Job offer Fully Funded PhD Position: Decoding Chromosome 1 Risk in AMD Using Stem Cell-Derived Retinal Models
Newcastle University, Newcastle upon Tyne
Job offer Fully Funded PhD Position: Decoding Chromosome 1 Risk in AMD Using Stem Cell-Derived Retinal Models
Salary not available. View on company website.
Newcastle University, Newcastle upon Tyne
- Full time
- Temporary
- Onsite working
Posted 6 days ago, 10 Sep | Get your application in now to be included in the first week's applications.
Closing date: Closing date not specified
Job ref: 239a3a3b206d474780648b03b62b42b7
Location ref: Newcastle upon Tyne
Full Job Description
Fully Funded PhD Position: Decoding Chromosome 1 Risk in AMD Using Stem Cell-Derived Retinal Models
We seek a highly motivated candidate with:
- An MSc (or equivalent) in biomedical sciences, stem-cell biology, ophthalmic research, neuroscience, bioengineering, or related fields.
- Experience (or strong interest) in cell culture, molecular biology, and ideally iPSC/organoid or endothelial/vascular models.
- A drive to solve clinically meaningful problems and work in a collaborative, international team. Familiarity with AMD biology, complement/immune pathways, or retinal imaging/assays is advantageous but not essential., Master Degree or equivalent,
- An MSc (or equivalent) in biomedical sciences, stem-cell biology, ophthalmic research, neuroscience, bioengineering, or related fields.
- A drive to solve clinically meaningful problems and work in a collaborative, international team. Specific Requirements Experience (or strong interest) in cell culture, molecular biology, and ideally iPSC/organoid or endothelial/vascular models. Familiarity with AMD biology, complement/immune pathways, or retinal imaging/assays is advantageous but not essential. Languages ENGLISH,
- researchers who have successfully defended their doctoral thesis but who have not yet formally been awarded the doctoral degree will not be considered eligible Selection process Doctoral candidates will be selected based on scientific qualification and experience, research interest, additional knowledge/skills and their motivation to participate in an intersectoral research-training program.
- Differentiate iPSCs from controls and AMD patients carrying Chr1 risk variants (including CFH Y402H) into Retinal organoids enriched for photoreceptors.
- Profile disease-relevant phenotypes using molecular, cellular, and ultrastructural assays to assess: + Oxidative stress and mitochondrial function + Lysosomal/autophagy flux and waste disposal + Inflammatory signalling and complement activation + Cell survival, death pathways, and barrier integrity
- Validate findings in human tissue via collaboration with the HEETR eye bank (P1-UT), accessing AMD donor eyes for histological and molecular correlation.
- Model multicellular crosstalk by building RPE-Photoreceptor-choroid co-culture systems in perfusion platforms, enabling dynamic studies of nutrient/waste exchange, complement deposition, and stress propagation across the outer retina. What You will Gain
- World-class training in stem-cell differentiation, retinal organoid engineering, vascular biology, and advanced imaging/omics.nei.nih+1
- Transnational mobility and secondments across the Pandora consortium (academia, clinics, and industry).
- Interdisciplinary skillset: from CRISPR/iPSC gene editing and single-cell transcriptomics to microfluidics, proteomics, and translational validation in human tissue.
- Career development: scientific communication, project management, IP/translation, and outreach-core components of MSCA ITN training., gross salary of about £42,000 /year, family support and mobility allowance excellent research facilities comprising state of the art tissue culture facilities, access to multiple core facilities including genomics, bioimaging, flow cytometry and bioinformatics support. Eligibility criteria The applicant
- shall not have resided or carried out his/her main activity (work, studies etc.) in UK for more than 12 months in the 36 months immediately before the recruitment date (unless as part of a compulsory national service or a procedure for obtaining refugee status under the Geneva Convention).
- shall not already be in possession of a doctoral degree ().
- can be of any nationality.
Are you passionate about tackling age-related macular degeneration (AMD) at the cellular and molecular level? Join the Pandora MSCA ITN consortium to investigate how Chromosome 1 (Chr1) AMD risk variants-including the complement factor H CFH Y402H polymorphism-drive intrinsic defects and cell death in photoreceptors, and how these cells crosstalk with retinal pigment epithelium (RPE) in health and disease. The Challenge AMD risk factors disrupt the delicate choroid/Bruch's membrane/RPE/retinal interface, leading to progressive dysfunction and loss of choroidal endothelial cells, RPEs cells, and Photoreceptors in advanced disease. While Chr1 risk is known to impair RPE (e.g., mitochondrial, and lysosomal damage in iPSC-RPE carrying CFH Y402H), it may also cause direct, cell-intrinsic pathology in Photoreceptors, potentially accelerating degeneration independently of RPE. This project will test that hypothesis and map the cell-type-specific pathomechanisms and intercellular crosstalk that underlie retinal vulnerability in AMD. Your Project As DC1 (Doctoral Candidate 1) within Pandora, you will:
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