Apply lipidomics to uncover lipid-based mechanisms and signatures relevant to disease progression and treatment response; Employ glycomics to support the discovery of glycan alterations with ...
Apply lipidomics to uncover lipid-based mechanisms and signatures relevant to disease progression and treatment response; Employ glycomics to support the discovery of glycan alterations with ...
Apply lipidomics to uncover lipid-based mechanisms and signatures relevant to disease progression and treatment response; Employ glycomics to support the discovery of glycan alterations with ...
Apply lipidomics to uncover lipid-based mechanisms and signatures relevant to disease progression and treatment response; Employ glycomics to support the discovery of glycan alterations with ...
Apply lipidomics to uncover lipid-based mechanisms and signatures relevant to disease progression and treatment response; Employ glycomics to support the discovery of glycan alterations with ...
Apply lipidomics to uncover lipid-based mechanisms and signatures relevant to disease progression and treatment response; Employ glycomics to support the discovery of glycan alterations with ...
Apply lipidomics to uncover lipid-based mechanisms and signatures relevant to disease progression and treatment response; Employ glycomics to support the discovery of glycan alterations with ...
Apply lipidomics to uncover lipid-based mechanisms and signatures relevant to disease progression and treatment response; Employ glycomics to support the discovery of glycan alterations with ...
Apply lipidomics to uncover lipid-based mechanisms and signatures relevant to disease progression and treatment response; Employ glycomics to support the discovery of glycan alterations with ...
Apply lipidomics to uncover lipid-based mechanisms and signatures relevant to disease progression and treatment response; Employ glycomics to support the discovery of glycan alterations with ...
Lipidomics information
What are the key skills and qualifications needed to thrive in the lipidomics position, and why are they important?
To thrive in lipidomics, you need a strong background in biochemistry or analytical chemistry, with advanced degrees (Master's or PhD) often preferred. Proficiency in mass spectrometry, chromatography techniques (e.g., LC-MS), and bioinformatics software is essential, along with experience in handling large biological datasets. Excellent problem-solving ability, attention to detail, and effective communication skills are crucial for designing experiments and collaborating with multidisciplinary teams. These competencies are vital for generating accurate lipid analyses that contribute valuable insights to biomedical research and development.
What are the primary responsibilities of a professional working in lipidomics?
A lipidomics professional is typically responsible for designing and conducting experiments to analyze lipid profiles in biological samples using advanced analytical techniques like mass spectrometry and chromatography. Their daily work often involves sample preparation, instrument operation, data analysis, and the interpretation of complex lipid data. They also collaborate closely with biologists, chemists, and data scientists to support broader research objectives, such as disease mechanism elucidation or drug development. This role offers exposure to cutting-edge research and can provide strong opportunities for career progression in biotechnology, pharmaceuticals, and academic settings.
What is lipidomics?
A Lipidomics job involves studying the structure, function, and dynamics of lipids in biological systems using analytical techniques like mass spectrometry and chromatography. Professionals in this field work in research, healthcare, or industry to analyze lipid profiles and their roles in health and disease. Their responsibilities may include sample preparation, data analysis, and method development for lipid identification and quantification.

Full-time
Re-posted 15 days ago
Job description
Specifically, we are seeking candidates with strong track records in the following research areas:
- Translational Omics and Biomarker Development: Expertise in any or several of the following fields of omics. For example: Contribute to translational research programs integrating proteomics to identify clinically actionable protein biomarkers and therapeutic targets; Apply lipidomics to uncover lipid-based mechanisms and signatures relevant to disease progression and treatment response; Employ glycomics to support the discovery of glycan alterations with diagnostic and prognostic value in human health in virology/immunology and/or large molecule biotherapeutics; Leverage metabolomics to translate metabolic profiles into insights for precision medicine and patient stratification. The goal is the application of omics or multi-omics pipelines that bridge bench research with bedside applications.
- Technology Development: This field focuses on developing mass spectrometry, next-gen/nanopore or other omics technologies. Such technologies could include advances in molecular imaging, characterization of proteins and protein-ligand, protein-drug, protein-protein, and protein-RNA/DNA complex structures and dynamics, especially those with therapeutic potential, vertical advances in omics sample preparation/single cell omics, characterization of biomolecule modifications, and other forms of technology development advancing clinical and medicine/precision medicine applications.
- Develop and maintain a robust, externally funded research program aligned with the missions of SoS and CBATI.
- Collaborate across disciplines within the School and the Institute to drive innovative research that addresses critical bioscience challenges.
- Teach undergraduate and/or graduate courses in their home department.
- Mentor and advise students, contributing to a diverse and inclusive academic community.
- Engage in service activities within the Department, School, Institute, University, and broader Indiana community.
- Education: Ph.D. in life, health, or physical sciences or related fields.
- Research Experience: All applicants should provide evidence of a strong record of scholarship in one or more of the identified research areas, with a demonstrated ability to secure external funding. Current and past record of external funding is highly desirable.
- Interdisciplinary Collaboration: All applicants need to show a strong commitment to working in a multidisciplinary environment with researchers from a range of scientific backgrounds.
- Teaching and Mentoring: All applicants should indicate evidence of effective teaching and commitment to fostering a respectful, and inclusive learning and working environments for students and colleagues.
Applicants should submit an application letter, curriculum vitae, a detailed description of their research program, a statement of teaching philosophy, and names with contact information of three references when completing the online application. References will be contacted upon application submission by a system-generated email providing instructions and a link to upload their reference letter.
Review of applications will begin on September 30, 2025 , and continue until the position(s) are filled.
School contact for questions: Dr. Rajeev R. Raje, e-mail: address rraje@iu.edu
- Education: Ph.D. in life, health, or physical sciences or related fields.
e-mail address:rraje@iu.edu