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Pseudolaric acid B induces G2/M phase arrest in canine mammary tumor cells by targeting CDK1
Mengjuan Chen1,2, Hui Han1,2, Mengke Qin1,2
1College of Veterinary Medicine, Henan Agricultural University, Zhengzhou, China.
Introduction:
Current management of canine mammary tumors (CMTs) remains reliant on surgical resection and chemotherapy. However, these strategies are often limited by high recurrence rates and systemic toxicity. Addressing these limitations requires urgent development of safer and more effective therapeutics. Pseudolaric acid B (PAB), a bioactive compound extracted from the roots of the Pseudolarix kaempferi Gord., has garnered attention for its broad-spectrum antitumor activity and favorable pharmacokinetic profile, and it has shown promise in inhibiting the growth of a variety of tumors, including breast cancer. The aim of this study was to investigate the anticancer effects of PAB on canine mammary tumor U27 cells and its underlying mechanisms.
Methods And Results:
In vitro analyses demonstrated that PAB dose dependently reduced cell viability, suppressed cell proliferation, and triggered caspase-mediated apoptosis. Transcriptomic profiling of PAB-treated tumor cells revealed significant enrichment of differentially expressed genes in pathways such as gap junction, cell cycle, and cellular senescence. Mechanistically, CDK1 suppression by PAB, achieved through binding that diminishes its expression and stability, induced G2/M phase arrest and halted mitotic progression. While these findings suggest the potential of PAB as a candidate for canine mammary tumor treatment, further investigations are warranted to delineate its precise in vivo targeting specificity and pharmacodynamic interactions.
Discussion:
These findings not only expand the translational applicability of PAB in veterinary oncology but also identify CDK1 as a potential therapeutic vulnerability for combinatorial treatment strategies in CMTs.
Insights
Pseudolaric acid B (PAB) shows promise in treating canine mammary tumors by reducing cancer cell viability and triggering apoptosis. This compound targets CDK1, offering a potential new therapeutic strategy for canine mammary tumors.
Area of Science:
- Veterinary Oncology
- Molecular Pharmacology
- Cancer Biology
Background:
- Current treatments for canine mammary tumors (CMTs) like surgery and chemotherapy have limitations, including high recurrence rates and toxicity.
- There is a need for novel, safer, and more effective therapeutic agents for CMTs.
- Pseudolaric acid B (PAB), a natural compound, exhibits broad-spectrum antitumor activity and a favorable pharmacokinetic profile.
Purpose of the Study:
- To investigate the anticancer effects of PAB on canine mammary tumor U27 cells.
- To elucidate the underlying molecular mechanisms of PAB's action in CMTs.
Main Methods:
- In vitro cell viability, proliferation, and apoptosis assays were performed on CMT U27 cells treated with PAB.
- Transcriptomic profiling was used to analyze gene expression changes in PAB-treated cells.
- The interaction of PAB with CDK1 and its effect on cell cycle progression were investigated.
Main Results:
- PAB dose-dependently reduced canine mammary tumor cell viability and proliferation.
- PAB induced caspase-mediated apoptosis in CMT cells.
- PAB suppressed CDK1 expression and stability, leading to G2/M phase arrest and mitotic progression inhibition.
Conclusions:
- PAB demonstrates significant anticancer effects against canine mammary tumor cells in vitro.
- CDK1 is identified as a key molecular target of PAB in CMTs.
- PAB represents a potential therapeutic candidate for canine mammary tumors, possibly in combination therapies targeting CDK1.
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