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  1.  10
    Pluripotency and the endogenous retrovirus HERVH: Conflict or serendipity?Zsuzsanna Izsvák, Jichang Wang, Manvendra Singh, Dixie L. Mager & Laurence D. Hurst - 2016 - Bioessays 38 (1):109-117.
    Remnants of ancient retroviral infections during evolution litter all mammalian genomes. In modern humans, such endogenous retroviral (ERV) sequences comprise at least 8% of the genome. While ERVs and other types of transposable elements undoubtedly contribute to the genomic “junk yard”, functions for some ERV sequences have been demonstrated, with growing evidence that ERVs can be important players in gene regulatory processes. Here we focus on one particular large family of human ERVs, termed HERVH, which several recent studies suggest has (...)
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    Translating Sleeping Beauty transposition into cellular therapies: Victories and challenges.Zsuzsanna Izsvák, Perry B. Hackett, Laurence J. N. Cooper & Zoltán Ivics - 2011 - Bioessays 33 (6):478-479.
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    Translating Sleeping Beauty transposition into cellular therapies: Victories and challenges.Zsuzsanna Izsvák, Perry B. Hackett, Laurence J. N. Cooper & Zoltán Ivics - 2010 - Bioessays 32 (9):756-767.
    Recent results confirm that long‐term expression of therapeutic transgenes can be achieved by using a transposon‐based system in primary stem cells and in vivo. Transposable elements are natural DNA transfer vehicles that are capable of efficient genomic insertion. The latest generation, Sleeping Beauty transposon‐based hyperactive vector (SB100X), is able to address the basic problem of non‐viral approaches – that is, low efficiency of stable gene transfer. The combination of transposon‐based non‐viral gene transfer with the latest improvements of non‐viral delivery techniques (...)
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