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Detecting and repairing DNA damage is pivotal for maintaining normal cell function and genomic stability. Homologous Recombination Repair (HRR) genes repair a type of DNA damage known as "double-stranded DNA damage." In this panel, we analyze 17 genes associat...
Detecting and repairing DNA damage is pivotal for maintaining normal cell function and genomic stability. Homologous Recombination Repair (HRR) genes repair a type of DNA damage known as "double-stranded DNA damage." In this panel, we analyze 17 gene...
Detecting and repairing DNA damage is pivotal for maintaining normal cell function and genomic stability. Homologous Recombination Repair (HRR) genes repair a type of DNA damage known as "double-stranded DNA damage." In this panel, we analyze 17 genes associated with the HRR pathway. Cancers with difficulty repairing this type of DNA damage are known as HRD (homologous recombination deficiency). This type of DNA damage responds better to treatment with a type of targeted therapy known as PARP inhibitors.
Detecting and repairing DNA damage is pivotal for maintaining normal cell function and genomic stability. Homologous Recombination Repair (HRR) genes repair a type of DNA damage known as "double-stranded DNA damage." In this panel, we analyze 17 genes associated with the HRR pathway. Cancers with difficulty repairing this type of DNA damage are known as HRD (homologous recombination deficiency). This type of DNA damage responds better to treatment with a type of targeted therapy known as PARP inhibitors.
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