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Runa Speer

Publications and source records attributed to Runa Speer.

3 recordsLinked to original sources

Use of reverse phase protein microarrays and reference standard development for molecular network analysis of metastatic ovarian carcinoma.

Cancer can be defined as a deregulation or hyperactivity in the ongoing network of intracellular and extracellular signaling events. Reverse phase protein microarray technology may offer a new opportunity to measure and profile these signaling pathways, providing data on post-translational phosphorylation events not obtainable by gene microarray analysis. Treatment of ovarian epithelial carcinoma almost always takes place in a metastatic setting since unfortunately the disease is often not detected until later stages. Thus, in addition to elucidation of the molecular network within a tumor specimen, critical questions are to what extent do signaling changes occur upon metastasis and are there common pathway elements that arise in the metastatic microenvironment. For individualized combinatorial therapy, ideal therapeutic selection based on proteomic mapping of phosphorylation end points may require evaluation of the patient's metastatic tissue. Extending these findings to the bedside will require the development of optimized protocols and reference standards. We have developed a reference standard based on a mixture of phosphorylated peptides to begin to address this challenge.

Carcinoma↗

Reverse-phase protein microarrays for tissue-based analysis.

The deciphering of the human genome has elucidated our biological structural design and has generated insights into disease development and pathogenesis. At the same time, knowledge of genetic changes during disease processes has demonstrated the need to move beyond genomics towards proteomics and a systems biology approach to science. Analyzing the proteome comprises more than just a numeration of proteins. In fact, it characterizes proteins within cells in the context of their functional status and interactions in their physiological micro- and macroenvironments. As dysregulated signaling often underpins most human diseases, an overarching goal of proteomics is to profile the working state of signaling pathways, to develop 'circuit maps' of normal and diseased protein networks and identify hyperactive, defective or inoperable transduction pathways. Reverse-phase protein microarrays represent a new technology that can generate a multiplex readout of dozens of phosphorylated events simultaneously to profile the state of a signaling pathway target even after the cell is lyzed and the contents denatured.

Animals↗

Development of monoclonal and polyclonal antibodies and an ELISA for the determination of glycodelin in human serum, amniotic fluid and cystic fluid of benign and malignant ovarian tumors.

OBJECTIVE: The role of glycodelin in human reproduction and gynecological malignancies has been investigated in a large number of studies in recent years. Three dominant functions of this glycoprotein were identified. Glycodelin is immunosuppressive, a morphological marker of differentiation and a contraceptive. Glycodelin is a glycoprotein with a molecular weight of 28 kDa and a carbohydrate content of 17.5%. Unusual LacdiNAc structures were identified on glycodelin A, isolated from amniotic fluid. Because no kit for glycodelin quantification is commercially available, we developed all reagents and a functional ELISA. MATERIALS AND METHODS: Glycodelin A was purified from amniotic fluid by chromatographic methods. The purity of the isolated protein was checked with SDS-PAGE. Polyclonal antibodies against glycodelin were generated in rabbits. Monoclonal antibodies against glycodelin were generated from immunized BALB/c mice. Positive hybridomas were cloned and cultured. Monoclonal antibodies were isolated by immunoadsorption chromatography from culture supernatants. The glycodelin ELISA was developed in two formats, namely coating with polyclonal antibodies and the use of monoclonal antibodies. RESULTS: The factors of variance for the ELISA were 7% (intraassay variance) and 15% (inter-assay variance). The glycodelin ELISA was used to determine the glycodelin A concentration in sera of fertile women during the proliferative and secretory phases of the endometrium. The glycodelin A concentration was insignificantly elevated in the secretory phase compared to the proliferative phase. Significantly higher levels of glycodelin A were found in women using oral contraceptives compared to women who were not (p<0.001). This is probably due to progesterone, which stimulates glycodelin production. We also found significantly increased glycodelin concentrations in the fluids of malignant ovarian cysts compared to benign ovarian tumors (p<0.001). Furthermore, we tested the monoclonal and polyclonal antibodies successfully in Western blot analysis and immunoadsorption chromatography. CONCLUSION: We consider the described ELISA for the quantification of glycodelin as a useful tool for the determination of glycodelin in amniotic fluid, serum and cystic fluids. Its most promising application is expected in the diagnosis of ovarian cancer. The antibodies generated are applicable to multiple techniques.

Antibodies↗