解密前列腺癌的基因和表观遗传结构。

Advances in cancer research Pub Date : 2024-01-01 Epub Date: 2024-06-22 DOI:10.1016/bs.acr.2024.06.001
Sheeraz Un Nazir, Juhi Mishra, Shailendra Kumar Maurya, Negin Ziamiavaghi, Sanika Bodas, Benjamin A Teply, Samikshan Dutta, Kaustubh Datta
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引用次数: 0

摘要

前列腺癌是最常见的男性癌症之一,在全球范围内导致大量死亡。由于前列腺癌进展的复杂性和多样性,对前列腺癌的研究显得尤为重要,这也凸显了改进治疗策略的迫切需要。本章探讨了影响前列腺癌进展的遗传和表观遗传因素,强调了了解该疾病的分子基础对开发靶向疗法的重要性。它特别回顾了雄激素受体、TP53、SPOP、FOXA1 和 PTEN 等基因中关键遗传突变的作用,这些基因对疾病的发生和发展至关重要。此外,本章还探讨了表观遗传修饰(包括 DNA 甲基化和组蛋白修饰)的影响,这些修饰通过影响基因表达和细胞行为促进癌症进展。此外,本章还深入探讨了前列腺癌的基本信号转导机制、针对基因和表观遗传学改变的研究进展。这些发现揭示了有前景的治疗目标,旨在了解和确定未来治疗的可行途径。本章加深了我们目前对前列腺癌基因和表观遗传学状况的了解,强调了我们有必要增进知识,以完善和扩大前列腺癌患者的治疗方案。
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Deciphering the genetic and epigenetic architecture of prostate cancer.

Prostate cancer, one of the most frequently diagnosed cancers in men, leads to significant mortality worldwide. Its study is important due to the complexity and diversity in its progression, highlighting the urgent need for improved therapeutic strategies. This chapter probes into the genetic and epigenetic factors influencing prostate cancer progression, underscoring the importance of understanding the disease's molecular fundamentals for the development of targeted therapies. It specifically reviews the role of key genetic mutations in genes such as Androgen Receptor, TP53, SPOP, FOXA1 and PTEN which are crucial for the disease onset and a progression. Furthermore, it examines the impact of epigenetic modifications, including DNA methylation and histone modification, which contribute to the cancer's progression by affecting gene expression and cellular behavior. Further, in this chapter we delve into the underlying signaling mechanism, the advancements in targeting genetic and epigenetic alterations in prostate cancer. These findings have revealed promising targets for therapeutic advancements, aiming to understand and identify promising avenues for future therapies. This chapter improves our current understanding of prostate cancer genetic and epigenetic landscape, emphasizing the necessity of advancing our knowledge to refine and expand treatment options for prostate cancer patients.

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Advancements in computer vision and pathology: Unraveling the potential of artificial intelligence for precision diagnosis and beyond. Deciphering the genetic and epigenetic architecture of prostate cancer. Epigenetic regulation of androgen dependent and independent prostate cancer. Molecular landscape of prostate cancer bone metastasis. Multiplexed quantitative proteomics in prostate cancer biomarker development.
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