of large amounts of hydrogen peroxide by human tumor cells. Cancer Res. 1991;51:794-8.
  • Abbasi A, Pakravan N, Hassan ZM. Hyaluronic acid optimises therapeutic effects of hydrogen peroxide-induced oxidative stress on breast cancer. J Cell Physiol. 2021;236:1494-514.
  • Tang J, Wang N, Wu J, Ren P, Li J, Yang L et al. Synergistic effect and reduced toxicity by intratumoral injection of cytarabine-loaded hyaluronic acid hydrogel conjugates combined with radiotherapy on lung cancer. Invest New Drugs. 2019;37:1146-57.
  • Vilema-Enriquez G, Arroyo A, Grijalva M, Amador-Zafra RI, Camacho J. Molecular and cellular effects of hydrogen peroxide on human lung cancer cells: Potential therapeutic implications. Oxid Med Cell Longev. 2016;2016:1908164.
  • McCully JD, del Nido PJ, Emani SM. Mitochondrial transplantation for organ rescue. Mitochondrion. 2022;64:27-33.
  • Osellame LD, Blacker TS, Duchen MR. Cellular and molecular mechanisms of mitochondrial function. Best Pract Res Clin Endocrinol Metab. 2012;26:711-23.
  • Chang JC, Chang HS, Wu YC, Cheng WL, Lin TT, Chang HJ et al. Mitochondrial transplantation regulates antitumour activity, chemoresistance and mitochondrial dynamics in breast cancer. J Exp Clin Cancer Res. 2019;38:30.
  • Kheirandish-Rostami M, Roudkenar MH, Jahanian-Najafabadi A, Tomita K, Kuwahara Y, Sato T et al. Mitochondrial characteristics contribute to proliferation and migration potency of mda-mb-231 cancer cells and their response to cisplatin treatment. Life Sci. 2020;244:117339.
  • Caicedo A, Fritz V, Brondello JM, Ayala M, Dennemont I, Abdellaoui N et al. Mitoception as a new tool to assess the effects of mesenchymal stem/stromal cell mitochondria on cancer cell metabolism and function. Sci Rep. 2015;5:9073.
  • Roushandeh AM, Tomita K, Kuwahara Y, Jahanian-Najafabadi A, Igarashi K, Roudkenar MH et al. Transfer of healthy fibroblast-derived mitochondria to hela rho(0) and sas rho(0) cells recovers the proliferation capabilities of these cancer cells under conventional culture medium, but increase their sensitivity to cisplatin-induced apoptotic death. Mol Biol Rep. 2020;47:4401-11.
  • Strober W. Trypan blue exclusion test of cell viability. Curr Protoc Immunol. 2015;111:A3.B. 1-A3.B.3.
  • Chua PJ, Yip GWC, Bay BH. Cell cycle arrest induced by hydrogen peroxide is associated with modulation of oxidative stress related genes in breast cancer cells. Exp Biol Med. 2009;234:1086-94.
  • Liu SL, Lin X, Shi DY, Cheng J, Wu CQ, Zhang YD, et al. Reactive oxygen species stimulated human hepatoma cell proliferation via cross-talk between pi3-k/pkb and jnk signaling pathways. Arch Biochem Biophys. 2002;406:173-82.
  • Sharma S, Venkatesan V, Prakhya BM, Bhonde R. Human mesenchymal stem cells as a novel platform for simultaneous evaluation of cytotoxicity and genotoxicity of pharmaceuticals. Mutagenesis. 2015;30:391-9.
  • Marabini L, Calo R, Braga PC. Protective effect of erdosteine metabolite I against hydrogen peroxide-induced oxidative DNA-damage in lung epithelial cells. Arzneimittelforschung. 2011;61:700-6.
  • Vasanthan J, Gurusamy N, Rajasingh S, Sigamani V, Kirankumar S, Thomas EL et al. Role of human mesenchymal stem cells in regenerative therapy. Cells. 2021;10:54.
  • Gomzikova MO, James V, Rizvanov AA. Mitochondria donation by mesenchymal stem cells: Current understanding and mitochondria transplantation strategies. Front Cell Dev Biol. 2021;9:653322.
  • Elliott RL, Jiang XP, Head JF. Mitochondria organelle transplantation: Introduction of normal epithelial mitochondria into human cancer cells inhibits proliferation and increases drug sensitivity. Breast Cancer Res Treat. 2012;136:347-54.
  • Aharoni-Simon M, Ben-Yaakov K, Sharvit-Bader M, Raz D, Haim Y, Ghannam W et al. Oxidative stress facilitates exogenous mitochondria internalization and survival in retinal ganglion precursor-like cells. Sci Rep. 2022;12:5122.
  • Coppi E, Pugliese AM, Urbani S, Melani A, Cerbai E, Mazzanti B et al. Atp modulates cell proliferation and elicits two different electrophysiological responses in human mesenchymal stem cells. Stem Cells. 2007;25:1840-9.
  • Drew B, Leeuwenburgh C. Method for measuring atp production in isolated mitochondria: Atp production in brain and liver mitochondria of fischer-344 rats with age and caloric restriction. Am J Physiol Regul Integr Comp Physiol. 2003; 285:R1259-67.
There are 27 citations in total.

Details

Primary Language English
Subjects Clinical Sciences
Journal Section Research
Authors

Zehra Çiçek 0000-0003-3205-5463

Publication Date March 31, 2023
Acceptance Date January 11, 2023
Published in Issue Year 2023 Volume: 48 Issue: 1

Cite

MLA Çiçek, Zehra. “The Effects of Hydrogen Peroxide and Mitochondria on Human Breast Cancer Cells”. Cukurova Medical Journal, vol. 48, no. 1, 2023, pp. 109-16, doi:10.17826/cumj.1187258.