Mallick Sumit, Duttaroy Asim K, Dutta Suman
Stem Cells and Regenerative Medicine Centre, Yenepoya Research Centre, Yenepoya (Deemed to be University), University Road, Mangalore, Karnataka, India.
Department of Nutrition, Faculty of Medicine, Institute of Basic Medical Sciences, University of Oslo, Norway.
Transl Oncol. 2024 Dec;50:102140. doi: 10.1016/j.tranon.2024.102140. Epub 2024 Oct 5.
The PIK3CA gene is a linchpin in the intricate molecular network governing triple-negative breast cancer (TNBC) tumor tropism, serving as a focal point for understanding this aggressive disease. Anchored within the PI3K/AKT/mTOR signaling axis, PIK3CA mutations exert substantial influence, driving cellular processes that highlight the unique biology of TNBC. This review meticulously highlights the association between PIK3CA mutations and distinct TNBC subtypes, elucidating the gene's multifaceted contributions to tumor tropism. Molecular dissection reveals how PIK3CA mutations dynamically modulate chemokine responses, growth factor signaling, and extracellular matrix interactions, orchestrating the complex migratory behaviour characteristic of TNBC cells. A detailed exploration of PIK3CA-targeted strategies in the therapeutic arena is presented, outlining the current landscape of clinical trials and precision medicine approaches. As the scientific narrative converges, this review underscores the critical role of PIK3CA in shaping the molecular intricacies of TNBC tumor tropism and illuminates pathways toward tailored interventions, promising a paradigm shift in the clinical management of TNBC.
PIK3CA基因是控制三阴性乳腺癌(TNBC)肿瘤嗜性的复杂分子网络中的关键节点,是理解这种侵袭性疾病的焦点。PIK3CA突变锚定在PI3K/AKT/mTOR信号轴内,发挥着重大影响,驱动着突显TNBC独特生物学特性的细胞过程。本综述精心强调了PIK3CA突变与不同TNBC亚型之间的关联,阐明了该基因对肿瘤嗜性的多方面贡献。分子剖析揭示了PIK3CA突变如何动态调节趋化因子反应、生长因子信号传导和细胞外基质相互作用,从而协调TNBC细胞特有的复杂迁移行为。本文还详细探讨了治疗领域中针对PIK3CA的策略,概述了当前临床试验和精准医学方法的现状。随着科学论述的汇聚,本综述强调了PIK3CA在塑造TNBC肿瘤嗜性分子复杂性方面的关键作用,并阐明了定制干预措施的途径,有望在TNBC的临床管理中引发范式转变。