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Published in: BMC Complementary Medicine and Therapies 1/2018

Open Access 01-12-2018 | Research article

Sotetsuflavone inhibits proliferation and induces apoptosis of A549 cells through ROS-mediated mitochondrial-dependent pathway

Authors: Shaohui Wang, Yanlan Hu, Yu Yan, Zhekang Cheng, Tongxiang Liu

Published in: BMC Complementary Medicine and Therapies | Issue 1/2018

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Abstract

Background

Sotetsuflavone is isolated from Cycas revoluta Thunb., which has biological activity against tumors. However, the anti-proliferative effects of sotetsuflavone on A549 cells and its mechanism are not fully elucidated.

Methods

This study investigated the mechanisms of growth inhibition, cell cycle arrest and apoptosis in non-small cell lung cancer A549 cells induced by sotetsuflavone and evaluated whether sotetsuflavone can be safely utilized by humans as therapeutic agent.

Results

We found that sotetsuflavone had significant antiproliferative activity against A549 cells. At the same time, the reactive oxygen species (ROS) content increased while the mitochondrial membrane potential and the ratio of Bcl-2/Bax decreased. Cleaved caspase-3, cleaved caspase-9, cytochrome C and Bax expression increased, and Cyclin D1, CDK4, cleaved caspase-8 and Bcl-2 expression decreased. Interestingly, we demonstrated that sotetsuflavone could effectively inhibit the G0/G1 cycle progression, and then induce the endogenous apoptosis pathway. Our results show that sotetsuflavone could inhibit the growth of A549 cells by up-regulating intracellular ROS levels and causing the mitochondrial membrane potential to collapse, inducing G0/G1 phase arrest and endogenous apoptosis.

