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海藻源化合物对信号转导通路的调节作用:系统评价。

Seaweeds-derived compounds modulating effects on signal transduction pathways: A systematic review.

机构信息

Centro de Investigaciones Biomédicas, Universidad Veracruzana. Av. Dr. Luis Castelazo Ayala s/n. Col. Industrial Ánimas, C.P. 91190, Xalapa, Veracruz, México.

Instituto de Investigaciones Oceanológicas, Universidad Autónoma de Baja California. Km 103 autopista Tijuana-Ensenada, A.P. 453. Ensenada, Baja California, México.

出版信息

Phytomedicine. 2019 Oct;63:153016. doi: 10.1016/j.phymed.2019.153016. Epub 2019 Jul 3.

Abstract

BACKGROUND

Recently, the study of marine natural products has gained interest due to their relevant biological activities. Specially, seaweeds produce bioactive compounds that could act as modulators of cell signaling pathways involved in a plethora of diseases. Thereby, the description of the molecular mechanisms by which seaweeds elicit its biological functions will certainly pave the way to the pharmacological development of drugs.

AIM

This review describes the molecular mechanisms by which seaweeds act and its possible utilization in the design of new drugs.

METHODS

This review was conducted according to the PRISMA-P guidelines for systematic reviews. Two independent authors searched into four different databases using combinations of keywords. Two more authors selected the articles following the eligibility criteria. Information extraction was conducted by two separated authors and entered into spreadsheets. Methodological quality and risk of bias were determined applying a 12-question Risk of Bias criteria tool.

RESULTS AND DISCUSSION

We found 2360 articles (SCOPUS: 998; PubMed: 678; Wiley: 645 and EBSCO: 39) using the established keywords, of which 113 articles fit the inclusion criteria and were included in the review. This work comprises studies in cell lines, and animal models, any clinical trial was excluded. The articles were published from 2005 up to March 31st 2018. The biggest amount of articles was published in 2017. Furthermore, the seaweeds tested in the studies were collected in 15 countries, mainly in Eastern countries. We found that the main modulated signaling pathways by seaweeds-derivate extracts and compounds were: L-Arginine/NO, TNF-α, MAPKs, PI3K/AKT/GSK, mTOR, NF-κB, extrinsic and intrinsic apoptosis, cell cycle, MMPs and Nrf2. Finally, the articles we analyzed showed moderate risk of bias in almost all the parameters evaluated. However, the studies fail to describe the place and characteristics of sample collection, the sample size, and the blindness of the experimental design.

CONCLUSION

In this review we identified and summarized relevant information related to seaweed-isolated compounds and extracts having biological activity; their role in different signal pathways to better understand their potential to further development of cures for cancer, diabetes, and inflammation-related diseases.

摘要

背景

由于其相关的生物活性,最近对海洋天然产物的研究引起了人们的兴趣。特别是,海藻产生的生物活性化合物可以作为调节细胞信号通路的调节剂,这些信号通路涉及多种疾病。因此,描述海藻发挥其生物学功能的分子机制肯定将为药物的药理学发展铺平道路。

目的

本综述描述了海藻的作用机制及其在新药设计中的可能应用。

方法

本综述按照 PRISMA-P 系统评价指南进行。两位独立的作者使用组合关键词在四个不同的数据库中进行搜索。另外两位作者根据纳入标准选择文章。由两位分开的作者进行信息提取,并输入电子表格。应用 12 个问题的偏倚风险标准工具确定方法学质量和偏倚风险。

结果与讨论

我们使用既定的关键词找到了 2360 篇文章(SCOPUS:998;PubMed:678;Wiley:645 和 EBSCO:39),其中 113 篇文章符合纳入标准并纳入综述。这项工作包括细胞系和动物模型的研究,排除了任何临床试验。文章发表于 2005 年至 2018 年 3 月 31 日。发表文章最多的是 2017 年。此外,研究中测试的海藻来自 15 个国家,主要是东方国家。我们发现,海藻衍生提取物和化合物主要调节的信号通路有:L-精氨酸/NO、TNF-α、MAPKs、PI3K/AKT/GSK、mTOR、NF-κB、外源性和内源性细胞凋亡、细胞周期、MMPs 和 Nrf2。最后,我们分析的文章在评估的几乎所有参数中都显示出中度偏倚风险。然而,这些研究未能描述样本采集的地点和特征、样本量以及实验设计的盲目性。

结论

在本综述中,我们确定并总结了与具有生物活性的海藻分离化合物和提取物相关的相关信息;它们在不同信号通路中的作用,以更好地了解它们在开发癌症、糖尿病和炎症相关疾病的治疗方法方面的潜在应用。

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