The Knight Cancer Precision Biofabrication Hub is recruiting a postdoctoral researcher to support NIH-funded studies focused on engineering complex cancer-bone microphysiologic systems. The successful candidate will develop and apply vascularized, mineralized, and multicellular bone-on-chip platforms to investigate mechanisms of oral squamous cell carcinoma (OSCC) bone invasion and prostate cancer metastasis to bone. This position will involve 3D tissue engineering, organ-on-chip and microfluidic culture, hydrogel and matrix-based model development, advanced microscopy, quantitative image analysis, and molecular characterization of tumor-bone interactions.
Strong preference will be given to candidates with experience engineering complex 3D tissue models, organ-on-chip systems, cancer microenvironment models, bone biology, or biofabrication. Additional preferred expertise includes immune cell incorporation into engineered tissues, macrophage/osteoclast biology, mouse-derived immune or tumor models, neurobiology, neuron co-culture, innervated tissue models, and/or spatial omics.
An ideal candidate will have a strong record of publications, a proven record of independence, and the ability to work effectively with the principal investigator, collaborators, staff scientists, and trainees. The candidate should be highly organized, adaptable, detail-oriented, collaborative, and able to independently solve problems while helping advance multiple projects in parallel.
Duties include:
Perform experiments utilizing appropriate bioengineering, cell culture, imaging, and molecular techniques with proficiency; evaluate results; troubleshoot experiments; determine next steps; and present data.
Duties include developing and optimizing vascularized, mineralized, and multicellular bone-on-chip models; performing OSCC bone invasion studies with osteoblast/osteocyte/osteoclast components; performing prostate cancer bone metastasis studies involving vascularized and potentially innervated bone-on-chip systems; designing experiments evaluating tumor invasion, vascular association, osteoclastogenesis, bone remodeling, tumor phenotype, and microenvironmental crosstalk; incorporating immune or neural components into engineered tissues as appropriate; performing confocal/live imaging and quantitative image analysis; conducting immunostaining, qPCR, ELISA/Luminex, single cell spatial transcriptomics and related assays; staying current with relevant literature; and building new skills to maximize project potential.
Apply online. Please be sure to upload a Cover Letter and Resume/CV.
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