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About the role
The Good Lab at the Stanford University School of Medicine is seeking a talented and motivated Life Science Research Professional 1 to advance T cell immunotherapies for cancer and autoimmune diseases by leveraging cutting-edge bioinformatics methods, cohort assembly, and spatial/single-cell transcriptomics, proteomics, pathology, or clinical data. As part of a multidisciplinary group, you will leverage existing datasets and pipelines to build cohorts, analyze single-cell and bulk omics datasets and explore spatial transcriptomics data, and define novel insights into T cell immunotherapy. Additional major responsibilities will include contributing to T cell therapy data aggregation efforts to support machine learning model development. For exceptionally skilled applicants, the LSRP’s role can be extended to include the design and completion of novel pipelines or AI models based on the lab’s datasets. A successful candidate will have a Bachelor’s or Master’s degree in immunology, bioinformatics, data science, or related field. Previous laboratory experience in clinical/pathology data, single-cell sequencing and spatial analyses is highly desirable. Proficiency in running analytical pipelines on a computer cluster is a plus. We especially value excellent organization and communication skills. This position represents an excellent opportunity to gain exposure to advanced informatics technologies in a dynamic research environment with an opportunity to impact patient outcomes. About the Lab: You will work in the laboratory of Dr. Zinaida Good located in the Center for Clinical Sciences Research building in the heart of the Stanford University School of Medicine. As a part of the Division of Immunology and Rheumatology and the Division of Computational Medicine in the Department of Medicine and the Parker Institute for Cancer Immunotherapy, our goal is to apply cutting-edge technologies to study T cell therapy response in patients, and to design the next-generation T cell therapies for cancer and autoimmune diseases. The laboratory consists of an interdisciplinary team of physicians and scientists with backgrounds in medicine, immunology, cancer, autoimmunity, bioinformatics, and artificial intelligence. The Good Lab studies fundamental principles of T cell therapies with a focus on single-cell multi-omic and spatial technologies (Kadaba et al. ICML 2025; Tsui et al. NeurIPS 2025; Schaefer et al. ICML 2026) applied to patient data (Good et al. Nature Medicine 2018 and 2022) and advanced T cell engineering strategies informed by patient insights (Good et al. Nature Biotechnology 2019; Stiber et al. bioRxiv 2026). For more information, see https://med.stanford.edu/profiles/zinaida-good . Stanford University offers an unparalleled research environment in the heart of Silicon Valley and the climate and culture of San Francisco Bay Area. You will join a community of world-class faculty and staff advancing the frontiers of medicine. With access to high-end facilities and resources, you will have the opportunity to drive scientific progress towards breakthrough therapies for patients. Our culture is fast-paced, innovative, and collaborative. We offer a variety of benefits beyond traditional medical, dental, retirement, and savings options: World-class intellectual stimulation through classes, workshops, onsite conferences, and seminars by leading faculty Events and program for children, sports camps, tuition options Work-life balance and family-friendly policies and reimbursement Participation in Stanford’s social responsibility and sustainable programs for a better world A vibrant university culture that values the uniqueness of each individual
We are seeking candidates who are progressive thinkers, see challenges as simply problems to solve, and have the spirit and energy to change the world. For more information about the Department visit https://medicine.stanford.edu .
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