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Updated: Jun 5, 2026

Quantitative Mass Spectrometric Profiling of Cancer-cell Proteomes Derived From Liquid and Solid Tumors
Published on: February 27, 2015
Targeted therapies in cancer - challenges and chances offered by newly developed techniques for protein analysis in
K Malinowsky1, C Wolff, S Gündisch
1Department of Pathology, Technische Universität München, Munich, Germany.
Abstract:
In recent years, new anticancer therapies have accompanied the classical approaches of surgery and radio- and chemotherapy. These new forms of treatment aim to inhibit specific molecular targets namely altered or deregulated proteins, which offer the possibility of individualized therapies.The specificity and efficiency of these new approaches, however, bring about a number of challenges. First of all, it is essential to specifically identify and quantify protein targets in tumor tissues for the reasonable use of such targeted therapies. Additionally, it has become even more obvious in recent years that the presence of a target protein is not always sufficient to predict the outcome of targeted therapies. The deregulation of downstream signaling molecules might also play an important role in the success of such therapeutic approaches. For these reasons, the analysis of tumor-specific protein expression profiles prior to therapy has been suggested as the most effective way to predict possible therapeutic results. To further elucidate signaling networks underlying cancer development and to identify new targets, it is necessary to implement tools that allow the rapid, precise, inexpensive and simultaneous analysis of many network components while requiring only a small amount of clinical material.Reverse phase protein microarray (RPPA) is a promising technology that meets these requirements while enabling the quantitative measurement of proteins. Together with recently developed protocols for the extraction of proteins from formalin-fixed, paraffin-embedded (FFPE) tissues, RPPA may provide the means to quantify therapeutic targets and diagnostic markers in the near future and reliably screen for new protein targets.With the possibility to quantitatively analyze DNA, RNA and protein from a single FFPE tissue sample, the methods are available for integrated patient profiling at all levels of gene expression, thus allowing optimal patient stratification for individualized therapies.
Insights
Identifying protein targets in tumors is crucial for effective anticancer therapies. Reverse phase protein microarray (RPPA) technology enables precise protein quantification from tissue samples, aiding personalized cancer treatment strategies.
Area of Science:
- Oncology
- Molecular Biology
- Biotechnology
Background:
- Classical cancer treatments like surgery and chemotherapy are being augmented by targeted therapies.
- Targeted anticancer therapies inhibit specific molecular targets, enabling personalized treatment approaches.
- Predicting the efficacy of targeted therapies requires understanding protein expression and downstream signaling in tumors.
Purpose of the Study:
- To highlight the need for precise quantification of protein targets in tumor tissues for targeted therapy.
- To introduce Reverse Phase Protein Microarray (RPPA) as a tool for analyzing protein expression profiles.
- To emphasize the potential of RPPA in conjunction with FFPE tissue analysis for cancer research and personalized medicine.
Main Methods:
- Utilizing Reverse Phase Protein Microarray (RPPA) for quantitative protein measurement.
- Employing protocols for protein extraction from formalin-fixed, paraffin-embedded (FFPE) tissues.
- Integrating multi-omic analyses (DNA, RNA, protein) from single FFPE samples.
Main Results:
- RPPA technology allows for rapid, precise, and simultaneous analysis of numerous protein targets.
- RPPA can quantify therapeutic targets and diagnostic markers in FFPE tissues.
- Integrated patient profiling across gene expression levels is achievable.
Conclusions:
- RPPA is a promising technology for analyzing protein expression profiles in cancer.
- Combined with FFPE analysis, RPPA can facilitate the identification of new therapeutic targets and biomarkers.
- Multi-level patient profiling supports optimal stratification for individualized cancer therapies.
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