Conclusions

In short, we confirm that sotetsuflavone had an inhibitory effect on A549 cells and discovered that it causes apoptosis of A549 lung cancer cells. Sotetsuflavone may be used as a novel candidate for anti-tumor therapy in patients with lung cancer.
Literature
1.
go back to reference Couzin-Frankel J. Clinical trials. Experimental cancer therapies move to the front line. Science. 2012;335:282–3.CrossRefPubMed Couzin-Frankel J. Clinical trials. Experimental cancer therapies move to the front line. Science. 2012;335:282–3.CrossRefPubMed
2.
go back to reference Underwood JM, Townsend JS, Tai E, Davis SP, Stewart SL, White A, Momin B, Fairley TL. Racial and regional disparities in lung cancer incidence. Cancer. 2012;118:1910–8.CrossRefPubMed Underwood JM, Townsend JS, Tai E, Davis SP, Stewart SL, White A, Momin B, Fairley TL. Racial and regional disparities in lung cancer incidence. Cancer. 2012;118:1910–8.CrossRefPubMed
3.
go back to reference Choi YJ, Uehara Y, Ji YP, Chung KW, Ha YM, Ji MK, Yu MS, Chun P, Park JW, Moon HR. Suppression of melanogenesis by a newly synthesized compound, MHY966 via the nitric oxide/protein kinase G signaling pathway in murine skin. J Dermatol Sci. 2012;68:164–71.CrossRefPubMed Choi YJ, Uehara Y, Ji YP, Chung KW, Ha YM, Ji MK, Yu MS, Chun P, Park JW, Moon HR. Suppression of melanogenesis by a newly synthesized compound, MHY966 via the nitric oxide/protein kinase G signaling pathway in murine skin. J Dermatol Sci. 2012;68:164–71.CrossRefPubMed
4.
go back to reference Tariq N, Jiang W, Ralph S, Nagla AK. Thyroid metastasis from non-small cell lung cancer. Case Rep Oncol Med. 2013;20:208–13. Tariq N, Jiang W, Ralph S, Nagla AK. Thyroid metastasis from non-small cell lung cancer. Case Rep Oncol Med. 2013;20:208–13.
5.
7.
go back to reference Yuko E, Katsuhiko Y, Yuichi K, Michiko Y, Takashi Y, Airo T. Green tea extract atten-uates MNU-induced photoreceptor cell apoptosis via suppression of heme oxygenase-1. J Toxicol Pathol. 2016;29:61–5.CrossRef Yuko E, Katsuhiko Y, Yuichi K, Michiko Y, Takashi Y, Airo T. Green tea extract atten-uates MNU-induced photoreceptor cell apoptosis via suppression of heme oxygenase-1. J Toxicol Pathol. 2016;29:61–5.CrossRef
8.
go back to reference Kao SJ, Lee WJ, Chang JH, Chow JM, Chung CL, Hung WY, Chien MH. Suppression of reactive oxygen species-mediated ERK and JNK activation sensitizes dihydromyricetin-induced mitochondrial apoptosis in human non-small cell lung cancer. Environ Toxicol. 2017;32:1426–38.CrossRefPubMed Kao SJ, Lee WJ, Chang JH, Chow JM, Chung CL, Hung WY, Chien MH. Suppression of reactive oxygen species-mediated ERK and JNK activation sensitizes dihydromyricetin-induced mitochondrial apoptosis in human non-small cell lung cancer. Environ Toxicol. 2017;32:1426–38.CrossRefPubMed
9.
go back to reference Ahmed K, V Lakshma N, Chandrakant B, Vishnuvardhan MVPS, Adla M. Investigation of the mechanism and apoptotic pathway induced by 4β cinnamido linked podophyllotoxins against human lung cancer cells A549. Apoptosis. 2015;20:1518–29.CrossRef Ahmed K, V Lakshma N, Chandrakant B, Vishnuvardhan MVPS, Adla M. Investigation of the mechanism and apoptotic pathway induced by 4β cinnamido linked podophyllotoxins against human lung cancer cells A549. Apoptosis. 2015;20:1518–29.CrossRef
10.
go back to reference Norberg E, Orrenius S, Zhivotovsky B. Mitochondrial regulation of cell death: processing of apoptosis-inducing factor (AIF). Biochem Biophys Res Commun. 2010;396:95–100.CrossRefPubMed Norberg E, Orrenius S, Zhivotovsky B. Mitochondrial regulation of cell death: processing of apoptosis-inducing factor (AIF). Biochem Biophys Res Commun. 2010;396:95–100.CrossRefPubMed
11.
go back to reference Brasacchio D, Alsop AE, Noori T, Lufti M, Iyer S, Simpson KJ, Bird PI, Kluck RM, Johnstone RW, Trapani JA. Epigenetic control of mitochondrial cell death through PACS1-mediated regulation of BAX/BAK oligomerization. Cell Death Differ. 2017;4:961–70.CrossRef Brasacchio D, Alsop AE, Noori T, Lufti M, Iyer S, Simpson KJ, Bird PI, Kluck RM, Johnstone RW, Trapani JA. Epigenetic control of mitochondrial cell death through PACS1-mediated regulation of BAX/BAK oligomerization. Cell Death Differ. 2017;4:961–70.CrossRef
12.
