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Single Cell Spatial Transcriptomics Jobs in Chicago, IL

Bruker offers differentiated, high-value life science and diagnostics systems and solutions in preclinical imaging, proteomics and multi-omics, spatial and single-cell biology, structural and ...

Minimum of 1 year of experience in at least one of the following areas: spatial data analysis ... with single-cell proteomics and/or metabolomics * 1+ year of experience building visualization ...

Computational Biologist

Chicago, IL · On-site

$130K - $163K/yr

Minimum of 1 year of experience in at least one of the following areas: spatial data analysis ... with single-cell proteomics and/or metabolomics * 1+ year of experience building visualization ...

Showing results 21-31

Single Cell Spatial Transcriptomics information

See Chicago, IL salary details

$13

$22

$30

How much do single cell spatial transcriptomics jobs pay per hour?

As of Aug 22, 2026, the average hourly pay for single cell spatial transcriptomics in Chicago, IL is $22.30, according to ZipRecruiter salary data. Most workers in this role earn between $17.36 and $27.98 per hour, depending on experience, location, and employer.

What is single cell spatial transcriptomics?

Single cell spatial transcriptomics is a cutting-edge technique that allows researchers to analyze gene expression in individual cells while preserving their spatial location within a tissue. This method combines the high-resolution insights of single-cell RNA sequencing with spatial information, enabling scientists to understand how cells interact and organize within their native environments. It is widely used in biomedical research to study tissue architecture, disease mechanisms, and cellular heterogeneity.

What are the typical challenges faced by professionals working in single cell spatial transcriptomics, and how can they be addressed?

Professionals in Single Cell Spatial Transcriptomics often encounter challenges related to handling large, complex data sets and integrating spatial information with single-cell transcriptomic profiles. These tasks demand strong computational skills and close collaboration with bioinformaticians and other researchers. Effective communication within interdisciplinary teams is essential to ensure experimental design aligns with downstream analysis needs. Staying updated with rapidly evolving technologies and best practices also helps professionals overcome technical hurdles and produce reliable, high-impact results.

What are the key skills and qualifications needed to thrive as a single cell spatial transcriptomics scientist, and why are they important?

To thrive as a Single Cell Spatial Transcriptomics Scientist, you need a strong background in molecular biology, genomics, and bioinformatics, typically supported by an advanced degree (PhD or MSc) in a relevant field. Familiarity with high-throughput sequencing platforms, spatial transcriptomics technologies (like 10x Genomics Visium or NanoString GeoMx), and data analysis tools such as R or Python is essential. Critical thinking, problem-solving, and effective communication are crucial soft skills for interpreting complex data and collaborating in multidisciplinary teams. These skills and qualities are vital for generating reliable insights into cellular function and spatial organization, which drive innovative research and discovery.

What are popular job titles related to Single Cell Spatial Transcriptomics jobs in Chicago, IL?

For Single Cell Spatial Transcriptomics jobs in Chicago, IL, the most frequently searched job titles are:

What job categories do people searching Single Cell Spatial Transcriptomics jobs in Chicago, IL look for?

The top searched job categories for Single Cell Spatial Transcriptomics jobs in Chicago, IL are:

Cancer Biology and Immunology - A Division-wide, Open-rank Faculty Search #BSD041

