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Pietruska, J.

Publications and source records attributed to Pietruska, J..

2 recordsLinked to original sources

Identification of genomic alterations with clinical impact in canine splenic hemangiosarcoma

BackgroundCanine hemangiosarcoma (HSA) is an aggressive cancer of endothelial cells associated with short survival times. Understanding the genomic landscape of HSA is critical to developing more effective therapeutic strategies. ObjectivesTo determine the relationships between genomic and clinical features including treatment and outcome in canine splenic HSA. Animals109 dogs with primary splenic HSA treated by splenectomy that had tumor sequencing via the FidoCure(R) Precision Medicine Platform targeted sequencing panel. MethodsPatient signalment, weight, metastasis at diagnosis, treatment, and survival time were retrospectively evaluated. The incidence of genomic alterations in individual genes and their relationship to patient variables and outcome were assessed. ResultsSomatic mutations in TP53 (n = 45), NRAS (n = 20), and PIK3CA (n = 19) were most common. Survival was associated with metastases at diagnosis, germline variants in SETD2 and NOTCH1, and nominally with breed. Age at diagnosis was associated with NRAS mutations and breed. TP53 and PIK3CA mutations were found in larger dogs, germline SETD2 variants in smaller dogs. Doxorubicin (DOX) treatment did not significantly improve survival time, while targeted therapies had a significant early survival benefit. Conclusions and clinical importanceDOX treatment may provide limited clinical benefit for dogs with splenic HSA, while targeted therapy may provide early survival benefit. Genetic signatures associated with splenic HSA may be useful in guiding targeted therapy to improve outcomes. Germline variants, age, size, and breed may be useful prognostic factors and provide insight into the genomic landscape of the tumor.

genomics↗

AKT1 is Required for a Complete Palbociclib-induced Senescence Phenotype in BRAF-V600E-Driven Human Melanoma

Cellular senescence is a carefully regulated process of proliferative arrest accompanied by numerous functional and morphologic changes. Senescence allows damaged cells to avoid neoplastic proliferation, however induction of the senescence-associated secretory phenotype (SASP) can promote tumor growth. The complexity of the senescence response may limit the efficacy of anti-neoplastic agents, such as CDK4/6 inhibitors (Cdk4/6i), that induce a senescence-like, non-proliferative state in tumor cells. The AKT kinase family plays an important role in cellular growth and division, and is commonly hyperactive in many cancers including melanoma. AKT activity has also been implicated in regulation of senescence. The three AKT isoforms play both redundant and unique roles in tumorigenesis and cancer progression. To interrogate the role of AKT isoforms in the induction of cellular senescence by Cdk4/6i, we generated isoform specific AKT knockout human BRAF-V600E mutated melanoma cell lines. We found that the CDK4/6i Palbociclib induced a form of senescence in these cells that was dependent on AKT1. As a potential mechanism, we evaluated the activity of the cGAS-STING pathway, recently implicated in cellular senescence. While we showed cGAS-STING function to be dependent on AKT1, pharmacologic inhibition of either cGAS or STING had little effect on senescence. However, we found SASP factors to require NF-kB function, in part dependent on a stimulatory phosphorylation of IKK by AKT1 previously reported in other models. In summary, we provide the first evidence of a novel, isoform specific role for AKT1 in therapy-induced senescence in human melanoma cells acting through NF-kB but independent of cGAS-STING.

cancer biology↗