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A Flow Cytometry-Based High-Throughput Technique for Screening Integrin-Inhibitory Drugs
Published on: February 2, 2024
Chemically programmed antibodies targeting multiple alpha(v) integrins and their effects on tumor-related functions
Rajib K Goswami1, Krishna M Bajjuri, Jane S Forsyth
1Department of Molecular Biology, The Scripps Research Institute, 10550 North Torrey Pines Road, La Jolla, California 92037, United States.
Abstract:
Integrins αvβ3 and αvβ6 are highly expressed on tumor cells and/or by the tumor vasculature of many human cancers, and represent promising targets for anticancer therapy. Novel chemically programmed antibodies (cpAbs) targeting these integrins were prepared using the catalytic aldolase Antibody (Ab) programming strategy. The effects of the cpAbs on cellular functions related to tumor progression were examined in vitro using tumor cell lines and their cognate integrin ligands, fibronectin and osteopontin. The inhibitory functions of the conjugates and their specificity were examined based on interference with cell-cell and cell-ligand interactions related to tumor progression. Cell binding analyses of the anti-integrin cpAbs revealed high affinity for tumor cells that overexpressed αvβ3 and αvβ6 integrins, and weak interactions with αvβ1 and αvβ8 integrins, in vitro. Functional analyses demonstrated that the cpAbs strongly inhibited cell-cell interactions through osteopontin binding, and they had little or no immediate effects on cell viability and proliferation. On the basis of these characteristics, the cpAbs are likely to have a broad range of activities in vivo, as they can target and antagonize one or multiple αv integrins expressed on tumors and tumor vasculatures. Presumably, these conjugates may inhibit the establishment of metastastatic tumors in distant organs through interfering with cell adhesion more effectively than antibodies or compounds targeting one integrin only. These anti-integrin cpAbs may also provide useful reagents to study combined effect of multiple αv integrins on cellular functions in vitro, on pathologies, including tumor angiogenesis, fibrosis, and epithelial cancers, in vivo.
Insights
Chemically programmed antibodies (cpAbs) targeting integrins αvβ3 and αvβ6 show promise for cancer therapy. These novel cpAbs effectively inhibit tumor cell interactions, potentially hindering metastasis and offering new research tools.
Area of Science:
- Biochemistry
- Immunology
- Oncology
Background:
- Integrins αvβ3 and αvβ6 are overexpressed in many human cancers, making them key targets for anticancer therapies.
- Developing targeted therapies against these integrins is crucial for effective cancer treatment.
Purpose of the Study:
- To develop and characterize novel chemically programmed antibodies (cpAbs) targeting integrins αvβ3 and αvβ6.
- To evaluate the in vitro effects of these cpAbs on tumor cell functions and interactions.
Main Methods:
- Chemically programmed antibodies (cpAbs) were generated using a catalytic aldolase Antibody (Ab) programming strategy.
- In vitro assays were used to assess cpAb binding affinity to tumor cells and their effects on cell-cell and cell-ligand interactions.
Main Results:
- The anti-integrin cpAbs demonstrated high affinity for tumor cells overexpressing αvβ3 and αvβ6, with weaker binding to αvβ1 and αvβ8.
- cpAbs significantly inhibited cell-cell interactions mediated by osteopontin binding, without immediate impact on cell viability or proliferation.
Conclusions:
- These cpAbs show potential for broad in vivo anticancer activity by targeting multiple αv integrins on tumors and vasculature.
- cpAbs may inhibit metastasis more effectively than single-target agents and serve as valuable tools for studying integrin functions in various pathologies.
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