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Opioid growth factor-opioid growth factor receptor axis is a physiological determinant of cell proliferation in
Ian S Zagon1, Renee N Donahue, Patricia J McLaughlin
1Department of Neural and Behavioral Sciences, The Pennsylvania State University College of Medicine, Hershey, Pennsylvania, USA. isz1@psu.edu
Abstract:
The opioid growth factor (OGF) regulates cell proliferation of human cancer cells through the cyclin-dependent kinase inhibitory pathway, with mediation of this action by the OGF receptor (OGFr). The ubiquity of the OGF-OGFr axis in human cancer is unknown. We used 31 human cancer cell lines, representative of more than 90% of neoplasias occurring in humans, and found that OGF and OGFr were detected in the cytoplasm and nucleus by immunohistochemistry. The addition of OGF to cultures depressed cell number up to 41%, whereas naltrexone (NTX) increased cell proliferation by up to 44%, a total of 85% in the modulating capacity for the OGF-OGFr axis. Neutralization of OGF by specific antibodies led to a marked increase in cell number. Knockdown of OGFr by OGFr-siRNA resulted in a significant increase in the number of cells, even in the face of the addition of exogenous OGF. The cultures to which NTX was added and subjected to OGFr-siRNA were similar to those with OGF-siRNA alone. The OGF-OGFr axis, a physiological determinant of cell-proliferative activity, is a ubiquitous feature of human cancer cells. The identification of this native biological system in neoplasia may be important in understanding the pathophysiology of neoplasia, and in designing treatment modalities that utilize the body's own chemistry.
Insights
The opioid growth factor (OGF) and its receptor (OGFr) axis is universally present in human cancers, regulating cell proliferation. This axis offers a potential target for novel cancer therapies.
Area of Science:
- Oncology
- Molecular Biology
- Cell Biology
Background:
- The opioid growth factor (OGF) and OGF receptor (OGFr) axis regulates cell proliferation via the cyclin-dependent kinase inhibitory pathway.
- The prevalence of the OGF-OGFr axis in human cancers is not well understood.
Purpose of the Study:
- To determine the ubiquity of the OGF-OGFr axis in human cancer cell lines.
- To investigate the functional role of the OGF-OGFr axis in cancer cell proliferation.
Main Methods:
- Immunohistochemistry was used to detect OGF and OGFr in 31 human cancer cell lines.
- Functional assays involved OGF addition, naltrexone (NTX) treatment, OGF neutralization with antibodies, and OGFr knockdown using siRNA.
Main Results:
- OGF and OGFr were detected in both the cytoplasm and nucleus of all tested cancer cell lines.
- OGF addition decreased cell number by up to 41%, while NTX increased proliferation by up to 44%.
- OGF neutralization or OGFr knockdown significantly increased cell proliferation, highlighting the axis's inhibitory role.
Conclusions:
- The OGF-OGFr axis is a ubiquitous system in human cancer cells, acting as a physiological regulator of cell proliferation.
- The OGF-OGFr axis represents a potential therapeutic target for cancer treatment, leveraging the body's endogenous chemistry.
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