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Immunohistochemical Characterization of Procaspase-3 Overexpression as a Druggable Target With PAC-1, a Procaspase-3
Lisa J Schlein1, Bahaa Fadl-Alla1, Holly C Pondenis2
1Department of Pathobiology, University of Illinois at Urbana-Champaign, Urbana, IL, United States.
Abstract:
Gliomas and meningiomas are the most common brain neoplasms affecting both humans and canines, and identifying druggable targets conserved across multiple brain cancer histologies and comparative species could broadly improve treatment outcomes. While satisfactory cure rates for low grade, non-invasive brain cancers are achievable with conventional therapies including surgery and radiation, the management of non-resectable or recurrent brain tumors remains problematic and necessitates the discovery of novel therapies that could be accelerated through a comparative approach, such as the inclusion of pet dogs with naturally-occurring brain cancers. Evidence supports procaspase-3 as a druggable brain cancer target with PAC-1, a pro-apoptotic, small molecule activator of procaspase-3 that crosses the blood-brain barrier. Procaspase-3 is frequently overexpressed in malignantly transformed tissues and provides a preferential target for inducing cancer cell apoptosis. While preliminary evidence supports procaspase-3 as a viable target in preclinical models, with PAC-1 demonstrating activity in rodent models and dogs with spontaneous brain tumors, the broader applicability of procaspase-3 as a target in human brain cancers, as well as the comparability of procaspase-3 expressions between differing species, requires further investigation. As such, a large-scale validation of procaspase-3 as a druggable target was undertaken across 651 human and canine brain tumors. Relative to normal brain tissues, procaspase-3 was overexpressed in histologically diverse cancerous brain tissues, supporting procaspase-3 as a broad and conserved therapeutic target. Additionally, procaspase-3 expressing glioma and meningioma cell lines were sensitive to the apoptotic effects of PAC-1 at biologically relevant exposures achievable in cancer patients. Importantly, the clinical relevance of procaspase-3 as a potential prognostic variable was demonstrated in human astrocytomas of variable histologic grades and associated clinical outcomes, whereby tumoral procaspase-3 expression was negatively correlated with survival; findings which suggest that PAC-1 might provide the greatest benefit for patients with the most guarded prognoses.
Insights
Procaspase-3 is overexpressed in human and canine brain tumors, making it a conserved therapeutic target. The drug PAC-1 effectively induces apoptosis in these cancer cells, offering a potential new treatment for brain cancers.
Area of Science:
- Oncology
- Comparative Medicine
- Molecular Biology
Background:
- Gliomas and meningiomas are common brain cancers in humans and canines.
- Current treatments for non-resectable or recurrent brain tumors are limited.
- A comparative approach using pet dogs can accelerate the discovery of novel therapies.
Purpose of the Study:
- To validate procaspase-3 as a conserved, druggable target across diverse human and canine brain tumors.
- To assess the efficacy of PAC-1, a procaspase-3 activator, in preclinical and naturally occurring brain cancers.
- To investigate the prognostic value of procaspase-3 expression in human astrocytomas.
Main Methods:
- A large-scale analysis of procaspase-3 expression in 651 human and canine brain tumors compared to normal brain tissue.
- In vitro testing of PAC-1's apoptotic effects on glioma and meningioma cell lines.
- Correlation analysis of procaspase-3 expression with clinical outcomes in human astrocytomas.
Main Results:
- Procaspase-3 was significantly overexpressed in various human and canine brain cancers relative to normal brain tissue.
- Glioma and meningioma cell lines expressing procaspase-3 showed sensitivity to PAC-1-induced apoptosis.
- Increased procaspase-3 expression in human astrocytomas correlated with poorer survival rates.
Conclusions:
- Procaspase-3 is a broadly conserved and druggable target for brain cancers in both humans and canines.
- PAC-1 demonstrates therapeutic potential by inducing apoptosis in procaspase-3-expressing brain tumor cells.
- Procaspase-3 expression may serve as a prognostic biomarker, indicating potential benefit from PAC-1 therapy for patients with poor prognoses.
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