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蔓越莓多酚抑制食管癌:新见解。

Cranberry Polyphenols in Esophageal Cancer Inhibition: New Insights.

机构信息

Rogel Cancer Center and Department of Surgery, Thoracic Surgery Section, University of Michigan, Ann Arbor, MI 48109, USA.

Marucci Center for Blueberry and Cranberry Research, Rutgers University, Chatsworth, NJ 08019, USA.

出版信息

Nutrients. 2022 Feb 24;14(5):969. doi: 10.3390/nu14050969.

Abstract

Esophageal adenocarcinoma (EAC) is a cancer characterized by rapidly rising incidence and poor survival, resulting in the need for new prevention and treatment options. We utilized two cranberry polyphenol extracts, one proanthocyanidin enriched (C-PAC) and a combination of anthocyanins, flavonoids, and glycosides (AFG) to assess inhibitory mechanisms utilizing premalignant Barrett's esophagus (BE) and EAC derived cell lines. We employed reverse phase protein arrays (RPPA) and Western blots to examine cancer-associated pathways and specific signaling cascades modulated by C-PAC or AFG. Viability results show that C-PAC is more potent than AFG at inducing cell death in BE and EAC cell lines. Based on the RPPA results, C-PAC significantly modulated 37 and 69 proteins in JH-EsoAd1 (JHAD1) and OE19 EAC cells, respectively. AFG treatment significantly altered 49 proteins in both JHAD1 and OE19 cells. Bioinformatic analysis of RPPA results revealed many previously unidentified pathways as modulated by cranberry polyphenols including NOTCH signaling, immune response, and epithelial to mesenchymal transition. Collectively, these results provide new insight regarding mechanisms by which cranberry polyphenols exert cancer inhibitory effects targeting EAC, with implications for potential use of cranberry constituents as cancer preventive agents.

摘要

食管腺癌 (EAC) 的发病率迅速上升,生存状况较差,因此需要新的预防和治疗方法。我们利用两种蔓越莓多酚提取物,一种原花青素浓缩物 (C-PAC) 和一种花青素、类黄酮和糖苷的混合物 (AFG) ,评估利用癌前 Barrett 食管 (BE) 和 EAC 衍生细胞系的抑制机制。我们采用反相蛋白阵列 (RPPA) 和 Western blot 检测 C-PAC 或 AFG 调节的癌症相关途径和特定信号级联。细胞活力结果表明,C-PAC 在诱导 BE 和 EAC 细胞系细胞死亡方面比 AFG 更有效。根据 RPPA 结果,C-PAC 分别显著调节了 JH-EsoAd1 (JHAD1) 和 OE19 EAC 细胞中的 37 和 69 种蛋白。AFG 处理分别显著改变了 JHAD1 和 OE19 细胞中的 49 种蛋白。RPPA 结果的生物信息学分析揭示了许多以前未被识别的途径被蔓越莓多酚调节,包括 NOTCH 信号、免疫反应和上皮间质转化。总之,这些结果提供了有关蔓越莓多酚通过靶向 EAC 发挥抗癌作用的机制的新见解,并暗示蔓越莓成分可能作为癌症预防剂使用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c428/8912450/76c98723f6ce/nutrients-14-00969-g001.jpg

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