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Updated: Mar 30, 2026

Quantitative Mass Spectrometric Profiling of Cancer-cell Proteomes Derived From Liquid and Solid Tumors
Published on: February 27, 2015
Advances in Proteomic Technologies and Its Contribution to the Field of Cancer
1Office of Cancer Clinical Proteomics Research, National Cancer Institute, NIH, Bethesda, MD 20892, USA.
Abstract:
Systematic studies of the cancer genome have generated a wealth of knowledge in recent years. These studies have uncovered a number of new cancer genes not previously known to be causal targets in cancer. Genetic markers can be used to determine predisposition to tumor development, but molecularly targeted treatment strategies are not widely available for most cancers. Precision care plans still must be developed by understanding and implementing basic science research into clinical treatment. Proteomics is continuing to make major strides in the discovery of fundamental biological processes as well as more recent transition into an assay platform capable of measuring hundreds of proteins in any biological system. As such, proteomics can translate basic science discoveries into the clinical practice of precision medicine. The proteomic field has progressed at a fast rate over the past five years in technology, breadth and depth of applications in all areas of the bioscience. Some of the previously experimental technical approaches are considered the gold standard today, and the community is now trying to come to terms with the volume and complexity of the data generated. Here I describe contribution of proteomics in general and biological mass spectrometry in particular to cancer research, as well as related major technical and conceptual developments in the field.
Insights
Proteomics, particularly biological mass spectrometry, is advancing cancer research by identifying new cancer genes and enabling precision medicine. This technology translates basic science discoveries into clinical applications for targeted cancer treatments.
Area of Science:
- Oncology
- Proteomics
- Biotechnology
Background:
- Cancer genome studies have revealed novel cancer genes.
- Targeted cancer therapies are limited, necessitating integration of basic research into clinical practice.
- Precision medicine requires understanding fundamental biological processes.
Purpose of the Study:
- To highlight the contributions of proteomics and biological mass spectrometry to cancer research.
- To discuss technological and conceptual advancements in the field.
- To emphasize the role of proteomics in advancing precision medicine.
Main Methods:
- Systematic cancer genome studies.
- Proteomic analysis using biological mass spectrometry.
- Review of technological and conceptual developments in proteomics.
Main Results:
- Identification of new cancer-associated genes.
- Advancement of proteomics as a platform for measuring hundreds of proteins.
- Progress in proteomic technology, breadth, and depth of applications.
Conclusions:
- Proteomics is crucial for translating basic science discoveries into clinical precision medicine.
- Biological mass spectrometry is a key tool in cancer research.
- The field is rapidly evolving to handle complex proteomic data for improved cancer care.
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