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LevyView author publicationsYou can also search for this author in PubMed Google ScholarJonathan Y. StreiflerView author publicationsYou can also search for this author in PubMed Google ScholarHanna PanetView author publicationsYou can also search for this author in PubMed Google ScholarEldad MelamedView author publicationsYou can also search for this author in PubMed Google ScholarDaniel OffenView author publicationsYou can also search for this author in PubMed Google ScholarCorresponding authorCorrespondence to Daniel Offen.Rights and permissionsReprints and PermissionsAbout this articleCite this articleLevy, Y.S., Streifler, J.Y., Panet, H. et al. Hemin-induced apoptosis in PC12 and neuroblastoma cells: Implications for local neuronal death associated with intracerebral hemorrhage. neurotox res 4, 609 (2002). https://doi.org/10.1080/1029842021000045624Download citationReceived: 12 March 2002Revised: 26 April 2002Accepted: 29 May 2002DOI: https://doi.org/10.1080/1029842021000045624">

Hemin-induced apoptosis in PC12 and neuroblastoma cells: implications for local neuronal death associated with intracerebral hemorrhage

Author(s): Levy YS, Streifler JY, Panet H, Melamed E, Offen D

Abstract

The exact pathogenesis of neuronal death following bleeding in brain parenchyma is still unknown. Hemoglobin (Hb) toxicity has been postulated to be one of the underlying mechanisms. The purpose of this study was to examine the possible contribution to neurotoxicity of each of the Hb compounds and to characterize the death pathway. Pheochromocytoma (PC12) and neuroblastoma (SH-SY5Y) cell lines were exposed to Hb, globin, hemin, protoporphyrin IX, and iron for 1.5–24 h. We found that Hb and hemin are highly toxic (LD50 of 8 and 20 μmol/l, respectively) as compared to globin that was not toxic. In addition, protoporphyrin IX and iron, compounds of hemin, were less toxic than hemin itself (LD50 of 962 and 2070 μmol/l, respectively). We also demonstrated that non-specific protein digestion with proteinase-K, markedly increased Hb toxicity. Hemin-treated cells caused a typical apoptotic cell-death pattern as indicated by DNA fragmentation, caspase activation and reduction in the mitochondrial membrane potential. Treatment with the antioxicant N-acetyl-l-cysteine or iron chelator, deferoxamine, diminished hemin-induced cell death, indicating a role of oxidative stress in this deleterious process. Thus, therapeutic strategies, based on antioxidant, iron chelator and anti-apoptotic agents may be effective in counteracting Hb neurotoxicity.

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PubMed Article CAS Google Scholar

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PubMed Article CAS Google Scholar

Beschorner, R., Adjodah, D., Schwab, J.M., Mittelbronn, M., Pedal, I., Mattern, R., Schluesener, H.J. and Meyermann, R. (2000) “Long-term expression of heme oxygenase-1 (HO-1, HSP-32). following focal cerebral infarctions and traumatic brain injury in humans”, Acta Neuropathol. (Berl.) 100, 377–384.

Article CAS Google Scholar

Clegg, J.B., Naughton, M.A. and Weatherall, D.J. (1966) “Abnormal human hemoglobins. Separation and characterization of the α and β chains by chromatography and the determination of two new variants, Hb Chesapeake and Hb J (Bankok)”, J. Mol. Biol. 19, 91–108.

PubMed CAS Google Scholar

Cuzzocrea, S., Riley, D.P., Caputi, A.P. and Salvemini, D. (2001) “Antioxidant therapy: a new pharmacological approach in shock, inflammation, and ischemia/reperfusion injury”, Pharmacol. Rev. 53, 135–159.

PubMed CAS Google Scholar

Evans, P.H. (1993) “Free radicals in brain metabolism and pathology“, Br. Med. Bull. 49, 577–587.

PubMed CAS Google Scholar

Findlay, J.M., Weir, B.K.A., Kanamaru, K., Grace, M., Gordon, P., Braughman, R. and Howarth, H.A. (1989) “Intrathecal fibrinolytic therapy after subarachnoid hemorrhage: dosage study in a primate model and review of the literature”, Can. J. Neurol. Sci. 16, 28–40.

PubMed CAS Google Scholar

Halliwell, B. and Gutteridge, J.M.C. (1989) Free radicals in biology and medicine (Claredon press, Oxford), p 543.

Google Scholar

Kim, H.Y., Akbar, M. and Kim, K.Y. (2001) “Inhibition of neural apoptosis by polyunsaturated fatty acids”, J. Mol. Neurosci. 16, 223–227.

PubMed Article Google Scholar

Li, P., Nijhawan, D., Budihardjo, I., Srinivasula, S.M., Ahmad, M., Alnemri, E.S. and Wang, X. (1997) “Cytochrome c and dATP-dependent formation of Apaf-1/caspase-9 complex initiates an apoptotic protease cascade”, Cell 91, 479–489.

PubMed Article CAS Google Scholar

Liu, X., Kim, C.N., Yang, J., Jemmerson, R. and Wang, X. (1996) “Induction of apoptotic program in cell-free extracts: requirement for dATP and cytochrome C”, Cell 86, 147–157.

PubMed Article CAS Google Scholar

Macdonald, R.L. and Weir, B.K.A. (1991) “A review of hemoglobin and the pathogenesis of cerebral vasospasm”, Stroke 22, 971–982.

PubMed CAS Google Scholar

Matsushita, K., Meng, W., Wang, X., Asahi, M., Ahasi, K., Moskowitz, M.A. and Lo, E.H. (2000) “Evidence for apoptosis after intracerebral hemorrhage in rat striatum”, J. Cereb. Blood Flow Metab. 20, 396–404.

PubMed Article CAS Google Scholar

Matz, P.G., Fujimura, M. and Chan, P.H. (2000) “Subarachnoid hemolysate produces DNA fragmentation in a pattern similar to apoptosis in mouse brain”, Brain Res. 858, 2312–2319.

Article Google Scholar

Means, E.D. and Anderson, D.K. (1983) “Neuronophagia by leukocytes in experimental spinal cord injury”, J. Neuropathol. Exp. Neurol. 42, 707–719.

PubMed Article CAS Google Scholar

Munoz-Fernandez, M.A. and Fresno, M. (1998) “The role of tumour necrosis factor, interleukin 6, interferon-gamma and inducible nitric oxide synthase in the development and pathology of the nervous system”, Prog. Neurobiol. 56, 307–340.

PubMed Article CAS Google Scholar

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Author informationAuthors and AffiliationsAuthorsYossef S. LevyView author publicationsJonathan Y. StreiflerView author publicationsHanna PanetView author publicationsEldad MelamedView author publicationsDaniel OffenView author publicationsCorresponding author

Correspondence to Daniel Offen.

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Levy, Y.S., Streifler, J.Y., Panet, H. et al. Hemin-induced apoptosis in PC12 and neuroblastoma cells: Implications for local neuronal death associated with intracerebral hemorrhage. neurotox res 4, 609 (2002). https://doi.org/10.1080/1029842021000045624

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Received: 12 March 2002

Revised: 26 April 2002

Accepted: 29 May 2002

DOI: https://doi.org/10.1080/1029842021000045624

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