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花色苷类化合物药理学活性的分子基础。

The molecular basis for the pharmacological activity of anthocyans.

机构信息

Department of Chemistry and Biochemistry, School of Medicine, University of Rijeka, B. Branchetta 20, 51000 Rijeka, Croatia.

出版信息

Curr Med Chem. 2011;18(29):4454-69. doi: 10.2174/092986711797287601.

Abstract

This review summarizes the current knowledge of the regulatory role of pure anthocyans in cellular signaling pathways and gene expression. The molecular basis for anthocyans pharmacological activity includes the regulation of plethora of mechanisms mainly involved in: (1) suppression of the inflammatory response through targeting the phospholipase A2 and PI3K/Akt and NF-κB pathways, (2) protection from cardiovascular disease by exerting (i) antihypertensive and endothelium-protective activity through targeting the Akt/eNOS and ACE pathways (ii) antiatherogenic activity through targeting NF-κB mediated VCAM and ICAM expression, (3) growth/differentiation control and tumor suppression by exerting (i) anticancerogenic activity through targeting the EGF and HGF signaling pathways (ii) tumor anti-invasive activity through targeting the VEGF signaling pathway and ECM degrading enzymes (iii) cell cycle arrest and induction of apoptosis through the JNK/p38 MAPK mediated caspase activation (iv) modulation of chemotherapeutic efficacy by affecting resistance to anticancer drugs, (4) reduction of diabetes incidence through modulation of insulin sensitivity and glucose utilization, (5) neuroprotection through amelioration of oxidative stress and Aβ deposition, and (6) hepatoprotective activity through interference with TNF-α and TGF-β in the liver. The estrogen-like activity of anthocyans could be utilized in cancer and hormone-replacement therapy. These data provide a concise insight into molecular mechanisms of protective and therapeutic activity of anthocyans in various pathological conditions, which may not be attributed solely to their antioxidant activity but also to direct blockage of signaling pathways. Structure-activity analysis reveals that the number of hydroxyl groups and presence of sugar moiety are crucial for their specific modulatory actions.

摘要

这篇综述总结了花青苷在细胞信号通路和基因表达中调节作用的现有知识。花青苷药理学活性的分子基础包括对众多机制的调节,主要涉及:(1)通过靶向磷脂酶 A2 和 PI3K/Akt 和 NF-κB 途径抑制炎症反应;(2)通过发挥(i)通过靶向 Akt/eNOS 和 ACE 途径的降压和内皮保护活性,(ii)通过靶向 NF-κB 介导的 VCAM 和 ICAM 表达的抗动脉粥样硬化活性,来预防心血管疾病;(3)通过发挥(i)通过靶向 EGF 和 HGF 信号通路的抗癌活性,(ii)通过靶向 VEGF 信号通路和 ECM 降解酶的肿瘤侵袭抑制活性,(iii)通过 JNK/p38 MAPK 介导的半胱天冬酶激活的细胞周期阻滞和诱导细胞凋亡,(iv)通过影响对抗癌药物的耐药性来调节化学疗法的功效,来控制生长/分化和肿瘤抑制;(4)通过调节胰岛素敏感性和葡萄糖利用来降低糖尿病发病率;(5)通过改善氧化应激和 Aβ 沉积来提供神经保护;(6)通过干扰肝脏中的 TNF-α 和 TGF-β 来发挥肝保护活性。花青苷的类雌激素活性可用于癌症和激素替代疗法。这些数据为花青苷在各种病理条件下的保护和治疗活性的分子机制提供了简明的见解,这些活性不仅归因于其抗氧化活性,而且还归因于对信号通路的直接阻断。结构-活性分析表明,羟基的数量和糖部分的存在对其特定的调节作用至关重要。

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