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Isacson, Ole

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Isacson

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Ole

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Isacson, Ole

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Now showing 1 - 4 of 4
  • Publication

    Oct4-Induced Reprogramming is Required for Adult Brain Neural Stem Cell Differentiation into Midbrain Dopaminergic Neurons

    (Public Library of Science, 2011) Deleidi, Michela; Cooper, Oliver Jamie; Hargus, Gunnar; Levy, Adam; Isacson, Ole

    Neural stem cells (NSCs) lose their competency to generate region-specific neuronal populations at an early stage during embryonic brain development. Here we investigated whether epigenetic modifications can reverse the regional restriction of mouse adult brain subventricular zone (SVZ) NSCs. Using a variety of chemicals that interfere with DNA methylation and histone acetylation, we showed that such epigenetic modifications increased neuronal differentiation but did not enable specific regional patterning, such as midbrain dopaminergic (DA) neuron generation. Only after Oct-4 overexpression did adult NSCs acquire a pluripotent state that allowed differentiation into midbrain DA neurons. DA neurons derived from Oct4-reprogrammed NSCs improved behavioural motor deficits in a rat model of Parkinson's disease (PD) upon intrastriatal transplantation. Here we report for the first time the successful differentiation of SVZ adult NSCs into functional region-specific midbrain DA neurons, by means of Oct-4 induced pluripotency.

  • Publication

    Creation of an Open-Access, Mutation-Defined Fibroblast Resource for Neurological Disease Research

    (Public Library of Science, 2012) Wray, Selina; Self, Matthew; Lewis, Patrick A.; Taanman, Jan-Willem; Ryan, Natalie S.; Mahoney, Colin J.; Liang, Yuying; Devine, Michael J.; Sheerin, Una-Marie; Houlden, Henry; Morris, Huw R.; Healy, Daniel; Marti-Masso, Jose-Felix; Preza, Elisavet; Barker, Suzanne; Sutherland, Margaret; Corriveau, Roderick A.; D'Andrea, Michael; Schapira, Anthony H. V.; Uitti, Ryan J.; Guttman, Mark; Opala, Grzegorz; Jasinska-Myga, Barbara; Puschmann, Andreas; Nilsson, Christer; Espay, Alberto J.; Slawek, Jaroslaw; Gutmann, Ludwig; Boeve, Bradley F.; Boylan, Kevin; Stoessl, A. Jon; Ross, Owen A.; Maragakis, Nicholas J.; Van Gerpen, Jay; Gerstenhaber, Melissa; Gwinn, Katrina; Dawson, Ted M.; Marder, Karen S.; Clark, Lorraine N.; Przedborski, Serge E.; Finkbeiner, Steven; Rothstein, Jeffrey D.; Wszolek, Zbigniew K.; Rossor, Martin N.; Hardy, John; Isacson, Ole

    Our understanding of the molecular mechanisms of many neurological disorders has been greatly enhanced by the discovery of mutations in genes linked to familial forms of these diseases. These have facilitated the generation of cell and animal models that can be used to understand the underlying molecular pathology. Recently, there has been a surge of interest in the use of patient-derived cells, due to the development of induced pluripotent stem cells and their subsequent differentiation into neurons and glia. Access to patient cell lines carrying the relevant mutations is a limiting factor for many centres wishing to pursue this research. We have therefore generated an open-access collection of fibroblast lines from patients carrying mutations linked to neurological disease. These cell lines have been deposited in the National Institute for Neurological Disorders and Stroke (NINDS) Repository at the Coriell Institute for Medical Research and can be requested by any research group for use in in vitro disease modelling. There are currently 71 mutation-defined cell lines available for request from a wide range of neurological disorders and this collection will be continually expanded. This represents a significant resource that will advance the use of patient cells as disease models by the scientific community.

  • Publication

    A Nurr1 Agonist Causes Neuroprotection in a Parkinson’s Disease Lesion Model Primed with the Toll-Like Receptor 3 dsRNA Inflammatory Stimulant Poly(I:C)

    (Public Library of Science, 2015) Smith, Gaynor A.; Rocha, Emily M.; Rooney, Thomas; Barneoud, Pascal; McLean, Jesse R.; Beagan, Jonathan; Osborn, Teresia; Coimbra, Madeleine; Luo, Yongyi; Hallett, Penelope; Isacson, Ole

    Dopaminergic neurons in the substantia nigra pars compacta (SNpc) are characterized by the expression of genes required for dopamine synthesis, handling and reuptake and the expression of these genes is largely controlled by nuclear receptor related 1 (Nurr1). Nurr1 is also expressed in astrocytes and microglia where it functions to mitigate the release of proinflammatory cytokines and neurotoxic factors. Given that Parkinson’s disease (PD) pathogenesis has been linked to both loss of Nurr1 expression in the SNpc and inflammation, increasing levels of Nurr1 maybe a promising therapeutic strategy. In this study a novel Nurr1 agonist, SA00025, was tested for both its efficiency to induce the transcription of dopaminergic target genes in vivo and prevent dopaminergic neuron degeneration in an inflammation exacerbated 6-OHDA-lesion model of PD. SA00025 (30mg/kg p.o.) entered the brain and modulated the expression of the dopaminergic phenotype genes TH, VMAT, DAT, AADC and the GDNF receptor gene c-Ret in the SN of naive rats. Daily gavage treatment with SA00025 (30mg/kg) for 32 days also induced partial neuroprotection of dopaminergic neurons and fibers in rats administered a priming injection of polyinosinic-polycytidylic acid (poly(I:C) and subsequent injection of 6-OHDA. The neuroprotective effects of SA00025 in this dopamine neuron degeneration model were associated with changes in microglial morphology indicative of a resting state and a decrease in microglial specific IBA-1 staining intensity in the SNpc. Astrocyte specific GFAP staining intensity and IL-6 levels were also reduced. We conclude that Nurr1 agonist treatment causes neuroprotective and anti-inflammatory effects in an inflammation exacerbated 6-OHDA lesion model of PD.

  • Publication

    Progressive decline of glucocerebrosidase in aging and Parkinson's disease

    (BlackWell Publishing Ltd, 2015) Rocha, Emily M; Smith, Gaynor A; Park, Eric; Cao, Hongmei; Brown, Eilish; Hallett, Penelope; Isacson, Ole

    The principal risk factor for developing most adult onset neurodegenerative diseases is aging, with incidence rising significantly after age 50. Despite research efforts, the causes of Parkinson's disease (PD) remain unknown. As neurons age, they show signs of diminished lysosomal and mitochondrial function, including increased oxidative stress and accumulation of misfolded proteins, and these changes become exacerbated PD. We show that activity of the lysosomal hydrolase glucocerebrosidase gradually diminishes with age in the substantia nigra and putamen of healthy controls. This reduction is comparable to glucocerebrosidase activity in GBA1-mutation carrier PD patients. These data, demonstrate for the first time that an age-dependent reduction in glucocerebrosidase activity may lower the threshold for developing PD.