Browsing by Author Ginn, S

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Issue DateTitleAuthor(s)Citation
2005Fibroblasts can be genetically modified to produce excitable cells capable of electrical coupling.Alexander, Ian; Allen, David; Ginn, S; Kizana, Eddy; Ross, David; Children's Hospital Westmead: Paediatrics & Child Health; School of Medical Sciences: Physiology; Children's Hospital Westmead: Childrens Medical Research Ins; Western Clinical School: Medicine (Westmead); Western Clinical School: Medicine (Westmead)Fibroblasts can be genetically modified to produce excitable cells capable of electrical coupling., Circulation (Baltimore), vol.111,(4),2005,pp 394-398
2006Fibroblasts modulate cardiomyocyte excitability: implications for cardiac gene therapy.Alexander, Ian; Allen, David; Boyd, Anita; Ginn, S; Kizana, Eddy; Ross, David; Smyth, C; Thomas, Stuart; Children's Hospital Westmead: Paediatrics & Child Health; School of Medical Sciences: Physiology; Western Clinical School: Medicine (Westmead); Children's Hospital Westmead: Childrens Medical Research Ins; Western Clinical School: Medicine (Westmead); Western Clinical School: Medicine (Westmead); Medicine; Western Clinical School: Westmead Millennium InstituteFibroblasts modulate cardiomyocyte excitability: implications for cardiac gene therapy., Gene Therapy, vol.13,(22),2006,pp 1611-1615
2004A Novel Splice-Site Mutation In The Common Gamma Chain (Gammac) Gene Il2Rg Results In X-Linked Severe Combined Immunodeficiency With An Atypical Nk+ Phenotype.Alexander, Ian; Bennetts, Bruce; Ginn, S; Rowe, Peter; Smyth, Christine; Wong, Melanie; Children's Hospital Westmead: Paediatrics & Child Health; Children's Hospital Westmead: Paediatrics & Child Health; Children's Hospital Westmead: Childrens Medical Research Ins; Children's Hospital Westmead: Childrens Medical Research InsA Novel Splice-Site Mutation In The Common Gamma Chain (Gammac) Gene Il2Rg Results In X-Linked Severe Combined Immunodeficiency With An Atypical Nk+ Phenotype., Human Mutation, vol.23,(5),2004,pp 522-523
2005Partial correction of sensitivity to oxidant stress in Friedreich ataxia patient fibroblasts by frataxin-encoding adeno-associated virus and lentivirus vectors.Alexander, Ian; Cunningham, Sharon; Fleming, Jane; Ginn, S; Rowe, Peter; Spinoulas, A; Zheng, M; McQuilty, Robert; Children's Hospital Westmead: Paediatrics & Child Health; Children's Hospital Westmead: Childrens Medical Research Ins; Children's Hospital Westmead: Childrens Medical Research Ins; Children's Hospital Westmead: Childrens Medical Research Ins; Children's Hospital Westmead: Childrens Medical Research Ins; Children's Hospital Westmead: Childrens Medical Research Ins; Children's Hospital Westmead: Childrens Medical Research InsPartial correction of sensitivity to oxidant stress in Friedreich ataxia patient fibroblasts by frataxin-encoding adeno-associated virus and lentivirus vectors., Human Gene Therapy, vol.16,(8),2005,pp 947-956