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Research Article

Schisandrin B promotes senescence of activated hepatic stellate cell via NCOA4-mediated ferritinophagy

ORCID Icon, , , , , , & ORCID Icon show all
Pages 621-629 | Received 22 Sep 2022, Accepted 07 Mar 2023, Published online: 03 Apr 2023

References

  • Ameziane-El-Hassani R, Dupuy C. 2017. Detection of reactive oxygen species in cells undergoing oncogene-induced senescence. Methods Mol Biol. 1534:139–145.
  • Azarm K, Bhardwaj A, Kim E, Smith S. 2020. Persistent telomere cohesion protects aged cells from premature senescence. Nat Commun. 11(1):3321.
  • Bataller R, Brenner DA. 2005. Liver fibrosis. J Clin Invest. 115(2):209–218.
  • Bernadotte A, Mikhelson VM, Spivak IM. 2016. Markers of cellular senescence. Telomere shortening as a marker of cellular senescence. Aging. 8(1):3–11.
  • Bogdan AR, Miyazawa M, Hashimoto K, Tsuji Y. 2016. Regulators of iron homeostasis: new players in metabolism, cell death, and disease. Trends Biochem Sci. 41(3):274–286.
  • Chen Q, Bao L, Lv L, Xie F, Zhou X, Zhang H, Zhang G. 2021. Schisandrin B regulates macrophage polarization and alleviates liver fibrosis via activation of PPARgamma. Ann Transl Med. 9(19):1500.
  • Chen Q, Zhang H, Cao Y, Li Y, Sun S, Zhang J, Zhang G. 2017. Schisandrin B attenuates CCl4-induced liver fibrosis in rats by regulation of Nrf2-ARE and TGF-beta/Smad signaling pathways. Drug Des Devel Ther. 11:2179–2191.
  • Chen WJ, Kung GP, Gnana-Prakasam JP. 2022. Role of iron in aging related diseases. Antioxidants 11(5):865.
  • Coluzzi E, Leone S, Sgura A. 2019. Oxidative stress induces telomere dysfunction and senescence by replication fork arrest. Cells. 8(1):19.
  • Cuiqiong W, Chao X, Xinling F, Yinyan J. 2020. Schisandrin B suppresses liver fibrosis in rats by targeting miR-101-5p through the TGF-beta signaling pathway. Artif Cells Nanomed Biotechnol. 48(1):473–478.
  • Dang Y, An Y, He J, Huang B, Zhu J, Gao M, Zhang S, Wang X, Yang B, Xie Z. 2020. Berberine ameliorates cellular senescence and extends the lifespan of mice via regulating p16 and cyclin protein expression. Aging Cell. 19(1):e13060.
  • Di Micco R, Krizhanovsky V, Baker D, d‘Adda di Fagagna F. 2021. Cellular senescence in ageing: from mechanisms to therapeutic opportunities. Nat Rev Mol Cell Biol. 22(2):75–95.
  • Dixon SJ, Stockwell BR. 2014. The role of iron and reactive oxygen species in cell death. Nat Chem Biol. 10(1):9–17.
  • Dowdle WE, Nyfeler B, Nagel J, Elling RA, Liu S, Triantafellow E, Menon S, Wang Z, Honda A, Pardee G, et al. 2014. Selective VPS34 inhibitor blocks autophagy and uncovers a role for NCOA4 in ferritin degradation and iron homeostasis in vivo. Nat Cell Biol. 16(11):1069–1079.
  • El Mai M, Janho Dit Hreich S, Gaggioli C, Roisin A, Wagner N, Ye J, Jalinot P, Cherfils-Vicini J, Gilson E. 2021. A novel screen for expression regulators of the telomeric protein TRF2 identified small molecules that impair TRF2 dependent immunosuppression and tumor growth. Cancers13(12):2998.
  • Fernandez-Real JM, Manco M. 2014. Effects of iron overload on chronic metabolic diseases. Lancet Diabetes Endocrinol. 2(6):513–526.
