Postdoctoral Fellow in Senescence, Aging and Inflammation
Listed on 2026-09-22
-
Research/Development
Research Scientist, Postdoctoral Research Fellow, Biomedical Science
University of Pennsylvania:
Postdoctoral Positions:
School of Dental Medicine Postdoctoral Location
University of Pennsylvania - Penn Dental Medicine
Open DateSep 18, 2026
Description The OpportunityA postdoctoral position is available in the laboratory of Dr. Dana T. Graves at the University of Pennsylvania School of Dental Medicine, Department of Periodontics. The fellow will investigate mechanisms by which cellular senescence and inflammation intersect to alter age-associated pathogenesis. The position integrates experimental biology with single-cell RNA sequencing (scRNA-seq), 10x Genomics Xenium spatial transcriptomics, quantitative imaging, and molecular and cellular validation to define disease-associated cell states, inflammatory signaling networks, and potential therapeutic targets.
ResearchFocus
The research program will examine how senescent cell states and inflammatory signals influence pathology that enhances aging-linked pathology using a periodontal mouse model and human tissue validation. The fellow will participate in in vivo studies and analyses of scRNA-seq and 10x Genomics Xenium datasets to identify senescence-associated and inflammation-associated cell states, transcriptional programs, cell-cell communication networks, spatially organized cellular responses and mechanisms that lead to greater bone resorption.
The analyses may include pathway analysis, trajectory and pseudo time analysis, regulatory-network inference, and ligand-receptor analysis. Experimental studies of aging and senescence will include genetically engineered mouse models, primary mouse and human cell cultures, molecular perturbation studies, histology, immunofluorescence, flow cytometry, quantitative image analysis, and other approaches used to validate computational findings and define mechanisms linking aging, senescence and inflammation with altered tissue function.
Investigate molecular and cellular mechanisms linking senescence and inflammation to tissue dysfunction, repair, and regeneration using in vivo mouse models.
Lead or contribute substantially to bioinformatic analyses of scRNA-seq and 10x Genomics Xenium spatial transcriptomic datasets.
Develop and execute rigorous experimental approaches using in vivo, ex vivo, and/or in vitro models as appropriate to the project.
Perform quality control, data integration, cell annotation, differential expression, pathway, trajectory, state-transition, and ligand-receptor analyses.
Integrate transcriptomic findings with imaging, histologic, cellular, and phenotypic measurements.
Use immunofluorescence and quantitative image analysis to characterize cellular localization, spatial distribution, and tissue organization.
Develop rigorous, reproducible experimental and computational workflows.
Interpret findings in biological and disease contexts and contribute to analytical and experimental strategy.
Generate clear figures, present findings, and communicate effectively with computational and experimental collaborators.
Prepare first-author manuscripts and contribute to grant development and collaborative studies.
Computational and Experimental EnvironmentFor single-cell and spatial genomics studies, the primary computational environment uses R, Seurat, and related tools, with other validated methods used when they improve analytical rigor or biological interpretation. Quantitative imaging and spatial-analysis tools will be selected based on the specimens, imaging modalities, and scientific questions. Candidates with strong experimental backgrounds will have opportunities to develop additional expertise in computational analysis, while candidates with strong computational backgrounds will have opportunities to gain experience with biological validation and experimental systems.
ResearchEnvironment and Career Development
The Graves laboratory integrates computational discovery with in vivo models, human specimens, histology, flow cytometry, immunofluorescence, primary cell culture, molecular perturbation studies, and quantitative analysis. The fellow will have substantial intellectual ownership of their project, including development of experimental directions, selection of analytical approaches, interpretation and presentation of findings, preparation of first-author manuscripts, and participation in grant writing. Development of independent fellowship applications is encouraged.
Dr. Graves will provide direct scientific mentoring and regular project guidance. The fellow will…
(If this job is in fact in your jurisdiction, then you may be using a Proxy or VPN to access this site, and to progress further, you should change your connectivity to another mobile device or PC).