go back to reference Moghtaderi H, Sepehri H, Attari F. Combination of arabinogalactan and curcumin induces apoptosis in breast cancer cells in vitro and inhibits tumor growth via overexpression of p53 level in vivo. Biomed Pharmacother. 2017;88:582–94.CrossRefPubMed Moghtaderi H, Sepehri H, Attari F. Combination of arabinogalactan and curcumin induces apoptosis in breast cancer cells in vitro and inhibits tumor growth via overexpression of p53 level in vivo. Biomed Pharmacother. 2017;88:582–94.CrossRefPubMed
13.
go back to reference Zhou XL, Shi T, Yang L, Guo J, Peng SF, Shi ZH. Research on the effect and mechanism of total ginkgo flavones-glycoides on hepatocyte apoptosis in rats weih nonalcoholic fatty liver diserse. Chin J Intergr Trad West Med Dig. 2017;25:439–48. Zhou XL, Shi T, Yang L, Guo J, Peng SF, Shi ZH. Research on the effect and mechanism of total ginkgo flavones-glycoides on hepatocyte apoptosis in rats weih nonalcoholic fatty liver diserse. Chin J Intergr Trad West Med Dig. 2017;25:439–48.
14.
go back to reference Shu W, Ma QJ, Ye X. CyclinE-CDK2 and its Related Proteins in the Cell Cycle. Lett Biotechnol. 2008;19:97–100. Shu W, Ma QJ, Ye X. CyclinE-CDK2 and its Related Proteins in the Cell Cycle. Lett Biotechnol. 2008;19:97–100.
15.
go back to reference Fang Y, Hou Q, Lu Y. Effects of isorhapontigenin on cell cycle arrest and downregulation of cyclin D1 expression in bladder cancer cells. Chin J Pathophysiol. 2013;29:442–8. Fang Y, Hou Q, Lu Y. Effects of isorhapontigenin on cell cycle arrest and downregulation of cyclin D1 expression in bladder cancer cells. Chin J Pathophysiol. 2013;29:442–8.
16.
go back to reference Wei B, Huang Q, Huang S, Mai W, Zhong X. Trichosanthin-induced autophagy in gastric cancer cell MKN-45 is dependent on reactive oxygen species (ROS) and NF-κB/p53 pathway. J Pharmacol Sci. 2016;131:77–83.CrossRefPubMed Wei B, Huang Q, Huang S, Mai W, Zhong X. Trichosanthin-induced autophagy in gastric cancer cell MKN-45 is dependent on reactive oxygen species (ROS) and NF-κB/p53 pathway. J Pharmacol Sci. 2016;131:77–83.CrossRefPubMed
17.
go back to reference Kowalska MT, Itzhak Y, Puett D. Presence of aromatase inhibitors in cycads. J Ethnopharmacol. 1995;28:113–6.CrossRef Kowalska MT, Itzhak Y, Puett D. Presence of aromatase inhibitors in cycads. J Ethnopharmacol. 1995;28:113–6.CrossRef
18.
go back to reference Wang SH, Liu TX. Effects of total flavonoids from Cycas revolute on inhibition and immune function of model mice with Lewis lung cancer. Chin J Immun. 2016;32:1598–602. Wang SH, Liu TX. Effects of total flavonoids from Cycas revolute on inhibition and immune function of model mice with Lewis lung cancer. Chin J Immun. 2016;32:1598–602.
19.
go back to reference Zhou Y, Zang XR, Jiang SY, CL LI, Peng SL. Chemical constituents of cycas panzhihuaensis. Chin J Appl Environ Biol. 1999;5:367–70. Zhou Y, Zang XR, Jiang SY, CL LI, Peng SL. Chemical constituents of cycas panzhihuaensis. Chin J Appl Environ Biol. 1999;5:367–70.
20.
go back to reference Wang S, Yan Y, Cheng Z, Hu Y, Liu T. Sotetsuflavone suppresses invasion and metastasis in non-small-cell lung cancer A549 cells by reversing EMT via the TNF-α/NF-κB and PI3K/AKT signaling pathway. Cell Death Disco. 2018;4:26. Wang S, Yan Y, Cheng Z, Hu Y, Liu T. Sotetsuflavone suppresses invasion and metastasis in non-small-cell lung cancer A549 cells by reversing EMT via the TNF-α/NF-κB and PI3K/AKT signaling pathway. Cell Death Disco. 2018;4:26.
21.
go back to reference Xu H, Gong Z, Zhou S, Yang S, Wang D, Chen X, Wu J, Liu L, Zhong S, Zhao J, Tang J. Liposomal curcumin targeting endometrial Cancer through the NF-κB pathway. Cell Physiol Biochem. 2018;48:569–82.CrossRefPubMed Xu H, Gong Z, Zhou S, Yang S, Wang D, Chen X, Wu J, Liu L, Zhong S, Zhao J, Tang J. Liposomal curcumin targeting endometrial Cancer through the NF-κB pathway. Cell Physiol Biochem. 2018;48:569–82.CrossRefPubMed
22.
go back to reference Lebel CP, Ischiropoulos H, Bondy SC. Evaluation of the probe 2′,7′-dichlorofluorescin as an indicator of reactive oxygen species formation and oxidative stress. Chem Res Toxicol. 1992;5:227–31.CrossRefPubMed Lebel CP, Ischiropoulos H, Bondy SC. Evaluation of the probe 2′,7′-dichlorofluorescin as an indicator of reactive oxygen species formation and oxidative stress. Chem Res Toxicol. 1992;5:227–31.CrossRefPubMed
