改变对放射的反应:胰腺导管腺癌的放射增敏剂和靶向治疗:临床前和新出现的临床证据。

Annals of Pancreatic Cancer Pub Date : 2018-08-01 Epub Date: 2018-08-31 DOI:10.21037/apc.2018.08.02
Adam R Wolfe, Terence M Williams
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引用次数: 4

摘要

放射治疗在胰腺导管腺癌中的作用不断发展。虽然转移性失败可能导致大多数患者死亡,但通过手术和/或放疗实现局部控制似乎很重要,因为某些研究表明,死亡率是由局部失败造成的。许多研究支持胰腺癌是一种相对耐辐射的肿瘤类型。此外,在非转移性情况下,通过剂量递增策略进一步改善辐射的能力受到正常器官(包括小肠和胃)与肿瘤的接近程度的阻碍。因此,颠覆促进辐射抗性的分子途径将是进一步成功治疗这种疾病的关键。有大量的临床前数据支持靶向各种分子途径与放射治疗相结合,包括DNA修复、细胞周期检查点蛋白、受体酪氨酸激酶、癌蛋白、干细胞和免疫调节。一些新的分子抑制剂的临床试验已经完成或正在进行中。在这篇综述中,我们总结了现有的临床前和临床分子策略,以提高胰腺癌放疗的疗效,并重点介绍了近期和正在进行的结合放疗和各种靶向治疗的临床试验。
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Altering the response to radiation: radiosensitizers and targeted therapies in pancreatic ductal adenocarcinoma: preclinical and emerging clinical evidence.

Radiation therapy continues to have an evolving role in pancreatic ductal adenocarcinoma. While metastatic failure likely contributes to the majority of patient mortality, achieving local control through surgery and/or radiation appears to be important as certain studies suggest that mortality is contributed by local failure. Many studies support that pancreatic cancer is a relatively radiation resistant tumor type. In addition, the ability to further improve radiation through dose escalation strategies in the non-metastatic setting is hampered by closeness of normal organs, including small bowel and stomach, to the tumor. Thus subverting molecular pathways that promote radiation resistance will be critical to further success of radiation in this disease. There is a wealth of preclinical data supporting the targeting of various molecular pathways in combination with radiation therapy, including DNA repair, cell cycle checkpoint proteins, receptor tyrosine kinases, oncoproteins, stem cells, and immunomodulation. A number of clinical trials have been completed or are on-going with novel molecular inhibitors. In this review, we summarize existing preclinical and clinical molecular strategies for improving the efficacy of radiation in pancreatic cancer, and highlight recent and ongoing clinical trials combining radiation and various targeted therapies.

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