  • Forouzanfar MH, Afshin A, Alexander LT, Anderson HR, Bhutta ZA, Biryukov S, Brauer M, Burnett R, Cercy K, Charlson FJ, et al. 2016. Global, regional, and national comparative risk assessment of 79 behavioural, environmental and occupational, and metabolic risks or clusters of risks, 1990–2015: a systematic analysis for the global burden of disease Study 2015. The Lancet. 388(10053):1659–1724.
  • Haase M, Bellomo R, Haase-Fielitz A. 2010. Novel biomarkers, oxidative stress, and the role of labile iron toxicity in cardiopulmonary bypass-associated acute kidney injury. J Am Coll Cardiol. 55(19):2024–2033.
  • Halcrow PW, Lynch ML, Geiger JD, Ohm JE. 2021. Role of endolysosome function in iron metabolism and brain carcinogenesis. Semin Cancer Biol. 76:74–85.
  • Herranz N, Gil J. 2018. Mechanisms and functions of cellular senescence. J Clin Invest. 128(4):1238–1246.
  • Jin H, Jia Y, Yao Z, Huang J, Hao M, Yao S, Lian N, Zhang F, Zhang C, Chen X, et al. 2017. Hepatic stellate cell interferes with NK cell regulation of fibrogenesis via curcumin induced senescence of hepatic stellate cell. Cell Signal. 33:79–85.
  • Jin H, Lian N, Zhang F, Chen L, Chen Q, Lu C, Bian M, Shao J, Wu L, Zheng S. 2016. Activation of PPARgamma/P53 signaling is required for curcumin to induce hepatic stellate cell senescence. Cell Death Dis. 7(4):e2189.
  • Kong Z, Liu R, Cheng Y. 2019. Artesunate alleviates liver fibrosis by regulating ferroptosis signaling pathway. Biomed Pharmacother. 109:2043–2053.
  • Krizhanovsky V, Yon M, Dickins RA, Hearn S, Simon J, Miething C, Yee H, Zender L, Lowe SW. 2008. Senescence of activated stellate cells limits liver fibrosis. Cell. 134(4):657–667.
  • Leong PK, Ko KM. 2016. Schisandrin B: a double-edged sword in nonalcoholic fatty liver disease. Oxid Med Cell Longev. 2016:6171658.
  • Li N, Wang W, Zhou H, Wu Q, Duan M, Liu C, Wu H, Deng W, Shen D, Tang Q. 2020. Ferritinophagy-mediated ferroptosis is involved in sepsis-induced cardiac injury. Free Radic Biol Med. 160:303–318.
  • Mancias JD, Pontano Vaites L, Nissim S, Biancur DE, Kim AJ, Wang X, Liu Y, Goessling W, Kimmelman AC, Harper JW. 2015. Ferritinophagy via NCOA4 is required for erythropoiesis and is regulated by iron dependent HERC2-mediated proteolysis. Elife. 4:e10308.
  • Mangan D. 2021. Iron: an underrated factor in aging. Aging (Albany NY). 13(19):23407–23415.
  • Munoz-Espin D, Serrano M. 2014. Cellular senescence: from physiology to pathology. Nat Rev Mol Cell Biol. 15(7):482–496.
  • Nakamura T, Naguro I, Ichijo H. 2019. Iron homeostasis and iron-regulated ROS in cell death, senescence and human diseases. Biochim Biophys Acta Gen Subj. 1863(9):1398–1409.
  • Nault JC, Ningarhari M, Rebouissou S, Zucman-Rossi J. 2019. The role of telomeres and telomerase in cirrhosis and liver cancer. Nat Rev Gastroenterol Hepatol. 16(9):544–558.
  • Oyama K, El-Nachef D, Fang C, Kajimoto H, Brown JP, Singh PB, MacLellan WR. 2018. Deletion of HP1gamma in cardiac myocytes affects H4K20me3 levels but does not impact cardiac growth. Epigenetics Chromatin. 11(1):18.
