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姜黄素基衍生物的合成及其潜在的抗糖尿病特性:α-葡萄糖苷酶和α-淀粉酶抑制作用的体外和体内研究

Synthesis and Potential Antidiabetic Properties of Curcumin-Based Derivatives: An and Study of α-Glucosidase and α-Amylase Inhibition.

作者信息

Ezati Mohammad, Ghavamipour Fahimeh, Khosravi Narges, Sajedi Reza H, Chalabi Maryam, Farokhi Alireza, Adibi Hadi, Khodarahmi Reza

机构信息

Medical Biology Research Center, Health Technology Institute, Kermanshah University of Medical Sciences, Kermanshah, Iran.

Department of Biochemistry, Faculty of Biological Sciences, Tarbiat Modares University, Tehran, Iran.

出版信息

Med Chem. 2022;19(1):99-117. doi: 10.2174/1573406418666220509101854.

Abstract

BACKGROUND

Over the past twenty years, the prevalence of diabetes as one of the most common metabolic diseases has become a public health problem worldwide. Blood glucose control is important in delaying the onset and progression of diabetes-related complications. α-Glycosidase (α- Glu) and α-amylase (α-Amy) are important enzymes in glucose metabolism. Diabetic control through the inhibition of carbohydrate hydrolyzing enzymes is established as an effective strategy.

METHODS

In this study, curcumin-based benzaldehyde derivatives with high stability, bioavailability, and favorable efficiency were synthesized.

RESULTS

The results showed that L13, L8, and L11 derivatives have the highest inhibitory effect on α-Glu with IC values of 18.65, 20.6, and 31.7 μM and, also L11, L13, and L8 derivatives have the highest inhibitory effect on α-Amy with IC value of 14.8, 21.8, and 44.9 μM respectively. Furthermore, enzyme inhibitory kinetic characterization was also performed to understand the mechanism of enzyme inhibition.

CONCLUSION

L13, compared to the other compounds, exhibited acceptable inhibitory activity against both enzymes. The L13 derivative could be an appropriate candidate for further study through the rational drug design to the exploration of a new class of powerful anti-diabetic drugs considering the antioxidant properties of the synthesized compounds. The derivative helps reduce the glycemic index and limits the activity of the major reactive oxygen species (ROS) producing pathways.

摘要

背景

在过去二十年中,糖尿病作为最常见的代谢疾病之一,其患病率已成为全球公共卫生问题。血糖控制对于延缓糖尿病相关并发症的发生和发展至关重要。α-糖苷酶(α-Glu)和α-淀粉酶(α-Amy)是葡萄糖代谢中的重要酶。通过抑制碳水化合物水解酶来控制糖尿病已被确立为一种有效策略。

方法

在本研究中,合成了具有高稳定性、生物利用度和良好效率的基于姜黄素的苯甲醛衍生物。

结果

结果表明,L13、L8和L11衍生物对α-Glu具有最高抑制作用,IC值分别为18.65、20.6和31.7 μM,并且L11、L13和L8衍生物对α-Amy也具有最高抑制作用,IC值分别为14.8、21.8和44.9 μM。此外,还进行了酶抑制动力学表征以了解酶抑制机制。

结论

与其他化合物相比,L13对两种酶均表现出可接受的抑制活性。考虑到合成化合物的抗氧化特性,通过合理药物设计进一步研究L13衍生物,有望探索出一类新型强效抗糖尿病药物。该衍生物有助于降低血糖指数并限制主要活性氧(ROS)产生途径的活性。

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