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Ac-YVAD-CMK Decreases Blood–Brain Barrier Degradation by Inhibiting Caspase-1 Activation of Interleukin-1β in Intracerebral Hemorrhage Mouse Model

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Abstract

Among many proinflammatory cytokines, interleukin-1β (IL-1β) is considered a key mediator of neuronal injury. However, in order to become activated, it must be processed and cleaved by a caspase-1 enzyme. In this study, we tested the neuroprotective effect of Ac-YVAD-CMK, a known selective caspase-1 inhibitor, in a mouse model of intracerebral hemorrhage (ICH). Sixty-six adult male CD-1 mice were subjected to collagenase-induced ICH. Ac-YVAD-CMK or vehicle was administered into the left lateral ventricle 20 min before ICH modeling. Brain edema and neurological functions were assessed at 24 and 72 h after the surgery. Expression of IL-1β, phosphorylated JNK, tight junction protein zona occludens 1 (ZO-1), and matrix metalloproteinase-9 (MMP-9) were measured by Western blot along with MMP-9 activity measured by zymography at 24 h after ICH. At 24 h after ICH, Ac-YVAD-CMK treatment significantly reduced brain edema and improved neurological functions. The neuroprotection was associated with downregulation of IL-1β, JNK, MMP-9, and an inhibition of ZO-1 degradation in brain. We conclude that Ac-YVAD-CMK protects the brain against ICH-induced injury, and the neuroprotective effect may result from anti-inflammation-induced blood–brain barrier protection.

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References

  1. Rincon F, Mayer SA (2004) Novel therapies for intracerebral hemorrhage. Curr Opin Crit Care 10:94–100

    Article  PubMed  Google Scholar 

  2. Simi A, Tsakiri N, Wang P (2007) Interleukin-1 and inflammatory neurodegeneration. Biochem Soc Trans 35(part 5):1122–1126

    CAS  PubMed  Google Scholar 

  3. Ruhul Amin AR, Senga T, Oo ML, Thant AA, Hamaguchi M (2003) Secretion of matrix metalloproteinase-9 by the proinflammatory cytokine, IL-1beta: a role for the dual signaling pathways, Akt and Erk. Genes Cells 8:515–523

    Article  CAS  PubMed  Google Scholar 

  4. Liang KC, Lee CW, Lin WN, Lin CC, Wu CB, Luo SF, Yang CM (2007) Interleukin-1beta induces MMP-9 expression via p42/p44 MAPK, p38 MAPK, JNK, and nuclear factor-kappaB signaling pathways in human tracheal smooth muscle cells. J Cell Physiol 211(3):759–770

    Article  CAS  PubMed  Google Scholar 

  5. Tang J, Liu J, Zhou C et al (2005) Role of NADPH oxidase in the brain injury of intracerebral hemorrhage. J Neurochem 94:1342–1350

    Article  CAS  PubMed  Google Scholar 

  6. Doyle KP, Yang T, Lessov NS, Ciesielski TM, Stevens SL, Simon RP, King JS, Stenzel-Poore MP (2008) Nasal administration of osteopontin peptide mimetics confers neuroprotection in stroke. J Cereb Blood Flow Metab 28(6):1235–1248

    Article  CAS  PubMed  Google Scholar 

  7. Lo W, Bravo T, Jadhav V, Titova E, Zhang JH, Tang J (2007) NADPH oxidase inhibition improves neurological outcomes in surgically-induced brain injury. Neurosci Lett 414(3):228–232

    Article  CAS  PubMed  Google Scholar 

  8. Hua Y, Schallert T, Keep RF, Wu J, Hoff JT, Xi G (2002) Behavioral tests after intracerebral hemorrhage in the rat. Stroke 33:2478–2484

    Article  PubMed  Google Scholar 

  9. Zausinger S, Hungerhuber E, Baethmann A, Reulen HJ, Schmid-Elsaesser R (2002) Neurological impairment in rats after transient middle cerebral artery occlusion: a comparative study under various treatment paradigms. Brain Res 28:94–105

    Google Scholar 

  10. Hong SM, Liu Z, Fan Y, Neumann M, Won SJ, Lac D, Lum X, Weinstein PR, Liu J (2007) Reduced hippocampal neurogenesis and skill reaching performance in adult Emx1 mutant mice. Exp Neurol 206(1):24–32

    Article  PubMed  Google Scholar 

  11. Chen W, Jadhav V, Tang J, Zhang JH (2008) HIF-1alpha inhibition ameliorates neonatal brain injury in a rat pup hypoxic-ischemic model. Neurobiol Dis 31(3):433–441

    Article  CAS  PubMed  Google Scholar 

  12. Ostrowski RP, Colohan AR, Zhang JH (2005) Mechanisms of hyperbaric oxygen-induced neuroprotection in a rat model of subarachnoid hemorrhage. J Cereb Blood Flow Metab 25:554–571

    Article  CAS  PubMed  Google Scholar 

  13. Wang X, Mori T, Jung JC, Fini ME, Lo EH (2002) Secretion of matrix metalloproteinase-2 and -9 after mechanical trauma injury in rat cortical cultures and involvement of MAP kinase. J Neurotrauma 19:615–625

    Article  PubMed  Google Scholar 

  14. Rothwell N (2003) Interleukin-1 and neuronal injury: mechanisms, modification, and therapeutic potential. Brain Behav Immun 17(3):152–157

    Article  PubMed  Google Scholar 

  15. Masada T, Hua Y, Xi G, Yang GY, Hoff JT, Keep RF (2001) Attenuation of intracerebral hemorrhage and thrombin-induced brain edema by overexpression of interleukin-1 receptor antagonist. J Neurosurg 95(4):680–686

    Article  CAS  PubMed  Google Scholar 

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Acknowledgments

This study was supported by grants from NMTB to J. Tang.

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Correspondence to Jiping Tang.

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Wu, B., Ma, Q., Khatibi, N. et al. Ac-YVAD-CMK Decreases Blood–Brain Barrier Degradation by Inhibiting Caspase-1 Activation of Interleukin-1β in Intracerebral Hemorrhage Mouse Model. Transl. Stroke Res. 1, 57–64 (2010). https://doi.org/10.1007/s12975-009-0002-z

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  • DOI: https://doi.org/10.1007/s12975-009-0002-z

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