Browsing by Author Gong, Joyce

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Showing results 1 to 9 of 9
Issue DateTitleAuthor(s)Citation
2013Glioma microvesicles carry selectively packaged coding and non-coding RNAs which alter gene expression in recipient cellsBuckland, Michael; Combes, Valery; Grau, Georges; Lee, Maggie; Bebawy, Mary; Brammah, Susan; Eaton, Sally; Gong, Joyce; Humphreys, David; Li, Cheryl; Shuttleworth, Rupert; Suter, Catherine; Young, Paul; School of Medical Sciences: Brain & Mind Research Institute; School of Medical Sciences: Pathology; School of Medical Sciences: Pathology; School of Medical Sciences: PathologyGlioma microvesicles carry selectively packaged coding and non-coding RNAs which alter gene expression in recipient cells, RNA Biology, vol.10, 8, 2013,pp 1333-1344
2009Membrane microparticles mediate transfer of P-glycoprotein to drug sensitive cancer cellsBebawy, Mary; Bonhoure, Amandine; Combes, Valery; Gong, Joyce; Grau, Georges; Jaiswal, Ritu; Lee, Eva; Pharmacy; School of Medical Sciences: Pathology; School of Medical Sciences: Pathology; Pharmacy; School of Medical Sciences: Pathology; Medicine; Western Clinical School (Westmead): OfficeMembrane microparticles mediate transfer of P-glycoprotein to drug sensitive cancer cells, Leukemia, vol.23, 9, 2009,pp 1643-1649
2012Microparticle conferred microRNA profiles - implications in the transfer and dominance of cancer traitsGong, Joyce; Grau, Georges; Jaiswal, Ritu; Bebawy, Mary; Luk, Frederick; Mathys, Jean-Marie; Pharmacy; School of Medical Sciences: Pathology; PharmacyMicroparticle conferred microRNA profiles - implications in the transfer and dominance of cancer traits, Molecular Cancer, vol.11, N/A, 2012,pp 1-13
2013Microparticle drug sequestration provides a parallel pathway in the acquisition of cancer drug resistanceGong, Joyce; Grau, Georges; Jaiswal, Ritu; Bebawy, Mary; George, Anthony; Luk, Frederick; Pharmacy; School of Medical Sciences: Pathology; MedicineMicroparticle drug sequestration provides a parallel pathway in the acquisition of cancer drug resistance, European Journal of Pharmacology, vol.721, 1-3, 2013,pp 116-125
2012Microparticle-associated nucleic acids mediate trait dominance in cancerCombes, Valery; Davey, Ross; Gong, Joyce; Grau, Georges; Jaiswal, Ritu; Bebawy, Mary; Mathys, J-M; Sambasivam, Shwetha; School of Medical Sciences: Pathology; Northern Clinical School: Medicine; Pharmacy; School of Medical Sciences: Pathology; PharmacyMicroparticle-associated nucleic acids mediate trait dominance in cancer, The FASEB Journal, vol.26, 1, 2012,pp 420-429
2012Microparticles and their emerging role in cancer multidrug resistanceCombes, Valery; Gong, Joyce; Grau, Georges; Jaiswal, Ritu; Bebawy, Mary; Mathys, J-M; School of Medical Sciences: Pathology; Pharmacy; School of Medical Sciences: Pathology; PharmacyMicroparticles and their emerging role in cancer multidrug resistance, Cancer Treatment Reviews, vol.38, 3, 2012,pp 226-234
2013Microparticles mediate MRP1 intercellular transfer and the re-templating of intrinsic resistance pathwaysGong, Joyce; Grau, Georges; Jaiswal, Ritu; Bebawya, Mary; Lu, Jamie; Luk, Frederick; Pharmacy; School of Medical Sciences: Pathology; MedicineMicroparticles mediate MRP1 intercellular transfer and the re-templating of intrinsic resistance pathways, Pharmacological Research, vol.76, N/A, 2013,pp 77-83
2014Microparticles mediate the intercellular regulation of microRNA-503 and proline-rich tyrosine kinase 2 to alter the migration and invasion capacity of breast cancer cellsGong, Joyce; Bebawy, Mary; Jaiswal, Ritu; Luk, Frederick; PharmacyMicroparticles mediate the intercellular regulation of microRNA-503 and proline-rich tyrosine kinase 2 to alter the migration and invasion capacity of breast cancer cells, Frontiers in Oncology, vol.4, N/A, 2014,pp 1-11
2010Time- and passage-dependent characteristics of a Calu-3 respiratory epithelial cell modelBebawy, Mary; Gong, Joyce; Haghi, Mehra; Jaiswal, Ritu; Traini, Daniela; Young, Paul; Pharmacy; Pharmacy; Pharmacy; Pharmacy; Pharmacy; PharmacyTime- and passage-dependent characteristics of a Calu-3 respiratory epithelial cell model, Drug development and industrial pharmacy, vol.36, 10,pp 1207-1214