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首页> 外文期刊>Current opinion in endocrinology, diabetes, and obesity >Gastrin, inflammation, and carcinogenesis.
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Gastrin, inflammation, and carcinogenesis.

机译:胃泌素,炎症和致癌作用。

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摘要

PURPOSE OF REVIEW: Chronic infection of the gastric mucosa with Helicobacter pylori has long been recognized as a significant risk factor for gastric cancer, and indeed, this model represents the prototypical inflammation-associated cancer. In this review, we present the latest clinical and experimental evidence showing that gastrin peptides and their receptors [the cholecystokinin (CCK2) receptors] potentiate the progression of gastric cancer and other gastrointestinal malignancies in the presence of inflammation. RECENT FINDINGS: We highlight the feed-forward mechanisms by which gastrin and CCK2 receptor expression are upregulated during inflammation and in gastrointestinal cancers, summarize gastrin's proinflammatory role by inducing the production of cyclooxgenase-2 (COX-2) and interleukin-8 (IL-8), and relate evidence suggesting that gastrin and their receptors modulate the function of immune cells and fibroblasts following cellular stress, injury, repair, as well as during cancer progression. SUMMARY: We discuss trends for future studies directed toward the elucidation of gastrin peptides' role in regulating intercellular molecular signaling mechanisms between local and circulating immune cells, fibroblasts, epithelial cells, and other cell types in the microenvironments of inflammation-related cancers. Elucidation of the molecular and cellular pathways that relate inflammation with cancer may provide additional opportunities to develop complementary therapies that target the inflammatory microenvironment of the cancer.
机译:审查目的:幽门螺杆菌长期感染胃粘膜一直被认为是胃癌的重要危险因素,实际上,该模型代表了典型的炎症相关癌症。在这篇综述中,我们提供了最新的临床和实验证据,表明胃泌素肽及其受体(胆囊收缩素(CCK2)受体)在发炎时可增强胃癌和其他胃肠道恶性肿瘤的进展。最近的发现:我们着重指出了炎症和胃肠道癌中胃泌素和CCK2受体表达上调的前馈机制,总结了胃泌素的促炎作用,它诱导了环氧合酶2(COX-2)和白介素8(IL- 8),并有相关证据表明胃泌素及其受体在细胞应激,损伤,修复以及癌症进展期间调节免疫细胞和成纤维细胞的功能。摘要:我们讨论了有关阐明胃泌素肽在调节炎症相关癌症的微环境中局部和循环免疫细胞,成纤维细胞,上皮细胞和其他细胞类型之间的细胞间分子信号传导机制中作用的未来研究趋势。阐明与炎症相关的分子和细胞途径可能为开发靶向癌症的炎症微环境的补充疗法提供更多机会。

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