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Zinn, Pascal Olivier

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Zinn

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Pascal Olivier

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Zinn, Pascal Olivier

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  • Publication

    Cranio-Spinal Migration of a Metallic Clip Placed During Arteriovenous Malformation Resection - A Case Report, Review of the Literature, and Management Strategies

    (BioMed Central, 2010) Chen, Clark Chin-Chung; Zinn, Pascal Olivier; Kasper, Ekkehard; Ogilvy, Christopher

    Background: Microclip placement during AVM resection is generally accepted to be a safe practice in neurosurgery. Here, we describe an unusual complication involving cranio-spinal clip migration discovered five years after the initial AVM surgery. Case Presentation: A 53-year-old man underwent resection of a superior vermian AVM that required the placement of two microclips during the procedure. Five years after surgery, the patient suffered from descending sensory radiculopathy that resolved spontaneously. The workup revealed cranio-spinal migration of one of the previously placed microclips. Conclusions: AVM clip migration is a rare phenomenon; however, the diagnosis should be entertained in patients with posterior fossa instrumentation who suffer from unusual neurologic symptoms.

  • Publication

    Targeting EGFR Induced Oxidative Stress by PARP1 Inhibition in Glioblastoma Therapy

    (Public Library of Science, 2010) Nitta, Masayuki; Stommel, Jayne; Ng, Kimberly; Kesari, Santosh; Furnari, Frank; Hoadley, Katherine A.; Cavenee, Webster K.; Kozono, David; Kennedy, Richard; Zinn, Pascal Olivier; Kushwaha, Deepa S; Chin, Lynda; DePinho, Ronald A.; D'Andrea, Alan; Chen, Clark Chin-Chung

    Despite the critical role of Epidermal Growth Factor Receptor (EGFR) in glioblastoma pathogenesis [1], [2], EGFR targeted therapies have achieved limited clinical efficacy [3]. Here we propose an alternate therapeutic strategy based on the conceptual framework of non-oncogene addiction [4], [5]. A directed RNAi screen revealed that glioblastoma cells over-expressing EGFRvIII [6], an oncogenic variant of EGFR, become hyper-dependent on a variety of DNA repair genes. Among these, there was an enrichment of Base Excision Repair (BER) genes required for the repair of Reactive Oxygen Species (ROS)-induced DNA damage, including poly-ADP ribose polymerase 1 (PARP1). Subsequent studies revealed that EGFRvIII over-expression in glioblastoma cells caused increased levels of ROS, DNA strand break accumulation, and genome instability. In a panel of primary glioblastoma lines, sensitivity to PARP1 inhibition correlated with the levels of EGFR activation and oxidative stress. Gene expression analysis indicated that reduced expression of BER genes in glioblastomas with high EGFR expression correlated with improved patient survival. These observations suggest that oxidative stress secondary to EGFR hyper-activation necessitates increased cellular reliance on PARP1 mediated BER, and offer critical insights into clinical trial design.