  • Pellicoro A, Ramachandran P, Iredale JP, Fallowfield JA. 2014. Liver fibrosis and repair: immune regulation of wound healing in a solid organ. Nat Rev Immunol. 14(3):181–194.
  • Qi X, Song A, Ma M, Wang P, Zhang X, Lu C, Zhang J, Zheng S, Jin H. 2021. Curcumol inhibits ferritinophagy to restrain hepatocyte senescence through YAP/NCOA4 in non-alcoholic fatty liver disease. Cell Prolif. 54(9):e13107.
  • Roy N, Bagchi S, Raychaudhuri P. 2012. Damaged DNA binding protein 2 in reactive oxygen species (ROS) regulation and premature senescence. Int J Mol Sci. 13(9):11012–11026.
  • Santana-Codina N, Mancias JD. 2018. The role of NCOA4-mediated ferritinophagy in health and disease. Pharmaceuticals (Basel). 11(4):114.
  • Schuppan D, Kim YO. 2013. Evolving therapies for liver fibrosis. J Clin Invest. 123(5):1887–1901.
  • Shmulevich R, Krizhanovsky V. 2021. Cell Senescence, DNA damage, and metabolism. Antioxid Redox Signal. 34(4):324–334.
  • Tsuchida T, Friedman SL. 2017. Mechanisms of hepatic stellate cell activation. Nat Rev Gastroenterol Hepatol. 14(7):397–411.
  • Wang L, Lankhorst L, Bernards R. 2022. Exploiting senescence for the treatment of cancer. Nat Rev Cancer. 22(6):340–355.
  • Xiu Z, Zhu Y, Han J, Li Y, Yang X, Yang G, Song G, Li S, Li Y, Cheng C, et al. 2022. Caryophyllene oxide induces ferritinophagy by regulating the NCOA4/FTH1/LC3 pathway in hepatocellular carcinoma. Front Pharmacol. 13:930958.
  • Yang F, Yang L, Li Y, Yan G, Feng C, Liu T, Gong R, Yuan Y, Wang N, Idiiatullina E, et al. 2017. Melatonin protects bone marrow mesenchymal stem cells against iron overload-induced aberrant differentiation and senescence. J Pineal Res. 63(3):e12422.
  • Yang K, Qiu J, Huang Z, Yu Z, Wang W, Hu H, You Y. 2022. A comprehensive review of ethnopharmacology, phytochemistry, pharmacology, and pharmacokinetics of Schisandra chinensis (Turcz). Baill. and Schisandra Sphenanthera Rehd. et Wils. J Ethnopharmacol. 284:114759.
  • Yuan P, Qi X, Song A, Ma M, Zhang X, Lu C, Bian M, Lian N, He J, Zheng S, et al. 2021. LncRNA MAYA promotes iron overload and hepatocyte senescence through inhibition of YAP in non-alcoholic fatty liver disease. J Cell Mol Med. 25(15):7354–7366.
  • Zhang H, Chen Q, Dahan A, Xue J, Wei L, Tan W, Zhang G. 2019. Transcriptomic analyses reveal the molecular mechanisms of schisandrin B alleviates CCl4-induced liver fibrosis in rats by RNA-sequencing. Chem Biol Interact. 309:108675.
  • Zhang M, Serna-Salas S, Damba T, Borghesan M, Demaria M, Moshage H. 2021. Hepatic stellate cell senescence in liver fibrosis: characteristics, mechanisms and perspectives. Mech Ageing Dev. 199:111572.
  • Zhang Y, Zhang QQ, Guo XH, Zhang HY, Liu LX. 2014. IGFBPrP1 induces liver fibrosis by inducing hepatic stellate cell activation and hepatocyte apoptosis via Smad2/3 signaling. WJG. 20(21):6523–6533.