The University of Chicago

Chicago, IL • On-site

Full-time

Medical, Retirement, PTO

Posted 17 days ago


University Of Chicago rating

8.1

Company rating: 8.1 out of 10

Based on 47 frontline employees who took The Breakroom Quiz

167th of 621 rated colleges and universities


Job description

Description
Scope and Opportunity
The University of Chicago's Biological Sciences Division is searching for full-time scientists, physician-scientists, and engineers whose work will help define the next generation of cancer biology and immunology.
We are especially interested in candidates whose research illuminates the dynamic biology of malignant cells, immune cells, tissue environments, host physiology, microbes, metabolism, and therapeutic intervention in cancer. Researchers in immune-related diseases, such as autoimmunity, infection biology, transplantation immunology, immune tolerance, and inflammation are also encouraged to apply.
Academic rank, track, tenure status, and compensation are dependent upon qualifications. Primary appointments will be in appropriate departments or units, most likely in the Biological Sciences Division, though potentially in the Physical Sciences Division, or the Pritzker School of Molecular Engineering, with possible secondary appointments in other relevant units depending on the candidates' research.
These positions are benefits eligible. The University of Chicago offers a wide range of benefits programs and resources for eligible employees, including health, retirement, and paid time off. Information about the benefit offerings can be found in the Benefits Guidebook.
Appointees will join a highly collaborative academic ecosystem in which outstanding basic science and clinical departments are co-located on a compact urban campus, with state-of-the-art core facilities, exceptional graduate and medical students, and opportunities to participate in multidisciplinary research, translation, commercialization, and entrepreneurship, including Hyde Park Labs, a new hybrid facility for academic research, science-based companies and the UChicago Science Incubator.
Research Priorities
The goal of this search is to recruit faculty who will deepen and expand the University of Chicago's strengths in cancer biology, immunology, or immuno-oncology, while building new connections among basic scientists, clinicians, engineers, computational biologists, public health and translational investigators.
Areas of interest include, but are not limited to:
• Tumor microenvironment and cancer-immune ecology
• Cancer metabolism or immunometabolism
• T-cell, NK-cell, B-cell, and myeloid-cell biology
• Microbiome, virome, and host-microbe interactions
• Tissue immunity in inflammation and/or tumor biology
• Cancer initiation, progression, metastasis, dormancy, recurrence, and immune escape
• Aging and immunosenescence in cancer
• Neuroimmune regulation in cancer and immunity
• Spatial, systems, and computational cancer or immunology
• Single-cell, functional-genomic, proteomic, metabolomic, or imaging approaches to cancer and/or immunity
• Immune monitoring, biomarker discovery, and mechanisms of therapeutic response or resistance
• Vaccines, antigen discovery, antigen presentation, and immune recognition
• Engineered immunity, synthetic immunology, and cell-based therapies, including CAR, TCR, NK-cell, and gene-edited immune-cell platforms
• Antibody therapeutics, bispecifics, immune checkpoints, and other immune-modulating strategies
Candidates with programs oriented toward fundamental discovery, mechanistic cancer biology, immunology, or tumor ecology are encouraged to apply through this search.
Candidates whose work is primarily focused on drug discovery, therapeutic chemistry, biologics, platform development, or later-stage therapeutic translation may also wish to consider the Chemical Biology and Therapeutics search.
Selection Process
The initial phase of the search is led by a committee composed of faculty from multiple departments and divisions rather than by a single hiring department. This phase is designed to identify leading candidates across the breadth of the search area and to consider how their scholarship could contribute to, and be advanced by, the University's scientific programs and intellectual environment. During an initial campus visit, candidates will meet faculty from multiple departments, institutes, and programs.
A follow-up visit will be organized by the departmental affiliation(s) best suited to support each candidate's work and long-term success. Additional information about the selection principles and the broader division-wide recruitment strategy is available here: BSD Faculty Recruitment.
A Division-Wide Recruitment Initiative
This search is one of five coordinated, open-rank searches through which the Biological Sciences Division and UChicago Medicine, in collaboration with the Physical Sciences Division and the Pritzker School of Molecular Engineering, are recruiting a cohort of exceptional faculty to expand the scale, disciplinary breadth, and human impact of biomedical research at UChicago. Candidates whose work spans more than one search area are encouraged to apply to multiple searches.
  1. Cancer Biology and Immunology (this ad)
  2. Chemical Biology and Therapeutics
  3. Translational Neuroscience
  4. AI-Enabled Biology and Medicine
  5. Physician-Scientists-All Health-Related Areas

Application
Prior to the start of employment, qualified applicants must have a PhD, MD, or equivalent.
To be considered, those interested must apply through The University of Chicago, Academic Recruitment job board, which uses Interfolio to accept applications: https://apply.interfolio.com/190755.
Applicants must upload:
  1. a cover letter
  2. CV including bibliography
  3. research statement
  4. teaching statement
  5. names and contact information for three references

Review of complete applications will start on September 30, 2026, and end when the positions are filled.
For instructions on the Interfolio application process, please visit http://tiny.cc/InterfolioHelp.

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