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Triple-negative breast cancer: epidemiology, molecular mechanisms, and modern vaccine-based treatment strategies

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BIOCHEMICAL PHARMACOLOGY
卷 212, 期 -, 页码 -

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PERGAMON-ELSEVIER SCIENCE LTD
DOI: 10.1016/j.bcp.2023.115545

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Triple-negative breast cancer; BRCA; Genetic penetrance; Molecular pathways; Cancer vaccines; mRNA therapeutics

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TNBC is a subtype of breast cancer with poor prognosis and aggressive behavior, accounting for 10-15% of new cases. The unique mutational profile of somatic and germline modifications in TNBC is different from other subtypes. Understanding the genomic modifications in TNBC is essential for developing treatment strategies.
Long-standing scarcity of efficacious treatments and tumor heterogeneity have contributed to triple-negative breast cancer (TNBC), a subtype with a poor prognosis and aggressive behavior that accounts for 10-15% of all new cases of breast cancer. TNBC is characterized by the absence of progesterone and estrogen receptor expression and lacks gene amplification or overexpression of HER2. Genomic sequencing has detected that the unique mutational profile of both the somatic and germline modifications in TNBC is staggeringly dissimilar from other breast tumor subtypes. The clinical utility of sequencing germline BRCA1/2 genes has been well established in TNBC. Nevertheless, reports regarding the penetrance and risk of other susceptibility genes are relatively scarce. Recurring mutations (e.g., TP53 and PI3KCA mutations) occur together with rare mutations in TNBC, and the shared effects of genomic modifica-tions drive its progression. Given the heterogeneity and complexity of this disease, a clinical understanding of the genomic modifications in TNBC can pave an innovative way toward its therapy. In this review, we summarized the most recent discoveries associated with the underlying biology of developmental signaling pathways in TNBC. We also summarize the recent advancements in genetics and epidemiology and discuss state-of-the-art vaccine-based therapeutic strategies for TNBC that will enable tailored therapeutics.

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