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Researcher
H Llewelyn Roderick
- Disciplines:Physiology, Cell growth and development, Cell signalling, Epigenetics, Intracellular compartments and transport
Affiliations
- Experimental Cardiology (Division)
Responsible
From1 Oct 2023 → Today - Experimental Cardiology (Division)
Member
From1 Oct 2014 → Today
Projects
1 - 10 of 22
- Deciphering Molecular Pathways of Hypoxia Sensitivity in Adult Cardiomyocytes: An Integrative Cross-Species InvestigationFrom1 Apr 2024 → TodayFunding: Other federal public and semi-governmental institutions
- Connexin-43 Hemichannels as pro-arythmic mediators in Cardiac Hypertrophy and Heart FailureFrom1 Jan 2023 → TodayFunding: FWO research project (including WEAVE projects)
- Understanding how neutrophil extracellular traps (NETs) contribute to vulnerability of the ageing heartFrom1 Oct 2022 → TodayFunding: FWO fellowships
- Investigating the role of DNA methylation in the failing and in the ageing heartFrom1 Oct 2022 → TodayFunding: FWO junior postdoctoral fellowship
- Subcellular Ca2+ signalling microdomains regulating cardiomyocyte growth and functionsFrom19 Sep 2022 → TodayFunding: Own budget, for example: patrimony, inscription fees, gifts
- Spatially-Organized 3D Human Cardiac Bilayer Models for Duchenne Cardiomyopathy Modelling and Drug DiscoveryFrom23 Nov 2021 → TodayFunding: FWO Strategic Basic Research Grant
- Cell-cell interactions and the role of tissue microarchitecture in cardiac arrhythmias after myocardial infarctionFrom15 Nov 2021 → TodayFunding: Own budget, for example: patrimony, inscription fees, gifts
- Investigating the Role and Opportunities of DNA methylation in the Ageing Heart.From1 Oct 2021 → 30 Sep 2022Funding: BOF - postdoctoral mandates
- Understanding the vulnerability of the ageing heartFrom1 Oct 2021 → TodayFunding: Fund Recuperation Fiscal Exemption, BOF - projects
- Subcellular Ca2+ signalling microdomains regulating cardiomyocyte growth and functionFrom30 Sep 2021 → TodayFunding: Own budget, for example: patrimony, inscription fees, gifts
Publications
71 - 80 of 80
- Bcl-2 suppresses Ca2+ release through inositol 1,4,5-trisphosphate receptors and inhibits Ca2+ uptake by mitochondria without affecting ER calcium store content(2008)
Authors: H Llewelyn Roderick
Pages: 324 - 338 - Emerging roles of inositol 1,4,5-trisphosphate signaling in cardiac myocytes(2008)
Authors: H Llewelyn Roderick
Pages: 128 - 147 - Calcium oscillations(2008)
Authors: H Llewelyn Roderick
Pages: 1 - 27 - The cellular concentration of Bcl-2 determines its pro- or anti-apoptotic effect(2008)
Authors: H Llewelyn Roderick
Pages: 243 - 258 - Why, where, and when do cardiac myocytes express inositol 1,4,5-trisphosphate receptors?(2008)
Authors: H Llewelyn Roderick
Pages: H579 - H581 - Calcium Phosphate Crystals Induce Cell Death in Human Vascular Smooth Muscle Cells A Potential Mechanism in Atherosclerotic Plaque Destabilization(2008)
Authors: H Llewelyn Roderick
Pages: E28 - E34 - Ca2+ signalling checkpoints in cancer: remodelling Ca2+ for cancer cell proliferation and survival(2008)
Authors: H Llewelyn Roderick
Pages: 361 - 375 - Dynamic imaging of calcium and STIM1 in the same cell using wide-field and TIRF microscopy(2008)
Authors: H Llewelyn Roderick
Pages: 347 - 348 - Methacholine and PDGF activate store-operated calcium entry in neuronal precursor cells via distinct calcium entry channels(2008)
Authors: H Llewelyn Roderick
Pages: 183 - 195 - Exposure to GSM RF Fields Does Not Affect Calcium Homeostasis in Human Endothelial Cells, Rat Pheocromocytoma Cells or Rat Hippocampal Neurons
Authors: H Llewelyn Roderick