23.
go back to reference Xiong Q, Kadota S, Tani T, Namba T. Anti-oxidative effects of phenylethanoids from Cistanche deserticola. Biol Pharm Bull. 1996;19:1580–5.CrossRefPubMed Xiong Q, Kadota S, Tani T, Namba T. Anti-oxidative effects of phenylethanoids from Cistanche deserticola. Biol Pharm Bull. 1996;19:1580–5.CrossRefPubMed
25.
go back to reference Renault TT, Chipuk JE. Death upon a kiss: mitochondrial outer membrane composition and organelle communication govern sensitivity to BAK/BAX- dependent apoptosis. Chem Biol. 2014;21:114–23.CrossRefPubMed Renault TT, Chipuk JE. Death upon a kiss: mitochondrial outer membrane composition and organelle communication govern sensitivity to BAK/BAX- dependent apoptosis. Chem Biol. 2014;21:114–23.CrossRefPubMed
26.
go back to reference Zhang Q, An R, Tian X, Yang M, Li M, Lou J, Xu L, Dong Z. β-Caryophyllene pretreatment alleviates focal cerebral ischemia-reperfusion injury by activating PI3K/Akt signaling pathway. Neurochem Res. 2017;42:1459–69.CrossRefPubMed Zhang Q, An R, Tian X, Yang M, Li M, Lou J, Xu L, Dong Z. β-Caryophyllene pretreatment alleviates focal cerebral ischemia-reperfusion injury by activating PI3K/Akt signaling pathway. Neurochem Res. 2017;42:1459–69.CrossRefPubMed
27.
go back to reference Chen HC, Kanai M, Inoue-Yamauchi A, Tu HC, Huang Y, Ren D, Kim H, Takeda S, Reyna DE, Chan PM. An interconnected hierarchical model of cell death regulation by the BCL-2 family. Nat Cell Biol. 2015;17:1270–81.CrossRefPubMedPubMedCentral Chen HC, Kanai M, Inoue-Yamauchi A, Tu HC, Huang Y, Ren D, Kim H, Takeda S, Reyna DE, Chan PM. An interconnected hierarchical model of cell death regulation by the BCL-2 family. Nat Cell Biol. 2015;17:1270–81.CrossRefPubMedPubMedCentral
29.
go back to reference Pant K, Gupta P, Damania P, Yadav AK, Gupta A, Ashraf A, Venugopal SK. Mineral pitch induces apoptosis and inhibits proliferation via modulating reactive oxygen species in hepatic cancer cells. BMC Complement Altern Med. 2016;16:148.CrossRefPubMedPubMedCentral Pant K, Gupta P, Damania P, Yadav AK, Gupta A, Ashraf A, Venugopal SK. Mineral pitch induces apoptosis and inhibits proliferation via modulating reactive oxygen species in hepatic cancer cells. BMC Complement Altern Med. 2016;16:148.CrossRefPubMedPubMedCentral
30.
go back to reference Yang J, Wu LJ, Tashino S, Onodera S, Ikejima T. Protein tyrosine kinase pathway-derived ROS/NO productions contribute to G2/M cell cycle arrest in evodiamine-treated human cervix carcinoma HeLa cells. Free Radic Res. 2010;44:792–802.CrossRefPubMed Yang J, Wu LJ, Tashino S, Onodera S, Ikejima T. Protein tyrosine kinase pathway-derived ROS/NO productions contribute to G2/M cell cycle arrest in evodiamine-treated human cervix carcinoma HeLa cells. Free Radic Res. 2010;44:792–802.CrossRefPubMed
31.
go back to reference Mondal A, Bennett LL. Resveratrol enhances the efficacy of sorafenib mediated apoptosis in human breast cancer MCF7 cells through ROS, cell cycle inhibition, caspase 3 and PARP cleavage. Biomed Pharmacother. 2016;84:1906–14.CrossRefPubMed Mondal A, Bennett LL. Resveratrol enhances the efficacy of sorafenib mediated apoptosis in human breast cancer MCF7 cells through ROS, cell cycle inhibition, caspase 3 and PARP cleavage. Biomed Pharmacother. 2016;84:1906–14.CrossRefPubMed
32.
go back to reference Shi H, Li Y, Ren X, Zhang Y, Yang Z, Qi C. A novel quinazoline-based analog induces G2/M cell cycle arrest and apoptosis in human A549 lung cancer cells via a ROS-dependent mechanism. Biochem Biophys Res Commun. 2017;486:314–20.CrossRefPubMed Shi H, Li Y, Ren X, Zhang Y, Yang Z, Qi C. A novel quinazoline-based analog induces G2/M cell cycle arrest and apoptosis in human A549 lung cancer cells via a ROS-dependent mechanism. Biochem Biophys Res Commun. 2017;486:314–20.CrossRefPubMed
Metadata
Title
Sotetsuflavone inhibits proliferation and induces apoptosis of A549 cells through ROS-mediated mitochondrial-dependent pathway
Authors
Shaohui Wang
Yanlan Hu
Yu Yan
Zhekang Cheng
Tongxiang Liu
Publication date
01-12-2018
Publisher
BioMed Central
Published in
BMC Complementary Medicine and Therapies / Issue 1/2018
Electronic ISSN: 2662-7671
DOI
https://doi.org/10.1186/s12906-018-2300-z

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